xref: /openbmc/linux/fs/xfs/xfs_inode.c (revision dbad7c993053d8f482a5f76270a93307537efd8e)
11da177e4SLinus Torvalds /*
23e57ecf6SOlaf Weber  * Copyright (c) 2000-2006 Silicon Graphics, Inc.
37b718769SNathan Scott  * All Rights Reserved.
41da177e4SLinus Torvalds  *
57b718769SNathan Scott  * This program is free software; you can redistribute it and/or
67b718769SNathan Scott  * modify it under the terms of the GNU General Public License as
71da177e4SLinus Torvalds  * published by the Free Software Foundation.
81da177e4SLinus Torvalds  *
97b718769SNathan Scott  * This program is distributed in the hope that it would be useful,
107b718769SNathan Scott  * but WITHOUT ANY WARRANTY; without even the implied warranty of
117b718769SNathan Scott  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
127b718769SNathan Scott  * GNU General Public License for more details.
131da177e4SLinus Torvalds  *
147b718769SNathan Scott  * You should have received a copy of the GNU General Public License
157b718769SNathan Scott  * along with this program; if not, write the Free Software Foundation,
167b718769SNathan Scott  * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
171da177e4SLinus Torvalds  */
1840ebd81dSRobert P. J. Day #include <linux/log2.h>
1940ebd81dSRobert P. J. Day 
201da177e4SLinus Torvalds #include "xfs.h"
21a844f451SNathan Scott #include "xfs_fs.h"
2270a9883cSDave Chinner #include "xfs_shared.h"
23239880efSDave Chinner #include "xfs_format.h"
24239880efSDave Chinner #include "xfs_log_format.h"
25239880efSDave Chinner #include "xfs_trans_resv.h"
261da177e4SLinus Torvalds #include "xfs_sb.h"
271da177e4SLinus Torvalds #include "xfs_mount.h"
28a4fbe6abSDave Chinner #include "xfs_inode.h"
2957062787SDave Chinner #include "xfs_da_format.h"
30c24b5dfaSDave Chinner #include "xfs_da_btree.h"
31c24b5dfaSDave Chinner #include "xfs_dir2.h"
32a844f451SNathan Scott #include "xfs_attr_sf.h"
33c24b5dfaSDave Chinner #include "xfs_attr.h"
34239880efSDave Chinner #include "xfs_trans_space.h"
35239880efSDave Chinner #include "xfs_trans.h"
361da177e4SLinus Torvalds #include "xfs_buf_item.h"
37a844f451SNathan Scott #include "xfs_inode_item.h"
38a844f451SNathan Scott #include "xfs_ialloc.h"
39a844f451SNathan Scott #include "xfs_bmap.h"
4068988114SDave Chinner #include "xfs_bmap_util.h"
411da177e4SLinus Torvalds #include "xfs_error.h"
421da177e4SLinus Torvalds #include "xfs_quota.h"
432a82b8beSDavid Chinner #include "xfs_filestream.h"
4493848a99SChristoph Hellwig #include "xfs_cksum.h"
450b1b213fSChristoph Hellwig #include "xfs_trace.h"
4633479e05SDave Chinner #include "xfs_icache.h"
47c24b5dfaSDave Chinner #include "xfs_symlink.h"
48239880efSDave Chinner #include "xfs_trans_priv.h"
49239880efSDave Chinner #include "xfs_log.h"
50a4fbe6abSDave Chinner #include "xfs_bmap_btree.h"
511da177e4SLinus Torvalds 
521da177e4SLinus Torvalds kmem_zone_t *xfs_inode_zone;
531da177e4SLinus Torvalds 
541da177e4SLinus Torvalds /*
558f04c47aSChristoph Hellwig  * Used in xfs_itruncate_extents().  This is the maximum number of extents
561da177e4SLinus Torvalds  * freed from a file in a single transaction.
571da177e4SLinus Torvalds  */
581da177e4SLinus Torvalds #define	XFS_ITRUNC_MAX_EXTENTS	2
591da177e4SLinus Torvalds 
601da177e4SLinus Torvalds STATIC int xfs_iflush_int(xfs_inode_t *, xfs_buf_t *);
611da177e4SLinus Torvalds 
62ab297431SZhi Yong Wu STATIC int xfs_iunlink_remove(xfs_trans_t *, xfs_inode_t *);
63ab297431SZhi Yong Wu 
642a0ec1d9SDave Chinner /*
652a0ec1d9SDave Chinner  * helper function to extract extent size hint from inode
662a0ec1d9SDave Chinner  */
672a0ec1d9SDave Chinner xfs_extlen_t
682a0ec1d9SDave Chinner xfs_get_extsz_hint(
692a0ec1d9SDave Chinner 	struct xfs_inode	*ip)
702a0ec1d9SDave Chinner {
712a0ec1d9SDave Chinner 	if ((ip->i_d.di_flags & XFS_DIFLAG_EXTSIZE) && ip->i_d.di_extsize)
722a0ec1d9SDave Chinner 		return ip->i_d.di_extsize;
732a0ec1d9SDave Chinner 	if (XFS_IS_REALTIME_INODE(ip))
742a0ec1d9SDave Chinner 		return ip->i_mount->m_sb.sb_rextsize;
752a0ec1d9SDave Chinner 	return 0;
762a0ec1d9SDave Chinner }
772a0ec1d9SDave Chinner 
78fa96acadSDave Chinner /*
79efa70be1SChristoph Hellwig  * These two are wrapper routines around the xfs_ilock() routine used to
80efa70be1SChristoph Hellwig  * centralize some grungy code.  They are used in places that wish to lock the
81efa70be1SChristoph Hellwig  * inode solely for reading the extents.  The reason these places can't just
82efa70be1SChristoph Hellwig  * call xfs_ilock(ip, XFS_ILOCK_SHARED) is that the inode lock also guards to
83efa70be1SChristoph Hellwig  * bringing in of the extents from disk for a file in b-tree format.  If the
84efa70be1SChristoph Hellwig  * inode is in b-tree format, then we need to lock the inode exclusively until
85efa70be1SChristoph Hellwig  * the extents are read in.  Locking it exclusively all the time would limit
86efa70be1SChristoph Hellwig  * our parallelism unnecessarily, though.  What we do instead is check to see
87efa70be1SChristoph Hellwig  * if the extents have been read in yet, and only lock the inode exclusively
88efa70be1SChristoph Hellwig  * if they have not.
89fa96acadSDave Chinner  *
90efa70be1SChristoph Hellwig  * The functions return a value which should be given to the corresponding
9101f4f327SChristoph Hellwig  * xfs_iunlock() call.
92fa96acadSDave Chinner  */
93fa96acadSDave Chinner uint
94309ecac8SChristoph Hellwig xfs_ilock_data_map_shared(
95309ecac8SChristoph Hellwig 	struct xfs_inode	*ip)
96fa96acadSDave Chinner {
97309ecac8SChristoph Hellwig 	uint			lock_mode = XFS_ILOCK_SHARED;
98fa96acadSDave Chinner 
99309ecac8SChristoph Hellwig 	if (ip->i_d.di_format == XFS_DINODE_FMT_BTREE &&
100309ecac8SChristoph Hellwig 	    (ip->i_df.if_flags & XFS_IFEXTENTS) == 0)
101fa96acadSDave Chinner 		lock_mode = XFS_ILOCK_EXCL;
102fa96acadSDave Chinner 	xfs_ilock(ip, lock_mode);
103fa96acadSDave Chinner 	return lock_mode;
104fa96acadSDave Chinner }
105fa96acadSDave Chinner 
106efa70be1SChristoph Hellwig uint
107efa70be1SChristoph Hellwig xfs_ilock_attr_map_shared(
108efa70be1SChristoph Hellwig 	struct xfs_inode	*ip)
109fa96acadSDave Chinner {
110efa70be1SChristoph Hellwig 	uint			lock_mode = XFS_ILOCK_SHARED;
111efa70be1SChristoph Hellwig 
112efa70be1SChristoph Hellwig 	if (ip->i_d.di_aformat == XFS_DINODE_FMT_BTREE &&
113efa70be1SChristoph Hellwig 	    (ip->i_afp->if_flags & XFS_IFEXTENTS) == 0)
114efa70be1SChristoph Hellwig 		lock_mode = XFS_ILOCK_EXCL;
115efa70be1SChristoph Hellwig 	xfs_ilock(ip, lock_mode);
116efa70be1SChristoph Hellwig 	return lock_mode;
117fa96acadSDave Chinner }
118fa96acadSDave Chinner 
119fa96acadSDave Chinner /*
120653c60b6SDave Chinner  * The xfs inode contains 3 multi-reader locks: the i_iolock the i_mmap_lock and
121653c60b6SDave Chinner  * the i_lock.  This routine allows various combinations of the locks to be
122653c60b6SDave Chinner  * obtained.
123fa96acadSDave Chinner  *
124653c60b6SDave Chinner  * The 3 locks should always be ordered so that the IO lock is obtained first,
125653c60b6SDave Chinner  * the mmap lock second and the ilock last in order to prevent deadlock.
126fa96acadSDave Chinner  *
127653c60b6SDave Chinner  * Basic locking order:
128653c60b6SDave Chinner  *
129653c60b6SDave Chinner  * i_iolock -> i_mmap_lock -> page_lock -> i_ilock
130653c60b6SDave Chinner  *
131653c60b6SDave Chinner  * mmap_sem locking order:
132653c60b6SDave Chinner  *
133653c60b6SDave Chinner  * i_iolock -> page lock -> mmap_sem
134653c60b6SDave Chinner  * mmap_sem -> i_mmap_lock -> page_lock
135653c60b6SDave Chinner  *
136653c60b6SDave Chinner  * The difference in mmap_sem locking order mean that we cannot hold the
137653c60b6SDave Chinner  * i_mmap_lock over syscall based read(2)/write(2) based IO. These IO paths can
138653c60b6SDave Chinner  * fault in pages during copy in/out (for buffered IO) or require the mmap_sem
139653c60b6SDave Chinner  * in get_user_pages() to map the user pages into the kernel address space for
140653c60b6SDave Chinner  * direct IO. Similarly the i_iolock cannot be taken inside a page fault because
141653c60b6SDave Chinner  * page faults already hold the mmap_sem.
142653c60b6SDave Chinner  *
143653c60b6SDave Chinner  * Hence to serialise fully against both syscall and mmap based IO, we need to
144653c60b6SDave Chinner  * take both the i_iolock and the i_mmap_lock. These locks should *only* be both
145653c60b6SDave Chinner  * taken in places where we need to invalidate the page cache in a race
146653c60b6SDave Chinner  * free manner (e.g. truncate, hole punch and other extent manipulation
147653c60b6SDave Chinner  * functions).
148fa96acadSDave Chinner  */
149fa96acadSDave Chinner void
150fa96acadSDave Chinner xfs_ilock(
151fa96acadSDave Chinner 	xfs_inode_t		*ip,
152fa96acadSDave Chinner 	uint			lock_flags)
153fa96acadSDave Chinner {
154fa96acadSDave Chinner 	trace_xfs_ilock(ip, lock_flags, _RET_IP_);
155fa96acadSDave Chinner 
156fa96acadSDave Chinner 	/*
157fa96acadSDave Chinner 	 * You can't set both SHARED and EXCL for the same lock,
158fa96acadSDave Chinner 	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
159fa96acadSDave Chinner 	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
160fa96acadSDave Chinner 	 */
161fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
162fa96acadSDave Chinner 	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
163653c60b6SDave Chinner 	ASSERT((lock_flags & (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL)) !=
164653c60b6SDave Chinner 	       (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL));
165fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
166fa96acadSDave Chinner 	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
1670952c818SDave Chinner 	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_SUBCLASS_MASK)) == 0);
168fa96acadSDave Chinner 
169fa96acadSDave Chinner 	if (lock_flags & XFS_IOLOCK_EXCL)
170fa96acadSDave Chinner 		mrupdate_nested(&ip->i_iolock, XFS_IOLOCK_DEP(lock_flags));
171fa96acadSDave Chinner 	else if (lock_flags & XFS_IOLOCK_SHARED)
172fa96acadSDave Chinner 		mraccess_nested(&ip->i_iolock, XFS_IOLOCK_DEP(lock_flags));
173fa96acadSDave Chinner 
174653c60b6SDave Chinner 	if (lock_flags & XFS_MMAPLOCK_EXCL)
175653c60b6SDave Chinner 		mrupdate_nested(&ip->i_mmaplock, XFS_MMAPLOCK_DEP(lock_flags));
176653c60b6SDave Chinner 	else if (lock_flags & XFS_MMAPLOCK_SHARED)
177653c60b6SDave Chinner 		mraccess_nested(&ip->i_mmaplock, XFS_MMAPLOCK_DEP(lock_flags));
178653c60b6SDave Chinner 
179fa96acadSDave Chinner 	if (lock_flags & XFS_ILOCK_EXCL)
180fa96acadSDave Chinner 		mrupdate_nested(&ip->i_lock, XFS_ILOCK_DEP(lock_flags));
181fa96acadSDave Chinner 	else if (lock_flags & XFS_ILOCK_SHARED)
182fa96acadSDave Chinner 		mraccess_nested(&ip->i_lock, XFS_ILOCK_DEP(lock_flags));
183fa96acadSDave Chinner }
184fa96acadSDave Chinner 
185fa96acadSDave Chinner /*
186fa96acadSDave Chinner  * This is just like xfs_ilock(), except that the caller
187fa96acadSDave Chinner  * is guaranteed not to sleep.  It returns 1 if it gets
188fa96acadSDave Chinner  * the requested locks and 0 otherwise.  If the IO lock is
189fa96acadSDave Chinner  * obtained but the inode lock cannot be, then the IO lock
190fa96acadSDave Chinner  * is dropped before returning.
191fa96acadSDave Chinner  *
192fa96acadSDave Chinner  * ip -- the inode being locked
193fa96acadSDave Chinner  * lock_flags -- this parameter indicates the inode's locks to be
194fa96acadSDave Chinner  *       to be locked.  See the comment for xfs_ilock() for a list
195fa96acadSDave Chinner  *	 of valid values.
196fa96acadSDave Chinner  */
197fa96acadSDave Chinner int
198fa96acadSDave Chinner xfs_ilock_nowait(
199fa96acadSDave Chinner 	xfs_inode_t		*ip,
200fa96acadSDave Chinner 	uint			lock_flags)
201fa96acadSDave Chinner {
202fa96acadSDave Chinner 	trace_xfs_ilock_nowait(ip, lock_flags, _RET_IP_);
203fa96acadSDave Chinner 
204fa96acadSDave Chinner 	/*
205fa96acadSDave Chinner 	 * You can't set both SHARED and EXCL for the same lock,
206fa96acadSDave Chinner 	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
207fa96acadSDave Chinner 	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
208fa96acadSDave Chinner 	 */
209fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
210fa96acadSDave Chinner 	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
211653c60b6SDave Chinner 	ASSERT((lock_flags & (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL)) !=
212653c60b6SDave Chinner 	       (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL));
213fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
214fa96acadSDave Chinner 	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
2150952c818SDave Chinner 	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_SUBCLASS_MASK)) == 0);
216fa96acadSDave Chinner 
217fa96acadSDave Chinner 	if (lock_flags & XFS_IOLOCK_EXCL) {
218fa96acadSDave Chinner 		if (!mrtryupdate(&ip->i_iolock))
219fa96acadSDave Chinner 			goto out;
220fa96acadSDave Chinner 	} else if (lock_flags & XFS_IOLOCK_SHARED) {
221fa96acadSDave Chinner 		if (!mrtryaccess(&ip->i_iolock))
222fa96acadSDave Chinner 			goto out;
223fa96acadSDave Chinner 	}
224653c60b6SDave Chinner 
225653c60b6SDave Chinner 	if (lock_flags & XFS_MMAPLOCK_EXCL) {
226653c60b6SDave Chinner 		if (!mrtryupdate(&ip->i_mmaplock))
227653c60b6SDave Chinner 			goto out_undo_iolock;
228653c60b6SDave Chinner 	} else if (lock_flags & XFS_MMAPLOCK_SHARED) {
229653c60b6SDave Chinner 		if (!mrtryaccess(&ip->i_mmaplock))
230653c60b6SDave Chinner 			goto out_undo_iolock;
231653c60b6SDave Chinner 	}
232653c60b6SDave Chinner 
233fa96acadSDave Chinner 	if (lock_flags & XFS_ILOCK_EXCL) {
234fa96acadSDave Chinner 		if (!mrtryupdate(&ip->i_lock))
235653c60b6SDave Chinner 			goto out_undo_mmaplock;
236fa96acadSDave Chinner 	} else if (lock_flags & XFS_ILOCK_SHARED) {
237fa96acadSDave Chinner 		if (!mrtryaccess(&ip->i_lock))
238653c60b6SDave Chinner 			goto out_undo_mmaplock;
239fa96acadSDave Chinner 	}
240fa96acadSDave Chinner 	return 1;
241fa96acadSDave Chinner 
242653c60b6SDave Chinner out_undo_mmaplock:
243653c60b6SDave Chinner 	if (lock_flags & XFS_MMAPLOCK_EXCL)
244653c60b6SDave Chinner 		mrunlock_excl(&ip->i_mmaplock);
245653c60b6SDave Chinner 	else if (lock_flags & XFS_MMAPLOCK_SHARED)
246653c60b6SDave Chinner 		mrunlock_shared(&ip->i_mmaplock);
247fa96acadSDave Chinner out_undo_iolock:
248fa96acadSDave Chinner 	if (lock_flags & XFS_IOLOCK_EXCL)
249fa96acadSDave Chinner 		mrunlock_excl(&ip->i_iolock);
250fa96acadSDave Chinner 	else if (lock_flags & XFS_IOLOCK_SHARED)
251fa96acadSDave Chinner 		mrunlock_shared(&ip->i_iolock);
252fa96acadSDave Chinner out:
253fa96acadSDave Chinner 	return 0;
254fa96acadSDave Chinner }
255fa96acadSDave Chinner 
256fa96acadSDave Chinner /*
257fa96acadSDave Chinner  * xfs_iunlock() is used to drop the inode locks acquired with
258fa96acadSDave Chinner  * xfs_ilock() and xfs_ilock_nowait().  The caller must pass
259fa96acadSDave Chinner  * in the flags given to xfs_ilock() or xfs_ilock_nowait() so
260fa96acadSDave Chinner  * that we know which locks to drop.
261fa96acadSDave Chinner  *
262fa96acadSDave Chinner  * ip -- the inode being unlocked
263fa96acadSDave Chinner  * lock_flags -- this parameter indicates the inode's locks to be
264fa96acadSDave Chinner  *       to be unlocked.  See the comment for xfs_ilock() for a list
265fa96acadSDave Chinner  *	 of valid values for this parameter.
266fa96acadSDave Chinner  *
267fa96acadSDave Chinner  */
268fa96acadSDave Chinner void
269fa96acadSDave Chinner xfs_iunlock(
270fa96acadSDave Chinner 	xfs_inode_t		*ip,
271fa96acadSDave Chinner 	uint			lock_flags)
272fa96acadSDave Chinner {
273fa96acadSDave Chinner 	/*
274fa96acadSDave Chinner 	 * You can't set both SHARED and EXCL for the same lock,
275fa96acadSDave Chinner 	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
276fa96acadSDave Chinner 	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
277fa96acadSDave Chinner 	 */
278fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
279fa96acadSDave Chinner 	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
280653c60b6SDave Chinner 	ASSERT((lock_flags & (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL)) !=
281653c60b6SDave Chinner 	       (XFS_MMAPLOCK_SHARED | XFS_MMAPLOCK_EXCL));
282fa96acadSDave Chinner 	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
283fa96acadSDave Chinner 	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
2840952c818SDave Chinner 	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_SUBCLASS_MASK)) == 0);
285fa96acadSDave Chinner 	ASSERT(lock_flags != 0);
286fa96acadSDave Chinner 
287fa96acadSDave Chinner 	if (lock_flags & XFS_IOLOCK_EXCL)
288fa96acadSDave Chinner 		mrunlock_excl(&ip->i_iolock);
289fa96acadSDave Chinner 	else if (lock_flags & XFS_IOLOCK_SHARED)
290fa96acadSDave Chinner 		mrunlock_shared(&ip->i_iolock);
291fa96acadSDave Chinner 
292653c60b6SDave Chinner 	if (lock_flags & XFS_MMAPLOCK_EXCL)
293653c60b6SDave Chinner 		mrunlock_excl(&ip->i_mmaplock);
294653c60b6SDave Chinner 	else if (lock_flags & XFS_MMAPLOCK_SHARED)
295653c60b6SDave Chinner 		mrunlock_shared(&ip->i_mmaplock);
296653c60b6SDave Chinner 
297fa96acadSDave Chinner 	if (lock_flags & XFS_ILOCK_EXCL)
298fa96acadSDave Chinner 		mrunlock_excl(&ip->i_lock);
299fa96acadSDave Chinner 	else if (lock_flags & XFS_ILOCK_SHARED)
300fa96acadSDave Chinner 		mrunlock_shared(&ip->i_lock);
301fa96acadSDave Chinner 
302fa96acadSDave Chinner 	trace_xfs_iunlock(ip, lock_flags, _RET_IP_);
303fa96acadSDave Chinner }
304fa96acadSDave Chinner 
305fa96acadSDave Chinner /*
306fa96acadSDave Chinner  * give up write locks.  the i/o lock cannot be held nested
307fa96acadSDave Chinner  * if it is being demoted.
308fa96acadSDave Chinner  */
309fa96acadSDave Chinner void
310fa96acadSDave Chinner xfs_ilock_demote(
311fa96acadSDave Chinner 	xfs_inode_t		*ip,
312fa96acadSDave Chinner 	uint			lock_flags)
313fa96acadSDave Chinner {
314653c60b6SDave Chinner 	ASSERT(lock_flags & (XFS_IOLOCK_EXCL|XFS_MMAPLOCK_EXCL|XFS_ILOCK_EXCL));
315653c60b6SDave Chinner 	ASSERT((lock_flags &
316653c60b6SDave Chinner 		~(XFS_IOLOCK_EXCL|XFS_MMAPLOCK_EXCL|XFS_ILOCK_EXCL)) == 0);
317fa96acadSDave Chinner 
318fa96acadSDave Chinner 	if (lock_flags & XFS_ILOCK_EXCL)
319fa96acadSDave Chinner 		mrdemote(&ip->i_lock);
320653c60b6SDave Chinner 	if (lock_flags & XFS_MMAPLOCK_EXCL)
321653c60b6SDave Chinner 		mrdemote(&ip->i_mmaplock);
322fa96acadSDave Chinner 	if (lock_flags & XFS_IOLOCK_EXCL)
323fa96acadSDave Chinner 		mrdemote(&ip->i_iolock);
324fa96acadSDave Chinner 
325fa96acadSDave Chinner 	trace_xfs_ilock_demote(ip, lock_flags, _RET_IP_);
326fa96acadSDave Chinner }
327fa96acadSDave Chinner 
328742ae1e3SDave Chinner #if defined(DEBUG) || defined(XFS_WARN)
329fa96acadSDave Chinner int
330fa96acadSDave Chinner xfs_isilocked(
331fa96acadSDave Chinner 	xfs_inode_t		*ip,
332fa96acadSDave Chinner 	uint			lock_flags)
333fa96acadSDave Chinner {
334fa96acadSDave Chinner 	if (lock_flags & (XFS_ILOCK_EXCL|XFS_ILOCK_SHARED)) {
335fa96acadSDave Chinner 		if (!(lock_flags & XFS_ILOCK_SHARED))
336fa96acadSDave Chinner 			return !!ip->i_lock.mr_writer;
337fa96acadSDave Chinner 		return rwsem_is_locked(&ip->i_lock.mr_lock);
338fa96acadSDave Chinner 	}
339fa96acadSDave Chinner 
340653c60b6SDave Chinner 	if (lock_flags & (XFS_MMAPLOCK_EXCL|XFS_MMAPLOCK_SHARED)) {
341653c60b6SDave Chinner 		if (!(lock_flags & XFS_MMAPLOCK_SHARED))
342653c60b6SDave Chinner 			return !!ip->i_mmaplock.mr_writer;
343653c60b6SDave Chinner 		return rwsem_is_locked(&ip->i_mmaplock.mr_lock);
344653c60b6SDave Chinner 	}
345653c60b6SDave Chinner 
346fa96acadSDave Chinner 	if (lock_flags & (XFS_IOLOCK_EXCL|XFS_IOLOCK_SHARED)) {
347fa96acadSDave Chinner 		if (!(lock_flags & XFS_IOLOCK_SHARED))
348fa96acadSDave Chinner 			return !!ip->i_iolock.mr_writer;
349fa96acadSDave Chinner 		return rwsem_is_locked(&ip->i_iolock.mr_lock);
350fa96acadSDave Chinner 	}
351fa96acadSDave Chinner 
352fa96acadSDave Chinner 	ASSERT(0);
353fa96acadSDave Chinner 	return 0;
354fa96acadSDave Chinner }
355fa96acadSDave Chinner #endif
356fa96acadSDave Chinner 
357c24b5dfaSDave Chinner #ifdef DEBUG
358c24b5dfaSDave Chinner int xfs_locked_n;
359c24b5dfaSDave Chinner int xfs_small_retries;
360c24b5dfaSDave Chinner int xfs_middle_retries;
361c24b5dfaSDave Chinner int xfs_lots_retries;
362c24b5dfaSDave Chinner int xfs_lock_delays;
363c24b5dfaSDave Chinner #endif
364c24b5dfaSDave Chinner 
365c24b5dfaSDave Chinner /*
366653c60b6SDave Chinner  * Bump the subclass so xfs_lock_inodes() acquires each lock with a different
3670952c818SDave Chinner  * value. This can be called for any type of inode lock combination, including
3680952c818SDave Chinner  * parent locking. Care must be taken to ensure we don't overrun the subclass
3690952c818SDave Chinner  * storage fields in the class mask we build.
370c24b5dfaSDave Chinner  */
371c24b5dfaSDave Chinner static inline int
372c24b5dfaSDave Chinner xfs_lock_inumorder(int lock_mode, int subclass)
373c24b5dfaSDave Chinner {
3740952c818SDave Chinner 	int	class = 0;
3750952c818SDave Chinner 
3760952c818SDave Chinner 	ASSERT(!(lock_mode & (XFS_ILOCK_PARENT | XFS_ILOCK_RTBITMAP |
3770952c818SDave Chinner 			      XFS_ILOCK_RTSUM)));
3780952c818SDave Chinner 
379653c60b6SDave Chinner 	if (lock_mode & (XFS_IOLOCK_SHARED|XFS_IOLOCK_EXCL)) {
3800952c818SDave Chinner 		ASSERT(subclass <= XFS_IOLOCK_MAX_SUBCLASS);
3810952c818SDave Chinner 		ASSERT(subclass + XFS_IOLOCK_PARENT_VAL <
3820952c818SDave Chinner 						MAX_LOCKDEP_SUBCLASSES);
3830952c818SDave Chinner 		class += subclass << XFS_IOLOCK_SHIFT;
3840952c818SDave Chinner 		if (lock_mode & XFS_IOLOCK_PARENT)
3850952c818SDave Chinner 			class += XFS_IOLOCK_PARENT_VAL << XFS_IOLOCK_SHIFT;
386653c60b6SDave Chinner 	}
387653c60b6SDave Chinner 
388653c60b6SDave Chinner 	if (lock_mode & (XFS_MMAPLOCK_SHARED|XFS_MMAPLOCK_EXCL)) {
3890952c818SDave Chinner 		ASSERT(subclass <= XFS_MMAPLOCK_MAX_SUBCLASS);
3900952c818SDave Chinner 		class += subclass << XFS_MMAPLOCK_SHIFT;
391653c60b6SDave Chinner 	}
392653c60b6SDave Chinner 
3930952c818SDave Chinner 	if (lock_mode & (XFS_ILOCK_SHARED|XFS_ILOCK_EXCL)) {
3940952c818SDave Chinner 		ASSERT(subclass <= XFS_ILOCK_MAX_SUBCLASS);
3950952c818SDave Chinner 		class += subclass << XFS_ILOCK_SHIFT;
3960952c818SDave Chinner 	}
397c24b5dfaSDave Chinner 
3980952c818SDave Chinner 	return (lock_mode & ~XFS_LOCK_SUBCLASS_MASK) | class;
399c24b5dfaSDave Chinner }
400c24b5dfaSDave Chinner 
401c24b5dfaSDave Chinner /*
40295afcf5cSDave Chinner  * The following routine will lock n inodes in exclusive mode.  We assume the
40395afcf5cSDave Chinner  * caller calls us with the inodes in i_ino order.
404c24b5dfaSDave Chinner  *
40595afcf5cSDave Chinner  * We need to detect deadlock where an inode that we lock is in the AIL and we
40695afcf5cSDave Chinner  * start waiting for another inode that is locked by a thread in a long running
40795afcf5cSDave Chinner  * transaction (such as truncate). This can result in deadlock since the long
40895afcf5cSDave Chinner  * running trans might need to wait for the inode we just locked in order to
40995afcf5cSDave Chinner  * push the tail and free space in the log.
4100952c818SDave Chinner  *
4110952c818SDave Chinner  * xfs_lock_inodes() can only be used to lock one type of lock at a time -
4120952c818SDave Chinner  * the iolock, the mmaplock or the ilock, but not more than one at a time. If we
4130952c818SDave Chinner  * lock more than one at a time, lockdep will report false positives saying we
4140952c818SDave Chinner  * have violated locking orders.
415c24b5dfaSDave Chinner  */
416c24b5dfaSDave Chinner void
417c24b5dfaSDave Chinner xfs_lock_inodes(
418c24b5dfaSDave Chinner 	xfs_inode_t	**ips,
419c24b5dfaSDave Chinner 	int		inodes,
420c24b5dfaSDave Chinner 	uint		lock_mode)
421c24b5dfaSDave Chinner {
422c24b5dfaSDave Chinner 	int		attempts = 0, i, j, try_lock;
423c24b5dfaSDave Chinner 	xfs_log_item_t	*lp;
424c24b5dfaSDave Chinner 
4250952c818SDave Chinner 	/*
4260952c818SDave Chinner 	 * Currently supports between 2 and 5 inodes with exclusive locking.  We
4270952c818SDave Chinner 	 * support an arbitrary depth of locking here, but absolute limits on
4280952c818SDave Chinner 	 * inodes depend on the the type of locking and the limits placed by
4290952c818SDave Chinner 	 * lockdep annotations in xfs_lock_inumorder.  These are all checked by
4300952c818SDave Chinner 	 * the asserts.
4310952c818SDave Chinner 	 */
43295afcf5cSDave Chinner 	ASSERT(ips && inodes >= 2 && inodes <= 5);
4330952c818SDave Chinner 	ASSERT(lock_mode & (XFS_IOLOCK_EXCL | XFS_MMAPLOCK_EXCL |
4340952c818SDave Chinner 			    XFS_ILOCK_EXCL));
4350952c818SDave Chinner 	ASSERT(!(lock_mode & (XFS_IOLOCK_SHARED | XFS_MMAPLOCK_SHARED |
4360952c818SDave Chinner 			      XFS_ILOCK_SHARED)));
4370952c818SDave Chinner 	ASSERT(!(lock_mode & XFS_IOLOCK_EXCL) ||
4380952c818SDave Chinner 		inodes <= XFS_IOLOCK_MAX_SUBCLASS + 1);
4390952c818SDave Chinner 	ASSERT(!(lock_mode & XFS_MMAPLOCK_EXCL) ||
4400952c818SDave Chinner 		inodes <= XFS_MMAPLOCK_MAX_SUBCLASS + 1);
4410952c818SDave Chinner 	ASSERT(!(lock_mode & XFS_ILOCK_EXCL) ||
4420952c818SDave Chinner 		inodes <= XFS_ILOCK_MAX_SUBCLASS + 1);
4430952c818SDave Chinner 
4440952c818SDave Chinner 	if (lock_mode & XFS_IOLOCK_EXCL) {
4450952c818SDave Chinner 		ASSERT(!(lock_mode & (XFS_MMAPLOCK_EXCL | XFS_ILOCK_EXCL)));
4460952c818SDave Chinner 	} else if (lock_mode & XFS_MMAPLOCK_EXCL)
4470952c818SDave Chinner 		ASSERT(!(lock_mode & XFS_ILOCK_EXCL));
448c24b5dfaSDave Chinner 
449c24b5dfaSDave Chinner 	try_lock = 0;
450c24b5dfaSDave Chinner 	i = 0;
451c24b5dfaSDave Chinner again:
452c24b5dfaSDave Chinner 	for (; i < inodes; i++) {
453c24b5dfaSDave Chinner 		ASSERT(ips[i]);
454c24b5dfaSDave Chinner 
455c24b5dfaSDave Chinner 		if (i && (ips[i] == ips[i - 1]))	/* Already locked */
456c24b5dfaSDave Chinner 			continue;
457c24b5dfaSDave Chinner 
458c24b5dfaSDave Chinner 		/*
45995afcf5cSDave Chinner 		 * If try_lock is not set yet, make sure all locked inodes are
46095afcf5cSDave Chinner 		 * not in the AIL.  If any are, set try_lock to be used later.
461c24b5dfaSDave Chinner 		 */
462c24b5dfaSDave Chinner 		if (!try_lock) {
463c24b5dfaSDave Chinner 			for (j = (i - 1); j >= 0 && !try_lock; j--) {
464c24b5dfaSDave Chinner 				lp = (xfs_log_item_t *)ips[j]->i_itemp;
46595afcf5cSDave Chinner 				if (lp && (lp->li_flags & XFS_LI_IN_AIL))
466c24b5dfaSDave Chinner 					try_lock++;
467c24b5dfaSDave Chinner 			}
468c24b5dfaSDave Chinner 		}
469c24b5dfaSDave Chinner 
470c24b5dfaSDave Chinner 		/*
471c24b5dfaSDave Chinner 		 * If any of the previous locks we have locked is in the AIL,
472c24b5dfaSDave Chinner 		 * we must TRY to get the second and subsequent locks. If
473c24b5dfaSDave Chinner 		 * we can't get any, we must release all we have
474c24b5dfaSDave Chinner 		 * and try again.
475c24b5dfaSDave Chinner 		 */
47695afcf5cSDave Chinner 		if (!try_lock) {
47795afcf5cSDave Chinner 			xfs_ilock(ips[i], xfs_lock_inumorder(lock_mode, i));
47895afcf5cSDave Chinner 			continue;
47995afcf5cSDave Chinner 		}
480c24b5dfaSDave Chinner 
48195afcf5cSDave Chinner 		/* try_lock means we have an inode locked that is in the AIL. */
482c24b5dfaSDave Chinner 		ASSERT(i != 0);
48395afcf5cSDave Chinner 		if (xfs_ilock_nowait(ips[i], xfs_lock_inumorder(lock_mode, i)))
48495afcf5cSDave Chinner 			continue;
48595afcf5cSDave Chinner 
48695afcf5cSDave Chinner 		/*
48795afcf5cSDave Chinner 		 * Unlock all previous guys and try again.  xfs_iunlock will try
48895afcf5cSDave Chinner 		 * to push the tail if the inode is in the AIL.
48995afcf5cSDave Chinner 		 */
490c24b5dfaSDave Chinner 		attempts++;
491c24b5dfaSDave Chinner 		for (j = i - 1; j >= 0; j--) {
492c24b5dfaSDave Chinner 			/*
49395afcf5cSDave Chinner 			 * Check to see if we've already unlocked this one.  Not
49495afcf5cSDave Chinner 			 * the first one going back, and the inode ptr is the
49595afcf5cSDave Chinner 			 * same.
496c24b5dfaSDave Chinner 			 */
49795afcf5cSDave Chinner 			if (j != (i - 1) && ips[j] == ips[j + 1])
498c24b5dfaSDave Chinner 				continue;
499c24b5dfaSDave Chinner 
500c24b5dfaSDave Chinner 			xfs_iunlock(ips[j], lock_mode);
501c24b5dfaSDave Chinner 		}
502c24b5dfaSDave Chinner 
503c24b5dfaSDave Chinner 		if ((attempts % 5) == 0) {
504c24b5dfaSDave Chinner 			delay(1); /* Don't just spin the CPU */
505c24b5dfaSDave Chinner #ifdef DEBUG
506c24b5dfaSDave Chinner 			xfs_lock_delays++;
507c24b5dfaSDave Chinner #endif
508c24b5dfaSDave Chinner 		}
509c24b5dfaSDave Chinner 		i = 0;
510c24b5dfaSDave Chinner 		try_lock = 0;
511c24b5dfaSDave Chinner 		goto again;
512c24b5dfaSDave Chinner 	}
513c24b5dfaSDave Chinner 
514c24b5dfaSDave Chinner #ifdef DEBUG
515c24b5dfaSDave Chinner 	if (attempts) {
516c24b5dfaSDave Chinner 		if (attempts < 5) xfs_small_retries++;
517c24b5dfaSDave Chinner 		else if (attempts < 100) xfs_middle_retries++;
518c24b5dfaSDave Chinner 		else xfs_lots_retries++;
519c24b5dfaSDave Chinner 	} else {
520c24b5dfaSDave Chinner 		xfs_locked_n++;
521c24b5dfaSDave Chinner 	}
522c24b5dfaSDave Chinner #endif
523c24b5dfaSDave Chinner }
524c24b5dfaSDave Chinner 
525c24b5dfaSDave Chinner /*
526653c60b6SDave Chinner  * xfs_lock_two_inodes() can only be used to lock one type of lock at a time -
527653c60b6SDave Chinner  * the iolock, the mmaplock or the ilock, but not more than one at a time. If we
528653c60b6SDave Chinner  * lock more than one at a time, lockdep will report false positives saying we
529653c60b6SDave Chinner  * have violated locking orders.
530c24b5dfaSDave Chinner  */
531c24b5dfaSDave Chinner void
532c24b5dfaSDave Chinner xfs_lock_two_inodes(
533c24b5dfaSDave Chinner 	xfs_inode_t		*ip0,
534c24b5dfaSDave Chinner 	xfs_inode_t		*ip1,
535c24b5dfaSDave Chinner 	uint			lock_mode)
536c24b5dfaSDave Chinner {
537c24b5dfaSDave Chinner 	xfs_inode_t		*temp;
538c24b5dfaSDave Chinner 	int			attempts = 0;
539c24b5dfaSDave Chinner 	xfs_log_item_t		*lp;
540c24b5dfaSDave Chinner 
541653c60b6SDave Chinner 	if (lock_mode & (XFS_IOLOCK_SHARED|XFS_IOLOCK_EXCL)) {
542653c60b6SDave Chinner 		ASSERT(!(lock_mode & (XFS_MMAPLOCK_SHARED|XFS_MMAPLOCK_EXCL)));
543653c60b6SDave Chinner 		ASSERT(!(lock_mode & (XFS_ILOCK_SHARED|XFS_ILOCK_EXCL)));
544653c60b6SDave Chinner 	} else if (lock_mode & (XFS_MMAPLOCK_SHARED|XFS_MMAPLOCK_EXCL))
545653c60b6SDave Chinner 		ASSERT(!(lock_mode & (XFS_ILOCK_SHARED|XFS_ILOCK_EXCL)));
546653c60b6SDave Chinner 
547c24b5dfaSDave Chinner 	ASSERT(ip0->i_ino != ip1->i_ino);
548c24b5dfaSDave Chinner 
549c24b5dfaSDave Chinner 	if (ip0->i_ino > ip1->i_ino) {
550c24b5dfaSDave Chinner 		temp = ip0;
551c24b5dfaSDave Chinner 		ip0 = ip1;
552c24b5dfaSDave Chinner 		ip1 = temp;
553c24b5dfaSDave Chinner 	}
554c24b5dfaSDave Chinner 
555c24b5dfaSDave Chinner  again:
556c24b5dfaSDave Chinner 	xfs_ilock(ip0, xfs_lock_inumorder(lock_mode, 0));
557c24b5dfaSDave Chinner 
558c24b5dfaSDave Chinner 	/*
559c24b5dfaSDave Chinner 	 * If the first lock we have locked is in the AIL, we must TRY to get
560c24b5dfaSDave Chinner 	 * the second lock. If we can't get it, we must release the first one
561c24b5dfaSDave Chinner 	 * and try again.
562c24b5dfaSDave Chinner 	 */
563c24b5dfaSDave Chinner 	lp = (xfs_log_item_t *)ip0->i_itemp;
564c24b5dfaSDave Chinner 	if (lp && (lp->li_flags & XFS_LI_IN_AIL)) {
565c24b5dfaSDave Chinner 		if (!xfs_ilock_nowait(ip1, xfs_lock_inumorder(lock_mode, 1))) {
566c24b5dfaSDave Chinner 			xfs_iunlock(ip0, lock_mode);
567c24b5dfaSDave Chinner 			if ((++attempts % 5) == 0)
568c24b5dfaSDave Chinner 				delay(1); /* Don't just spin the CPU */
569c24b5dfaSDave Chinner 			goto again;
570c24b5dfaSDave Chinner 		}
571c24b5dfaSDave Chinner 	} else {
572c24b5dfaSDave Chinner 		xfs_ilock(ip1, xfs_lock_inumorder(lock_mode, 1));
573c24b5dfaSDave Chinner 	}
574c24b5dfaSDave Chinner }
575c24b5dfaSDave Chinner 
576c24b5dfaSDave Chinner 
577fa96acadSDave Chinner void
578fa96acadSDave Chinner __xfs_iflock(
579fa96acadSDave Chinner 	struct xfs_inode	*ip)
580fa96acadSDave Chinner {
581fa96acadSDave Chinner 	wait_queue_head_t *wq = bit_waitqueue(&ip->i_flags, __XFS_IFLOCK_BIT);
582fa96acadSDave Chinner 	DEFINE_WAIT_BIT(wait, &ip->i_flags, __XFS_IFLOCK_BIT);
583fa96acadSDave Chinner 
584fa96acadSDave Chinner 	do {
585fa96acadSDave Chinner 		prepare_to_wait_exclusive(wq, &wait.wait, TASK_UNINTERRUPTIBLE);
586fa96acadSDave Chinner 		if (xfs_isiflocked(ip))
587fa96acadSDave Chinner 			io_schedule();
588fa96acadSDave Chinner 	} while (!xfs_iflock_nowait(ip));
589fa96acadSDave Chinner 
590fa96acadSDave Chinner 	finish_wait(wq, &wait.wait);
591fa96acadSDave Chinner }
592fa96acadSDave Chinner 
5931da177e4SLinus Torvalds STATIC uint
5941da177e4SLinus Torvalds _xfs_dic2xflags(
5951da177e4SLinus Torvalds 	__uint16_t		di_flags)
5961da177e4SLinus Torvalds {
5971da177e4SLinus Torvalds 	uint			flags = 0;
5981da177e4SLinus Torvalds 
5991da177e4SLinus Torvalds 	if (di_flags & XFS_DIFLAG_ANY) {
6001da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_REALTIME)
6011da177e4SLinus Torvalds 			flags |= XFS_XFLAG_REALTIME;
6021da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_PREALLOC)
6031da177e4SLinus Torvalds 			flags |= XFS_XFLAG_PREALLOC;
6041da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_IMMUTABLE)
6051da177e4SLinus Torvalds 			flags |= XFS_XFLAG_IMMUTABLE;
6061da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_APPEND)
6071da177e4SLinus Torvalds 			flags |= XFS_XFLAG_APPEND;
6081da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_SYNC)
6091da177e4SLinus Torvalds 			flags |= XFS_XFLAG_SYNC;
6101da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_NOATIME)
6111da177e4SLinus Torvalds 			flags |= XFS_XFLAG_NOATIME;
6121da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_NODUMP)
6131da177e4SLinus Torvalds 			flags |= XFS_XFLAG_NODUMP;
6141da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_RTINHERIT)
6151da177e4SLinus Torvalds 			flags |= XFS_XFLAG_RTINHERIT;
6161da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_PROJINHERIT)
6171da177e4SLinus Torvalds 			flags |= XFS_XFLAG_PROJINHERIT;
6181da177e4SLinus Torvalds 		if (di_flags & XFS_DIFLAG_NOSYMLINKS)
6191da177e4SLinus Torvalds 			flags |= XFS_XFLAG_NOSYMLINKS;
620dd9f438eSNathan Scott 		if (di_flags & XFS_DIFLAG_EXTSIZE)
621dd9f438eSNathan Scott 			flags |= XFS_XFLAG_EXTSIZE;
622dd9f438eSNathan Scott 		if (di_flags & XFS_DIFLAG_EXTSZINHERIT)
623dd9f438eSNathan Scott 			flags |= XFS_XFLAG_EXTSZINHERIT;
624d3446eacSBarry Naujok 		if (di_flags & XFS_DIFLAG_NODEFRAG)
625d3446eacSBarry Naujok 			flags |= XFS_XFLAG_NODEFRAG;
6262a82b8beSDavid Chinner 		if (di_flags & XFS_DIFLAG_FILESTREAM)
6272a82b8beSDavid Chinner 			flags |= XFS_XFLAG_FILESTREAM;
6281da177e4SLinus Torvalds 	}
6291da177e4SLinus Torvalds 
6301da177e4SLinus Torvalds 	return flags;
6311da177e4SLinus Torvalds }
6321da177e4SLinus Torvalds 
6331da177e4SLinus Torvalds uint
6341da177e4SLinus Torvalds xfs_ip2xflags(
6351da177e4SLinus Torvalds 	xfs_inode_t		*ip)
6361da177e4SLinus Torvalds {
637347d1c01SChristoph Hellwig 	xfs_icdinode_t		*dic = &ip->i_d;
6381da177e4SLinus Torvalds 
639a916e2bdSNathan Scott 	return _xfs_dic2xflags(dic->di_flags) |
64045ba598eSChristoph Hellwig 				(XFS_IFORK_Q(ip) ? XFS_XFLAG_HASATTR : 0);
6411da177e4SLinus Torvalds }
6421da177e4SLinus Torvalds 
6431da177e4SLinus Torvalds uint
6441da177e4SLinus Torvalds xfs_dic2xflags(
64545ba598eSChristoph Hellwig 	xfs_dinode_t		*dip)
6461da177e4SLinus Torvalds {
64781591fe2SChristoph Hellwig 	return _xfs_dic2xflags(be16_to_cpu(dip->di_flags)) |
64845ba598eSChristoph Hellwig 				(XFS_DFORK_Q(dip) ? XFS_XFLAG_HASATTR : 0);
6491da177e4SLinus Torvalds }
6501da177e4SLinus Torvalds 
6511da177e4SLinus Torvalds /*
652c24b5dfaSDave Chinner  * Lookups up an inode from "name". If ci_name is not NULL, then a CI match
653c24b5dfaSDave Chinner  * is allowed, otherwise it has to be an exact match. If a CI match is found,
654c24b5dfaSDave Chinner  * ci_name->name will point to a the actual name (caller must free) or
655c24b5dfaSDave Chinner  * will be set to NULL if an exact match is found.
656c24b5dfaSDave Chinner  */
657c24b5dfaSDave Chinner int
658c24b5dfaSDave Chinner xfs_lookup(
659c24b5dfaSDave Chinner 	xfs_inode_t		*dp,
660c24b5dfaSDave Chinner 	struct xfs_name		*name,
661c24b5dfaSDave Chinner 	xfs_inode_t		**ipp,
662c24b5dfaSDave Chinner 	struct xfs_name		*ci_name)
663c24b5dfaSDave Chinner {
664c24b5dfaSDave Chinner 	xfs_ino_t		inum;
665c24b5dfaSDave Chinner 	int			error;
666c24b5dfaSDave Chinner 
667c24b5dfaSDave Chinner 	trace_xfs_lookup(dp, name);
668c24b5dfaSDave Chinner 
669c24b5dfaSDave Chinner 	if (XFS_FORCED_SHUTDOWN(dp->i_mount))
6702451337dSDave Chinner 		return -EIO;
671c24b5dfaSDave Chinner 
672*dbad7c99SDave Chinner 	xfs_ilock(dp, XFS_IOLOCK_SHARED);
673c24b5dfaSDave Chinner 	error = xfs_dir_lookup(NULL, dp, name, &inum, ci_name);
674c24b5dfaSDave Chinner 	if (error)
675*dbad7c99SDave Chinner 		goto out_unlock;
676c24b5dfaSDave Chinner 
677c24b5dfaSDave Chinner 	error = xfs_iget(dp->i_mount, NULL, inum, 0, 0, ipp);
678c24b5dfaSDave Chinner 	if (error)
679c24b5dfaSDave Chinner 		goto out_free_name;
680c24b5dfaSDave Chinner 
681*dbad7c99SDave Chinner 	xfs_iunlock(dp, XFS_IOLOCK_SHARED);
682c24b5dfaSDave Chinner 	return 0;
683c24b5dfaSDave Chinner 
684c24b5dfaSDave Chinner out_free_name:
685c24b5dfaSDave Chinner 	if (ci_name)
686c24b5dfaSDave Chinner 		kmem_free(ci_name->name);
687*dbad7c99SDave Chinner out_unlock:
688*dbad7c99SDave Chinner 	xfs_iunlock(dp, XFS_IOLOCK_SHARED);
689c24b5dfaSDave Chinner 	*ipp = NULL;
690c24b5dfaSDave Chinner 	return error;
691c24b5dfaSDave Chinner }
692c24b5dfaSDave Chinner 
693c24b5dfaSDave Chinner /*
6941da177e4SLinus Torvalds  * Allocate an inode on disk and return a copy of its in-core version.
6951da177e4SLinus Torvalds  * The in-core inode is locked exclusively.  Set mode, nlink, and rdev
6961da177e4SLinus Torvalds  * appropriately within the inode.  The uid and gid for the inode are
6971da177e4SLinus Torvalds  * set according to the contents of the given cred structure.
6981da177e4SLinus Torvalds  *
6991da177e4SLinus Torvalds  * Use xfs_dialloc() to allocate the on-disk inode. If xfs_dialloc()
700cd856db6SCarlos Maiolino  * has a free inode available, call xfs_iget() to obtain the in-core
701cd856db6SCarlos Maiolino  * version of the allocated inode.  Finally, fill in the inode and
702cd856db6SCarlos Maiolino  * log its initial contents.  In this case, ialloc_context would be
703cd856db6SCarlos Maiolino  * set to NULL.
7041da177e4SLinus Torvalds  *
705cd856db6SCarlos Maiolino  * If xfs_dialloc() does not have an available inode, it will replenish
706cd856db6SCarlos Maiolino  * its supply by doing an allocation. Since we can only do one
707cd856db6SCarlos Maiolino  * allocation within a transaction without deadlocks, we must commit
708cd856db6SCarlos Maiolino  * the current transaction before returning the inode itself.
709cd856db6SCarlos Maiolino  * In this case, therefore, we will set ialloc_context and return.
7101da177e4SLinus Torvalds  * The caller should then commit the current transaction, start a new
7111da177e4SLinus Torvalds  * transaction, and call xfs_ialloc() again to actually get the inode.
7121da177e4SLinus Torvalds  *
7131da177e4SLinus Torvalds  * To ensure that some other process does not grab the inode that
7141da177e4SLinus Torvalds  * was allocated during the first call to xfs_ialloc(), this routine
7151da177e4SLinus Torvalds  * also returns the [locked] bp pointing to the head of the freelist
7161da177e4SLinus Torvalds  * as ialloc_context.  The caller should hold this buffer across
7171da177e4SLinus Torvalds  * the commit and pass it back into this routine on the second call.
718b11f94d5SDavid Chinner  *
719b11f94d5SDavid Chinner  * If we are allocating quota inodes, we do not have a parent inode
720b11f94d5SDavid Chinner  * to attach to or associate with (i.e. pip == NULL) because they
721b11f94d5SDavid Chinner  * are not linked into the directory structure - they are attached
722b11f94d5SDavid Chinner  * directly to the superblock - and so have no parent.
7231da177e4SLinus Torvalds  */
7241da177e4SLinus Torvalds int
7251da177e4SLinus Torvalds xfs_ialloc(
7261da177e4SLinus Torvalds 	xfs_trans_t	*tp,
7271da177e4SLinus Torvalds 	xfs_inode_t	*pip,
728576b1d67SAl Viro 	umode_t		mode,
72931b084aeSNathan Scott 	xfs_nlink_t	nlink,
7301da177e4SLinus Torvalds 	xfs_dev_t	rdev,
7316743099cSArkadiusz Mi?kiewicz 	prid_t		prid,
7321da177e4SLinus Torvalds 	int		okalloc,
7331da177e4SLinus Torvalds 	xfs_buf_t	**ialloc_context,
7341da177e4SLinus Torvalds 	xfs_inode_t	**ipp)
7351da177e4SLinus Torvalds {
73693848a99SChristoph Hellwig 	struct xfs_mount *mp = tp->t_mountp;
7371da177e4SLinus Torvalds 	xfs_ino_t	ino;
7381da177e4SLinus Torvalds 	xfs_inode_t	*ip;
7391da177e4SLinus Torvalds 	uint		flags;
7401da177e4SLinus Torvalds 	int		error;
741e076b0f3SDave Chinner 	struct timespec	tv;
7421da177e4SLinus Torvalds 
7431da177e4SLinus Torvalds 	/*
7441da177e4SLinus Torvalds 	 * Call the space management code to pick
7451da177e4SLinus Torvalds 	 * the on-disk inode to be allocated.
7461da177e4SLinus Torvalds 	 */
747b11f94d5SDavid Chinner 	error = xfs_dialloc(tp, pip ? pip->i_ino : 0, mode, okalloc,
74808358906SChristoph Hellwig 			    ialloc_context, &ino);
749bf904248SDavid Chinner 	if (error)
7501da177e4SLinus Torvalds 		return error;
75108358906SChristoph Hellwig 	if (*ialloc_context || ino == NULLFSINO) {
7521da177e4SLinus Torvalds 		*ipp = NULL;
7531da177e4SLinus Torvalds 		return 0;
7541da177e4SLinus Torvalds 	}
7551da177e4SLinus Torvalds 	ASSERT(*ialloc_context == NULL);
7561da177e4SLinus Torvalds 
7571da177e4SLinus Torvalds 	/*
7581da177e4SLinus Torvalds 	 * Get the in-core inode with the lock held exclusively.
7591da177e4SLinus Torvalds 	 * This is because we're setting fields here we need
7601da177e4SLinus Torvalds 	 * to prevent others from looking at until we're done.
7611da177e4SLinus Torvalds 	 */
76293848a99SChristoph Hellwig 	error = xfs_iget(mp, tp, ino, XFS_IGET_CREATE,
763ec3ba85fSChristoph Hellwig 			 XFS_ILOCK_EXCL, &ip);
764bf904248SDavid Chinner 	if (error)
7651da177e4SLinus Torvalds 		return error;
7661da177e4SLinus Torvalds 	ASSERT(ip != NULL);
7671da177e4SLinus Torvalds 
768263997a6SDave Chinner 	/*
769263997a6SDave Chinner 	 * We always convert v1 inodes to v2 now - we only support filesystems
770263997a6SDave Chinner 	 * with >= v2 inode capability, so there is no reason for ever leaving
771263997a6SDave Chinner 	 * an inode in v1 format.
772263997a6SDave Chinner 	 */
773263997a6SDave Chinner 	if (ip->i_d.di_version == 1)
774263997a6SDave Chinner 		ip->i_d.di_version = 2;
775263997a6SDave Chinner 
776576b1d67SAl Viro 	ip->i_d.di_mode = mode;
7771da177e4SLinus Torvalds 	ip->i_d.di_onlink = 0;
7781da177e4SLinus Torvalds 	ip->i_d.di_nlink = nlink;
7791da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nlink == nlink);
7807aab1b28SDwight Engen 	ip->i_d.di_uid = xfs_kuid_to_uid(current_fsuid());
7817aab1b28SDwight Engen 	ip->i_d.di_gid = xfs_kgid_to_gid(current_fsgid());
7826743099cSArkadiusz Mi?kiewicz 	xfs_set_projid(ip, prid);
7831da177e4SLinus Torvalds 	memset(&(ip->i_d.di_pad[0]), 0, sizeof(ip->i_d.di_pad));
7841da177e4SLinus Torvalds 
785bd186aa9SChristoph Hellwig 	if (pip && XFS_INHERIT_GID(pip)) {
7861da177e4SLinus Torvalds 		ip->i_d.di_gid = pip->i_d.di_gid;
787abbede1bSAl Viro 		if ((pip->i_d.di_mode & S_ISGID) && S_ISDIR(mode)) {
7881da177e4SLinus Torvalds 			ip->i_d.di_mode |= S_ISGID;
7891da177e4SLinus Torvalds 		}
7901da177e4SLinus Torvalds 	}
7911da177e4SLinus Torvalds 
7921da177e4SLinus Torvalds 	/*
7931da177e4SLinus Torvalds 	 * If the group ID of the new file does not match the effective group
7941da177e4SLinus Torvalds 	 * ID or one of the supplementary group IDs, the S_ISGID bit is cleared
7951da177e4SLinus Torvalds 	 * (and only if the irix_sgid_inherit compatibility variable is set).
7961da177e4SLinus Torvalds 	 */
7971da177e4SLinus Torvalds 	if ((irix_sgid_inherit) &&
7981da177e4SLinus Torvalds 	    (ip->i_d.di_mode & S_ISGID) &&
7997aab1b28SDwight Engen 	    (!in_group_p(xfs_gid_to_kgid(ip->i_d.di_gid)))) {
8001da177e4SLinus Torvalds 		ip->i_d.di_mode &= ~S_ISGID;
8011da177e4SLinus Torvalds 	}
8021da177e4SLinus Torvalds 
8031da177e4SLinus Torvalds 	ip->i_d.di_size = 0;
8041da177e4SLinus Torvalds 	ip->i_d.di_nextents = 0;
8051da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nblocks == 0);
806dff35fd4SChristoph Hellwig 
807e076b0f3SDave Chinner 	tv = current_fs_time(mp->m_super);
808dff35fd4SChristoph Hellwig 	ip->i_d.di_mtime.t_sec = (__int32_t)tv.tv_sec;
809dff35fd4SChristoph Hellwig 	ip->i_d.di_mtime.t_nsec = (__int32_t)tv.tv_nsec;
810dff35fd4SChristoph Hellwig 	ip->i_d.di_atime = ip->i_d.di_mtime;
811dff35fd4SChristoph Hellwig 	ip->i_d.di_ctime = ip->i_d.di_mtime;
812dff35fd4SChristoph Hellwig 
8131da177e4SLinus Torvalds 	/*
8141da177e4SLinus Torvalds 	 * di_gen will have been taken care of in xfs_iread.
8151da177e4SLinus Torvalds 	 */
8161da177e4SLinus Torvalds 	ip->i_d.di_extsize = 0;
8171da177e4SLinus Torvalds 	ip->i_d.di_dmevmask = 0;
8181da177e4SLinus Torvalds 	ip->i_d.di_dmstate = 0;
8191da177e4SLinus Torvalds 	ip->i_d.di_flags = 0;
82093848a99SChristoph Hellwig 
82193848a99SChristoph Hellwig 	if (ip->i_d.di_version == 3) {
82293848a99SChristoph Hellwig 		ASSERT(ip->i_d.di_ino == ino);
823bbf155adSDave Chinner 		ASSERT(uuid_equal(&ip->i_d.di_uuid, &mp->m_sb.sb_meta_uuid));
82493848a99SChristoph Hellwig 		ip->i_d.di_crc = 0;
82593848a99SChristoph Hellwig 		ip->i_d.di_changecount = 1;
82693848a99SChristoph Hellwig 		ip->i_d.di_lsn = 0;
82793848a99SChristoph Hellwig 		ip->i_d.di_flags2 = 0;
82893848a99SChristoph Hellwig 		memset(&(ip->i_d.di_pad2[0]), 0, sizeof(ip->i_d.di_pad2));
82993848a99SChristoph Hellwig 		ip->i_d.di_crtime = ip->i_d.di_mtime;
83093848a99SChristoph Hellwig 	}
83193848a99SChristoph Hellwig 
83293848a99SChristoph Hellwig 
8331da177e4SLinus Torvalds 	flags = XFS_ILOG_CORE;
8341da177e4SLinus Torvalds 	switch (mode & S_IFMT) {
8351da177e4SLinus Torvalds 	case S_IFIFO:
8361da177e4SLinus Torvalds 	case S_IFCHR:
8371da177e4SLinus Torvalds 	case S_IFBLK:
8381da177e4SLinus Torvalds 	case S_IFSOCK:
8391da177e4SLinus Torvalds 		ip->i_d.di_format = XFS_DINODE_FMT_DEV;
8401da177e4SLinus Torvalds 		ip->i_df.if_u2.if_rdev = rdev;
8411da177e4SLinus Torvalds 		ip->i_df.if_flags = 0;
8421da177e4SLinus Torvalds 		flags |= XFS_ILOG_DEV;
8431da177e4SLinus Torvalds 		break;
8441da177e4SLinus Torvalds 	case S_IFREG:
8451da177e4SLinus Torvalds 	case S_IFDIR:
846b11f94d5SDavid Chinner 		if (pip && (pip->i_d.di_flags & XFS_DIFLAG_ANY)) {
847365ca83dSNathan Scott 			uint	di_flags = 0;
848365ca83dSNathan Scott 
849abbede1bSAl Viro 			if (S_ISDIR(mode)) {
850365ca83dSNathan Scott 				if (pip->i_d.di_flags & XFS_DIFLAG_RTINHERIT)
851365ca83dSNathan Scott 					di_flags |= XFS_DIFLAG_RTINHERIT;
852dd9f438eSNathan Scott 				if (pip->i_d.di_flags & XFS_DIFLAG_EXTSZINHERIT) {
853dd9f438eSNathan Scott 					di_flags |= XFS_DIFLAG_EXTSZINHERIT;
854dd9f438eSNathan Scott 					ip->i_d.di_extsize = pip->i_d.di_extsize;
855dd9f438eSNathan Scott 				}
8569336e3a7SDave Chinner 				if (pip->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
8579336e3a7SDave Chinner 					di_flags |= XFS_DIFLAG_PROJINHERIT;
858abbede1bSAl Viro 			} else if (S_ISREG(mode)) {
859613d7043SChristoph Hellwig 				if (pip->i_d.di_flags & XFS_DIFLAG_RTINHERIT)
860365ca83dSNathan Scott 					di_flags |= XFS_DIFLAG_REALTIME;
861dd9f438eSNathan Scott 				if (pip->i_d.di_flags & XFS_DIFLAG_EXTSZINHERIT) {
862dd9f438eSNathan Scott 					di_flags |= XFS_DIFLAG_EXTSIZE;
863dd9f438eSNathan Scott 					ip->i_d.di_extsize = pip->i_d.di_extsize;
864dd9f438eSNathan Scott 				}
8651da177e4SLinus Torvalds 			}
8661da177e4SLinus Torvalds 			if ((pip->i_d.di_flags & XFS_DIFLAG_NOATIME) &&
8671da177e4SLinus Torvalds 			    xfs_inherit_noatime)
868365ca83dSNathan Scott 				di_flags |= XFS_DIFLAG_NOATIME;
8691da177e4SLinus Torvalds 			if ((pip->i_d.di_flags & XFS_DIFLAG_NODUMP) &&
8701da177e4SLinus Torvalds 			    xfs_inherit_nodump)
871365ca83dSNathan Scott 				di_flags |= XFS_DIFLAG_NODUMP;
8721da177e4SLinus Torvalds 			if ((pip->i_d.di_flags & XFS_DIFLAG_SYNC) &&
8731da177e4SLinus Torvalds 			    xfs_inherit_sync)
874365ca83dSNathan Scott 				di_flags |= XFS_DIFLAG_SYNC;
8751da177e4SLinus Torvalds 			if ((pip->i_d.di_flags & XFS_DIFLAG_NOSYMLINKS) &&
8761da177e4SLinus Torvalds 			    xfs_inherit_nosymlinks)
877365ca83dSNathan Scott 				di_flags |= XFS_DIFLAG_NOSYMLINKS;
878d3446eacSBarry Naujok 			if ((pip->i_d.di_flags & XFS_DIFLAG_NODEFRAG) &&
879d3446eacSBarry Naujok 			    xfs_inherit_nodefrag)
880d3446eacSBarry Naujok 				di_flags |= XFS_DIFLAG_NODEFRAG;
8812a82b8beSDavid Chinner 			if (pip->i_d.di_flags & XFS_DIFLAG_FILESTREAM)
8822a82b8beSDavid Chinner 				di_flags |= XFS_DIFLAG_FILESTREAM;
883365ca83dSNathan Scott 			ip->i_d.di_flags |= di_flags;
8841da177e4SLinus Torvalds 		}
8851da177e4SLinus Torvalds 		/* FALLTHROUGH */
8861da177e4SLinus Torvalds 	case S_IFLNK:
8871da177e4SLinus Torvalds 		ip->i_d.di_format = XFS_DINODE_FMT_EXTENTS;
8881da177e4SLinus Torvalds 		ip->i_df.if_flags = XFS_IFEXTENTS;
8891da177e4SLinus Torvalds 		ip->i_df.if_bytes = ip->i_df.if_real_bytes = 0;
8901da177e4SLinus Torvalds 		ip->i_df.if_u1.if_extents = NULL;
8911da177e4SLinus Torvalds 		break;
8921da177e4SLinus Torvalds 	default:
8931da177e4SLinus Torvalds 		ASSERT(0);
8941da177e4SLinus Torvalds 	}
8951da177e4SLinus Torvalds 	/*
8961da177e4SLinus Torvalds 	 * Attribute fork settings for new inode.
8971da177e4SLinus Torvalds 	 */
8981da177e4SLinus Torvalds 	ip->i_d.di_aformat = XFS_DINODE_FMT_EXTENTS;
8991da177e4SLinus Torvalds 	ip->i_d.di_anextents = 0;
9001da177e4SLinus Torvalds 
9011da177e4SLinus Torvalds 	/*
9021da177e4SLinus Torvalds 	 * Log the new values stuffed into the inode.
9031da177e4SLinus Torvalds 	 */
904ddc3415aSChristoph Hellwig 	xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
9051da177e4SLinus Torvalds 	xfs_trans_log_inode(tp, ip, flags);
9061da177e4SLinus Torvalds 
90758c90473SDave Chinner 	/* now that we have an i_mode we can setup the inode structure */
90841be8bedSChristoph Hellwig 	xfs_setup_inode(ip);
9091da177e4SLinus Torvalds 
9101da177e4SLinus Torvalds 	*ipp = ip;
9111da177e4SLinus Torvalds 	return 0;
9121da177e4SLinus Torvalds }
9131da177e4SLinus Torvalds 
914e546cb79SDave Chinner /*
915e546cb79SDave Chinner  * Allocates a new inode from disk and return a pointer to the
916e546cb79SDave Chinner  * incore copy. This routine will internally commit the current
917e546cb79SDave Chinner  * transaction and allocate a new one if the Space Manager needed
918e546cb79SDave Chinner  * to do an allocation to replenish the inode free-list.
919e546cb79SDave Chinner  *
920e546cb79SDave Chinner  * This routine is designed to be called from xfs_create and
921e546cb79SDave Chinner  * xfs_create_dir.
922e546cb79SDave Chinner  *
923e546cb79SDave Chinner  */
924e546cb79SDave Chinner int
925e546cb79SDave Chinner xfs_dir_ialloc(
926e546cb79SDave Chinner 	xfs_trans_t	**tpp,		/* input: current transaction;
927e546cb79SDave Chinner 					   output: may be a new transaction. */
928e546cb79SDave Chinner 	xfs_inode_t	*dp,		/* directory within whose allocate
929e546cb79SDave Chinner 					   the inode. */
930e546cb79SDave Chinner 	umode_t		mode,
931e546cb79SDave Chinner 	xfs_nlink_t	nlink,
932e546cb79SDave Chinner 	xfs_dev_t	rdev,
933e546cb79SDave Chinner 	prid_t		prid,		/* project id */
934e546cb79SDave Chinner 	int		okalloc,	/* ok to allocate new space */
935e546cb79SDave Chinner 	xfs_inode_t	**ipp,		/* pointer to inode; it will be
936e546cb79SDave Chinner 					   locked. */
937e546cb79SDave Chinner 	int		*committed)
938e546cb79SDave Chinner 
939e546cb79SDave Chinner {
940e546cb79SDave Chinner 	xfs_trans_t	*tp;
941e546cb79SDave Chinner 	xfs_inode_t	*ip;
942e546cb79SDave Chinner 	xfs_buf_t	*ialloc_context = NULL;
943e546cb79SDave Chinner 	int		code;
944e546cb79SDave Chinner 	void		*dqinfo;
945e546cb79SDave Chinner 	uint		tflags;
946e546cb79SDave Chinner 
947e546cb79SDave Chinner 	tp = *tpp;
948e546cb79SDave Chinner 	ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
949e546cb79SDave Chinner 
950e546cb79SDave Chinner 	/*
951e546cb79SDave Chinner 	 * xfs_ialloc will return a pointer to an incore inode if
952e546cb79SDave Chinner 	 * the Space Manager has an available inode on the free
953e546cb79SDave Chinner 	 * list. Otherwise, it will do an allocation and replenish
954e546cb79SDave Chinner 	 * the freelist.  Since we can only do one allocation per
955e546cb79SDave Chinner 	 * transaction without deadlocks, we will need to commit the
956e546cb79SDave Chinner 	 * current transaction and start a new one.  We will then
957e546cb79SDave Chinner 	 * need to call xfs_ialloc again to get the inode.
958e546cb79SDave Chinner 	 *
959e546cb79SDave Chinner 	 * If xfs_ialloc did an allocation to replenish the freelist,
960e546cb79SDave Chinner 	 * it returns the bp containing the head of the freelist as
961e546cb79SDave Chinner 	 * ialloc_context. We will hold a lock on it across the
962e546cb79SDave Chinner 	 * transaction commit so that no other process can steal
963e546cb79SDave Chinner 	 * the inode(s) that we've just allocated.
964e546cb79SDave Chinner 	 */
965e546cb79SDave Chinner 	code = xfs_ialloc(tp, dp, mode, nlink, rdev, prid, okalloc,
966e546cb79SDave Chinner 			  &ialloc_context, &ip);
967e546cb79SDave Chinner 
968e546cb79SDave Chinner 	/*
969e546cb79SDave Chinner 	 * Return an error if we were unable to allocate a new inode.
970e546cb79SDave Chinner 	 * This should only happen if we run out of space on disk or
971e546cb79SDave Chinner 	 * encounter a disk error.
972e546cb79SDave Chinner 	 */
973e546cb79SDave Chinner 	if (code) {
974e546cb79SDave Chinner 		*ipp = NULL;
975e546cb79SDave Chinner 		return code;
976e546cb79SDave Chinner 	}
977e546cb79SDave Chinner 	if (!ialloc_context && !ip) {
978e546cb79SDave Chinner 		*ipp = NULL;
9792451337dSDave Chinner 		return -ENOSPC;
980e546cb79SDave Chinner 	}
981e546cb79SDave Chinner 
982e546cb79SDave Chinner 	/*
983e546cb79SDave Chinner 	 * If the AGI buffer is non-NULL, then we were unable to get an
984e546cb79SDave Chinner 	 * inode in one operation.  We need to commit the current
985e546cb79SDave Chinner 	 * transaction and call xfs_ialloc() again.  It is guaranteed
986e546cb79SDave Chinner 	 * to succeed the second time.
987e546cb79SDave Chinner 	 */
988e546cb79SDave Chinner 	if (ialloc_context) {
989e546cb79SDave Chinner 		/*
990e546cb79SDave Chinner 		 * Normally, xfs_trans_commit releases all the locks.
991e546cb79SDave Chinner 		 * We call bhold to hang on to the ialloc_context across
992e546cb79SDave Chinner 		 * the commit.  Holding this buffer prevents any other
993e546cb79SDave Chinner 		 * processes from doing any allocations in this
994e546cb79SDave Chinner 		 * allocation group.
995e546cb79SDave Chinner 		 */
996e546cb79SDave Chinner 		xfs_trans_bhold(tp, ialloc_context);
997e546cb79SDave Chinner 
998e546cb79SDave Chinner 		/*
999e546cb79SDave Chinner 		 * We want the quota changes to be associated with the next
1000e546cb79SDave Chinner 		 * transaction, NOT this one. So, detach the dqinfo from this
1001e546cb79SDave Chinner 		 * and attach it to the next transaction.
1002e546cb79SDave Chinner 		 */
1003e546cb79SDave Chinner 		dqinfo = NULL;
1004e546cb79SDave Chinner 		tflags = 0;
1005e546cb79SDave Chinner 		if (tp->t_dqinfo) {
1006e546cb79SDave Chinner 			dqinfo = (void *)tp->t_dqinfo;
1007e546cb79SDave Chinner 			tp->t_dqinfo = NULL;
1008e546cb79SDave Chinner 			tflags = tp->t_flags & XFS_TRANS_DQ_DIRTY;
1009e546cb79SDave Chinner 			tp->t_flags &= ~(XFS_TRANS_DQ_DIRTY);
1010e546cb79SDave Chinner 		}
1011e546cb79SDave Chinner 
10122e6db6c4SChristoph Hellwig 		code = xfs_trans_roll(&tp, 0);
10132e6db6c4SChristoph Hellwig 		if (committed != NULL)
1014e546cb79SDave Chinner 			*committed = 1;
10153d3c8b52SJie Liu 
1016e546cb79SDave Chinner 		/*
1017e546cb79SDave Chinner 		 * Re-attach the quota info that we detached from prev trx.
1018e546cb79SDave Chinner 		 */
1019e546cb79SDave Chinner 		if (dqinfo) {
1020e546cb79SDave Chinner 			tp->t_dqinfo = dqinfo;
1021e546cb79SDave Chinner 			tp->t_flags |= tflags;
1022e546cb79SDave Chinner 		}
1023e546cb79SDave Chinner 
1024e546cb79SDave Chinner 		if (code) {
1025e546cb79SDave Chinner 			xfs_buf_relse(ialloc_context);
10262e6db6c4SChristoph Hellwig 			*tpp = tp;
1027e546cb79SDave Chinner 			*ipp = NULL;
1028e546cb79SDave Chinner 			return code;
1029e546cb79SDave Chinner 		}
1030e546cb79SDave Chinner 		xfs_trans_bjoin(tp, ialloc_context);
1031e546cb79SDave Chinner 
1032e546cb79SDave Chinner 		/*
1033e546cb79SDave Chinner 		 * Call ialloc again. Since we've locked out all
1034e546cb79SDave Chinner 		 * other allocations in this allocation group,
1035e546cb79SDave Chinner 		 * this call should always succeed.
1036e546cb79SDave Chinner 		 */
1037e546cb79SDave Chinner 		code = xfs_ialloc(tp, dp, mode, nlink, rdev, prid,
1038e546cb79SDave Chinner 				  okalloc, &ialloc_context, &ip);
1039e546cb79SDave Chinner 
1040e546cb79SDave Chinner 		/*
1041e546cb79SDave Chinner 		 * If we get an error at this point, return to the caller
1042e546cb79SDave Chinner 		 * so that the current transaction can be aborted.
1043e546cb79SDave Chinner 		 */
1044e546cb79SDave Chinner 		if (code) {
1045e546cb79SDave Chinner 			*tpp = tp;
1046e546cb79SDave Chinner 			*ipp = NULL;
1047e546cb79SDave Chinner 			return code;
1048e546cb79SDave Chinner 		}
1049e546cb79SDave Chinner 		ASSERT(!ialloc_context && ip);
1050e546cb79SDave Chinner 
1051e546cb79SDave Chinner 	} else {
1052e546cb79SDave Chinner 		if (committed != NULL)
1053e546cb79SDave Chinner 			*committed = 0;
1054e546cb79SDave Chinner 	}
1055e546cb79SDave Chinner 
1056e546cb79SDave Chinner 	*ipp = ip;
1057e546cb79SDave Chinner 	*tpp = tp;
1058e546cb79SDave Chinner 
1059e546cb79SDave Chinner 	return 0;
1060e546cb79SDave Chinner }
1061e546cb79SDave Chinner 
1062e546cb79SDave Chinner /*
1063e546cb79SDave Chinner  * Decrement the link count on an inode & log the change.
1064e546cb79SDave Chinner  * If this causes the link count to go to zero, initiate the
1065e546cb79SDave Chinner  * logging activity required to truncate a file.
1066e546cb79SDave Chinner  */
1067e546cb79SDave Chinner int				/* error */
1068e546cb79SDave Chinner xfs_droplink(
1069e546cb79SDave Chinner 	xfs_trans_t *tp,
1070e546cb79SDave Chinner 	xfs_inode_t *ip)
1071e546cb79SDave Chinner {
1072e546cb79SDave Chinner 	int	error;
1073e546cb79SDave Chinner 
1074e546cb79SDave Chinner 	xfs_trans_ichgtime(tp, ip, XFS_ICHGTIME_CHG);
1075e546cb79SDave Chinner 
1076e546cb79SDave Chinner 	ASSERT (ip->i_d.di_nlink > 0);
1077e546cb79SDave Chinner 	ip->i_d.di_nlink--;
1078e546cb79SDave Chinner 	drop_nlink(VFS_I(ip));
1079e546cb79SDave Chinner 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1080e546cb79SDave Chinner 
1081e546cb79SDave Chinner 	error = 0;
1082e546cb79SDave Chinner 	if (ip->i_d.di_nlink == 0) {
1083e546cb79SDave Chinner 		/*
1084e546cb79SDave Chinner 		 * We're dropping the last link to this file.
1085e546cb79SDave Chinner 		 * Move the on-disk inode to the AGI unlinked list.
1086e546cb79SDave Chinner 		 * From xfs_inactive() we will pull the inode from
1087e546cb79SDave Chinner 		 * the list and free it.
1088e546cb79SDave Chinner 		 */
1089e546cb79SDave Chinner 		error = xfs_iunlink(tp, ip);
1090e546cb79SDave Chinner 	}
1091e546cb79SDave Chinner 	return error;
1092e546cb79SDave Chinner }
1093e546cb79SDave Chinner 
1094e546cb79SDave Chinner /*
1095e546cb79SDave Chinner  * Increment the link count on an inode & log the change.
1096e546cb79SDave Chinner  */
1097e546cb79SDave Chinner int
1098e546cb79SDave Chinner xfs_bumplink(
1099e546cb79SDave Chinner 	xfs_trans_t *tp,
1100e546cb79SDave Chinner 	xfs_inode_t *ip)
1101e546cb79SDave Chinner {
1102e546cb79SDave Chinner 	xfs_trans_ichgtime(tp, ip, XFS_ICHGTIME_CHG);
1103e546cb79SDave Chinner 
1104263997a6SDave Chinner 	ASSERT(ip->i_d.di_version > 1);
1105ab297431SZhi Yong Wu 	ASSERT(ip->i_d.di_nlink > 0 || (VFS_I(ip)->i_state & I_LINKABLE));
1106e546cb79SDave Chinner 	ip->i_d.di_nlink++;
1107e546cb79SDave Chinner 	inc_nlink(VFS_I(ip));
1108e546cb79SDave Chinner 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1109e546cb79SDave Chinner 	return 0;
1110e546cb79SDave Chinner }
1111e546cb79SDave Chinner 
1112c24b5dfaSDave Chinner int
1113c24b5dfaSDave Chinner xfs_create(
1114c24b5dfaSDave Chinner 	xfs_inode_t		*dp,
1115c24b5dfaSDave Chinner 	struct xfs_name		*name,
1116c24b5dfaSDave Chinner 	umode_t			mode,
1117c24b5dfaSDave Chinner 	xfs_dev_t		rdev,
1118c24b5dfaSDave Chinner 	xfs_inode_t		**ipp)
1119c24b5dfaSDave Chinner {
1120c24b5dfaSDave Chinner 	int			is_dir = S_ISDIR(mode);
1121c24b5dfaSDave Chinner 	struct xfs_mount	*mp = dp->i_mount;
1122c24b5dfaSDave Chinner 	struct xfs_inode	*ip = NULL;
1123c24b5dfaSDave Chinner 	struct xfs_trans	*tp = NULL;
1124c24b5dfaSDave Chinner 	int			error;
1125c24b5dfaSDave Chinner 	xfs_bmap_free_t		free_list;
1126c24b5dfaSDave Chinner 	xfs_fsblock_t		first_block;
1127c24b5dfaSDave Chinner 	bool                    unlock_dp_on_error = false;
1128c24b5dfaSDave Chinner 	int			committed;
1129c24b5dfaSDave Chinner 	prid_t			prid;
1130c24b5dfaSDave Chinner 	struct xfs_dquot	*udqp = NULL;
1131c24b5dfaSDave Chinner 	struct xfs_dquot	*gdqp = NULL;
1132c24b5dfaSDave Chinner 	struct xfs_dquot	*pdqp = NULL;
1133062647a8SBrian Foster 	struct xfs_trans_res	*tres;
1134c24b5dfaSDave Chinner 	uint			resblks;
1135c24b5dfaSDave Chinner 
1136c24b5dfaSDave Chinner 	trace_xfs_create(dp, name);
1137c24b5dfaSDave Chinner 
1138c24b5dfaSDave Chinner 	if (XFS_FORCED_SHUTDOWN(mp))
11392451337dSDave Chinner 		return -EIO;
1140c24b5dfaSDave Chinner 
1141163467d3SZhi Yong Wu 	prid = xfs_get_initial_prid(dp);
1142c24b5dfaSDave Chinner 
1143c24b5dfaSDave Chinner 	/*
1144c24b5dfaSDave Chinner 	 * Make sure that we have allocated dquot(s) on disk.
1145c24b5dfaSDave Chinner 	 */
11467aab1b28SDwight Engen 	error = xfs_qm_vop_dqalloc(dp, xfs_kuid_to_uid(current_fsuid()),
11477aab1b28SDwight Engen 					xfs_kgid_to_gid(current_fsgid()), prid,
1148c24b5dfaSDave Chinner 					XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT,
1149c24b5dfaSDave Chinner 					&udqp, &gdqp, &pdqp);
1150c24b5dfaSDave Chinner 	if (error)
1151c24b5dfaSDave Chinner 		return error;
1152c24b5dfaSDave Chinner 
1153c24b5dfaSDave Chinner 	if (is_dir) {
1154c24b5dfaSDave Chinner 		rdev = 0;
1155c24b5dfaSDave Chinner 		resblks = XFS_MKDIR_SPACE_RES(mp, name->len);
1156062647a8SBrian Foster 		tres = &M_RES(mp)->tr_mkdir;
1157c24b5dfaSDave Chinner 		tp = xfs_trans_alloc(mp, XFS_TRANS_MKDIR);
1158c24b5dfaSDave Chinner 	} else {
1159c24b5dfaSDave Chinner 		resblks = XFS_CREATE_SPACE_RES(mp, name->len);
1160062647a8SBrian Foster 		tres = &M_RES(mp)->tr_create;
1161c24b5dfaSDave Chinner 		tp = xfs_trans_alloc(mp, XFS_TRANS_CREATE);
1162c24b5dfaSDave Chinner 	}
1163c24b5dfaSDave Chinner 
1164c24b5dfaSDave Chinner 	/*
1165c24b5dfaSDave Chinner 	 * Initially assume that the file does not exist and
1166c24b5dfaSDave Chinner 	 * reserve the resources for that case.  If that is not
1167c24b5dfaSDave Chinner 	 * the case we'll drop the one we have and get a more
1168c24b5dfaSDave Chinner 	 * appropriate transaction later.
1169c24b5dfaSDave Chinner 	 */
1170062647a8SBrian Foster 	error = xfs_trans_reserve(tp, tres, resblks, 0);
11712451337dSDave Chinner 	if (error == -ENOSPC) {
1172c24b5dfaSDave Chinner 		/* flush outstanding delalloc blocks and retry */
1173c24b5dfaSDave Chinner 		xfs_flush_inodes(mp);
1174062647a8SBrian Foster 		error = xfs_trans_reserve(tp, tres, resblks, 0);
1175c24b5dfaSDave Chinner 	}
11762451337dSDave Chinner 	if (error == -ENOSPC) {
1177c24b5dfaSDave Chinner 		/* No space at all so try a "no-allocation" reservation */
1178c24b5dfaSDave Chinner 		resblks = 0;
1179062647a8SBrian Foster 		error = xfs_trans_reserve(tp, tres, 0, 0);
1180c24b5dfaSDave Chinner 	}
11814906e215SChristoph Hellwig 	if (error)
1182c24b5dfaSDave Chinner 		goto out_trans_cancel;
11834906e215SChristoph Hellwig 
1184c24b5dfaSDave Chinner 
1185*dbad7c99SDave Chinner 	xfs_ilock(dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL |
1186*dbad7c99SDave Chinner 		      XFS_IOLOCK_PARENT | XFS_ILOCK_PARENT);
1187c24b5dfaSDave Chinner 	unlock_dp_on_error = true;
1188c24b5dfaSDave Chinner 
1189c24b5dfaSDave Chinner 	xfs_bmap_init(&free_list, &first_block);
1190c24b5dfaSDave Chinner 
1191c24b5dfaSDave Chinner 	/*
1192c24b5dfaSDave Chinner 	 * Reserve disk quota and the inode.
1193c24b5dfaSDave Chinner 	 */
1194c24b5dfaSDave Chinner 	error = xfs_trans_reserve_quota(tp, mp, udqp, gdqp,
1195c24b5dfaSDave Chinner 						pdqp, resblks, 1, 0);
1196c24b5dfaSDave Chinner 	if (error)
1197c24b5dfaSDave Chinner 		goto out_trans_cancel;
1198c24b5dfaSDave Chinner 
119994f3cad5SEric Sandeen 	if (!resblks) {
120094f3cad5SEric Sandeen 		error = xfs_dir_canenter(tp, dp, name);
1201c24b5dfaSDave Chinner 		if (error)
1202c24b5dfaSDave Chinner 			goto out_trans_cancel;
120394f3cad5SEric Sandeen 	}
1204c24b5dfaSDave Chinner 
1205c24b5dfaSDave Chinner 	/*
1206c24b5dfaSDave Chinner 	 * A newly created regular or special file just has one directory
1207c24b5dfaSDave Chinner 	 * entry pointing to them, but a directory also the "." entry
1208c24b5dfaSDave Chinner 	 * pointing to itself.
1209c24b5dfaSDave Chinner 	 */
1210c24b5dfaSDave Chinner 	error = xfs_dir_ialloc(&tp, dp, mode, is_dir ? 2 : 1, rdev,
1211c24b5dfaSDave Chinner 			       prid, resblks > 0, &ip, &committed);
1212c24b5dfaSDave Chinner 	if (error) {
12132451337dSDave Chinner 		if (error == -ENOSPC)
1214c24b5dfaSDave Chinner 			goto out_trans_cancel;
12154906e215SChristoph Hellwig 		goto out_trans_cancel;
1216c24b5dfaSDave Chinner 	}
1217c24b5dfaSDave Chinner 
1218c24b5dfaSDave Chinner 	/*
1219c24b5dfaSDave Chinner 	 * Now we join the directory inode to the transaction.  We do not do it
1220c24b5dfaSDave Chinner 	 * earlier because xfs_dir_ialloc might commit the previous transaction
1221c24b5dfaSDave Chinner 	 * (and release all the locks).  An error from here on will result in
1222c24b5dfaSDave Chinner 	 * the transaction cancel unlocking dp so don't do it explicitly in the
1223c24b5dfaSDave Chinner 	 * error path.
1224c24b5dfaSDave Chinner 	 */
1225*dbad7c99SDave Chinner 	xfs_trans_ijoin(tp, dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1226c24b5dfaSDave Chinner 	unlock_dp_on_error = false;
1227c24b5dfaSDave Chinner 
1228c24b5dfaSDave Chinner 	error = xfs_dir_createname(tp, dp, name, ip->i_ino,
1229c24b5dfaSDave Chinner 					&first_block, &free_list, resblks ?
1230c24b5dfaSDave Chinner 					resblks - XFS_IALLOC_SPACE_RES(mp) : 0);
1231c24b5dfaSDave Chinner 	if (error) {
12322451337dSDave Chinner 		ASSERT(error != -ENOSPC);
12334906e215SChristoph Hellwig 		goto out_trans_cancel;
1234c24b5dfaSDave Chinner 	}
1235c24b5dfaSDave Chinner 	xfs_trans_ichgtime(tp, dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
1236c24b5dfaSDave Chinner 	xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
1237c24b5dfaSDave Chinner 
1238c24b5dfaSDave Chinner 	if (is_dir) {
1239c24b5dfaSDave Chinner 		error = xfs_dir_init(tp, ip, dp);
1240c24b5dfaSDave Chinner 		if (error)
1241c24b5dfaSDave Chinner 			goto out_bmap_cancel;
1242c24b5dfaSDave Chinner 
1243c24b5dfaSDave Chinner 		error = xfs_bumplink(tp, dp);
1244c24b5dfaSDave Chinner 		if (error)
1245c24b5dfaSDave Chinner 			goto out_bmap_cancel;
1246c24b5dfaSDave Chinner 	}
1247c24b5dfaSDave Chinner 
1248c24b5dfaSDave Chinner 	/*
1249c24b5dfaSDave Chinner 	 * If this is a synchronous mount, make sure that the
1250c24b5dfaSDave Chinner 	 * create transaction goes to disk before returning to
1251c24b5dfaSDave Chinner 	 * the user.
1252c24b5dfaSDave Chinner 	 */
1253c24b5dfaSDave Chinner 	if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC))
1254c24b5dfaSDave Chinner 		xfs_trans_set_sync(tp);
1255c24b5dfaSDave Chinner 
1256c24b5dfaSDave Chinner 	/*
1257c24b5dfaSDave Chinner 	 * Attach the dquot(s) to the inodes and modify them incore.
1258c24b5dfaSDave Chinner 	 * These ids of the inode couldn't have changed since the new
1259c24b5dfaSDave Chinner 	 * inode has been locked ever since it was created.
1260c24b5dfaSDave Chinner 	 */
1261c24b5dfaSDave Chinner 	xfs_qm_vop_create_dqattach(tp, ip, udqp, gdqp, pdqp);
1262c24b5dfaSDave Chinner 
1263c24b5dfaSDave Chinner 	error = xfs_bmap_finish(&tp, &free_list, &committed);
1264c24b5dfaSDave Chinner 	if (error)
1265c24b5dfaSDave Chinner 		goto out_bmap_cancel;
1266c24b5dfaSDave Chinner 
126770393313SChristoph Hellwig 	error = xfs_trans_commit(tp);
1268c24b5dfaSDave Chinner 	if (error)
1269c24b5dfaSDave Chinner 		goto out_release_inode;
1270c24b5dfaSDave Chinner 
1271c24b5dfaSDave Chinner 	xfs_qm_dqrele(udqp);
1272c24b5dfaSDave Chinner 	xfs_qm_dqrele(gdqp);
1273c24b5dfaSDave Chinner 	xfs_qm_dqrele(pdqp);
1274c24b5dfaSDave Chinner 
1275c24b5dfaSDave Chinner 	*ipp = ip;
1276c24b5dfaSDave Chinner 	return 0;
1277c24b5dfaSDave Chinner 
1278c24b5dfaSDave Chinner  out_bmap_cancel:
1279c24b5dfaSDave Chinner 	xfs_bmap_cancel(&free_list);
1280c24b5dfaSDave Chinner  out_trans_cancel:
12814906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
1282c24b5dfaSDave Chinner  out_release_inode:
1283c24b5dfaSDave Chinner 	/*
128458c90473SDave Chinner 	 * Wait until after the current transaction is aborted to finish the
128558c90473SDave Chinner 	 * setup of the inode and release the inode.  This prevents recursive
128658c90473SDave Chinner 	 * transactions and deadlocks from xfs_inactive.
1287c24b5dfaSDave Chinner 	 */
128858c90473SDave Chinner 	if (ip) {
128958c90473SDave Chinner 		xfs_finish_inode_setup(ip);
1290c24b5dfaSDave Chinner 		IRELE(ip);
129158c90473SDave Chinner 	}
1292c24b5dfaSDave Chinner 
1293c24b5dfaSDave Chinner 	xfs_qm_dqrele(udqp);
1294c24b5dfaSDave Chinner 	xfs_qm_dqrele(gdqp);
1295c24b5dfaSDave Chinner 	xfs_qm_dqrele(pdqp);
1296c24b5dfaSDave Chinner 
1297c24b5dfaSDave Chinner 	if (unlock_dp_on_error)
1298*dbad7c99SDave Chinner 		xfs_iunlock(dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1299c24b5dfaSDave Chinner 	return error;
1300c24b5dfaSDave Chinner }
1301c24b5dfaSDave Chinner 
1302c24b5dfaSDave Chinner int
130399b6436bSZhi Yong Wu xfs_create_tmpfile(
130499b6436bSZhi Yong Wu 	struct xfs_inode	*dp,
130599b6436bSZhi Yong Wu 	struct dentry		*dentry,
1306330033d6SBrian Foster 	umode_t			mode,
1307330033d6SBrian Foster 	struct xfs_inode	**ipp)
130899b6436bSZhi Yong Wu {
130999b6436bSZhi Yong Wu 	struct xfs_mount	*mp = dp->i_mount;
131099b6436bSZhi Yong Wu 	struct xfs_inode	*ip = NULL;
131199b6436bSZhi Yong Wu 	struct xfs_trans	*tp = NULL;
131299b6436bSZhi Yong Wu 	int			error;
131399b6436bSZhi Yong Wu 	prid_t                  prid;
131499b6436bSZhi Yong Wu 	struct xfs_dquot	*udqp = NULL;
131599b6436bSZhi Yong Wu 	struct xfs_dquot	*gdqp = NULL;
131699b6436bSZhi Yong Wu 	struct xfs_dquot	*pdqp = NULL;
131799b6436bSZhi Yong Wu 	struct xfs_trans_res	*tres;
131899b6436bSZhi Yong Wu 	uint			resblks;
131999b6436bSZhi Yong Wu 
132099b6436bSZhi Yong Wu 	if (XFS_FORCED_SHUTDOWN(mp))
13212451337dSDave Chinner 		return -EIO;
132299b6436bSZhi Yong Wu 
132399b6436bSZhi Yong Wu 	prid = xfs_get_initial_prid(dp);
132499b6436bSZhi Yong Wu 
132599b6436bSZhi Yong Wu 	/*
132699b6436bSZhi Yong Wu 	 * Make sure that we have allocated dquot(s) on disk.
132799b6436bSZhi Yong Wu 	 */
132899b6436bSZhi Yong Wu 	error = xfs_qm_vop_dqalloc(dp, xfs_kuid_to_uid(current_fsuid()),
132999b6436bSZhi Yong Wu 				xfs_kgid_to_gid(current_fsgid()), prid,
133099b6436bSZhi Yong Wu 				XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT,
133199b6436bSZhi Yong Wu 				&udqp, &gdqp, &pdqp);
133299b6436bSZhi Yong Wu 	if (error)
133399b6436bSZhi Yong Wu 		return error;
133499b6436bSZhi Yong Wu 
133599b6436bSZhi Yong Wu 	resblks = XFS_IALLOC_SPACE_RES(mp);
133699b6436bSZhi Yong Wu 	tp = xfs_trans_alloc(mp, XFS_TRANS_CREATE_TMPFILE);
133799b6436bSZhi Yong Wu 
133899b6436bSZhi Yong Wu 	tres = &M_RES(mp)->tr_create_tmpfile;
133999b6436bSZhi Yong Wu 	error = xfs_trans_reserve(tp, tres, resblks, 0);
13402451337dSDave Chinner 	if (error == -ENOSPC) {
134199b6436bSZhi Yong Wu 		/* No space at all so try a "no-allocation" reservation */
134299b6436bSZhi Yong Wu 		resblks = 0;
134399b6436bSZhi Yong Wu 		error = xfs_trans_reserve(tp, tres, 0, 0);
134499b6436bSZhi Yong Wu 	}
13454906e215SChristoph Hellwig 	if (error)
134699b6436bSZhi Yong Wu 		goto out_trans_cancel;
134799b6436bSZhi Yong Wu 
134899b6436bSZhi Yong Wu 	error = xfs_trans_reserve_quota(tp, mp, udqp, gdqp,
134999b6436bSZhi Yong Wu 						pdqp, resblks, 1, 0);
135099b6436bSZhi Yong Wu 	if (error)
135199b6436bSZhi Yong Wu 		goto out_trans_cancel;
135299b6436bSZhi Yong Wu 
135399b6436bSZhi Yong Wu 	error = xfs_dir_ialloc(&tp, dp, mode, 1, 0,
135499b6436bSZhi Yong Wu 				prid, resblks > 0, &ip, NULL);
135599b6436bSZhi Yong Wu 	if (error) {
13562451337dSDave Chinner 		if (error == -ENOSPC)
135799b6436bSZhi Yong Wu 			goto out_trans_cancel;
13584906e215SChristoph Hellwig 		goto out_trans_cancel;
135999b6436bSZhi Yong Wu 	}
136099b6436bSZhi Yong Wu 
136199b6436bSZhi Yong Wu 	if (mp->m_flags & XFS_MOUNT_WSYNC)
136299b6436bSZhi Yong Wu 		xfs_trans_set_sync(tp);
136399b6436bSZhi Yong Wu 
136499b6436bSZhi Yong Wu 	/*
136599b6436bSZhi Yong Wu 	 * Attach the dquot(s) to the inodes and modify them incore.
136699b6436bSZhi Yong Wu 	 * These ids of the inode couldn't have changed since the new
136799b6436bSZhi Yong Wu 	 * inode has been locked ever since it was created.
136899b6436bSZhi Yong Wu 	 */
136999b6436bSZhi Yong Wu 	xfs_qm_vop_create_dqattach(tp, ip, udqp, gdqp, pdqp);
137099b6436bSZhi Yong Wu 
137199b6436bSZhi Yong Wu 	ip->i_d.di_nlink--;
137299b6436bSZhi Yong Wu 	error = xfs_iunlink(tp, ip);
137399b6436bSZhi Yong Wu 	if (error)
13744906e215SChristoph Hellwig 		goto out_trans_cancel;
137599b6436bSZhi Yong Wu 
137670393313SChristoph Hellwig 	error = xfs_trans_commit(tp);
137799b6436bSZhi Yong Wu 	if (error)
137899b6436bSZhi Yong Wu 		goto out_release_inode;
137999b6436bSZhi Yong Wu 
138099b6436bSZhi Yong Wu 	xfs_qm_dqrele(udqp);
138199b6436bSZhi Yong Wu 	xfs_qm_dqrele(gdqp);
138299b6436bSZhi Yong Wu 	xfs_qm_dqrele(pdqp);
138399b6436bSZhi Yong Wu 
1384330033d6SBrian Foster 	*ipp = ip;
138599b6436bSZhi Yong Wu 	return 0;
138699b6436bSZhi Yong Wu 
138799b6436bSZhi Yong Wu  out_trans_cancel:
13884906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
138999b6436bSZhi Yong Wu  out_release_inode:
139099b6436bSZhi Yong Wu 	/*
139158c90473SDave Chinner 	 * Wait until after the current transaction is aborted to finish the
139258c90473SDave Chinner 	 * setup of the inode and release the inode.  This prevents recursive
139358c90473SDave Chinner 	 * transactions and deadlocks from xfs_inactive.
139499b6436bSZhi Yong Wu 	 */
139558c90473SDave Chinner 	if (ip) {
139658c90473SDave Chinner 		xfs_finish_inode_setup(ip);
139799b6436bSZhi Yong Wu 		IRELE(ip);
139858c90473SDave Chinner 	}
139999b6436bSZhi Yong Wu 
140099b6436bSZhi Yong Wu 	xfs_qm_dqrele(udqp);
140199b6436bSZhi Yong Wu 	xfs_qm_dqrele(gdqp);
140299b6436bSZhi Yong Wu 	xfs_qm_dqrele(pdqp);
140399b6436bSZhi Yong Wu 
140499b6436bSZhi Yong Wu 	return error;
140599b6436bSZhi Yong Wu }
140699b6436bSZhi Yong Wu 
140799b6436bSZhi Yong Wu int
1408c24b5dfaSDave Chinner xfs_link(
1409c24b5dfaSDave Chinner 	xfs_inode_t		*tdp,
1410c24b5dfaSDave Chinner 	xfs_inode_t		*sip,
1411c24b5dfaSDave Chinner 	struct xfs_name		*target_name)
1412c24b5dfaSDave Chinner {
1413c24b5dfaSDave Chinner 	xfs_mount_t		*mp = tdp->i_mount;
1414c24b5dfaSDave Chinner 	xfs_trans_t		*tp;
1415c24b5dfaSDave Chinner 	int			error;
1416c24b5dfaSDave Chinner 	xfs_bmap_free_t         free_list;
1417c24b5dfaSDave Chinner 	xfs_fsblock_t           first_block;
1418c24b5dfaSDave Chinner 	int			committed;
1419c24b5dfaSDave Chinner 	int			resblks;
1420c24b5dfaSDave Chinner 
1421c24b5dfaSDave Chinner 	trace_xfs_link(tdp, target_name);
1422c24b5dfaSDave Chinner 
1423c24b5dfaSDave Chinner 	ASSERT(!S_ISDIR(sip->i_d.di_mode));
1424c24b5dfaSDave Chinner 
1425c24b5dfaSDave Chinner 	if (XFS_FORCED_SHUTDOWN(mp))
14262451337dSDave Chinner 		return -EIO;
1427c24b5dfaSDave Chinner 
1428c24b5dfaSDave Chinner 	error = xfs_qm_dqattach(sip, 0);
1429c24b5dfaSDave Chinner 	if (error)
1430c24b5dfaSDave Chinner 		goto std_return;
1431c24b5dfaSDave Chinner 
1432c24b5dfaSDave Chinner 	error = xfs_qm_dqattach(tdp, 0);
1433c24b5dfaSDave Chinner 	if (error)
1434c24b5dfaSDave Chinner 		goto std_return;
1435c24b5dfaSDave Chinner 
1436c24b5dfaSDave Chinner 	tp = xfs_trans_alloc(mp, XFS_TRANS_LINK);
1437c24b5dfaSDave Chinner 	resblks = XFS_LINK_SPACE_RES(mp, target_name->len);
14383d3c8b52SJie Liu 	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_link, resblks, 0);
14392451337dSDave Chinner 	if (error == -ENOSPC) {
1440c24b5dfaSDave Chinner 		resblks = 0;
14413d3c8b52SJie Liu 		error = xfs_trans_reserve(tp, &M_RES(mp)->tr_link, 0, 0);
1442c24b5dfaSDave Chinner 	}
14434906e215SChristoph Hellwig 	if (error)
1444c24b5dfaSDave Chinner 		goto error_return;
1445c24b5dfaSDave Chinner 
1446*dbad7c99SDave Chinner 	xfs_ilock(tdp, XFS_IOLOCK_EXCL | XFS_IOLOCK_PARENT);
1447c24b5dfaSDave Chinner 	xfs_lock_two_inodes(sip, tdp, XFS_ILOCK_EXCL);
1448c24b5dfaSDave Chinner 
1449c24b5dfaSDave Chinner 	xfs_trans_ijoin(tp, sip, XFS_ILOCK_EXCL);
1450*dbad7c99SDave Chinner 	xfs_trans_ijoin(tp, tdp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1451c24b5dfaSDave Chinner 
1452c24b5dfaSDave Chinner 	/*
1453c24b5dfaSDave Chinner 	 * If we are using project inheritance, we only allow hard link
1454c24b5dfaSDave Chinner 	 * creation in our tree when the project IDs are the same; else
1455c24b5dfaSDave Chinner 	 * the tree quota mechanism could be circumvented.
1456c24b5dfaSDave Chinner 	 */
1457c24b5dfaSDave Chinner 	if (unlikely((tdp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
1458c24b5dfaSDave Chinner 		     (xfs_get_projid(tdp) != xfs_get_projid(sip)))) {
14592451337dSDave Chinner 		error = -EXDEV;
1460c24b5dfaSDave Chinner 		goto error_return;
1461c24b5dfaSDave Chinner 	}
1462c24b5dfaSDave Chinner 
146394f3cad5SEric Sandeen 	if (!resblks) {
146494f3cad5SEric Sandeen 		error = xfs_dir_canenter(tp, tdp, target_name);
1465c24b5dfaSDave Chinner 		if (error)
1466c24b5dfaSDave Chinner 			goto error_return;
146794f3cad5SEric Sandeen 	}
1468c24b5dfaSDave Chinner 
1469c24b5dfaSDave Chinner 	xfs_bmap_init(&free_list, &first_block);
1470c24b5dfaSDave Chinner 
1471ab297431SZhi Yong Wu 	if (sip->i_d.di_nlink == 0) {
1472ab297431SZhi Yong Wu 		error = xfs_iunlink_remove(tp, sip);
1473ab297431SZhi Yong Wu 		if (error)
14744906e215SChristoph Hellwig 			goto error_return;
1475ab297431SZhi Yong Wu 	}
1476ab297431SZhi Yong Wu 
1477c24b5dfaSDave Chinner 	error = xfs_dir_createname(tp, tdp, target_name, sip->i_ino,
1478c24b5dfaSDave Chinner 					&first_block, &free_list, resblks);
1479c24b5dfaSDave Chinner 	if (error)
14804906e215SChristoph Hellwig 		goto error_return;
1481c24b5dfaSDave Chinner 	xfs_trans_ichgtime(tp, tdp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
1482c24b5dfaSDave Chinner 	xfs_trans_log_inode(tp, tdp, XFS_ILOG_CORE);
1483c24b5dfaSDave Chinner 
1484c24b5dfaSDave Chinner 	error = xfs_bumplink(tp, sip);
1485c24b5dfaSDave Chinner 	if (error)
14864906e215SChristoph Hellwig 		goto error_return;
1487c24b5dfaSDave Chinner 
1488c24b5dfaSDave Chinner 	/*
1489c24b5dfaSDave Chinner 	 * If this is a synchronous mount, make sure that the
1490c24b5dfaSDave Chinner 	 * link transaction goes to disk before returning to
1491c24b5dfaSDave Chinner 	 * the user.
1492c24b5dfaSDave Chinner 	 */
1493c24b5dfaSDave Chinner 	if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
1494c24b5dfaSDave Chinner 		xfs_trans_set_sync(tp);
1495c24b5dfaSDave Chinner 	}
1496c24b5dfaSDave Chinner 
1497c24b5dfaSDave Chinner 	error = xfs_bmap_finish (&tp, &free_list, &committed);
1498c24b5dfaSDave Chinner 	if (error) {
1499c24b5dfaSDave Chinner 		xfs_bmap_cancel(&free_list);
15004906e215SChristoph Hellwig 		goto error_return;
1501c24b5dfaSDave Chinner 	}
1502c24b5dfaSDave Chinner 
150370393313SChristoph Hellwig 	return xfs_trans_commit(tp);
1504c24b5dfaSDave Chinner 
1505c24b5dfaSDave Chinner  error_return:
15064906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
1507c24b5dfaSDave Chinner  std_return:
1508c24b5dfaSDave Chinner 	return error;
1509c24b5dfaSDave Chinner }
1510c24b5dfaSDave Chinner 
15111da177e4SLinus Torvalds /*
15128f04c47aSChristoph Hellwig  * Free up the underlying blocks past new_size.  The new size must be smaller
15138f04c47aSChristoph Hellwig  * than the current size.  This routine can be used both for the attribute and
15148f04c47aSChristoph Hellwig  * data fork, and does not modify the inode size, which is left to the caller.
15151da177e4SLinus Torvalds  *
1516f6485057SDavid Chinner  * The transaction passed to this routine must have made a permanent log
1517f6485057SDavid Chinner  * reservation of at least XFS_ITRUNCATE_LOG_RES.  This routine may commit the
1518f6485057SDavid Chinner  * given transaction and start new ones, so make sure everything involved in
1519f6485057SDavid Chinner  * the transaction is tidy before calling here.  Some transaction will be
1520f6485057SDavid Chinner  * returned to the caller to be committed.  The incoming transaction must
1521f6485057SDavid Chinner  * already include the inode, and both inode locks must be held exclusively.
1522f6485057SDavid Chinner  * The inode must also be "held" within the transaction.  On return the inode
1523f6485057SDavid Chinner  * will be "held" within the returned transaction.  This routine does NOT
1524f6485057SDavid Chinner  * require any disk space to be reserved for it within the transaction.
15251da177e4SLinus Torvalds  *
1526f6485057SDavid Chinner  * If we get an error, we must return with the inode locked and linked into the
1527f6485057SDavid Chinner  * current transaction. This keeps things simple for the higher level code,
1528f6485057SDavid Chinner  * because it always knows that the inode is locked and held in the transaction
1529f6485057SDavid Chinner  * that returns to it whether errors occur or not.  We don't mark the inode
1530f6485057SDavid Chinner  * dirty on error so that transactions can be easily aborted if possible.
15311da177e4SLinus Torvalds  */
15321da177e4SLinus Torvalds int
15338f04c47aSChristoph Hellwig xfs_itruncate_extents(
15348f04c47aSChristoph Hellwig 	struct xfs_trans	**tpp,
15358f04c47aSChristoph Hellwig 	struct xfs_inode	*ip,
15368f04c47aSChristoph Hellwig 	int			whichfork,
15378f04c47aSChristoph Hellwig 	xfs_fsize_t		new_size)
15381da177e4SLinus Torvalds {
15398f04c47aSChristoph Hellwig 	struct xfs_mount	*mp = ip->i_mount;
15408f04c47aSChristoph Hellwig 	struct xfs_trans	*tp = *tpp;
15418f04c47aSChristoph Hellwig 	xfs_bmap_free_t		free_list;
15421da177e4SLinus Torvalds 	xfs_fsblock_t		first_block;
15431da177e4SLinus Torvalds 	xfs_fileoff_t		first_unmap_block;
15441da177e4SLinus Torvalds 	xfs_fileoff_t		last_block;
15458f04c47aSChristoph Hellwig 	xfs_filblks_t		unmap_len;
15461da177e4SLinus Torvalds 	int			committed;
15478f04c47aSChristoph Hellwig 	int			error = 0;
15488f04c47aSChristoph Hellwig 	int			done = 0;
15491da177e4SLinus Torvalds 
15500b56185bSChristoph Hellwig 	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL));
15510b56185bSChristoph Hellwig 	ASSERT(!atomic_read(&VFS_I(ip)->i_count) ||
15520b56185bSChristoph Hellwig 	       xfs_isilocked(ip, XFS_IOLOCK_EXCL));
1553ce7ae151SChristoph Hellwig 	ASSERT(new_size <= XFS_ISIZE(ip));
15548f04c47aSChristoph Hellwig 	ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
15551da177e4SLinus Torvalds 	ASSERT(ip->i_itemp != NULL);
1556898621d5SChristoph Hellwig 	ASSERT(ip->i_itemp->ili_lock_flags == 0);
15571da177e4SLinus Torvalds 	ASSERT(!XFS_NOT_DQATTACHED(mp, ip));
15581da177e4SLinus Torvalds 
1559673e8e59SChristoph Hellwig 	trace_xfs_itruncate_extents_start(ip, new_size);
1560673e8e59SChristoph Hellwig 
15611da177e4SLinus Torvalds 	/*
15621da177e4SLinus Torvalds 	 * Since it is possible for space to become allocated beyond
15631da177e4SLinus Torvalds 	 * the end of the file (in a crash where the space is allocated
15641da177e4SLinus Torvalds 	 * but the inode size is not yet updated), simply remove any
15651da177e4SLinus Torvalds 	 * blocks which show up between the new EOF and the maximum
15661da177e4SLinus Torvalds 	 * possible file size.  If the first block to be removed is
15671da177e4SLinus Torvalds 	 * beyond the maximum file size (ie it is the same as last_block),
15681da177e4SLinus Torvalds 	 * then there is nothing to do.
15691da177e4SLinus Torvalds 	 */
15708f04c47aSChristoph Hellwig 	first_unmap_block = XFS_B_TO_FSB(mp, (xfs_ufsize_t)new_size);
157132972383SDave Chinner 	last_block = XFS_B_TO_FSB(mp, mp->m_super->s_maxbytes);
15728f04c47aSChristoph Hellwig 	if (first_unmap_block == last_block)
15738f04c47aSChristoph Hellwig 		return 0;
15748f04c47aSChristoph Hellwig 
15758f04c47aSChristoph Hellwig 	ASSERT(first_unmap_block < last_block);
15761da177e4SLinus Torvalds 	unmap_len = last_block - first_unmap_block + 1;
15771da177e4SLinus Torvalds 	while (!done) {
15789d87c319SEric Sandeen 		xfs_bmap_init(&free_list, &first_block);
15798f04c47aSChristoph Hellwig 		error = xfs_bunmapi(tp, ip,
15803e57ecf6SOlaf Weber 				    first_unmap_block, unmap_len,
15818f04c47aSChristoph Hellwig 				    xfs_bmapi_aflag(whichfork),
15821da177e4SLinus Torvalds 				    XFS_ITRUNC_MAX_EXTENTS,
15833e57ecf6SOlaf Weber 				    &first_block, &free_list,
1584b4e9181eSChristoph Hellwig 				    &done);
15858f04c47aSChristoph Hellwig 		if (error)
15868f04c47aSChristoph Hellwig 			goto out_bmap_cancel;
15871da177e4SLinus Torvalds 
15881da177e4SLinus Torvalds 		/*
15891da177e4SLinus Torvalds 		 * Duplicate the transaction that has the permanent
15901da177e4SLinus Torvalds 		 * reservation and commit the old transaction.
15911da177e4SLinus Torvalds 		 */
15928f04c47aSChristoph Hellwig 		error = xfs_bmap_finish(&tp, &free_list, &committed);
1593898621d5SChristoph Hellwig 		if (committed)
1594ddc3415aSChristoph Hellwig 			xfs_trans_ijoin(tp, ip, 0);
15958f04c47aSChristoph Hellwig 		if (error)
15968f04c47aSChristoph Hellwig 			goto out_bmap_cancel;
15971da177e4SLinus Torvalds 
15982e6db6c4SChristoph Hellwig 		error = xfs_trans_roll(&tp, ip);
15991da177e4SLinus Torvalds 		if (error)
16008f04c47aSChristoph Hellwig 			goto out;
16011da177e4SLinus Torvalds 	}
16028f04c47aSChristoph Hellwig 
1603673e8e59SChristoph Hellwig 	/*
1604673e8e59SChristoph Hellwig 	 * Always re-log the inode so that our permanent transaction can keep
1605673e8e59SChristoph Hellwig 	 * on rolling it forward in the log.
1606673e8e59SChristoph Hellwig 	 */
1607673e8e59SChristoph Hellwig 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1608673e8e59SChristoph Hellwig 
1609673e8e59SChristoph Hellwig 	trace_xfs_itruncate_extents_end(ip, new_size);
1610673e8e59SChristoph Hellwig 
16118f04c47aSChristoph Hellwig out:
16128f04c47aSChristoph Hellwig 	*tpp = tp;
16138f04c47aSChristoph Hellwig 	return error;
16148f04c47aSChristoph Hellwig out_bmap_cancel:
16151da177e4SLinus Torvalds 	/*
16168f04c47aSChristoph Hellwig 	 * If the bunmapi call encounters an error, return to the caller where
16178f04c47aSChristoph Hellwig 	 * the transaction can be properly aborted.  We just need to make sure
16188f04c47aSChristoph Hellwig 	 * we're not holding any resources that we were not when we came in.
16191da177e4SLinus Torvalds 	 */
16208f04c47aSChristoph Hellwig 	xfs_bmap_cancel(&free_list);
16218f04c47aSChristoph Hellwig 	goto out;
16228f04c47aSChristoph Hellwig }
16238f04c47aSChristoph Hellwig 
1624c24b5dfaSDave Chinner int
1625c24b5dfaSDave Chinner xfs_release(
1626c24b5dfaSDave Chinner 	xfs_inode_t	*ip)
1627c24b5dfaSDave Chinner {
1628c24b5dfaSDave Chinner 	xfs_mount_t	*mp = ip->i_mount;
1629c24b5dfaSDave Chinner 	int		error;
1630c24b5dfaSDave Chinner 
1631c24b5dfaSDave Chinner 	if (!S_ISREG(ip->i_d.di_mode) || (ip->i_d.di_mode == 0))
1632c24b5dfaSDave Chinner 		return 0;
1633c24b5dfaSDave Chinner 
1634c24b5dfaSDave Chinner 	/* If this is a read-only mount, don't do this (would generate I/O) */
1635c24b5dfaSDave Chinner 	if (mp->m_flags & XFS_MOUNT_RDONLY)
1636c24b5dfaSDave Chinner 		return 0;
1637c24b5dfaSDave Chinner 
1638c24b5dfaSDave Chinner 	if (!XFS_FORCED_SHUTDOWN(mp)) {
1639c24b5dfaSDave Chinner 		int truncated;
1640c24b5dfaSDave Chinner 
1641c24b5dfaSDave Chinner 		/*
1642c24b5dfaSDave Chinner 		 * If we previously truncated this file and removed old data
1643c24b5dfaSDave Chinner 		 * in the process, we want to initiate "early" writeout on
1644c24b5dfaSDave Chinner 		 * the last close.  This is an attempt to combat the notorious
1645c24b5dfaSDave Chinner 		 * NULL files problem which is particularly noticeable from a
1646c24b5dfaSDave Chinner 		 * truncate down, buffered (re-)write (delalloc), followed by
1647c24b5dfaSDave Chinner 		 * a crash.  What we are effectively doing here is
1648c24b5dfaSDave Chinner 		 * significantly reducing the time window where we'd otherwise
1649c24b5dfaSDave Chinner 		 * be exposed to that problem.
1650c24b5dfaSDave Chinner 		 */
1651c24b5dfaSDave Chinner 		truncated = xfs_iflags_test_and_clear(ip, XFS_ITRUNCATED);
1652c24b5dfaSDave Chinner 		if (truncated) {
1653c24b5dfaSDave Chinner 			xfs_iflags_clear(ip, XFS_IDIRTY_RELEASE);
1654eac152b4SDave Chinner 			if (ip->i_delayed_blks > 0) {
16552451337dSDave Chinner 				error = filemap_flush(VFS_I(ip)->i_mapping);
1656c24b5dfaSDave Chinner 				if (error)
1657c24b5dfaSDave Chinner 					return error;
1658c24b5dfaSDave Chinner 			}
1659c24b5dfaSDave Chinner 		}
1660c24b5dfaSDave Chinner 	}
1661c24b5dfaSDave Chinner 
1662c24b5dfaSDave Chinner 	if (ip->i_d.di_nlink == 0)
1663c24b5dfaSDave Chinner 		return 0;
1664c24b5dfaSDave Chinner 
1665c24b5dfaSDave Chinner 	if (xfs_can_free_eofblocks(ip, false)) {
1666c24b5dfaSDave Chinner 
1667c24b5dfaSDave Chinner 		/*
1668c24b5dfaSDave Chinner 		 * If we can't get the iolock just skip truncating the blocks
1669c24b5dfaSDave Chinner 		 * past EOF because we could deadlock with the mmap_sem
1670c24b5dfaSDave Chinner 		 * otherwise.  We'll get another chance to drop them once the
1671c24b5dfaSDave Chinner 		 * last reference to the inode is dropped, so we'll never leak
1672c24b5dfaSDave Chinner 		 * blocks permanently.
1673c24b5dfaSDave Chinner 		 *
1674c24b5dfaSDave Chinner 		 * Further, check if the inode is being opened, written and
1675c24b5dfaSDave Chinner 		 * closed frequently and we have delayed allocation blocks
1676c24b5dfaSDave Chinner 		 * outstanding (e.g. streaming writes from the NFS server),
1677c24b5dfaSDave Chinner 		 * truncating the blocks past EOF will cause fragmentation to
1678c24b5dfaSDave Chinner 		 * occur.
1679c24b5dfaSDave Chinner 		 *
1680c24b5dfaSDave Chinner 		 * In this case don't do the truncation, either, but we have to
1681c24b5dfaSDave Chinner 		 * be careful how we detect this case. Blocks beyond EOF show
1682c24b5dfaSDave Chinner 		 * up as i_delayed_blks even when the inode is clean, so we
1683c24b5dfaSDave Chinner 		 * need to truncate them away first before checking for a dirty
1684c24b5dfaSDave Chinner 		 * release. Hence on the first dirty close we will still remove
1685c24b5dfaSDave Chinner 		 * the speculative allocation, but after that we will leave it
1686c24b5dfaSDave Chinner 		 * in place.
1687c24b5dfaSDave Chinner 		 */
1688c24b5dfaSDave Chinner 		if (xfs_iflags_test(ip, XFS_IDIRTY_RELEASE))
1689c24b5dfaSDave Chinner 			return 0;
1690c24b5dfaSDave Chinner 
1691c24b5dfaSDave Chinner 		error = xfs_free_eofblocks(mp, ip, true);
16922451337dSDave Chinner 		if (error && error != -EAGAIN)
1693c24b5dfaSDave Chinner 			return error;
1694c24b5dfaSDave Chinner 
1695c24b5dfaSDave Chinner 		/* delalloc blocks after truncation means it really is dirty */
1696c24b5dfaSDave Chinner 		if (ip->i_delayed_blks)
1697c24b5dfaSDave Chinner 			xfs_iflags_set(ip, XFS_IDIRTY_RELEASE);
1698c24b5dfaSDave Chinner 	}
1699c24b5dfaSDave Chinner 	return 0;
1700c24b5dfaSDave Chinner }
1701c24b5dfaSDave Chinner 
1702c24b5dfaSDave Chinner /*
1703f7be2d7fSBrian Foster  * xfs_inactive_truncate
1704f7be2d7fSBrian Foster  *
1705f7be2d7fSBrian Foster  * Called to perform a truncate when an inode becomes unlinked.
1706f7be2d7fSBrian Foster  */
1707f7be2d7fSBrian Foster STATIC int
1708f7be2d7fSBrian Foster xfs_inactive_truncate(
1709f7be2d7fSBrian Foster 	struct xfs_inode *ip)
1710f7be2d7fSBrian Foster {
1711f7be2d7fSBrian Foster 	struct xfs_mount	*mp = ip->i_mount;
1712f7be2d7fSBrian Foster 	struct xfs_trans	*tp;
1713f7be2d7fSBrian Foster 	int			error;
1714f7be2d7fSBrian Foster 
1715f7be2d7fSBrian Foster 	tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
1716f7be2d7fSBrian Foster 	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_itruncate, 0, 0);
1717f7be2d7fSBrian Foster 	if (error) {
1718f7be2d7fSBrian Foster 		ASSERT(XFS_FORCED_SHUTDOWN(mp));
17194906e215SChristoph Hellwig 		xfs_trans_cancel(tp);
1720f7be2d7fSBrian Foster 		return error;
1721f7be2d7fSBrian Foster 	}
1722f7be2d7fSBrian Foster 
1723f7be2d7fSBrian Foster 	xfs_ilock(ip, XFS_ILOCK_EXCL);
1724f7be2d7fSBrian Foster 	xfs_trans_ijoin(tp, ip, 0);
1725f7be2d7fSBrian Foster 
1726f7be2d7fSBrian Foster 	/*
1727f7be2d7fSBrian Foster 	 * Log the inode size first to prevent stale data exposure in the event
1728f7be2d7fSBrian Foster 	 * of a system crash before the truncate completes. See the related
1729f7be2d7fSBrian Foster 	 * comment in xfs_setattr_size() for details.
1730f7be2d7fSBrian Foster 	 */
1731f7be2d7fSBrian Foster 	ip->i_d.di_size = 0;
1732f7be2d7fSBrian Foster 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1733f7be2d7fSBrian Foster 
1734f7be2d7fSBrian Foster 	error = xfs_itruncate_extents(&tp, ip, XFS_DATA_FORK, 0);
1735f7be2d7fSBrian Foster 	if (error)
1736f7be2d7fSBrian Foster 		goto error_trans_cancel;
1737f7be2d7fSBrian Foster 
1738f7be2d7fSBrian Foster 	ASSERT(ip->i_d.di_nextents == 0);
1739f7be2d7fSBrian Foster 
174070393313SChristoph Hellwig 	error = xfs_trans_commit(tp);
1741f7be2d7fSBrian Foster 	if (error)
1742f7be2d7fSBrian Foster 		goto error_unlock;
1743f7be2d7fSBrian Foster 
1744f7be2d7fSBrian Foster 	xfs_iunlock(ip, XFS_ILOCK_EXCL);
1745f7be2d7fSBrian Foster 	return 0;
1746f7be2d7fSBrian Foster 
1747f7be2d7fSBrian Foster error_trans_cancel:
17484906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
1749f7be2d7fSBrian Foster error_unlock:
1750f7be2d7fSBrian Foster 	xfs_iunlock(ip, XFS_ILOCK_EXCL);
1751f7be2d7fSBrian Foster 	return error;
1752f7be2d7fSBrian Foster }
1753f7be2d7fSBrian Foster 
1754f7be2d7fSBrian Foster /*
175588877d2bSBrian Foster  * xfs_inactive_ifree()
175688877d2bSBrian Foster  *
175788877d2bSBrian Foster  * Perform the inode free when an inode is unlinked.
175888877d2bSBrian Foster  */
175988877d2bSBrian Foster STATIC int
176088877d2bSBrian Foster xfs_inactive_ifree(
176188877d2bSBrian Foster 	struct xfs_inode *ip)
176288877d2bSBrian Foster {
176388877d2bSBrian Foster 	xfs_bmap_free_t		free_list;
176488877d2bSBrian Foster 	xfs_fsblock_t		first_block;
176588877d2bSBrian Foster 	int			committed;
176688877d2bSBrian Foster 	struct xfs_mount	*mp = ip->i_mount;
176788877d2bSBrian Foster 	struct xfs_trans	*tp;
176888877d2bSBrian Foster 	int			error;
176988877d2bSBrian Foster 
177088877d2bSBrian Foster 	tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
17719d43b180SBrian Foster 
17729d43b180SBrian Foster 	/*
17739d43b180SBrian Foster 	 * The ifree transaction might need to allocate blocks for record
17749d43b180SBrian Foster 	 * insertion to the finobt. We don't want to fail here at ENOSPC, so
17759d43b180SBrian Foster 	 * allow ifree to dip into the reserved block pool if necessary.
17769d43b180SBrian Foster 	 *
17779d43b180SBrian Foster 	 * Freeing large sets of inodes generally means freeing inode chunks,
17789d43b180SBrian Foster 	 * directory and file data blocks, so this should be relatively safe.
17799d43b180SBrian Foster 	 * Only under severe circumstances should it be possible to free enough
17809d43b180SBrian Foster 	 * inodes to exhaust the reserve block pool via finobt expansion while
17819d43b180SBrian Foster 	 * at the same time not creating free space in the filesystem.
17829d43b180SBrian Foster 	 *
17839d43b180SBrian Foster 	 * Send a warning if the reservation does happen to fail, as the inode
17849d43b180SBrian Foster 	 * now remains allocated and sits on the unlinked list until the fs is
17859d43b180SBrian Foster 	 * repaired.
17869d43b180SBrian Foster 	 */
17879d43b180SBrian Foster 	tp->t_flags |= XFS_TRANS_RESERVE;
17889d43b180SBrian Foster 	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_ifree,
17899d43b180SBrian Foster 				  XFS_IFREE_SPACE_RES(mp), 0);
179088877d2bSBrian Foster 	if (error) {
17912451337dSDave Chinner 		if (error == -ENOSPC) {
17929d43b180SBrian Foster 			xfs_warn_ratelimited(mp,
17939d43b180SBrian Foster 			"Failed to remove inode(s) from unlinked list. "
17949d43b180SBrian Foster 			"Please free space, unmount and run xfs_repair.");
17959d43b180SBrian Foster 		} else {
179688877d2bSBrian Foster 			ASSERT(XFS_FORCED_SHUTDOWN(mp));
17979d43b180SBrian Foster 		}
17984906e215SChristoph Hellwig 		xfs_trans_cancel(tp);
179988877d2bSBrian Foster 		return error;
180088877d2bSBrian Foster 	}
180188877d2bSBrian Foster 
180288877d2bSBrian Foster 	xfs_ilock(ip, XFS_ILOCK_EXCL);
180388877d2bSBrian Foster 	xfs_trans_ijoin(tp, ip, 0);
180488877d2bSBrian Foster 
180588877d2bSBrian Foster 	xfs_bmap_init(&free_list, &first_block);
180688877d2bSBrian Foster 	error = xfs_ifree(tp, ip, &free_list);
180788877d2bSBrian Foster 	if (error) {
180888877d2bSBrian Foster 		/*
180988877d2bSBrian Foster 		 * If we fail to free the inode, shut down.  The cancel
181088877d2bSBrian Foster 		 * might do that, we need to make sure.  Otherwise the
181188877d2bSBrian Foster 		 * inode might be lost for a long time or forever.
181288877d2bSBrian Foster 		 */
181388877d2bSBrian Foster 		if (!XFS_FORCED_SHUTDOWN(mp)) {
181488877d2bSBrian Foster 			xfs_notice(mp, "%s: xfs_ifree returned error %d",
181588877d2bSBrian Foster 				__func__, error);
181688877d2bSBrian Foster 			xfs_force_shutdown(mp, SHUTDOWN_META_IO_ERROR);
181788877d2bSBrian Foster 		}
18184906e215SChristoph Hellwig 		xfs_trans_cancel(tp);
181988877d2bSBrian Foster 		xfs_iunlock(ip, XFS_ILOCK_EXCL);
182088877d2bSBrian Foster 		return error;
182188877d2bSBrian Foster 	}
182288877d2bSBrian Foster 
182388877d2bSBrian Foster 	/*
182488877d2bSBrian Foster 	 * Credit the quota account(s). The inode is gone.
182588877d2bSBrian Foster 	 */
182688877d2bSBrian Foster 	xfs_trans_mod_dquot_byino(tp, ip, XFS_TRANS_DQ_ICOUNT, -1);
182788877d2bSBrian Foster 
182888877d2bSBrian Foster 	/*
182988877d2bSBrian Foster 	 * Just ignore errors at this point.  There is nothing we can
183088877d2bSBrian Foster 	 * do except to try to keep going. Make sure it's not a silent
183188877d2bSBrian Foster 	 * error.
183288877d2bSBrian Foster 	 */
183388877d2bSBrian Foster 	error = xfs_bmap_finish(&tp,  &free_list, &committed);
183488877d2bSBrian Foster 	if (error)
183588877d2bSBrian Foster 		xfs_notice(mp, "%s: xfs_bmap_finish returned error %d",
183688877d2bSBrian Foster 			__func__, error);
183770393313SChristoph Hellwig 	error = xfs_trans_commit(tp);
183888877d2bSBrian Foster 	if (error)
183988877d2bSBrian Foster 		xfs_notice(mp, "%s: xfs_trans_commit returned error %d",
184088877d2bSBrian Foster 			__func__, error);
184188877d2bSBrian Foster 
184288877d2bSBrian Foster 	xfs_iunlock(ip, XFS_ILOCK_EXCL);
184388877d2bSBrian Foster 	return 0;
184488877d2bSBrian Foster }
184588877d2bSBrian Foster 
184688877d2bSBrian Foster /*
1847c24b5dfaSDave Chinner  * xfs_inactive
1848c24b5dfaSDave Chinner  *
1849c24b5dfaSDave Chinner  * This is called when the vnode reference count for the vnode
1850c24b5dfaSDave Chinner  * goes to zero.  If the file has been unlinked, then it must
1851c24b5dfaSDave Chinner  * now be truncated.  Also, we clear all of the read-ahead state
1852c24b5dfaSDave Chinner  * kept for the inode here since the file is now closed.
1853c24b5dfaSDave Chinner  */
185474564fb4SBrian Foster void
1855c24b5dfaSDave Chinner xfs_inactive(
1856c24b5dfaSDave Chinner 	xfs_inode_t	*ip)
1857c24b5dfaSDave Chinner {
18583d3c8b52SJie Liu 	struct xfs_mount	*mp;
1859c24b5dfaSDave Chinner 	int			error;
1860c24b5dfaSDave Chinner 	int			truncate = 0;
1861c24b5dfaSDave Chinner 
1862c24b5dfaSDave Chinner 	/*
1863c24b5dfaSDave Chinner 	 * If the inode is already free, then there can be nothing
1864c24b5dfaSDave Chinner 	 * to clean up here.
1865c24b5dfaSDave Chinner 	 */
1866d948709bSBen Myers 	if (ip->i_d.di_mode == 0) {
1867c24b5dfaSDave Chinner 		ASSERT(ip->i_df.if_real_bytes == 0);
1868c24b5dfaSDave Chinner 		ASSERT(ip->i_df.if_broot_bytes == 0);
186974564fb4SBrian Foster 		return;
1870c24b5dfaSDave Chinner 	}
1871c24b5dfaSDave Chinner 
1872c24b5dfaSDave Chinner 	mp = ip->i_mount;
1873c24b5dfaSDave Chinner 
1874c24b5dfaSDave Chinner 	/* If this is a read-only mount, don't do this (would generate I/O) */
1875c24b5dfaSDave Chinner 	if (mp->m_flags & XFS_MOUNT_RDONLY)
187674564fb4SBrian Foster 		return;
1877c24b5dfaSDave Chinner 
1878c24b5dfaSDave Chinner 	if (ip->i_d.di_nlink != 0) {
1879c24b5dfaSDave Chinner 		/*
1880c24b5dfaSDave Chinner 		 * force is true because we are evicting an inode from the
1881c24b5dfaSDave Chinner 		 * cache. Post-eof blocks must be freed, lest we end up with
1882c24b5dfaSDave Chinner 		 * broken free space accounting.
1883c24b5dfaSDave Chinner 		 */
188474564fb4SBrian Foster 		if (xfs_can_free_eofblocks(ip, true))
188574564fb4SBrian Foster 			xfs_free_eofblocks(mp, ip, false);
188674564fb4SBrian Foster 
188774564fb4SBrian Foster 		return;
1888c24b5dfaSDave Chinner 	}
1889c24b5dfaSDave Chinner 
1890c24b5dfaSDave Chinner 	if (S_ISREG(ip->i_d.di_mode) &&
1891c24b5dfaSDave Chinner 	    (ip->i_d.di_size != 0 || XFS_ISIZE(ip) != 0 ||
1892c24b5dfaSDave Chinner 	     ip->i_d.di_nextents > 0 || ip->i_delayed_blks > 0))
1893c24b5dfaSDave Chinner 		truncate = 1;
1894c24b5dfaSDave Chinner 
1895c24b5dfaSDave Chinner 	error = xfs_qm_dqattach(ip, 0);
1896c24b5dfaSDave Chinner 	if (error)
189774564fb4SBrian Foster 		return;
1898c24b5dfaSDave Chinner 
1899f7be2d7fSBrian Foster 	if (S_ISLNK(ip->i_d.di_mode))
190036b21ddeSBrian Foster 		error = xfs_inactive_symlink(ip);
1901f7be2d7fSBrian Foster 	else if (truncate)
1902f7be2d7fSBrian Foster 		error = xfs_inactive_truncate(ip);
190336b21ddeSBrian Foster 	if (error)
190474564fb4SBrian Foster 		return;
1905c24b5dfaSDave Chinner 
1906c24b5dfaSDave Chinner 	/*
1907c24b5dfaSDave Chinner 	 * If there are attributes associated with the file then blow them away
1908c24b5dfaSDave Chinner 	 * now.  The code calls a routine that recursively deconstructs the
19096dfe5a04SDave Chinner 	 * attribute fork. If also blows away the in-core attribute fork.
1910c24b5dfaSDave Chinner 	 */
19116dfe5a04SDave Chinner 	if (XFS_IFORK_Q(ip)) {
1912c24b5dfaSDave Chinner 		error = xfs_attr_inactive(ip);
1913c24b5dfaSDave Chinner 		if (error)
191474564fb4SBrian Foster 			return;
1915c24b5dfaSDave Chinner 	}
1916c24b5dfaSDave Chinner 
19176dfe5a04SDave Chinner 	ASSERT(!ip->i_afp);
1918c24b5dfaSDave Chinner 	ASSERT(ip->i_d.di_anextents == 0);
19196dfe5a04SDave Chinner 	ASSERT(ip->i_d.di_forkoff == 0);
1920c24b5dfaSDave Chinner 
1921c24b5dfaSDave Chinner 	/*
1922c24b5dfaSDave Chinner 	 * Free the inode.
1923c24b5dfaSDave Chinner 	 */
192488877d2bSBrian Foster 	error = xfs_inactive_ifree(ip);
1925c24b5dfaSDave Chinner 	if (error)
192674564fb4SBrian Foster 		return;
1927c24b5dfaSDave Chinner 
1928c24b5dfaSDave Chinner 	/*
1929c24b5dfaSDave Chinner 	 * Release the dquots held by inode, if any.
1930c24b5dfaSDave Chinner 	 */
1931c24b5dfaSDave Chinner 	xfs_qm_dqdetach(ip);
1932c24b5dfaSDave Chinner }
1933c24b5dfaSDave Chinner 
19341da177e4SLinus Torvalds /*
19351da177e4SLinus Torvalds  * This is called when the inode's link count goes to 0.
19361da177e4SLinus Torvalds  * We place the on-disk inode on a list in the AGI.  It
19371da177e4SLinus Torvalds  * will be pulled from this list when the inode is freed.
19381da177e4SLinus Torvalds  */
19391da177e4SLinus Torvalds int
19401da177e4SLinus Torvalds xfs_iunlink(
19411da177e4SLinus Torvalds 	xfs_trans_t	*tp,
19421da177e4SLinus Torvalds 	xfs_inode_t	*ip)
19431da177e4SLinus Torvalds {
19441da177e4SLinus Torvalds 	xfs_mount_t	*mp;
19451da177e4SLinus Torvalds 	xfs_agi_t	*agi;
19461da177e4SLinus Torvalds 	xfs_dinode_t	*dip;
19471da177e4SLinus Torvalds 	xfs_buf_t	*agibp;
19481da177e4SLinus Torvalds 	xfs_buf_t	*ibp;
19491da177e4SLinus Torvalds 	xfs_agino_t	agino;
19501da177e4SLinus Torvalds 	short		bucket_index;
19511da177e4SLinus Torvalds 	int		offset;
19521da177e4SLinus Torvalds 	int		error;
19531da177e4SLinus Torvalds 
19541da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nlink == 0);
19551da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_mode != 0);
19561da177e4SLinus Torvalds 
19571da177e4SLinus Torvalds 	mp = tp->t_mountp;
19581da177e4SLinus Torvalds 
19591da177e4SLinus Torvalds 	/*
19601da177e4SLinus Torvalds 	 * Get the agi buffer first.  It ensures lock ordering
19611da177e4SLinus Torvalds 	 * on the list.
19621da177e4SLinus Torvalds 	 */
19635e1be0fbSChristoph Hellwig 	error = xfs_read_agi(mp, tp, XFS_INO_TO_AGNO(mp, ip->i_ino), &agibp);
1964859d7182SVlad Apostolov 	if (error)
19651da177e4SLinus Torvalds 		return error;
19661da177e4SLinus Torvalds 	agi = XFS_BUF_TO_AGI(agibp);
19675e1be0fbSChristoph Hellwig 
19681da177e4SLinus Torvalds 	/*
19691da177e4SLinus Torvalds 	 * Get the index into the agi hash table for the
19701da177e4SLinus Torvalds 	 * list this inode will go on.
19711da177e4SLinus Torvalds 	 */
19721da177e4SLinus Torvalds 	agino = XFS_INO_TO_AGINO(mp, ip->i_ino);
19731da177e4SLinus Torvalds 	ASSERT(agino != 0);
19741da177e4SLinus Torvalds 	bucket_index = agino % XFS_AGI_UNLINKED_BUCKETS;
19751da177e4SLinus Torvalds 	ASSERT(agi->agi_unlinked[bucket_index]);
197616259e7dSChristoph Hellwig 	ASSERT(be32_to_cpu(agi->agi_unlinked[bucket_index]) != agino);
19771da177e4SLinus Torvalds 
197869ef921bSChristoph Hellwig 	if (agi->agi_unlinked[bucket_index] != cpu_to_be32(NULLAGINO)) {
19791da177e4SLinus Torvalds 		/*
19801da177e4SLinus Torvalds 		 * There is already another inode in the bucket we need
19811da177e4SLinus Torvalds 		 * to add ourselves to.  Add us at the front of the list.
19821da177e4SLinus Torvalds 		 * Here we put the head pointer into our next pointer,
19831da177e4SLinus Torvalds 		 * and then we fall through to point the head at us.
19841da177e4SLinus Torvalds 		 */
1985475ee413SChristoph Hellwig 		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
1986475ee413SChristoph Hellwig 				       0, 0);
1987c319b58bSVlad Apostolov 		if (error)
1988c319b58bSVlad Apostolov 			return error;
1989c319b58bSVlad Apostolov 
199069ef921bSChristoph Hellwig 		ASSERT(dip->di_next_unlinked == cpu_to_be32(NULLAGINO));
19911da177e4SLinus Torvalds 		dip->di_next_unlinked = agi->agi_unlinked[bucket_index];
199292bfc6e7SChristoph Hellwig 		offset = ip->i_imap.im_boffset +
19931da177e4SLinus Torvalds 			offsetof(xfs_dinode_t, di_next_unlinked);
19940a32c26eSDave Chinner 
19950a32c26eSDave Chinner 		/* need to recalc the inode CRC if appropriate */
19960a32c26eSDave Chinner 		xfs_dinode_calc_crc(mp, dip);
19970a32c26eSDave Chinner 
19981da177e4SLinus Torvalds 		xfs_trans_inode_buf(tp, ibp);
19991da177e4SLinus Torvalds 		xfs_trans_log_buf(tp, ibp, offset,
20001da177e4SLinus Torvalds 				  (offset + sizeof(xfs_agino_t) - 1));
20011da177e4SLinus Torvalds 		xfs_inobp_check(mp, ibp);
20021da177e4SLinus Torvalds 	}
20031da177e4SLinus Torvalds 
20041da177e4SLinus Torvalds 	/*
20051da177e4SLinus Torvalds 	 * Point the bucket head pointer at the inode being inserted.
20061da177e4SLinus Torvalds 	 */
20071da177e4SLinus Torvalds 	ASSERT(agino != 0);
200816259e7dSChristoph Hellwig 	agi->agi_unlinked[bucket_index] = cpu_to_be32(agino);
20091da177e4SLinus Torvalds 	offset = offsetof(xfs_agi_t, agi_unlinked) +
20101da177e4SLinus Torvalds 		(sizeof(xfs_agino_t) * bucket_index);
2011f19b872bSDave Chinner 	xfs_trans_buf_set_type(tp, agibp, XFS_BLFT_AGI_BUF);
20121da177e4SLinus Torvalds 	xfs_trans_log_buf(tp, agibp, offset,
20131da177e4SLinus Torvalds 			  (offset + sizeof(xfs_agino_t) - 1));
20141da177e4SLinus Torvalds 	return 0;
20151da177e4SLinus Torvalds }
20161da177e4SLinus Torvalds 
20171da177e4SLinus Torvalds /*
20181da177e4SLinus Torvalds  * Pull the on-disk inode from the AGI unlinked list.
20191da177e4SLinus Torvalds  */
20201da177e4SLinus Torvalds STATIC int
20211da177e4SLinus Torvalds xfs_iunlink_remove(
20221da177e4SLinus Torvalds 	xfs_trans_t	*tp,
20231da177e4SLinus Torvalds 	xfs_inode_t	*ip)
20241da177e4SLinus Torvalds {
20251da177e4SLinus Torvalds 	xfs_ino_t	next_ino;
20261da177e4SLinus Torvalds 	xfs_mount_t	*mp;
20271da177e4SLinus Torvalds 	xfs_agi_t	*agi;
20281da177e4SLinus Torvalds 	xfs_dinode_t	*dip;
20291da177e4SLinus Torvalds 	xfs_buf_t	*agibp;
20301da177e4SLinus Torvalds 	xfs_buf_t	*ibp;
20311da177e4SLinus Torvalds 	xfs_agnumber_t	agno;
20321da177e4SLinus Torvalds 	xfs_agino_t	agino;
20331da177e4SLinus Torvalds 	xfs_agino_t	next_agino;
20341da177e4SLinus Torvalds 	xfs_buf_t	*last_ibp;
20356fdf8cccSNathan Scott 	xfs_dinode_t	*last_dip = NULL;
20361da177e4SLinus Torvalds 	short		bucket_index;
20376fdf8cccSNathan Scott 	int		offset, last_offset = 0;
20381da177e4SLinus Torvalds 	int		error;
20391da177e4SLinus Torvalds 
20401da177e4SLinus Torvalds 	mp = tp->t_mountp;
20411da177e4SLinus Torvalds 	agno = XFS_INO_TO_AGNO(mp, ip->i_ino);
20421da177e4SLinus Torvalds 
20431da177e4SLinus Torvalds 	/*
20441da177e4SLinus Torvalds 	 * Get the agi buffer first.  It ensures lock ordering
20451da177e4SLinus Torvalds 	 * on the list.
20461da177e4SLinus Torvalds 	 */
20475e1be0fbSChristoph Hellwig 	error = xfs_read_agi(mp, tp, agno, &agibp);
20485e1be0fbSChristoph Hellwig 	if (error)
20491da177e4SLinus Torvalds 		return error;
20505e1be0fbSChristoph Hellwig 
20511da177e4SLinus Torvalds 	agi = XFS_BUF_TO_AGI(agibp);
20525e1be0fbSChristoph Hellwig 
20531da177e4SLinus Torvalds 	/*
20541da177e4SLinus Torvalds 	 * Get the index into the agi hash table for the
20551da177e4SLinus Torvalds 	 * list this inode will go on.
20561da177e4SLinus Torvalds 	 */
20571da177e4SLinus Torvalds 	agino = XFS_INO_TO_AGINO(mp, ip->i_ino);
20581da177e4SLinus Torvalds 	ASSERT(agino != 0);
20591da177e4SLinus Torvalds 	bucket_index = agino % XFS_AGI_UNLINKED_BUCKETS;
206069ef921bSChristoph Hellwig 	ASSERT(agi->agi_unlinked[bucket_index] != cpu_to_be32(NULLAGINO));
20611da177e4SLinus Torvalds 	ASSERT(agi->agi_unlinked[bucket_index]);
20621da177e4SLinus Torvalds 
206316259e7dSChristoph Hellwig 	if (be32_to_cpu(agi->agi_unlinked[bucket_index]) == agino) {
20641da177e4SLinus Torvalds 		/*
2065475ee413SChristoph Hellwig 		 * We're at the head of the list.  Get the inode's on-disk
2066475ee413SChristoph Hellwig 		 * buffer to see if there is anyone after us on the list.
2067475ee413SChristoph Hellwig 		 * Only modify our next pointer if it is not already NULLAGINO.
2068475ee413SChristoph Hellwig 		 * This saves us the overhead of dealing with the buffer when
2069475ee413SChristoph Hellwig 		 * there is no need to change it.
20701da177e4SLinus Torvalds 		 */
2071475ee413SChristoph Hellwig 		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
2072475ee413SChristoph Hellwig 				       0, 0);
20731da177e4SLinus Torvalds 		if (error) {
2074475ee413SChristoph Hellwig 			xfs_warn(mp, "%s: xfs_imap_to_bp returned error %d.",
20750b932cccSDave Chinner 				__func__, error);
20761da177e4SLinus Torvalds 			return error;
20771da177e4SLinus Torvalds 		}
2078347d1c01SChristoph Hellwig 		next_agino = be32_to_cpu(dip->di_next_unlinked);
20791da177e4SLinus Torvalds 		ASSERT(next_agino != 0);
20801da177e4SLinus Torvalds 		if (next_agino != NULLAGINO) {
2081347d1c01SChristoph Hellwig 			dip->di_next_unlinked = cpu_to_be32(NULLAGINO);
208292bfc6e7SChristoph Hellwig 			offset = ip->i_imap.im_boffset +
20831da177e4SLinus Torvalds 				offsetof(xfs_dinode_t, di_next_unlinked);
20840a32c26eSDave Chinner 
20850a32c26eSDave Chinner 			/* need to recalc the inode CRC if appropriate */
20860a32c26eSDave Chinner 			xfs_dinode_calc_crc(mp, dip);
20870a32c26eSDave Chinner 
20881da177e4SLinus Torvalds 			xfs_trans_inode_buf(tp, ibp);
20891da177e4SLinus Torvalds 			xfs_trans_log_buf(tp, ibp, offset,
20901da177e4SLinus Torvalds 					  (offset + sizeof(xfs_agino_t) - 1));
20911da177e4SLinus Torvalds 			xfs_inobp_check(mp, ibp);
20921da177e4SLinus Torvalds 		} else {
20931da177e4SLinus Torvalds 			xfs_trans_brelse(tp, ibp);
20941da177e4SLinus Torvalds 		}
20951da177e4SLinus Torvalds 		/*
20961da177e4SLinus Torvalds 		 * Point the bucket head pointer at the next inode.
20971da177e4SLinus Torvalds 		 */
20981da177e4SLinus Torvalds 		ASSERT(next_agino != 0);
20991da177e4SLinus Torvalds 		ASSERT(next_agino != agino);
210016259e7dSChristoph Hellwig 		agi->agi_unlinked[bucket_index] = cpu_to_be32(next_agino);
21011da177e4SLinus Torvalds 		offset = offsetof(xfs_agi_t, agi_unlinked) +
21021da177e4SLinus Torvalds 			(sizeof(xfs_agino_t) * bucket_index);
2103f19b872bSDave Chinner 		xfs_trans_buf_set_type(tp, agibp, XFS_BLFT_AGI_BUF);
21041da177e4SLinus Torvalds 		xfs_trans_log_buf(tp, agibp, offset,
21051da177e4SLinus Torvalds 				  (offset + sizeof(xfs_agino_t) - 1));
21061da177e4SLinus Torvalds 	} else {
21071da177e4SLinus Torvalds 		/*
21081da177e4SLinus Torvalds 		 * We need to search the list for the inode being freed.
21091da177e4SLinus Torvalds 		 */
211016259e7dSChristoph Hellwig 		next_agino = be32_to_cpu(agi->agi_unlinked[bucket_index]);
21111da177e4SLinus Torvalds 		last_ibp = NULL;
21121da177e4SLinus Torvalds 		while (next_agino != agino) {
2113129dbc9aSChristoph Hellwig 			struct xfs_imap	imap;
2114129dbc9aSChristoph Hellwig 
2115129dbc9aSChristoph Hellwig 			if (last_ibp)
21161da177e4SLinus Torvalds 				xfs_trans_brelse(tp, last_ibp);
2117129dbc9aSChristoph Hellwig 
2118129dbc9aSChristoph Hellwig 			imap.im_blkno = 0;
21191da177e4SLinus Torvalds 			next_ino = XFS_AGINO_TO_INO(mp, agno, next_agino);
2120129dbc9aSChristoph Hellwig 
2121129dbc9aSChristoph Hellwig 			error = xfs_imap(mp, tp, next_ino, &imap, 0);
21221da177e4SLinus Torvalds 			if (error) {
21230b932cccSDave Chinner 				xfs_warn(mp,
2124129dbc9aSChristoph Hellwig 	"%s: xfs_imap returned error %d.",
21250b932cccSDave Chinner 					 __func__, error);
21261da177e4SLinus Torvalds 				return error;
21271da177e4SLinus Torvalds 			}
2128129dbc9aSChristoph Hellwig 
2129129dbc9aSChristoph Hellwig 			error = xfs_imap_to_bp(mp, tp, &imap, &last_dip,
2130129dbc9aSChristoph Hellwig 					       &last_ibp, 0, 0);
2131129dbc9aSChristoph Hellwig 			if (error) {
2132129dbc9aSChristoph Hellwig 				xfs_warn(mp,
2133129dbc9aSChristoph Hellwig 	"%s: xfs_imap_to_bp returned error %d.",
2134129dbc9aSChristoph Hellwig 					__func__, error);
2135129dbc9aSChristoph Hellwig 				return error;
2136129dbc9aSChristoph Hellwig 			}
2137129dbc9aSChristoph Hellwig 
2138129dbc9aSChristoph Hellwig 			last_offset = imap.im_boffset;
2139347d1c01SChristoph Hellwig 			next_agino = be32_to_cpu(last_dip->di_next_unlinked);
21401da177e4SLinus Torvalds 			ASSERT(next_agino != NULLAGINO);
21411da177e4SLinus Torvalds 			ASSERT(next_agino != 0);
21421da177e4SLinus Torvalds 		}
2143475ee413SChristoph Hellwig 
21441da177e4SLinus Torvalds 		/*
2145475ee413SChristoph Hellwig 		 * Now last_ibp points to the buffer previous to us on the
2146475ee413SChristoph Hellwig 		 * unlinked list.  Pull us from the list.
21471da177e4SLinus Torvalds 		 */
2148475ee413SChristoph Hellwig 		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
2149475ee413SChristoph Hellwig 				       0, 0);
21501da177e4SLinus Torvalds 		if (error) {
2151475ee413SChristoph Hellwig 			xfs_warn(mp, "%s: xfs_imap_to_bp(2) returned error %d.",
21520b932cccSDave Chinner 				__func__, error);
21531da177e4SLinus Torvalds 			return error;
21541da177e4SLinus Torvalds 		}
2155347d1c01SChristoph Hellwig 		next_agino = be32_to_cpu(dip->di_next_unlinked);
21561da177e4SLinus Torvalds 		ASSERT(next_agino != 0);
21571da177e4SLinus Torvalds 		ASSERT(next_agino != agino);
21581da177e4SLinus Torvalds 		if (next_agino != NULLAGINO) {
2159347d1c01SChristoph Hellwig 			dip->di_next_unlinked = cpu_to_be32(NULLAGINO);
216092bfc6e7SChristoph Hellwig 			offset = ip->i_imap.im_boffset +
21611da177e4SLinus Torvalds 				offsetof(xfs_dinode_t, di_next_unlinked);
21620a32c26eSDave Chinner 
21630a32c26eSDave Chinner 			/* need to recalc the inode CRC if appropriate */
21640a32c26eSDave Chinner 			xfs_dinode_calc_crc(mp, dip);
21650a32c26eSDave Chinner 
21661da177e4SLinus Torvalds 			xfs_trans_inode_buf(tp, ibp);
21671da177e4SLinus Torvalds 			xfs_trans_log_buf(tp, ibp, offset,
21681da177e4SLinus Torvalds 					  (offset + sizeof(xfs_agino_t) - 1));
21691da177e4SLinus Torvalds 			xfs_inobp_check(mp, ibp);
21701da177e4SLinus Torvalds 		} else {
21711da177e4SLinus Torvalds 			xfs_trans_brelse(tp, ibp);
21721da177e4SLinus Torvalds 		}
21731da177e4SLinus Torvalds 		/*
21741da177e4SLinus Torvalds 		 * Point the previous inode on the list to the next inode.
21751da177e4SLinus Torvalds 		 */
2176347d1c01SChristoph Hellwig 		last_dip->di_next_unlinked = cpu_to_be32(next_agino);
21771da177e4SLinus Torvalds 		ASSERT(next_agino != 0);
21781da177e4SLinus Torvalds 		offset = last_offset + offsetof(xfs_dinode_t, di_next_unlinked);
21790a32c26eSDave Chinner 
21800a32c26eSDave Chinner 		/* need to recalc the inode CRC if appropriate */
21810a32c26eSDave Chinner 		xfs_dinode_calc_crc(mp, last_dip);
21820a32c26eSDave Chinner 
21831da177e4SLinus Torvalds 		xfs_trans_inode_buf(tp, last_ibp);
21841da177e4SLinus Torvalds 		xfs_trans_log_buf(tp, last_ibp, offset,
21851da177e4SLinus Torvalds 				  (offset + sizeof(xfs_agino_t) - 1));
21861da177e4SLinus Torvalds 		xfs_inobp_check(mp, last_ibp);
21871da177e4SLinus Torvalds 	}
21881da177e4SLinus Torvalds 	return 0;
21891da177e4SLinus Torvalds }
21901da177e4SLinus Torvalds 
21915b3eed75SDave Chinner /*
21920b8182dbSZhi Yong Wu  * A big issue when freeing the inode cluster is that we _cannot_ skip any
21935b3eed75SDave Chinner  * inodes that are in memory - they all must be marked stale and attached to
21945b3eed75SDave Chinner  * the cluster buffer.
21955b3eed75SDave Chinner  */
21962a30f36dSChandra Seetharaman STATIC int
21971da177e4SLinus Torvalds xfs_ifree_cluster(
21981da177e4SLinus Torvalds 	xfs_inode_t		*free_ip,
21991da177e4SLinus Torvalds 	xfs_trans_t		*tp,
220009b56604SBrian Foster 	struct xfs_icluster	*xic)
22011da177e4SLinus Torvalds {
22021da177e4SLinus Torvalds 	xfs_mount_t		*mp = free_ip->i_mount;
22031da177e4SLinus Torvalds 	int			blks_per_cluster;
2204982e939eSJie Liu 	int			inodes_per_cluster;
22051da177e4SLinus Torvalds 	int			nbufs;
22065b257b4aSDave Chinner 	int			i, j;
22073cdaa189SBrian Foster 	int			ioffset;
22081da177e4SLinus Torvalds 	xfs_daddr_t		blkno;
22091da177e4SLinus Torvalds 	xfs_buf_t		*bp;
22105b257b4aSDave Chinner 	xfs_inode_t		*ip;
22111da177e4SLinus Torvalds 	xfs_inode_log_item_t	*iip;
22121da177e4SLinus Torvalds 	xfs_log_item_t		*lip;
22135017e97dSDave Chinner 	struct xfs_perag	*pag;
221409b56604SBrian Foster 	xfs_ino_t		inum;
22151da177e4SLinus Torvalds 
221609b56604SBrian Foster 	inum = xic->first_ino;
22175017e97dSDave Chinner 	pag = xfs_perag_get(mp, XFS_INO_TO_AGNO(mp, inum));
2218982e939eSJie Liu 	blks_per_cluster = xfs_icluster_size_fsb(mp);
2219982e939eSJie Liu 	inodes_per_cluster = blks_per_cluster << mp->m_sb.sb_inopblog;
2220126cd105SJie Liu 	nbufs = mp->m_ialloc_blks / blks_per_cluster;
22211da177e4SLinus Torvalds 
2222982e939eSJie Liu 	for (j = 0; j < nbufs; j++, inum += inodes_per_cluster) {
222309b56604SBrian Foster 		/*
222409b56604SBrian Foster 		 * The allocation bitmap tells us which inodes of the chunk were
222509b56604SBrian Foster 		 * physically allocated. Skip the cluster if an inode falls into
222609b56604SBrian Foster 		 * a sparse region.
222709b56604SBrian Foster 		 */
22283cdaa189SBrian Foster 		ioffset = inum - xic->first_ino;
22293cdaa189SBrian Foster 		if ((xic->alloc & XFS_INOBT_MASK(ioffset)) == 0) {
22303cdaa189SBrian Foster 			ASSERT(do_mod(ioffset, inodes_per_cluster) == 0);
223109b56604SBrian Foster 			continue;
223209b56604SBrian Foster 		}
223309b56604SBrian Foster 
22341da177e4SLinus Torvalds 		blkno = XFS_AGB_TO_DADDR(mp, XFS_INO_TO_AGNO(mp, inum),
22351da177e4SLinus Torvalds 					 XFS_INO_TO_AGBNO(mp, inum));
22361da177e4SLinus Torvalds 
22371da177e4SLinus Torvalds 		/*
22385b257b4aSDave Chinner 		 * We obtain and lock the backing buffer first in the process
22395b257b4aSDave Chinner 		 * here, as we have to ensure that any dirty inode that we
22405b257b4aSDave Chinner 		 * can't get the flush lock on is attached to the buffer.
22415b257b4aSDave Chinner 		 * If we scan the in-memory inodes first, then buffer IO can
22425b257b4aSDave Chinner 		 * complete before we get a lock on it, and hence we may fail
22435b257b4aSDave Chinner 		 * to mark all the active inodes on the buffer stale.
22441da177e4SLinus Torvalds 		 */
22451da177e4SLinus Torvalds 		bp = xfs_trans_get_buf(tp, mp->m_ddev_targp, blkno,
2246b6aff29fSDave Chinner 					mp->m_bsize * blks_per_cluster,
2247b6aff29fSDave Chinner 					XBF_UNMAPPED);
22481da177e4SLinus Torvalds 
22492a30f36dSChandra Seetharaman 		if (!bp)
22502451337dSDave Chinner 			return -ENOMEM;
2251b0f539deSDave Chinner 
2252b0f539deSDave Chinner 		/*
2253b0f539deSDave Chinner 		 * This buffer may not have been correctly initialised as we
2254b0f539deSDave Chinner 		 * didn't read it from disk. That's not important because we are
2255b0f539deSDave Chinner 		 * only using to mark the buffer as stale in the log, and to
2256b0f539deSDave Chinner 		 * attach stale cached inodes on it. That means it will never be
2257b0f539deSDave Chinner 		 * dispatched for IO. If it is, we want to know about it, and we
2258b0f539deSDave Chinner 		 * want it to fail. We can acheive this by adding a write
2259b0f539deSDave Chinner 		 * verifier to the buffer.
2260b0f539deSDave Chinner 		 */
22611813dd64SDave Chinner 		 bp->b_ops = &xfs_inode_buf_ops;
2262b0f539deSDave Chinner 
22635b257b4aSDave Chinner 		/*
22645b257b4aSDave Chinner 		 * Walk the inodes already attached to the buffer and mark them
22655b257b4aSDave Chinner 		 * stale. These will all have the flush locks held, so an
22665b3eed75SDave Chinner 		 * in-memory inode walk can't lock them. By marking them all
22675b3eed75SDave Chinner 		 * stale first, we will not attempt to lock them in the loop
22685b3eed75SDave Chinner 		 * below as the XFS_ISTALE flag will be set.
22695b257b4aSDave Chinner 		 */
2270adadbeefSChristoph Hellwig 		lip = bp->b_fspriv;
22711da177e4SLinus Torvalds 		while (lip) {
22721da177e4SLinus Torvalds 			if (lip->li_type == XFS_LI_INODE) {
22731da177e4SLinus Torvalds 				iip = (xfs_inode_log_item_t *)lip;
22741da177e4SLinus Torvalds 				ASSERT(iip->ili_logged == 1);
2275ca30b2a7SChristoph Hellwig 				lip->li_cb = xfs_istale_done;
22767b2e2a31SDavid Chinner 				xfs_trans_ail_copy_lsn(mp->m_ail,
22777b2e2a31SDavid Chinner 							&iip->ili_flush_lsn,
22787b2e2a31SDavid Chinner 							&iip->ili_item.li_lsn);
2279e5ffd2bbSDavid Chinner 				xfs_iflags_set(iip->ili_inode, XFS_ISTALE);
22801da177e4SLinus Torvalds 			}
22811da177e4SLinus Torvalds 			lip = lip->li_bio_list;
22821da177e4SLinus Torvalds 		}
22831da177e4SLinus Torvalds 
22845b3eed75SDave Chinner 
22855b257b4aSDave Chinner 		/*
22865b257b4aSDave Chinner 		 * For each inode in memory attempt to add it to the inode
22875b257b4aSDave Chinner 		 * buffer and set it up for being staled on buffer IO
22885b257b4aSDave Chinner 		 * completion.  This is safe as we've locked out tail pushing
22895b257b4aSDave Chinner 		 * and flushing by locking the buffer.
22905b257b4aSDave Chinner 		 *
22915b257b4aSDave Chinner 		 * We have already marked every inode that was part of a
22925b257b4aSDave Chinner 		 * transaction stale above, which means there is no point in
22935b257b4aSDave Chinner 		 * even trying to lock them.
22945b257b4aSDave Chinner 		 */
2295982e939eSJie Liu 		for (i = 0; i < inodes_per_cluster; i++) {
22965b3eed75SDave Chinner retry:
22971a3e8f3dSDave Chinner 			rcu_read_lock();
22985b257b4aSDave Chinner 			ip = radix_tree_lookup(&pag->pag_ici_root,
22995b257b4aSDave Chinner 					XFS_INO_TO_AGINO(mp, (inum + i)));
23001da177e4SLinus Torvalds 
23011a3e8f3dSDave Chinner 			/* Inode not in memory, nothing to do */
23021a3e8f3dSDave Chinner 			if (!ip) {
23031a3e8f3dSDave Chinner 				rcu_read_unlock();
23045b257b4aSDave Chinner 				continue;
23055b257b4aSDave Chinner 			}
23065b257b4aSDave Chinner 
23075b3eed75SDave Chinner 			/*
23081a3e8f3dSDave Chinner 			 * because this is an RCU protected lookup, we could
23091a3e8f3dSDave Chinner 			 * find a recently freed or even reallocated inode
23101a3e8f3dSDave Chinner 			 * during the lookup. We need to check under the
23111a3e8f3dSDave Chinner 			 * i_flags_lock for a valid inode here. Skip it if it
23121a3e8f3dSDave Chinner 			 * is not valid, the wrong inode or stale.
23131a3e8f3dSDave Chinner 			 */
23141a3e8f3dSDave Chinner 			spin_lock(&ip->i_flags_lock);
23151a3e8f3dSDave Chinner 			if (ip->i_ino != inum + i ||
23161a3e8f3dSDave Chinner 			    __xfs_iflags_test(ip, XFS_ISTALE)) {
23171a3e8f3dSDave Chinner 				spin_unlock(&ip->i_flags_lock);
23181a3e8f3dSDave Chinner 				rcu_read_unlock();
23191a3e8f3dSDave Chinner 				continue;
23201a3e8f3dSDave Chinner 			}
23211a3e8f3dSDave Chinner 			spin_unlock(&ip->i_flags_lock);
23221a3e8f3dSDave Chinner 
23231a3e8f3dSDave Chinner 			/*
23245b3eed75SDave Chinner 			 * Don't try to lock/unlock the current inode, but we
23255b3eed75SDave Chinner 			 * _cannot_ skip the other inodes that we did not find
23265b3eed75SDave Chinner 			 * in the list attached to the buffer and are not
23275b3eed75SDave Chinner 			 * already marked stale. If we can't lock it, back off
23285b3eed75SDave Chinner 			 * and retry.
23295b3eed75SDave Chinner 			 */
23305b257b4aSDave Chinner 			if (ip != free_ip &&
23315b257b4aSDave Chinner 			    !xfs_ilock_nowait(ip, XFS_ILOCK_EXCL)) {
23321a3e8f3dSDave Chinner 				rcu_read_unlock();
23335b3eed75SDave Chinner 				delay(1);
23345b3eed75SDave Chinner 				goto retry;
23355b257b4aSDave Chinner 			}
23361a3e8f3dSDave Chinner 			rcu_read_unlock();
23375b257b4aSDave Chinner 
23385b3eed75SDave Chinner 			xfs_iflock(ip);
23395b257b4aSDave Chinner 			xfs_iflags_set(ip, XFS_ISTALE);
23405b257b4aSDave Chinner 
23415b3eed75SDave Chinner 			/*
23425b3eed75SDave Chinner 			 * we don't need to attach clean inodes or those only
23435b3eed75SDave Chinner 			 * with unlogged changes (which we throw away, anyway).
23445b3eed75SDave Chinner 			 */
23455b257b4aSDave Chinner 			iip = ip->i_itemp;
23465b3eed75SDave Chinner 			if (!iip || xfs_inode_clean(ip)) {
23475b257b4aSDave Chinner 				ASSERT(ip != free_ip);
23481da177e4SLinus Torvalds 				xfs_ifunlock(ip);
23491da177e4SLinus Torvalds 				xfs_iunlock(ip, XFS_ILOCK_EXCL);
23501da177e4SLinus Torvalds 				continue;
23511da177e4SLinus Torvalds 			}
23521da177e4SLinus Torvalds 
2353f5d8d5c4SChristoph Hellwig 			iip->ili_last_fields = iip->ili_fields;
2354f5d8d5c4SChristoph Hellwig 			iip->ili_fields = 0;
23551da177e4SLinus Torvalds 			iip->ili_logged = 1;
23567b2e2a31SDavid Chinner 			xfs_trans_ail_copy_lsn(mp->m_ail, &iip->ili_flush_lsn,
23577b2e2a31SDavid Chinner 						&iip->ili_item.li_lsn);
23581da177e4SLinus Torvalds 
2359ca30b2a7SChristoph Hellwig 			xfs_buf_attach_iodone(bp, xfs_istale_done,
2360ca30b2a7SChristoph Hellwig 						  &iip->ili_item);
23615b257b4aSDave Chinner 
23625b257b4aSDave Chinner 			if (ip != free_ip)
23631da177e4SLinus Torvalds 				xfs_iunlock(ip, XFS_ILOCK_EXCL);
23641da177e4SLinus Torvalds 		}
23651da177e4SLinus Torvalds 
23661da177e4SLinus Torvalds 		xfs_trans_stale_inode_buf(tp, bp);
23671da177e4SLinus Torvalds 		xfs_trans_binval(tp, bp);
23681da177e4SLinus Torvalds 	}
23691da177e4SLinus Torvalds 
23705017e97dSDave Chinner 	xfs_perag_put(pag);
23712a30f36dSChandra Seetharaman 	return 0;
23721da177e4SLinus Torvalds }
23731da177e4SLinus Torvalds 
23741da177e4SLinus Torvalds /*
23751da177e4SLinus Torvalds  * This is called to return an inode to the inode free list.
23761da177e4SLinus Torvalds  * The inode should already be truncated to 0 length and have
23771da177e4SLinus Torvalds  * no pages associated with it.  This routine also assumes that
23781da177e4SLinus Torvalds  * the inode is already a part of the transaction.
23791da177e4SLinus Torvalds  *
23801da177e4SLinus Torvalds  * The on-disk copy of the inode will have been added to the list
23811da177e4SLinus Torvalds  * of unlinked inodes in the AGI. We need to remove the inode from
23821da177e4SLinus Torvalds  * that list atomically with respect to freeing it here.
23831da177e4SLinus Torvalds  */
23841da177e4SLinus Torvalds int
23851da177e4SLinus Torvalds xfs_ifree(
23861da177e4SLinus Torvalds 	xfs_trans_t	*tp,
23871da177e4SLinus Torvalds 	xfs_inode_t	*ip,
23881da177e4SLinus Torvalds 	xfs_bmap_free_t	*flist)
23891da177e4SLinus Torvalds {
23901da177e4SLinus Torvalds 	int			error;
239109b56604SBrian Foster 	struct xfs_icluster	xic = { 0 };
23921da177e4SLinus Torvalds 
2393579aa9caSChristoph Hellwig 	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL));
23941da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nlink == 0);
23951da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nextents == 0);
23961da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_anextents == 0);
2397ce7ae151SChristoph Hellwig 	ASSERT(ip->i_d.di_size == 0 || !S_ISREG(ip->i_d.di_mode));
23981da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_nblocks == 0);
23991da177e4SLinus Torvalds 
24001da177e4SLinus Torvalds 	/*
24011da177e4SLinus Torvalds 	 * Pull the on-disk inode from the AGI unlinked list.
24021da177e4SLinus Torvalds 	 */
24031da177e4SLinus Torvalds 	error = xfs_iunlink_remove(tp, ip);
24041baaed8fSDave Chinner 	if (error)
24051da177e4SLinus Torvalds 		return error;
24061da177e4SLinus Torvalds 
240709b56604SBrian Foster 	error = xfs_difree(tp, ip->i_ino, flist, &xic);
24081baaed8fSDave Chinner 	if (error)
24091da177e4SLinus Torvalds 		return error;
24101baaed8fSDave Chinner 
24111da177e4SLinus Torvalds 	ip->i_d.di_mode = 0;		/* mark incore inode as free */
24121da177e4SLinus Torvalds 	ip->i_d.di_flags = 0;
24131da177e4SLinus Torvalds 	ip->i_d.di_dmevmask = 0;
24141da177e4SLinus Torvalds 	ip->i_d.di_forkoff = 0;		/* mark the attr fork not in use */
24151da177e4SLinus Torvalds 	ip->i_d.di_format = XFS_DINODE_FMT_EXTENTS;
24161da177e4SLinus Torvalds 	ip->i_d.di_aformat = XFS_DINODE_FMT_EXTENTS;
24171da177e4SLinus Torvalds 	/*
24181da177e4SLinus Torvalds 	 * Bump the generation count so no one will be confused
24191da177e4SLinus Torvalds 	 * by reincarnations of this inode.
24201da177e4SLinus Torvalds 	 */
24211da177e4SLinus Torvalds 	ip->i_d.di_gen++;
24221da177e4SLinus Torvalds 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
24231da177e4SLinus Torvalds 
242409b56604SBrian Foster 	if (xic.deleted)
242509b56604SBrian Foster 		error = xfs_ifree_cluster(ip, tp, &xic);
24261da177e4SLinus Torvalds 
24272a30f36dSChandra Seetharaman 	return error;
24281da177e4SLinus Torvalds }
24291da177e4SLinus Torvalds 
24301da177e4SLinus Torvalds /*
243160ec6783SChristoph Hellwig  * This is called to unpin an inode.  The caller must have the inode locked
243260ec6783SChristoph Hellwig  * in at least shared mode so that the buffer cannot be subsequently pinned
243360ec6783SChristoph Hellwig  * once someone is waiting for it to be unpinned.
24341da177e4SLinus Torvalds  */
243560ec6783SChristoph Hellwig static void
2436f392e631SChristoph Hellwig xfs_iunpin(
243760ec6783SChristoph Hellwig 	struct xfs_inode	*ip)
2438a3f74ffbSDavid Chinner {
2439579aa9caSChristoph Hellwig 	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
2440a3f74ffbSDavid Chinner 
24414aaf15d1SDave Chinner 	trace_xfs_inode_unpin_nowait(ip, _RET_IP_);
24424aaf15d1SDave Chinner 
2443a3f74ffbSDavid Chinner 	/* Give the log a push to start the unpinning I/O */
244460ec6783SChristoph Hellwig 	xfs_log_force_lsn(ip->i_mount, ip->i_itemp->ili_last_lsn, 0);
2445a14a348bSChristoph Hellwig 
2446a3f74ffbSDavid Chinner }
2447a3f74ffbSDavid Chinner 
2448f392e631SChristoph Hellwig static void
2449f392e631SChristoph Hellwig __xfs_iunpin_wait(
2450f392e631SChristoph Hellwig 	struct xfs_inode	*ip)
2451f392e631SChristoph Hellwig {
2452f392e631SChristoph Hellwig 	wait_queue_head_t *wq = bit_waitqueue(&ip->i_flags, __XFS_IPINNED_BIT);
2453f392e631SChristoph Hellwig 	DEFINE_WAIT_BIT(wait, &ip->i_flags, __XFS_IPINNED_BIT);
2454f392e631SChristoph Hellwig 
2455f392e631SChristoph Hellwig 	xfs_iunpin(ip);
2456f392e631SChristoph Hellwig 
2457f392e631SChristoph Hellwig 	do {
2458f392e631SChristoph Hellwig 		prepare_to_wait(wq, &wait.wait, TASK_UNINTERRUPTIBLE);
2459f392e631SChristoph Hellwig 		if (xfs_ipincount(ip))
2460f392e631SChristoph Hellwig 			io_schedule();
2461f392e631SChristoph Hellwig 	} while (xfs_ipincount(ip));
2462f392e631SChristoph Hellwig 	finish_wait(wq, &wait.wait);
2463f392e631SChristoph Hellwig }
2464f392e631SChristoph Hellwig 
2465777df5afSDave Chinner void
24661da177e4SLinus Torvalds xfs_iunpin_wait(
246760ec6783SChristoph Hellwig 	struct xfs_inode	*ip)
24681da177e4SLinus Torvalds {
2469f392e631SChristoph Hellwig 	if (xfs_ipincount(ip))
2470f392e631SChristoph Hellwig 		__xfs_iunpin_wait(ip);
24711da177e4SLinus Torvalds }
24721da177e4SLinus Torvalds 
247327320369SDave Chinner /*
247427320369SDave Chinner  * Removing an inode from the namespace involves removing the directory entry
247527320369SDave Chinner  * and dropping the link count on the inode. Removing the directory entry can
247627320369SDave Chinner  * result in locking an AGF (directory blocks were freed) and removing a link
247727320369SDave Chinner  * count can result in placing the inode on an unlinked list which results in
247827320369SDave Chinner  * locking an AGI.
247927320369SDave Chinner  *
248027320369SDave Chinner  * The big problem here is that we have an ordering constraint on AGF and AGI
248127320369SDave Chinner  * locking - inode allocation locks the AGI, then can allocate a new extent for
248227320369SDave Chinner  * new inodes, locking the AGF after the AGI. Similarly, freeing the inode
248327320369SDave Chinner  * removes the inode from the unlinked list, requiring that we lock the AGI
248427320369SDave Chinner  * first, and then freeing the inode can result in an inode chunk being freed
248527320369SDave Chinner  * and hence freeing disk space requiring that we lock an AGF.
248627320369SDave Chinner  *
248727320369SDave Chinner  * Hence the ordering that is imposed by other parts of the code is AGI before
248827320369SDave Chinner  * AGF. This means we cannot remove the directory entry before we drop the inode
248927320369SDave Chinner  * reference count and put it on the unlinked list as this results in a lock
249027320369SDave Chinner  * order of AGF then AGI, and this can deadlock against inode allocation and
249127320369SDave Chinner  * freeing. Therefore we must drop the link counts before we remove the
249227320369SDave Chinner  * directory entry.
249327320369SDave Chinner  *
249427320369SDave Chinner  * This is still safe from a transactional point of view - it is not until we
249527320369SDave Chinner  * get to xfs_bmap_finish() that we have the possibility of multiple
249627320369SDave Chinner  * transactions in this operation. Hence as long as we remove the directory
249727320369SDave Chinner  * entry and drop the link count in the first transaction of the remove
249827320369SDave Chinner  * operation, there are no transactional constraints on the ordering here.
249927320369SDave Chinner  */
2500c24b5dfaSDave Chinner int
2501c24b5dfaSDave Chinner xfs_remove(
2502c24b5dfaSDave Chinner 	xfs_inode_t             *dp,
2503c24b5dfaSDave Chinner 	struct xfs_name		*name,
2504c24b5dfaSDave Chinner 	xfs_inode_t		*ip)
2505c24b5dfaSDave Chinner {
2506c24b5dfaSDave Chinner 	xfs_mount_t		*mp = dp->i_mount;
2507c24b5dfaSDave Chinner 	xfs_trans_t             *tp = NULL;
2508c24b5dfaSDave Chinner 	int			is_dir = S_ISDIR(ip->i_d.di_mode);
2509c24b5dfaSDave Chinner 	int                     error = 0;
2510c24b5dfaSDave Chinner 	xfs_bmap_free_t         free_list;
2511c24b5dfaSDave Chinner 	xfs_fsblock_t           first_block;
2512c24b5dfaSDave Chinner 	int			committed;
2513c24b5dfaSDave Chinner 	uint			resblks;
2514c24b5dfaSDave Chinner 
2515c24b5dfaSDave Chinner 	trace_xfs_remove(dp, name);
2516c24b5dfaSDave Chinner 
2517c24b5dfaSDave Chinner 	if (XFS_FORCED_SHUTDOWN(mp))
25182451337dSDave Chinner 		return -EIO;
2519c24b5dfaSDave Chinner 
2520c24b5dfaSDave Chinner 	error = xfs_qm_dqattach(dp, 0);
2521c24b5dfaSDave Chinner 	if (error)
2522c24b5dfaSDave Chinner 		goto std_return;
2523c24b5dfaSDave Chinner 
2524c24b5dfaSDave Chinner 	error = xfs_qm_dqattach(ip, 0);
2525c24b5dfaSDave Chinner 	if (error)
2526c24b5dfaSDave Chinner 		goto std_return;
2527c24b5dfaSDave Chinner 
252832296f86SDave Chinner 	if (is_dir)
2529c24b5dfaSDave Chinner 		tp = xfs_trans_alloc(mp, XFS_TRANS_RMDIR);
253032296f86SDave Chinner 	else
2531c24b5dfaSDave Chinner 		tp = xfs_trans_alloc(mp, XFS_TRANS_REMOVE);
2532c24b5dfaSDave Chinner 
2533c24b5dfaSDave Chinner 	/*
2534c24b5dfaSDave Chinner 	 * We try to get the real space reservation first,
2535c24b5dfaSDave Chinner 	 * allowing for directory btree deletion(s) implying
2536c24b5dfaSDave Chinner 	 * possible bmap insert(s).  If we can't get the space
2537c24b5dfaSDave Chinner 	 * reservation then we use 0 instead, and avoid the bmap
2538c24b5dfaSDave Chinner 	 * btree insert(s) in the directory code by, if the bmap
2539c24b5dfaSDave Chinner 	 * insert tries to happen, instead trimming the LAST
2540c24b5dfaSDave Chinner 	 * block from the directory.
2541c24b5dfaSDave Chinner 	 */
2542c24b5dfaSDave Chinner 	resblks = XFS_REMOVE_SPACE_RES(mp);
25433d3c8b52SJie Liu 	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_remove, resblks, 0);
25442451337dSDave Chinner 	if (error == -ENOSPC) {
2545c24b5dfaSDave Chinner 		resblks = 0;
25463d3c8b52SJie Liu 		error = xfs_trans_reserve(tp, &M_RES(mp)->tr_remove, 0, 0);
2547c24b5dfaSDave Chinner 	}
2548c24b5dfaSDave Chinner 	if (error) {
25492451337dSDave Chinner 		ASSERT(error != -ENOSPC);
2550c24b5dfaSDave Chinner 		goto out_trans_cancel;
2551c24b5dfaSDave Chinner 	}
2552c24b5dfaSDave Chinner 
2553*dbad7c99SDave Chinner 	xfs_ilock(dp, XFS_IOLOCK_EXCL | XFS_IOLOCK_PARENT);
2554c24b5dfaSDave Chinner 	xfs_lock_two_inodes(dp, ip, XFS_ILOCK_EXCL);
2555c24b5dfaSDave Chinner 
2556*dbad7c99SDave Chinner 	xfs_trans_ijoin(tp, dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
2557c24b5dfaSDave Chinner 	xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
2558c24b5dfaSDave Chinner 
2559c24b5dfaSDave Chinner 	/*
2560c24b5dfaSDave Chinner 	 * If we're removing a directory perform some additional validation.
2561c24b5dfaSDave Chinner 	 */
2562c24b5dfaSDave Chinner 	if (is_dir) {
2563c24b5dfaSDave Chinner 		ASSERT(ip->i_d.di_nlink >= 2);
2564c24b5dfaSDave Chinner 		if (ip->i_d.di_nlink != 2) {
25652451337dSDave Chinner 			error = -ENOTEMPTY;
2566c24b5dfaSDave Chinner 			goto out_trans_cancel;
2567c24b5dfaSDave Chinner 		}
2568c24b5dfaSDave Chinner 		if (!xfs_dir_isempty(ip)) {
25692451337dSDave Chinner 			error = -ENOTEMPTY;
2570c24b5dfaSDave Chinner 			goto out_trans_cancel;
2571c24b5dfaSDave Chinner 		}
2572c24b5dfaSDave Chinner 
257327320369SDave Chinner 		/* Drop the link from ip's "..".  */
2574c24b5dfaSDave Chinner 		error = xfs_droplink(tp, dp);
2575c24b5dfaSDave Chinner 		if (error)
257627320369SDave Chinner 			goto out_trans_cancel;
2577c24b5dfaSDave Chinner 
257827320369SDave Chinner 		/* Drop the "." link from ip to self.  */
2579c24b5dfaSDave Chinner 		error = xfs_droplink(tp, ip);
2580c24b5dfaSDave Chinner 		if (error)
258127320369SDave Chinner 			goto out_trans_cancel;
2582c24b5dfaSDave Chinner 	} else {
2583c24b5dfaSDave Chinner 		/*
2584c24b5dfaSDave Chinner 		 * When removing a non-directory we need to log the parent
2585c24b5dfaSDave Chinner 		 * inode here.  For a directory this is done implicitly
2586c24b5dfaSDave Chinner 		 * by the xfs_droplink call for the ".." entry.
2587c24b5dfaSDave Chinner 		 */
2588c24b5dfaSDave Chinner 		xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
2589c24b5dfaSDave Chinner 	}
259027320369SDave Chinner 	xfs_trans_ichgtime(tp, dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
2591c24b5dfaSDave Chinner 
259227320369SDave Chinner 	/* Drop the link from dp to ip. */
2593c24b5dfaSDave Chinner 	error = xfs_droplink(tp, ip);
2594c24b5dfaSDave Chinner 	if (error)
259527320369SDave Chinner 		goto out_trans_cancel;
2596c24b5dfaSDave Chinner 
259727320369SDave Chinner 	xfs_bmap_init(&free_list, &first_block);
259827320369SDave Chinner 	error = xfs_dir_removename(tp, dp, name, ip->i_ino,
259927320369SDave Chinner 					&first_block, &free_list, resblks);
260027320369SDave Chinner 	if (error) {
26012451337dSDave Chinner 		ASSERT(error != -ENOENT);
260227320369SDave Chinner 		goto out_bmap_cancel;
260327320369SDave Chinner 	}
260427320369SDave Chinner 
2605c24b5dfaSDave Chinner 	/*
2606c24b5dfaSDave Chinner 	 * If this is a synchronous mount, make sure that the
2607c24b5dfaSDave Chinner 	 * remove transaction goes to disk before returning to
2608c24b5dfaSDave Chinner 	 * the user.
2609c24b5dfaSDave Chinner 	 */
2610c24b5dfaSDave Chinner 	if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC))
2611c24b5dfaSDave Chinner 		xfs_trans_set_sync(tp);
2612c24b5dfaSDave Chinner 
2613c24b5dfaSDave Chinner 	error = xfs_bmap_finish(&tp, &free_list, &committed);
2614c24b5dfaSDave Chinner 	if (error)
2615c24b5dfaSDave Chinner 		goto out_bmap_cancel;
2616c24b5dfaSDave Chinner 
261770393313SChristoph Hellwig 	error = xfs_trans_commit(tp);
2618c24b5dfaSDave Chinner 	if (error)
2619c24b5dfaSDave Chinner 		goto std_return;
2620c24b5dfaSDave Chinner 
26212cd2ef6aSChristoph Hellwig 	if (is_dir && xfs_inode_is_filestream(ip))
2622c24b5dfaSDave Chinner 		xfs_filestream_deassociate(ip);
2623c24b5dfaSDave Chinner 
2624c24b5dfaSDave Chinner 	return 0;
2625c24b5dfaSDave Chinner 
2626c24b5dfaSDave Chinner  out_bmap_cancel:
2627c24b5dfaSDave Chinner 	xfs_bmap_cancel(&free_list);
2628c24b5dfaSDave Chinner  out_trans_cancel:
26294906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
2630c24b5dfaSDave Chinner  std_return:
2631c24b5dfaSDave Chinner 	return error;
2632c24b5dfaSDave Chinner }
2633c24b5dfaSDave Chinner 
2634f6bba201SDave Chinner /*
2635f6bba201SDave Chinner  * Enter all inodes for a rename transaction into a sorted array.
2636f6bba201SDave Chinner  */
263795afcf5cSDave Chinner #define __XFS_SORT_INODES	5
2638f6bba201SDave Chinner STATIC void
2639f6bba201SDave Chinner xfs_sort_for_rename(
264095afcf5cSDave Chinner 	struct xfs_inode	*dp1,	/* in: old (source) directory inode */
264195afcf5cSDave Chinner 	struct xfs_inode	*dp2,	/* in: new (target) directory inode */
264295afcf5cSDave Chinner 	struct xfs_inode	*ip1,	/* in: inode of old entry */
264395afcf5cSDave Chinner 	struct xfs_inode	*ip2,	/* in: inode of new entry */
264495afcf5cSDave Chinner 	struct xfs_inode	*wip,	/* in: whiteout inode */
264595afcf5cSDave Chinner 	struct xfs_inode	**i_tab,/* out: sorted array of inodes */
264695afcf5cSDave Chinner 	int			*num_inodes)  /* in/out: inodes in array */
2647f6bba201SDave Chinner {
2648f6bba201SDave Chinner 	int			i, j;
2649f6bba201SDave Chinner 
265095afcf5cSDave Chinner 	ASSERT(*num_inodes == __XFS_SORT_INODES);
265195afcf5cSDave Chinner 	memset(i_tab, 0, *num_inodes * sizeof(struct xfs_inode *));
265295afcf5cSDave Chinner 
2653f6bba201SDave Chinner 	/*
2654f6bba201SDave Chinner 	 * i_tab contains a list of pointers to inodes.  We initialize
2655f6bba201SDave Chinner 	 * the table here & we'll sort it.  We will then use it to
2656f6bba201SDave Chinner 	 * order the acquisition of the inode locks.
2657f6bba201SDave Chinner 	 *
2658f6bba201SDave Chinner 	 * Note that the table may contain duplicates.  e.g., dp1 == dp2.
2659f6bba201SDave Chinner 	 */
266095afcf5cSDave Chinner 	i = 0;
266195afcf5cSDave Chinner 	i_tab[i++] = dp1;
266295afcf5cSDave Chinner 	i_tab[i++] = dp2;
266395afcf5cSDave Chinner 	i_tab[i++] = ip1;
266495afcf5cSDave Chinner 	if (ip2)
266595afcf5cSDave Chinner 		i_tab[i++] = ip2;
266695afcf5cSDave Chinner 	if (wip)
266795afcf5cSDave Chinner 		i_tab[i++] = wip;
266895afcf5cSDave Chinner 	*num_inodes = i;
2669f6bba201SDave Chinner 
2670f6bba201SDave Chinner 	/*
2671f6bba201SDave Chinner 	 * Sort the elements via bubble sort.  (Remember, there are at
267295afcf5cSDave Chinner 	 * most 5 elements to sort, so this is adequate.)
2673f6bba201SDave Chinner 	 */
2674f6bba201SDave Chinner 	for (i = 0; i < *num_inodes; i++) {
2675f6bba201SDave Chinner 		for (j = 1; j < *num_inodes; j++) {
2676f6bba201SDave Chinner 			if (i_tab[j]->i_ino < i_tab[j-1]->i_ino) {
267795afcf5cSDave Chinner 				struct xfs_inode *temp = i_tab[j];
2678f6bba201SDave Chinner 				i_tab[j] = i_tab[j-1];
2679f6bba201SDave Chinner 				i_tab[j-1] = temp;
2680f6bba201SDave Chinner 			}
2681f6bba201SDave Chinner 		}
2682f6bba201SDave Chinner 	}
2683f6bba201SDave Chinner }
2684f6bba201SDave Chinner 
2685310606b0SDave Chinner static int
2686310606b0SDave Chinner xfs_finish_rename(
2687310606b0SDave Chinner 	struct xfs_trans	*tp,
2688310606b0SDave Chinner 	struct xfs_bmap_free	*free_list)
2689310606b0SDave Chinner {
2690310606b0SDave Chinner 	int			committed = 0;
2691310606b0SDave Chinner 	int			error;
2692310606b0SDave Chinner 
2693310606b0SDave Chinner 	/*
2694310606b0SDave Chinner 	 * If this is a synchronous mount, make sure that the rename transaction
2695310606b0SDave Chinner 	 * goes to disk before returning to the user.
2696310606b0SDave Chinner 	 */
2697310606b0SDave Chinner 	if (tp->t_mountp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC))
2698310606b0SDave Chinner 		xfs_trans_set_sync(tp);
2699310606b0SDave Chinner 
2700310606b0SDave Chinner 	error = xfs_bmap_finish(&tp, free_list, &committed);
2701310606b0SDave Chinner 	if (error) {
2702310606b0SDave Chinner 		xfs_bmap_cancel(free_list);
27034906e215SChristoph Hellwig 		xfs_trans_cancel(tp);
2704310606b0SDave Chinner 		return error;
2705310606b0SDave Chinner 	}
2706310606b0SDave Chinner 
270770393313SChristoph Hellwig 	return xfs_trans_commit(tp);
2708310606b0SDave Chinner }
2709310606b0SDave Chinner 
2710f6bba201SDave Chinner /*
2711d31a1825SCarlos Maiolino  * xfs_cross_rename()
2712d31a1825SCarlos Maiolino  *
2713d31a1825SCarlos Maiolino  * responsible for handling RENAME_EXCHANGE flag in renameat2() sytemcall
2714d31a1825SCarlos Maiolino  */
2715d31a1825SCarlos Maiolino STATIC int
2716d31a1825SCarlos Maiolino xfs_cross_rename(
2717d31a1825SCarlos Maiolino 	struct xfs_trans	*tp,
2718d31a1825SCarlos Maiolino 	struct xfs_inode	*dp1,
2719d31a1825SCarlos Maiolino 	struct xfs_name		*name1,
2720d31a1825SCarlos Maiolino 	struct xfs_inode	*ip1,
2721d31a1825SCarlos Maiolino 	struct xfs_inode	*dp2,
2722d31a1825SCarlos Maiolino 	struct xfs_name		*name2,
2723d31a1825SCarlos Maiolino 	struct xfs_inode	*ip2,
2724d31a1825SCarlos Maiolino 	struct xfs_bmap_free	*free_list,
2725d31a1825SCarlos Maiolino 	xfs_fsblock_t		*first_block,
2726d31a1825SCarlos Maiolino 	int			spaceres)
2727d31a1825SCarlos Maiolino {
2728d31a1825SCarlos Maiolino 	int		error = 0;
2729d31a1825SCarlos Maiolino 	int		ip1_flags = 0;
2730d31a1825SCarlos Maiolino 	int		ip2_flags = 0;
2731d31a1825SCarlos Maiolino 	int		dp2_flags = 0;
2732d31a1825SCarlos Maiolino 
2733d31a1825SCarlos Maiolino 	/* Swap inode number for dirent in first parent */
2734d31a1825SCarlos Maiolino 	error = xfs_dir_replace(tp, dp1, name1,
2735d31a1825SCarlos Maiolino 				ip2->i_ino,
2736d31a1825SCarlos Maiolino 				first_block, free_list, spaceres);
2737d31a1825SCarlos Maiolino 	if (error)
2738eeacd321SDave Chinner 		goto out_trans_abort;
2739d31a1825SCarlos Maiolino 
2740d31a1825SCarlos Maiolino 	/* Swap inode number for dirent in second parent */
2741d31a1825SCarlos Maiolino 	error = xfs_dir_replace(tp, dp2, name2,
2742d31a1825SCarlos Maiolino 				ip1->i_ino,
2743d31a1825SCarlos Maiolino 				first_block, free_list, spaceres);
2744d31a1825SCarlos Maiolino 	if (error)
2745eeacd321SDave Chinner 		goto out_trans_abort;
2746d31a1825SCarlos Maiolino 
2747d31a1825SCarlos Maiolino 	/*
2748d31a1825SCarlos Maiolino 	 * If we're renaming one or more directories across different parents,
2749d31a1825SCarlos Maiolino 	 * update the respective ".." entries (and link counts) to match the new
2750d31a1825SCarlos Maiolino 	 * parents.
2751d31a1825SCarlos Maiolino 	 */
2752d31a1825SCarlos Maiolino 	if (dp1 != dp2) {
2753d31a1825SCarlos Maiolino 		dp2_flags = XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG;
2754d31a1825SCarlos Maiolino 
2755d31a1825SCarlos Maiolino 		if (S_ISDIR(ip2->i_d.di_mode)) {
2756d31a1825SCarlos Maiolino 			error = xfs_dir_replace(tp, ip2, &xfs_name_dotdot,
2757d31a1825SCarlos Maiolino 						dp1->i_ino, first_block,
2758d31a1825SCarlos Maiolino 						free_list, spaceres);
2759d31a1825SCarlos Maiolino 			if (error)
2760eeacd321SDave Chinner 				goto out_trans_abort;
2761d31a1825SCarlos Maiolino 
2762d31a1825SCarlos Maiolino 			/* transfer ip2 ".." reference to dp1 */
2763d31a1825SCarlos Maiolino 			if (!S_ISDIR(ip1->i_d.di_mode)) {
2764d31a1825SCarlos Maiolino 				error = xfs_droplink(tp, dp2);
2765d31a1825SCarlos Maiolino 				if (error)
2766eeacd321SDave Chinner 					goto out_trans_abort;
2767d31a1825SCarlos Maiolino 				error = xfs_bumplink(tp, dp1);
2768d31a1825SCarlos Maiolino 				if (error)
2769eeacd321SDave Chinner 					goto out_trans_abort;
2770d31a1825SCarlos Maiolino 			}
2771d31a1825SCarlos Maiolino 
2772d31a1825SCarlos Maiolino 			/*
2773d31a1825SCarlos Maiolino 			 * Although ip1 isn't changed here, userspace needs
2774d31a1825SCarlos Maiolino 			 * to be warned about the change, so that applications
2775d31a1825SCarlos Maiolino 			 * relying on it (like backup ones), will properly
2776d31a1825SCarlos Maiolino 			 * notify the change
2777d31a1825SCarlos Maiolino 			 */
2778d31a1825SCarlos Maiolino 			ip1_flags |= XFS_ICHGTIME_CHG;
2779d31a1825SCarlos Maiolino 			ip2_flags |= XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG;
2780d31a1825SCarlos Maiolino 		}
2781d31a1825SCarlos Maiolino 
2782d31a1825SCarlos Maiolino 		if (S_ISDIR(ip1->i_d.di_mode)) {
2783d31a1825SCarlos Maiolino 			error = xfs_dir_replace(tp, ip1, &xfs_name_dotdot,
2784d31a1825SCarlos Maiolino 						dp2->i_ino, first_block,
2785d31a1825SCarlos Maiolino 						free_list, spaceres);
2786d31a1825SCarlos Maiolino 			if (error)
2787eeacd321SDave Chinner 				goto out_trans_abort;
2788d31a1825SCarlos Maiolino 
2789d31a1825SCarlos Maiolino 			/* transfer ip1 ".." reference to dp2 */
2790d31a1825SCarlos Maiolino 			if (!S_ISDIR(ip2->i_d.di_mode)) {
2791d31a1825SCarlos Maiolino 				error = xfs_droplink(tp, dp1);
2792d31a1825SCarlos Maiolino 				if (error)
2793eeacd321SDave Chinner 					goto out_trans_abort;
2794d31a1825SCarlos Maiolino 				error = xfs_bumplink(tp, dp2);
2795d31a1825SCarlos Maiolino 				if (error)
2796eeacd321SDave Chinner 					goto out_trans_abort;
2797d31a1825SCarlos Maiolino 			}
2798d31a1825SCarlos Maiolino 
2799d31a1825SCarlos Maiolino 			/*
2800d31a1825SCarlos Maiolino 			 * Although ip2 isn't changed here, userspace needs
2801d31a1825SCarlos Maiolino 			 * to be warned about the change, so that applications
2802d31a1825SCarlos Maiolino 			 * relying on it (like backup ones), will properly
2803d31a1825SCarlos Maiolino 			 * notify the change
2804d31a1825SCarlos Maiolino 			 */
2805d31a1825SCarlos Maiolino 			ip1_flags |= XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG;
2806d31a1825SCarlos Maiolino 			ip2_flags |= XFS_ICHGTIME_CHG;
2807d31a1825SCarlos Maiolino 		}
2808d31a1825SCarlos Maiolino 	}
2809d31a1825SCarlos Maiolino 
2810d31a1825SCarlos Maiolino 	if (ip1_flags) {
2811d31a1825SCarlos Maiolino 		xfs_trans_ichgtime(tp, ip1, ip1_flags);
2812d31a1825SCarlos Maiolino 		xfs_trans_log_inode(tp, ip1, XFS_ILOG_CORE);
2813d31a1825SCarlos Maiolino 	}
2814d31a1825SCarlos Maiolino 	if (ip2_flags) {
2815d31a1825SCarlos Maiolino 		xfs_trans_ichgtime(tp, ip2, ip2_flags);
2816d31a1825SCarlos Maiolino 		xfs_trans_log_inode(tp, ip2, XFS_ILOG_CORE);
2817d31a1825SCarlos Maiolino 	}
2818d31a1825SCarlos Maiolino 	if (dp2_flags) {
2819d31a1825SCarlos Maiolino 		xfs_trans_ichgtime(tp, dp2, dp2_flags);
2820d31a1825SCarlos Maiolino 		xfs_trans_log_inode(tp, dp2, XFS_ILOG_CORE);
2821d31a1825SCarlos Maiolino 	}
2822d31a1825SCarlos Maiolino 	xfs_trans_ichgtime(tp, dp1, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
2823d31a1825SCarlos Maiolino 	xfs_trans_log_inode(tp, dp1, XFS_ILOG_CORE);
2824eeacd321SDave Chinner 	return xfs_finish_rename(tp, free_list);
2825eeacd321SDave Chinner 
2826eeacd321SDave Chinner out_trans_abort:
2827eeacd321SDave Chinner 	xfs_bmap_cancel(free_list);
28284906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
2829d31a1825SCarlos Maiolino 	return error;
2830d31a1825SCarlos Maiolino }
2831d31a1825SCarlos Maiolino 
2832d31a1825SCarlos Maiolino /*
28337dcf5c3eSDave Chinner  * xfs_rename_alloc_whiteout()
28347dcf5c3eSDave Chinner  *
28357dcf5c3eSDave Chinner  * Return a referenced, unlinked, unlocked inode that that can be used as a
28367dcf5c3eSDave Chinner  * whiteout in a rename transaction. We use a tmpfile inode here so that if we
28377dcf5c3eSDave Chinner  * crash between allocating the inode and linking it into the rename transaction
28387dcf5c3eSDave Chinner  * recovery will free the inode and we won't leak it.
28397dcf5c3eSDave Chinner  */
28407dcf5c3eSDave Chinner static int
28417dcf5c3eSDave Chinner xfs_rename_alloc_whiteout(
28427dcf5c3eSDave Chinner 	struct xfs_inode	*dp,
28437dcf5c3eSDave Chinner 	struct xfs_inode	**wip)
28447dcf5c3eSDave Chinner {
28457dcf5c3eSDave Chinner 	struct xfs_inode	*tmpfile;
28467dcf5c3eSDave Chinner 	int			error;
28477dcf5c3eSDave Chinner 
28487dcf5c3eSDave Chinner 	error = xfs_create_tmpfile(dp, NULL, S_IFCHR | WHITEOUT_MODE, &tmpfile);
28497dcf5c3eSDave Chinner 	if (error)
28507dcf5c3eSDave Chinner 		return error;
28517dcf5c3eSDave Chinner 
285222419ac9SBrian Foster 	/*
285322419ac9SBrian Foster 	 * Prepare the tmpfile inode as if it were created through the VFS.
285422419ac9SBrian Foster 	 * Otherwise, the link increment paths will complain about nlink 0->1.
285522419ac9SBrian Foster 	 * Drop the link count as done by d_tmpfile(), complete the inode setup
285622419ac9SBrian Foster 	 * and flag it as linkable.
285722419ac9SBrian Foster 	 */
285822419ac9SBrian Foster 	drop_nlink(VFS_I(tmpfile));
28597dcf5c3eSDave Chinner 	xfs_finish_inode_setup(tmpfile);
28607dcf5c3eSDave Chinner 	VFS_I(tmpfile)->i_state |= I_LINKABLE;
28617dcf5c3eSDave Chinner 
28627dcf5c3eSDave Chinner 	*wip = tmpfile;
28637dcf5c3eSDave Chinner 	return 0;
28647dcf5c3eSDave Chinner }
28657dcf5c3eSDave Chinner 
28667dcf5c3eSDave Chinner /*
2867f6bba201SDave Chinner  * xfs_rename
2868f6bba201SDave Chinner  */
2869f6bba201SDave Chinner int
2870f6bba201SDave Chinner xfs_rename(
28717dcf5c3eSDave Chinner 	struct xfs_inode	*src_dp,
2872f6bba201SDave Chinner 	struct xfs_name		*src_name,
28737dcf5c3eSDave Chinner 	struct xfs_inode	*src_ip,
28747dcf5c3eSDave Chinner 	struct xfs_inode	*target_dp,
2875f6bba201SDave Chinner 	struct xfs_name		*target_name,
28767dcf5c3eSDave Chinner 	struct xfs_inode	*target_ip,
2877d31a1825SCarlos Maiolino 	unsigned int		flags)
2878f6bba201SDave Chinner {
28797dcf5c3eSDave Chinner 	struct xfs_mount	*mp = src_dp->i_mount;
28807dcf5c3eSDave Chinner 	struct xfs_trans	*tp;
28817dcf5c3eSDave Chinner 	struct xfs_bmap_free	free_list;
2882f6bba201SDave Chinner 	xfs_fsblock_t		first_block;
28837dcf5c3eSDave Chinner 	struct xfs_inode	*wip = NULL;		/* whiteout inode */
28847dcf5c3eSDave Chinner 	struct xfs_inode	*inodes[__XFS_SORT_INODES];
288595afcf5cSDave Chinner 	int			num_inodes = __XFS_SORT_INODES;
28862b93681fSDave Chinner 	bool			new_parent = (src_dp != target_dp);
28872b93681fSDave Chinner 	bool			src_is_directory = S_ISDIR(src_ip->i_d.di_mode);
2888f6bba201SDave Chinner 	int			spaceres;
28897dcf5c3eSDave Chinner 	int			error;
2890f6bba201SDave Chinner 
2891f6bba201SDave Chinner 	trace_xfs_rename(src_dp, target_dp, src_name, target_name);
2892f6bba201SDave Chinner 
2893eeacd321SDave Chinner 	if ((flags & RENAME_EXCHANGE) && !target_ip)
2894eeacd321SDave Chinner 		return -EINVAL;
2895f6bba201SDave Chinner 
28967dcf5c3eSDave Chinner 	/*
28977dcf5c3eSDave Chinner 	 * If we are doing a whiteout operation, allocate the whiteout inode
28987dcf5c3eSDave Chinner 	 * we will be placing at the target and ensure the type is set
28997dcf5c3eSDave Chinner 	 * appropriately.
29007dcf5c3eSDave Chinner 	 */
29017dcf5c3eSDave Chinner 	if (flags & RENAME_WHITEOUT) {
29027dcf5c3eSDave Chinner 		ASSERT(!(flags & (RENAME_NOREPLACE | RENAME_EXCHANGE)));
29037dcf5c3eSDave Chinner 		error = xfs_rename_alloc_whiteout(target_dp, &wip);
29047dcf5c3eSDave Chinner 		if (error)
29057dcf5c3eSDave Chinner 			return error;
2906f6bba201SDave Chinner 
29077dcf5c3eSDave Chinner 		/* setup target dirent info as whiteout */
29087dcf5c3eSDave Chinner 		src_name->type = XFS_DIR3_FT_CHRDEV;
29097dcf5c3eSDave Chinner 	}
29107dcf5c3eSDave Chinner 
29117dcf5c3eSDave Chinner 	xfs_sort_for_rename(src_dp, target_dp, src_ip, target_ip, wip,
2912f6bba201SDave Chinner 				inodes, &num_inodes);
2913f6bba201SDave Chinner 
2914f6bba201SDave Chinner 	tp = xfs_trans_alloc(mp, XFS_TRANS_RENAME);
2915f6bba201SDave Chinner 	spaceres = XFS_RENAME_SPACE_RES(mp, target_name->len);
29163d3c8b52SJie Liu 	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_rename, spaceres, 0);
29172451337dSDave Chinner 	if (error == -ENOSPC) {
2918f6bba201SDave Chinner 		spaceres = 0;
29193d3c8b52SJie Liu 		error = xfs_trans_reserve(tp, &M_RES(mp)->tr_rename, 0, 0);
2920f6bba201SDave Chinner 	}
2921445883e8SDave Chinner 	if (error)
2922445883e8SDave Chinner 		goto out_trans_cancel;
2923f6bba201SDave Chinner 
2924f6bba201SDave Chinner 	/*
2925f6bba201SDave Chinner 	 * Attach the dquots to the inodes
2926f6bba201SDave Chinner 	 */
2927f6bba201SDave Chinner 	error = xfs_qm_vop_rename_dqattach(inodes);
2928445883e8SDave Chinner 	if (error)
2929445883e8SDave Chinner 		goto out_trans_cancel;
2930f6bba201SDave Chinner 
2931f6bba201SDave Chinner 	/*
2932f6bba201SDave Chinner 	 * Lock all the participating inodes. Depending upon whether
2933f6bba201SDave Chinner 	 * the target_name exists in the target directory, and
2934f6bba201SDave Chinner 	 * whether the target directory is the same as the source
2935f6bba201SDave Chinner 	 * directory, we can lock from 2 to 4 inodes.
2936f6bba201SDave Chinner 	 */
2937*dbad7c99SDave Chinner 	if (!new_parent)
2938*dbad7c99SDave Chinner 		xfs_ilock(src_dp, XFS_IOLOCK_EXCL | XFS_IOLOCK_PARENT);
2939*dbad7c99SDave Chinner 	else
2940*dbad7c99SDave Chinner 		xfs_lock_two_inodes(src_dp, target_dp,
2941*dbad7c99SDave Chinner 				    XFS_IOLOCK_EXCL | XFS_IOLOCK_PARENT);
2942*dbad7c99SDave Chinner 
2943f6bba201SDave Chinner 	xfs_lock_inodes(inodes, num_inodes, XFS_ILOCK_EXCL);
2944f6bba201SDave Chinner 
2945f6bba201SDave Chinner 	/*
2946f6bba201SDave Chinner 	 * Join all the inodes to the transaction. From this point on,
2947f6bba201SDave Chinner 	 * we can rely on either trans_commit or trans_cancel to unlock
2948f6bba201SDave Chinner 	 * them.
2949f6bba201SDave Chinner 	 */
2950*dbad7c99SDave Chinner 	xfs_trans_ijoin(tp, src_dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
2951f6bba201SDave Chinner 	if (new_parent)
2952*dbad7c99SDave Chinner 		xfs_trans_ijoin(tp, target_dp, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
2953f6bba201SDave Chinner 	xfs_trans_ijoin(tp, src_ip, XFS_ILOCK_EXCL);
2954f6bba201SDave Chinner 	if (target_ip)
2955f6bba201SDave Chinner 		xfs_trans_ijoin(tp, target_ip, XFS_ILOCK_EXCL);
29567dcf5c3eSDave Chinner 	if (wip)
29577dcf5c3eSDave Chinner 		xfs_trans_ijoin(tp, wip, XFS_ILOCK_EXCL);
2958f6bba201SDave Chinner 
2959f6bba201SDave Chinner 	/*
2960f6bba201SDave Chinner 	 * If we are using project inheritance, we only allow renames
2961f6bba201SDave Chinner 	 * into our tree when the project IDs are the same; else the
2962f6bba201SDave Chinner 	 * tree quota mechanism would be circumvented.
2963f6bba201SDave Chinner 	 */
2964f6bba201SDave Chinner 	if (unlikely((target_dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
2965f6bba201SDave Chinner 		     (xfs_get_projid(target_dp) != xfs_get_projid(src_ip)))) {
29662451337dSDave Chinner 		error = -EXDEV;
2967445883e8SDave Chinner 		goto out_trans_cancel;
2968f6bba201SDave Chinner 	}
2969f6bba201SDave Chinner 
2970445883e8SDave Chinner 	xfs_bmap_init(&free_list, &first_block);
2971445883e8SDave Chinner 
2972eeacd321SDave Chinner 	/* RENAME_EXCHANGE is unique from here on. */
2973eeacd321SDave Chinner 	if (flags & RENAME_EXCHANGE)
2974eeacd321SDave Chinner 		return xfs_cross_rename(tp, src_dp, src_name, src_ip,
2975d31a1825SCarlos Maiolino 					target_dp, target_name, target_ip,
2976d31a1825SCarlos Maiolino 					&free_list, &first_block, spaceres);
2977d31a1825SCarlos Maiolino 
2978d31a1825SCarlos Maiolino 	/*
2979f6bba201SDave Chinner 	 * Set up the target.
2980f6bba201SDave Chinner 	 */
2981f6bba201SDave Chinner 	if (target_ip == NULL) {
2982f6bba201SDave Chinner 		/*
2983f6bba201SDave Chinner 		 * If there's no space reservation, check the entry will
2984f6bba201SDave Chinner 		 * fit before actually inserting it.
2985f6bba201SDave Chinner 		 */
298694f3cad5SEric Sandeen 		if (!spaceres) {
298794f3cad5SEric Sandeen 			error = xfs_dir_canenter(tp, target_dp, target_name);
2988f6bba201SDave Chinner 			if (error)
2989445883e8SDave Chinner 				goto out_trans_cancel;
299094f3cad5SEric Sandeen 		}
2991f6bba201SDave Chinner 		/*
2992f6bba201SDave Chinner 		 * If target does not exist and the rename crosses
2993f6bba201SDave Chinner 		 * directories, adjust the target directory link count
2994f6bba201SDave Chinner 		 * to account for the ".." reference from the new entry.
2995f6bba201SDave Chinner 		 */
2996f6bba201SDave Chinner 		error = xfs_dir_createname(tp, target_dp, target_name,
2997f6bba201SDave Chinner 						src_ip->i_ino, &first_block,
2998f6bba201SDave Chinner 						&free_list, spaceres);
2999f6bba201SDave Chinner 		if (error)
30004906e215SChristoph Hellwig 			goto out_bmap_cancel;
3001f6bba201SDave Chinner 
3002f6bba201SDave Chinner 		xfs_trans_ichgtime(tp, target_dp,
3003f6bba201SDave Chinner 					XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
3004f6bba201SDave Chinner 
3005f6bba201SDave Chinner 		if (new_parent && src_is_directory) {
3006f6bba201SDave Chinner 			error = xfs_bumplink(tp, target_dp);
3007f6bba201SDave Chinner 			if (error)
30084906e215SChristoph Hellwig 				goto out_bmap_cancel;
3009f6bba201SDave Chinner 		}
3010f6bba201SDave Chinner 	} else { /* target_ip != NULL */
3011f6bba201SDave Chinner 		/*
3012f6bba201SDave Chinner 		 * If target exists and it's a directory, check that both
3013f6bba201SDave Chinner 		 * target and source are directories and that target can be
3014f6bba201SDave Chinner 		 * destroyed, or that neither is a directory.
3015f6bba201SDave Chinner 		 */
3016f6bba201SDave Chinner 		if (S_ISDIR(target_ip->i_d.di_mode)) {
3017f6bba201SDave Chinner 			/*
3018f6bba201SDave Chinner 			 * Make sure target dir is empty.
3019f6bba201SDave Chinner 			 */
3020f6bba201SDave Chinner 			if (!(xfs_dir_isempty(target_ip)) ||
3021f6bba201SDave Chinner 			    (target_ip->i_d.di_nlink > 2)) {
30222451337dSDave Chinner 				error = -EEXIST;
3023445883e8SDave Chinner 				goto out_trans_cancel;
3024f6bba201SDave Chinner 			}
3025f6bba201SDave Chinner 		}
3026f6bba201SDave Chinner 
3027f6bba201SDave Chinner 		/*
3028f6bba201SDave Chinner 		 * Link the source inode under the target name.
3029f6bba201SDave Chinner 		 * If the source inode is a directory and we are moving
3030f6bba201SDave Chinner 		 * it across directories, its ".." entry will be
3031f6bba201SDave Chinner 		 * inconsistent until we replace that down below.
3032f6bba201SDave Chinner 		 *
3033f6bba201SDave Chinner 		 * In case there is already an entry with the same
3034f6bba201SDave Chinner 		 * name at the destination directory, remove it first.
3035f6bba201SDave Chinner 		 */
3036f6bba201SDave Chinner 		error = xfs_dir_replace(tp, target_dp, target_name,
3037f6bba201SDave Chinner 					src_ip->i_ino,
3038f6bba201SDave Chinner 					&first_block, &free_list, spaceres);
3039f6bba201SDave Chinner 		if (error)
30404906e215SChristoph Hellwig 			goto out_bmap_cancel;
3041f6bba201SDave Chinner 
3042f6bba201SDave Chinner 		xfs_trans_ichgtime(tp, target_dp,
3043f6bba201SDave Chinner 					XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
3044f6bba201SDave Chinner 
3045f6bba201SDave Chinner 		/*
3046f6bba201SDave Chinner 		 * Decrement the link count on the target since the target
3047f6bba201SDave Chinner 		 * dir no longer points to it.
3048f6bba201SDave Chinner 		 */
3049f6bba201SDave Chinner 		error = xfs_droplink(tp, target_ip);
3050f6bba201SDave Chinner 		if (error)
30514906e215SChristoph Hellwig 			goto out_bmap_cancel;
3052f6bba201SDave Chinner 
3053f6bba201SDave Chinner 		if (src_is_directory) {
3054f6bba201SDave Chinner 			/*
3055f6bba201SDave Chinner 			 * Drop the link from the old "." entry.
3056f6bba201SDave Chinner 			 */
3057f6bba201SDave Chinner 			error = xfs_droplink(tp, target_ip);
3058f6bba201SDave Chinner 			if (error)
30594906e215SChristoph Hellwig 				goto out_bmap_cancel;
3060f6bba201SDave Chinner 		}
3061f6bba201SDave Chinner 	} /* target_ip != NULL */
3062f6bba201SDave Chinner 
3063f6bba201SDave Chinner 	/*
3064f6bba201SDave Chinner 	 * Remove the source.
3065f6bba201SDave Chinner 	 */
3066f6bba201SDave Chinner 	if (new_parent && src_is_directory) {
3067f6bba201SDave Chinner 		/*
3068f6bba201SDave Chinner 		 * Rewrite the ".." entry to point to the new
3069f6bba201SDave Chinner 		 * directory.
3070f6bba201SDave Chinner 		 */
3071f6bba201SDave Chinner 		error = xfs_dir_replace(tp, src_ip, &xfs_name_dotdot,
3072f6bba201SDave Chinner 					target_dp->i_ino,
3073f6bba201SDave Chinner 					&first_block, &free_list, spaceres);
30742451337dSDave Chinner 		ASSERT(error != -EEXIST);
3075f6bba201SDave Chinner 		if (error)
30764906e215SChristoph Hellwig 			goto out_bmap_cancel;
3077f6bba201SDave Chinner 	}
3078f6bba201SDave Chinner 
3079f6bba201SDave Chinner 	/*
3080f6bba201SDave Chinner 	 * We always want to hit the ctime on the source inode.
3081f6bba201SDave Chinner 	 *
3082f6bba201SDave Chinner 	 * This isn't strictly required by the standards since the source
3083f6bba201SDave Chinner 	 * inode isn't really being changed, but old unix file systems did
3084f6bba201SDave Chinner 	 * it and some incremental backup programs won't work without it.
3085f6bba201SDave Chinner 	 */
3086f6bba201SDave Chinner 	xfs_trans_ichgtime(tp, src_ip, XFS_ICHGTIME_CHG);
3087f6bba201SDave Chinner 	xfs_trans_log_inode(tp, src_ip, XFS_ILOG_CORE);
3088f6bba201SDave Chinner 
3089f6bba201SDave Chinner 	/*
3090f6bba201SDave Chinner 	 * Adjust the link count on src_dp.  This is necessary when
3091f6bba201SDave Chinner 	 * renaming a directory, either within one parent when
3092f6bba201SDave Chinner 	 * the target existed, or across two parent directories.
3093f6bba201SDave Chinner 	 */
3094f6bba201SDave Chinner 	if (src_is_directory && (new_parent || target_ip != NULL)) {
3095f6bba201SDave Chinner 
3096f6bba201SDave Chinner 		/*
3097f6bba201SDave Chinner 		 * Decrement link count on src_directory since the
3098f6bba201SDave Chinner 		 * entry that's moved no longer points to it.
3099f6bba201SDave Chinner 		 */
3100f6bba201SDave Chinner 		error = xfs_droplink(tp, src_dp);
3101f6bba201SDave Chinner 		if (error)
31024906e215SChristoph Hellwig 			goto out_bmap_cancel;
3103f6bba201SDave Chinner 	}
3104f6bba201SDave Chinner 
31057dcf5c3eSDave Chinner 	/*
31067dcf5c3eSDave Chinner 	 * For whiteouts, we only need to update the source dirent with the
31077dcf5c3eSDave Chinner 	 * inode number of the whiteout inode rather than removing it
31087dcf5c3eSDave Chinner 	 * altogether.
31097dcf5c3eSDave Chinner 	 */
31107dcf5c3eSDave Chinner 	if (wip) {
31117dcf5c3eSDave Chinner 		error = xfs_dir_replace(tp, src_dp, src_name, wip->i_ino,
31127dcf5c3eSDave Chinner 					&first_block, &free_list, spaceres);
31137dcf5c3eSDave Chinner 	} else
3114f6bba201SDave Chinner 		error = xfs_dir_removename(tp, src_dp, src_name, src_ip->i_ino,
3115f6bba201SDave Chinner 					   &first_block, &free_list, spaceres);
3116f6bba201SDave Chinner 	if (error)
31174906e215SChristoph Hellwig 		goto out_bmap_cancel;
3118f6bba201SDave Chinner 
31197dcf5c3eSDave Chinner 	/*
31207dcf5c3eSDave Chinner 	 * For whiteouts, we need to bump the link count on the whiteout inode.
31217dcf5c3eSDave Chinner 	 * This means that failures all the way up to this point leave the inode
31227dcf5c3eSDave Chinner 	 * on the unlinked list and so cleanup is a simple matter of dropping
31237dcf5c3eSDave Chinner 	 * the remaining reference to it. If we fail here after bumping the link
31247dcf5c3eSDave Chinner 	 * count, we're shutting down the filesystem so we'll never see the
31257dcf5c3eSDave Chinner 	 * intermediate state on disk.
31267dcf5c3eSDave Chinner 	 */
31277dcf5c3eSDave Chinner 	if (wip) {
312822419ac9SBrian Foster 		ASSERT(VFS_I(wip)->i_nlink == 0 && wip->i_d.di_nlink == 0);
31297dcf5c3eSDave Chinner 		error = xfs_bumplink(tp, wip);
31307dcf5c3eSDave Chinner 		if (error)
31314906e215SChristoph Hellwig 			goto out_bmap_cancel;
31327dcf5c3eSDave Chinner 		error = xfs_iunlink_remove(tp, wip);
31337dcf5c3eSDave Chinner 		if (error)
31344906e215SChristoph Hellwig 			goto out_bmap_cancel;
31357dcf5c3eSDave Chinner 		xfs_trans_log_inode(tp, wip, XFS_ILOG_CORE);
31367dcf5c3eSDave Chinner 
31377dcf5c3eSDave Chinner 		/*
31387dcf5c3eSDave Chinner 		 * Now we have a real link, clear the "I'm a tmpfile" state
31397dcf5c3eSDave Chinner 		 * flag from the inode so it doesn't accidentally get misused in
31407dcf5c3eSDave Chinner 		 * future.
31417dcf5c3eSDave Chinner 		 */
31427dcf5c3eSDave Chinner 		VFS_I(wip)->i_state &= ~I_LINKABLE;
31437dcf5c3eSDave Chinner 	}
3144f6bba201SDave Chinner 
3145f6bba201SDave Chinner 	xfs_trans_ichgtime(tp, src_dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
3146f6bba201SDave Chinner 	xfs_trans_log_inode(tp, src_dp, XFS_ILOG_CORE);
3147f6bba201SDave Chinner 	if (new_parent)
3148f6bba201SDave Chinner 		xfs_trans_log_inode(tp, target_dp, XFS_ILOG_CORE);
3149f6bba201SDave Chinner 
31507dcf5c3eSDave Chinner 	error = xfs_finish_rename(tp, &free_list);
31517dcf5c3eSDave Chinner 	if (wip)
31527dcf5c3eSDave Chinner 		IRELE(wip);
31537dcf5c3eSDave Chinner 	return error;
3154f6bba201SDave Chinner 
3155445883e8SDave Chinner out_bmap_cancel:
3156f6bba201SDave Chinner 	xfs_bmap_cancel(&free_list);
3157445883e8SDave Chinner out_trans_cancel:
31584906e215SChristoph Hellwig 	xfs_trans_cancel(tp);
31597dcf5c3eSDave Chinner 	if (wip)
31607dcf5c3eSDave Chinner 		IRELE(wip);
3161f6bba201SDave Chinner 	return error;
3162f6bba201SDave Chinner }
3163f6bba201SDave Chinner 
3164bad55843SDavid Chinner STATIC int
3165bad55843SDavid Chinner xfs_iflush_cluster(
3166bad55843SDavid Chinner 	xfs_inode_t	*ip,
3167bad55843SDavid Chinner 	xfs_buf_t	*bp)
3168bad55843SDavid Chinner {
3169bad55843SDavid Chinner 	xfs_mount_t		*mp = ip->i_mount;
31705017e97dSDave Chinner 	struct xfs_perag	*pag;
3171bad55843SDavid Chinner 	unsigned long		first_index, mask;
3172c8f5f12eSDavid Chinner 	unsigned long		inodes_per_cluster;
3173bad55843SDavid Chinner 	int			ilist_size;
3174bad55843SDavid Chinner 	xfs_inode_t		**ilist;
3175bad55843SDavid Chinner 	xfs_inode_t		*iq;
3176bad55843SDavid Chinner 	int			nr_found;
3177bad55843SDavid Chinner 	int			clcount = 0;
3178bad55843SDavid Chinner 	int			bufwasdelwri;
3179bad55843SDavid Chinner 	int			i;
3180bad55843SDavid Chinner 
31815017e97dSDave Chinner 	pag = xfs_perag_get(mp, XFS_INO_TO_AGNO(mp, ip->i_ino));
3182bad55843SDavid Chinner 
31830f49efd8SJie Liu 	inodes_per_cluster = mp->m_inode_cluster_size >> mp->m_sb.sb_inodelog;
3184c8f5f12eSDavid Chinner 	ilist_size = inodes_per_cluster * sizeof(xfs_inode_t *);
318549383b0eSDavid Chinner 	ilist = kmem_alloc(ilist_size, KM_MAYFAIL|KM_NOFS);
3186bad55843SDavid Chinner 	if (!ilist)
318744b56e0aSDave Chinner 		goto out_put;
3188bad55843SDavid Chinner 
31890f49efd8SJie Liu 	mask = ~(((mp->m_inode_cluster_size >> mp->m_sb.sb_inodelog)) - 1);
3190bad55843SDavid Chinner 	first_index = XFS_INO_TO_AGINO(mp, ip->i_ino) & mask;
31911a3e8f3dSDave Chinner 	rcu_read_lock();
3192bad55843SDavid Chinner 	/* really need a gang lookup range call here */
3193bad55843SDavid Chinner 	nr_found = radix_tree_gang_lookup(&pag->pag_ici_root, (void**)ilist,
3194c8f5f12eSDavid Chinner 					first_index, inodes_per_cluster);
3195bad55843SDavid Chinner 	if (nr_found == 0)
3196bad55843SDavid Chinner 		goto out_free;
3197bad55843SDavid Chinner 
3198bad55843SDavid Chinner 	for (i = 0; i < nr_found; i++) {
3199bad55843SDavid Chinner 		iq = ilist[i];
3200bad55843SDavid Chinner 		if (iq == ip)
3201bad55843SDavid Chinner 			continue;
32021a3e8f3dSDave Chinner 
32031a3e8f3dSDave Chinner 		/*
32041a3e8f3dSDave Chinner 		 * because this is an RCU protected lookup, we could find a
32051a3e8f3dSDave Chinner 		 * recently freed or even reallocated inode during the lookup.
32061a3e8f3dSDave Chinner 		 * We need to check under the i_flags_lock for a valid inode
32071a3e8f3dSDave Chinner 		 * here. Skip it if it is not valid or the wrong inode.
32081a3e8f3dSDave Chinner 		 */
32091a3e8f3dSDave Chinner 		spin_lock(&ip->i_flags_lock);
32101a3e8f3dSDave Chinner 		if (!ip->i_ino ||
32111a3e8f3dSDave Chinner 		    (XFS_INO_TO_AGINO(mp, iq->i_ino) & mask) != first_index) {
32121a3e8f3dSDave Chinner 			spin_unlock(&ip->i_flags_lock);
32131a3e8f3dSDave Chinner 			continue;
32141a3e8f3dSDave Chinner 		}
32151a3e8f3dSDave Chinner 		spin_unlock(&ip->i_flags_lock);
32161a3e8f3dSDave Chinner 
3217bad55843SDavid Chinner 		/*
3218bad55843SDavid Chinner 		 * Do an un-protected check to see if the inode is dirty and
3219bad55843SDavid Chinner 		 * is a candidate for flushing.  These checks will be repeated
3220bad55843SDavid Chinner 		 * later after the appropriate locks are acquired.
3221bad55843SDavid Chinner 		 */
322233540408SDavid Chinner 		if (xfs_inode_clean(iq) && xfs_ipincount(iq) == 0)
3223bad55843SDavid Chinner 			continue;
3224bad55843SDavid Chinner 
3225bad55843SDavid Chinner 		/*
3226bad55843SDavid Chinner 		 * Try to get locks.  If any are unavailable or it is pinned,
3227bad55843SDavid Chinner 		 * then this inode cannot be flushed and is skipped.
3228bad55843SDavid Chinner 		 */
3229bad55843SDavid Chinner 
3230bad55843SDavid Chinner 		if (!xfs_ilock_nowait(iq, XFS_ILOCK_SHARED))
3231bad55843SDavid Chinner 			continue;
3232bad55843SDavid Chinner 		if (!xfs_iflock_nowait(iq)) {
3233bad55843SDavid Chinner 			xfs_iunlock(iq, XFS_ILOCK_SHARED);
3234bad55843SDavid Chinner 			continue;
3235bad55843SDavid Chinner 		}
3236bad55843SDavid Chinner 		if (xfs_ipincount(iq)) {
3237bad55843SDavid Chinner 			xfs_ifunlock(iq);
3238bad55843SDavid Chinner 			xfs_iunlock(iq, XFS_ILOCK_SHARED);
3239bad55843SDavid Chinner 			continue;
3240bad55843SDavid Chinner 		}
3241bad55843SDavid Chinner 
3242bad55843SDavid Chinner 		/*
3243bad55843SDavid Chinner 		 * arriving here means that this inode can be flushed.  First
3244bad55843SDavid Chinner 		 * re-check that it's dirty before flushing.
3245bad55843SDavid Chinner 		 */
324633540408SDavid Chinner 		if (!xfs_inode_clean(iq)) {
3247bad55843SDavid Chinner 			int	error;
3248bad55843SDavid Chinner 			error = xfs_iflush_int(iq, bp);
3249bad55843SDavid Chinner 			if (error) {
3250bad55843SDavid Chinner 				xfs_iunlock(iq, XFS_ILOCK_SHARED);
3251bad55843SDavid Chinner 				goto cluster_corrupt_out;
3252bad55843SDavid Chinner 			}
3253bad55843SDavid Chinner 			clcount++;
3254bad55843SDavid Chinner 		} else {
3255bad55843SDavid Chinner 			xfs_ifunlock(iq);
3256bad55843SDavid Chinner 		}
3257bad55843SDavid Chinner 		xfs_iunlock(iq, XFS_ILOCK_SHARED);
3258bad55843SDavid Chinner 	}
3259bad55843SDavid Chinner 
3260bad55843SDavid Chinner 	if (clcount) {
3261bad55843SDavid Chinner 		XFS_STATS_INC(xs_icluster_flushcnt);
3262bad55843SDavid Chinner 		XFS_STATS_ADD(xs_icluster_flushinode, clcount);
3263bad55843SDavid Chinner 	}
3264bad55843SDavid Chinner 
3265bad55843SDavid Chinner out_free:
32661a3e8f3dSDave Chinner 	rcu_read_unlock();
3267f0e2d93cSDenys Vlasenko 	kmem_free(ilist);
326844b56e0aSDave Chinner out_put:
326944b56e0aSDave Chinner 	xfs_perag_put(pag);
3270bad55843SDavid Chinner 	return 0;
3271bad55843SDavid Chinner 
3272bad55843SDavid Chinner 
3273bad55843SDavid Chinner cluster_corrupt_out:
3274bad55843SDavid Chinner 	/*
3275bad55843SDavid Chinner 	 * Corruption detected in the clustering loop.  Invalidate the
3276bad55843SDavid Chinner 	 * inode buffer and shut down the filesystem.
3277bad55843SDavid Chinner 	 */
32781a3e8f3dSDave Chinner 	rcu_read_unlock();
3279bad55843SDavid Chinner 	/*
328043ff2122SChristoph Hellwig 	 * Clean up the buffer.  If it was delwri, just release it --
3281bad55843SDavid Chinner 	 * brelse can handle it with no problems.  If not, shut down the
3282bad55843SDavid Chinner 	 * filesystem before releasing the buffer.
3283bad55843SDavid Chinner 	 */
328443ff2122SChristoph Hellwig 	bufwasdelwri = (bp->b_flags & _XBF_DELWRI_Q);
3285bad55843SDavid Chinner 	if (bufwasdelwri)
3286bad55843SDavid Chinner 		xfs_buf_relse(bp);
3287bad55843SDavid Chinner 
3288bad55843SDavid Chinner 	xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
3289bad55843SDavid Chinner 
3290bad55843SDavid Chinner 	if (!bufwasdelwri) {
3291bad55843SDavid Chinner 		/*
3292bad55843SDavid Chinner 		 * Just like incore_relse: if we have b_iodone functions,
3293bad55843SDavid Chinner 		 * mark the buffer as an error and call them.  Otherwise
3294bad55843SDavid Chinner 		 * mark it as stale and brelse.
3295bad55843SDavid Chinner 		 */
3296cb669ca5SChristoph Hellwig 		if (bp->b_iodone) {
3297bad55843SDavid Chinner 			XFS_BUF_UNDONE(bp);
3298c867cb61SChristoph Hellwig 			xfs_buf_stale(bp);
32992451337dSDave Chinner 			xfs_buf_ioerror(bp, -EIO);
3300e8aaba9aSDave Chinner 			xfs_buf_ioend(bp);
3301bad55843SDavid Chinner 		} else {
3302c867cb61SChristoph Hellwig 			xfs_buf_stale(bp);
3303bad55843SDavid Chinner 			xfs_buf_relse(bp);
3304bad55843SDavid Chinner 		}
3305bad55843SDavid Chinner 	}
3306bad55843SDavid Chinner 
3307bad55843SDavid Chinner 	/*
3308bad55843SDavid Chinner 	 * Unlocks the flush lock
3309bad55843SDavid Chinner 	 */
331004913fddSDave Chinner 	xfs_iflush_abort(iq, false);
3311f0e2d93cSDenys Vlasenko 	kmem_free(ilist);
331244b56e0aSDave Chinner 	xfs_perag_put(pag);
33132451337dSDave Chinner 	return -EFSCORRUPTED;
3314bad55843SDavid Chinner }
3315bad55843SDavid Chinner 
33161da177e4SLinus Torvalds /*
33174c46819aSChristoph Hellwig  * Flush dirty inode metadata into the backing buffer.
33184c46819aSChristoph Hellwig  *
33194c46819aSChristoph Hellwig  * The caller must have the inode lock and the inode flush lock held.  The
33204c46819aSChristoph Hellwig  * inode lock will still be held upon return to the caller, and the inode
33214c46819aSChristoph Hellwig  * flush lock will be released after the inode has reached the disk.
33224c46819aSChristoph Hellwig  *
33234c46819aSChristoph Hellwig  * The caller must write out the buffer returned in *bpp and release it.
33241da177e4SLinus Torvalds  */
33251da177e4SLinus Torvalds int
33261da177e4SLinus Torvalds xfs_iflush(
33274c46819aSChristoph Hellwig 	struct xfs_inode	*ip,
33284c46819aSChristoph Hellwig 	struct xfs_buf		**bpp)
33291da177e4SLinus Torvalds {
33304c46819aSChristoph Hellwig 	struct xfs_mount	*mp = ip->i_mount;
33314c46819aSChristoph Hellwig 	struct xfs_buf		*bp;
33324c46819aSChristoph Hellwig 	struct xfs_dinode	*dip;
33331da177e4SLinus Torvalds 	int			error;
33341da177e4SLinus Torvalds 
33351da177e4SLinus Torvalds 	XFS_STATS_INC(xs_iflush_count);
33361da177e4SLinus Torvalds 
3337579aa9caSChristoph Hellwig 	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
3338474fce06SChristoph Hellwig 	ASSERT(xfs_isiflocked(ip));
33391da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_format != XFS_DINODE_FMT_BTREE ||
33408096b1ebSChristoph Hellwig 	       ip->i_d.di_nextents > XFS_IFORK_MAXEXT(ip, XFS_DATA_FORK));
33411da177e4SLinus Torvalds 
33424c46819aSChristoph Hellwig 	*bpp = NULL;
33431da177e4SLinus Torvalds 
33441da177e4SLinus Torvalds 	xfs_iunpin_wait(ip);
33451da177e4SLinus Torvalds 
33461da177e4SLinus Torvalds 	/*
33474b6a4688SDave Chinner 	 * For stale inodes we cannot rely on the backing buffer remaining
33484b6a4688SDave Chinner 	 * stale in cache for the remaining life of the stale inode and so
3349475ee413SChristoph Hellwig 	 * xfs_imap_to_bp() below may give us a buffer that no longer contains
33504b6a4688SDave Chinner 	 * inodes below. We have to check this after ensuring the inode is
33514b6a4688SDave Chinner 	 * unpinned so that it is safe to reclaim the stale inode after the
33524b6a4688SDave Chinner 	 * flush call.
33534b6a4688SDave Chinner 	 */
33544b6a4688SDave Chinner 	if (xfs_iflags_test(ip, XFS_ISTALE)) {
33554b6a4688SDave Chinner 		xfs_ifunlock(ip);
33564b6a4688SDave Chinner 		return 0;
33574b6a4688SDave Chinner 	}
33584b6a4688SDave Chinner 
33594b6a4688SDave Chinner 	/*
33601da177e4SLinus Torvalds 	 * This may have been unpinned because the filesystem is shutting
33611da177e4SLinus Torvalds 	 * down forcibly. If that's the case we must not write this inode
336232ce90a4SChristoph Hellwig 	 * to disk, because the log record didn't make it to disk.
336332ce90a4SChristoph Hellwig 	 *
336432ce90a4SChristoph Hellwig 	 * We also have to remove the log item from the AIL in this case,
336532ce90a4SChristoph Hellwig 	 * as we wait for an empty AIL as part of the unmount process.
33661da177e4SLinus Torvalds 	 */
33671da177e4SLinus Torvalds 	if (XFS_FORCED_SHUTDOWN(mp)) {
33682451337dSDave Chinner 		error = -EIO;
336932ce90a4SChristoph Hellwig 		goto abort_out;
33701da177e4SLinus Torvalds 	}
33711da177e4SLinus Torvalds 
33721da177e4SLinus Torvalds 	/*
3373a3f74ffbSDavid Chinner 	 * Get the buffer containing the on-disk inode.
3374a3f74ffbSDavid Chinner 	 */
3375475ee413SChristoph Hellwig 	error = xfs_imap_to_bp(mp, NULL, &ip->i_imap, &dip, &bp, XBF_TRYLOCK,
3376475ee413SChristoph Hellwig 			       0);
3377a3f74ffbSDavid Chinner 	if (error || !bp) {
3378a3f74ffbSDavid Chinner 		xfs_ifunlock(ip);
3379a3f74ffbSDavid Chinner 		return error;
3380a3f74ffbSDavid Chinner 	}
3381a3f74ffbSDavid Chinner 
3382a3f74ffbSDavid Chinner 	/*
33831da177e4SLinus Torvalds 	 * First flush out the inode that xfs_iflush was called with.
33841da177e4SLinus Torvalds 	 */
33851da177e4SLinus Torvalds 	error = xfs_iflush_int(ip, bp);
3386bad55843SDavid Chinner 	if (error)
33871da177e4SLinus Torvalds 		goto corrupt_out;
33881da177e4SLinus Torvalds 
33891da177e4SLinus Torvalds 	/*
3390a3f74ffbSDavid Chinner 	 * If the buffer is pinned then push on the log now so we won't
3391a3f74ffbSDavid Chinner 	 * get stuck waiting in the write for too long.
3392a3f74ffbSDavid Chinner 	 */
3393811e64c7SChandra Seetharaman 	if (xfs_buf_ispinned(bp))
3394a14a348bSChristoph Hellwig 		xfs_log_force(mp, 0);
3395a3f74ffbSDavid Chinner 
3396a3f74ffbSDavid Chinner 	/*
33971da177e4SLinus Torvalds 	 * inode clustering:
33981da177e4SLinus Torvalds 	 * see if other inodes can be gathered into this write
33991da177e4SLinus Torvalds 	 */
3400bad55843SDavid Chinner 	error = xfs_iflush_cluster(ip, bp);
3401bad55843SDavid Chinner 	if (error)
34021da177e4SLinus Torvalds 		goto cluster_corrupt_out;
34031da177e4SLinus Torvalds 
34044c46819aSChristoph Hellwig 	*bpp = bp;
34054c46819aSChristoph Hellwig 	return 0;
34061da177e4SLinus Torvalds 
34071da177e4SLinus Torvalds corrupt_out:
34081da177e4SLinus Torvalds 	xfs_buf_relse(bp);
34097d04a335SNathan Scott 	xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
34101da177e4SLinus Torvalds cluster_corrupt_out:
34112451337dSDave Chinner 	error = -EFSCORRUPTED;
341232ce90a4SChristoph Hellwig abort_out:
34131da177e4SLinus Torvalds 	/*
34141da177e4SLinus Torvalds 	 * Unlocks the flush lock
34151da177e4SLinus Torvalds 	 */
341604913fddSDave Chinner 	xfs_iflush_abort(ip, false);
341732ce90a4SChristoph Hellwig 	return error;
34181da177e4SLinus Torvalds }
34191da177e4SLinus Torvalds 
34201da177e4SLinus Torvalds STATIC int
34211da177e4SLinus Torvalds xfs_iflush_int(
342293848a99SChristoph Hellwig 	struct xfs_inode	*ip,
342393848a99SChristoph Hellwig 	struct xfs_buf		*bp)
34241da177e4SLinus Torvalds {
342593848a99SChristoph Hellwig 	struct xfs_inode_log_item *iip = ip->i_itemp;
342693848a99SChristoph Hellwig 	struct xfs_dinode	*dip;
342793848a99SChristoph Hellwig 	struct xfs_mount	*mp = ip->i_mount;
34281da177e4SLinus Torvalds 
3429579aa9caSChristoph Hellwig 	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
3430474fce06SChristoph Hellwig 	ASSERT(xfs_isiflocked(ip));
34311da177e4SLinus Torvalds 	ASSERT(ip->i_d.di_format != XFS_DINODE_FMT_BTREE ||
34328096b1ebSChristoph Hellwig 	       ip->i_d.di_nextents > XFS_IFORK_MAXEXT(ip, XFS_DATA_FORK));
343393848a99SChristoph Hellwig 	ASSERT(iip != NULL && iip->ili_fields != 0);
3434263997a6SDave Chinner 	ASSERT(ip->i_d.di_version > 1);
34351da177e4SLinus Torvalds 
34361da177e4SLinus Torvalds 	/* set *dip = inode's place in the buffer */
343788ee2df7SChristoph Hellwig 	dip = xfs_buf_offset(bp, ip->i_imap.im_boffset);
34381da177e4SLinus Torvalds 
343969ef921bSChristoph Hellwig 	if (XFS_TEST_ERROR(dip->di_magic != cpu_to_be16(XFS_DINODE_MAGIC),
34401da177e4SLinus Torvalds 			       mp, XFS_ERRTAG_IFLUSH_1, XFS_RANDOM_IFLUSH_1)) {
34416a19d939SDave Chinner 		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34426a19d939SDave Chinner 			"%s: Bad inode %Lu magic number 0x%x, ptr 0x%p",
34436a19d939SDave Chinner 			__func__, ip->i_ino, be16_to_cpu(dip->di_magic), dip);
34441da177e4SLinus Torvalds 		goto corrupt_out;
34451da177e4SLinus Torvalds 	}
34461da177e4SLinus Torvalds 	if (XFS_TEST_ERROR(ip->i_d.di_magic != XFS_DINODE_MAGIC,
34471da177e4SLinus Torvalds 				mp, XFS_ERRTAG_IFLUSH_2, XFS_RANDOM_IFLUSH_2)) {
34486a19d939SDave Chinner 		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34496a19d939SDave Chinner 			"%s: Bad inode %Lu, ptr 0x%p, magic number 0x%x",
34506a19d939SDave Chinner 			__func__, ip->i_ino, ip, ip->i_d.di_magic);
34511da177e4SLinus Torvalds 		goto corrupt_out;
34521da177e4SLinus Torvalds 	}
3453abbede1bSAl Viro 	if (S_ISREG(ip->i_d.di_mode)) {
34541da177e4SLinus Torvalds 		if (XFS_TEST_ERROR(
34551da177e4SLinus Torvalds 		    (ip->i_d.di_format != XFS_DINODE_FMT_EXTENTS) &&
34561da177e4SLinus Torvalds 		    (ip->i_d.di_format != XFS_DINODE_FMT_BTREE),
34571da177e4SLinus Torvalds 		    mp, XFS_ERRTAG_IFLUSH_3, XFS_RANDOM_IFLUSH_3)) {
34586a19d939SDave Chinner 			xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34596a19d939SDave Chinner 				"%s: Bad regular inode %Lu, ptr 0x%p",
34606a19d939SDave Chinner 				__func__, ip->i_ino, ip);
34611da177e4SLinus Torvalds 			goto corrupt_out;
34621da177e4SLinus Torvalds 		}
3463abbede1bSAl Viro 	} else if (S_ISDIR(ip->i_d.di_mode)) {
34641da177e4SLinus Torvalds 		if (XFS_TEST_ERROR(
34651da177e4SLinus Torvalds 		    (ip->i_d.di_format != XFS_DINODE_FMT_EXTENTS) &&
34661da177e4SLinus Torvalds 		    (ip->i_d.di_format != XFS_DINODE_FMT_BTREE) &&
34671da177e4SLinus Torvalds 		    (ip->i_d.di_format != XFS_DINODE_FMT_LOCAL),
34681da177e4SLinus Torvalds 		    mp, XFS_ERRTAG_IFLUSH_4, XFS_RANDOM_IFLUSH_4)) {
34696a19d939SDave Chinner 			xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34706a19d939SDave Chinner 				"%s: Bad directory inode %Lu, ptr 0x%p",
34716a19d939SDave Chinner 				__func__, ip->i_ino, ip);
34721da177e4SLinus Torvalds 			goto corrupt_out;
34731da177e4SLinus Torvalds 		}
34741da177e4SLinus Torvalds 	}
34751da177e4SLinus Torvalds 	if (XFS_TEST_ERROR(ip->i_d.di_nextents + ip->i_d.di_anextents >
34761da177e4SLinus Torvalds 				ip->i_d.di_nblocks, mp, XFS_ERRTAG_IFLUSH_5,
34771da177e4SLinus Torvalds 				XFS_RANDOM_IFLUSH_5)) {
34786a19d939SDave Chinner 		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34796a19d939SDave Chinner 			"%s: detected corrupt incore inode %Lu, "
34806a19d939SDave Chinner 			"total extents = %d, nblocks = %Ld, ptr 0x%p",
34816a19d939SDave Chinner 			__func__, ip->i_ino,
34821da177e4SLinus Torvalds 			ip->i_d.di_nextents + ip->i_d.di_anextents,
34836a19d939SDave Chinner 			ip->i_d.di_nblocks, ip);
34841da177e4SLinus Torvalds 		goto corrupt_out;
34851da177e4SLinus Torvalds 	}
34861da177e4SLinus Torvalds 	if (XFS_TEST_ERROR(ip->i_d.di_forkoff > mp->m_sb.sb_inodesize,
34871da177e4SLinus Torvalds 				mp, XFS_ERRTAG_IFLUSH_6, XFS_RANDOM_IFLUSH_6)) {
34886a19d939SDave Chinner 		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
34896a19d939SDave Chinner 			"%s: bad inode %Lu, forkoff 0x%x, ptr 0x%p",
34906a19d939SDave Chinner 			__func__, ip->i_ino, ip->i_d.di_forkoff, ip);
34911da177e4SLinus Torvalds 		goto corrupt_out;
34921da177e4SLinus Torvalds 	}
3493e60896d8SDave Chinner 
34941da177e4SLinus Torvalds 	/*
3495263997a6SDave Chinner 	 * Inode item log recovery for v2 inodes are dependent on the
3496e60896d8SDave Chinner 	 * di_flushiter count for correct sequencing. We bump the flush
3497e60896d8SDave Chinner 	 * iteration count so we can detect flushes which postdate a log record
3498e60896d8SDave Chinner 	 * during recovery. This is redundant as we now log every change and
3499e60896d8SDave Chinner 	 * hence this can't happen but we need to still do it to ensure
3500e60896d8SDave Chinner 	 * backwards compatibility with old kernels that predate logging all
3501e60896d8SDave Chinner 	 * inode changes.
35021da177e4SLinus Torvalds 	 */
3503e60896d8SDave Chinner 	if (ip->i_d.di_version < 3)
35041da177e4SLinus Torvalds 		ip->i_d.di_flushiter++;
35051da177e4SLinus Torvalds 
35061da177e4SLinus Torvalds 	/*
35071da177e4SLinus Torvalds 	 * Copy the dirty parts of the inode into the on-disk
35081da177e4SLinus Torvalds 	 * inode.  We always copy out the core of the inode,
35091da177e4SLinus Torvalds 	 * because if the inode is dirty at all the core must
35101da177e4SLinus Torvalds 	 * be.
35111da177e4SLinus Torvalds 	 */
351281591fe2SChristoph Hellwig 	xfs_dinode_to_disk(dip, &ip->i_d);
35131da177e4SLinus Torvalds 
35141da177e4SLinus Torvalds 	/* Wrap, we never let the log put out DI_MAX_FLUSH */
35151da177e4SLinus Torvalds 	if (ip->i_d.di_flushiter == DI_MAX_FLUSH)
35161da177e4SLinus Torvalds 		ip->i_d.di_flushiter = 0;
35171da177e4SLinus Torvalds 
3518fd9fdba6SEric Sandeen 	xfs_iflush_fork(ip, dip, iip, XFS_DATA_FORK);
3519e4ac967bSDavid Chinner 	if (XFS_IFORK_Q(ip))
3520fd9fdba6SEric Sandeen 		xfs_iflush_fork(ip, dip, iip, XFS_ATTR_FORK);
35211da177e4SLinus Torvalds 	xfs_inobp_check(mp, bp);
35221da177e4SLinus Torvalds 
35231da177e4SLinus Torvalds 	/*
3524f5d8d5c4SChristoph Hellwig 	 * We've recorded everything logged in the inode, so we'd like to clear
3525f5d8d5c4SChristoph Hellwig 	 * the ili_fields bits so we don't log and flush things unnecessarily.
3526f5d8d5c4SChristoph Hellwig 	 * However, we can't stop logging all this information until the data
3527f5d8d5c4SChristoph Hellwig 	 * we've copied into the disk buffer is written to disk.  If we did we
3528f5d8d5c4SChristoph Hellwig 	 * might overwrite the copy of the inode in the log with all the data
3529f5d8d5c4SChristoph Hellwig 	 * after re-logging only part of it, and in the face of a crash we
3530f5d8d5c4SChristoph Hellwig 	 * wouldn't have all the data we need to recover.
35311da177e4SLinus Torvalds 	 *
3532f5d8d5c4SChristoph Hellwig 	 * What we do is move the bits to the ili_last_fields field.  When
3533f5d8d5c4SChristoph Hellwig 	 * logging the inode, these bits are moved back to the ili_fields field.
3534f5d8d5c4SChristoph Hellwig 	 * In the xfs_iflush_done() routine we clear ili_last_fields, since we
3535f5d8d5c4SChristoph Hellwig 	 * know that the information those bits represent is permanently on
3536f5d8d5c4SChristoph Hellwig 	 * disk.  As long as the flush completes before the inode is logged
3537f5d8d5c4SChristoph Hellwig 	 * again, then both ili_fields and ili_last_fields will be cleared.
35381da177e4SLinus Torvalds 	 *
3539f5d8d5c4SChristoph Hellwig 	 * We can play with the ili_fields bits here, because the inode lock
3540f5d8d5c4SChristoph Hellwig 	 * must be held exclusively in order to set bits there and the flush
3541f5d8d5c4SChristoph Hellwig 	 * lock protects the ili_last_fields bits.  Set ili_logged so the flush
3542f5d8d5c4SChristoph Hellwig 	 * done routine can tell whether or not to look in the AIL.  Also, store
3543f5d8d5c4SChristoph Hellwig 	 * the current LSN of the inode so that we can tell whether the item has
3544f5d8d5c4SChristoph Hellwig 	 * moved in the AIL from xfs_iflush_done().  In order to read the lsn we
3545f5d8d5c4SChristoph Hellwig 	 * need the AIL lock, because it is a 64 bit value that cannot be read
3546f5d8d5c4SChristoph Hellwig 	 * atomically.
35471da177e4SLinus Torvalds 	 */
3548f5d8d5c4SChristoph Hellwig 	iip->ili_last_fields = iip->ili_fields;
3549f5d8d5c4SChristoph Hellwig 	iip->ili_fields = 0;
35501da177e4SLinus Torvalds 	iip->ili_logged = 1;
35511da177e4SLinus Torvalds 
35527b2e2a31SDavid Chinner 	xfs_trans_ail_copy_lsn(mp->m_ail, &iip->ili_flush_lsn,
35537b2e2a31SDavid Chinner 				&iip->ili_item.li_lsn);
35541da177e4SLinus Torvalds 
35551da177e4SLinus Torvalds 	/*
35561da177e4SLinus Torvalds 	 * Attach the function xfs_iflush_done to the inode's
35571da177e4SLinus Torvalds 	 * buffer.  This will remove the inode from the AIL
35581da177e4SLinus Torvalds 	 * and unlock the inode's flush lock when the inode is
35591da177e4SLinus Torvalds 	 * completely written to disk.
35601da177e4SLinus Torvalds 	 */
3561ca30b2a7SChristoph Hellwig 	xfs_buf_attach_iodone(bp, xfs_iflush_done, &iip->ili_item);
35621da177e4SLinus Torvalds 
356393848a99SChristoph Hellwig 	/* update the lsn in the on disk inode if required */
356493848a99SChristoph Hellwig 	if (ip->i_d.di_version == 3)
356593848a99SChristoph Hellwig 		dip->di_lsn = cpu_to_be64(iip->ili_item.li_lsn);
356693848a99SChristoph Hellwig 
356793848a99SChristoph Hellwig 	/* generate the checksum. */
356893848a99SChristoph Hellwig 	xfs_dinode_calc_crc(mp, dip);
356993848a99SChristoph Hellwig 
3570adadbeefSChristoph Hellwig 	ASSERT(bp->b_fspriv != NULL);
3571cb669ca5SChristoph Hellwig 	ASSERT(bp->b_iodone != NULL);
35721da177e4SLinus Torvalds 	return 0;
35731da177e4SLinus Torvalds 
35741da177e4SLinus Torvalds corrupt_out:
35752451337dSDave Chinner 	return -EFSCORRUPTED;
35761da177e4SLinus Torvalds }
3577