xref: /onnv-gate/usr/src/uts/common/fs/zfs/zfs_vnops.c (revision 1484:d330e98f8ed7)
1789Sahrens /*
2789Sahrens  * CDDL HEADER START
3789Sahrens  *
4789Sahrens  * The contents of this file are subject to the terms of the
51460Smarks  * Common Development and Distribution License (the "License").
61460Smarks  * You may not use this file except in compliance with the License.
7789Sahrens  *
8789Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9789Sahrens  * or http://www.opensolaris.org/os/licensing.
10789Sahrens  * See the License for the specific language governing permissions
11789Sahrens  * and limitations under the License.
12789Sahrens  *
13789Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14789Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15789Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16789Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17789Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18789Sahrens  *
19789Sahrens  * CDDL HEADER END
20789Sahrens  */
21789Sahrens /*
221231Smarks  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
23789Sahrens  * Use is subject to license terms.
24789Sahrens  */
25789Sahrens 
26789Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
27789Sahrens 
28789Sahrens #include <sys/types.h>
29789Sahrens #include <sys/param.h>
30789Sahrens #include <sys/time.h>
31789Sahrens #include <sys/systm.h>
32789Sahrens #include <sys/sysmacros.h>
33789Sahrens #include <sys/resource.h>
34789Sahrens #include <sys/vfs.h>
35789Sahrens #include <sys/vnode.h>
36789Sahrens #include <sys/file.h>
37789Sahrens #include <sys/stat.h>
38789Sahrens #include <sys/kmem.h>
39789Sahrens #include <sys/taskq.h>
40789Sahrens #include <sys/uio.h>
41789Sahrens #include <sys/vmsystm.h>
42789Sahrens #include <sys/atomic.h>
43789Sahrens #include <vm/seg_vn.h>
44789Sahrens #include <vm/pvn.h>
45789Sahrens #include <vm/as.h>
46789Sahrens #include <sys/mman.h>
47789Sahrens #include <sys/pathname.h>
48789Sahrens #include <sys/cmn_err.h>
49789Sahrens #include <sys/errno.h>
50789Sahrens #include <sys/unistd.h>
51789Sahrens #include <sys/zfs_vfsops.h>
52789Sahrens #include <sys/zfs_dir.h>
53789Sahrens #include <sys/zfs_acl.h>
54789Sahrens #include <sys/zfs_ioctl.h>
55789Sahrens #include <sys/fs/zfs.h>
56789Sahrens #include <sys/dmu.h>
57789Sahrens #include <sys/spa.h>
58789Sahrens #include <sys/txg.h>
59789Sahrens #include <sys/refcount.h>  /* temporary for debugging purposes */
60789Sahrens #include <sys/dbuf.h>
61789Sahrens #include <sys/zap.h>
62789Sahrens #include <sys/dirent.h>
63789Sahrens #include <sys/policy.h>
64789Sahrens #include <sys/sunddi.h>
65789Sahrens #include <sys/filio.h>
66789Sahrens #include "fs/fs_subr.h"
67789Sahrens #include <sys/zfs_ctldir.h>
68*1484Sek110237 #include <sys/dnlc.h>
69789Sahrens 
70789Sahrens /*
71789Sahrens  * Programming rules.
72789Sahrens  *
73789Sahrens  * Each vnode op performs some logical unit of work.  To do this, the ZPL must
74789Sahrens  * properly lock its in-core state, create a DMU transaction, do the work,
75789Sahrens  * record this work in the intent log (ZIL), commit the DMU transaction,
76789Sahrens  * and wait the the intent log to commit if it's is a synchronous operation.
77789Sahrens  * Morover, the vnode ops must work in both normal and log replay context.
78789Sahrens  * The ordering of events is important to avoid deadlocks and references
79789Sahrens  * to freed memory.  The example below illustrates the following Big Rules:
80789Sahrens  *
81789Sahrens  *  (1) A check must be made in each zfs thread for a mounted file system.
82789Sahrens  *	This is done avoiding races using ZFS_ENTER(zfsvfs).
83789Sahrens  *	A ZFS_EXIT(zfsvfs) is needed before all returns.
84789Sahrens  *
85789Sahrens  *  (2)	VN_RELE() should always be the last thing except for zil_commit()
86789Sahrens  *	and ZFS_EXIT(). This is for 3 reasons:
87789Sahrens  *	First, if it's the last reference, the vnode/znode
88789Sahrens  *	can be freed, so the zp may point to freed memory.  Second, the last
89789Sahrens  *	reference will call zfs_zinactive(), which may induce a lot of work --
90789Sahrens  *	pushing cached pages (which requires z_grow_lock) and syncing out
91789Sahrens  *	cached atime changes.  Third, zfs_zinactive() may require a new tx,
92789Sahrens  *	which could deadlock the system if you were already holding one.
93789Sahrens  *
94789Sahrens  *  (3)	Always pass zfsvfs->z_assign as the second argument to dmu_tx_assign().
95789Sahrens  *	In normal operation, this will be TXG_NOWAIT.  During ZIL replay,
96789Sahrens  *	it will be a specific txg.  Either way, dmu_tx_assign() never blocks.
97789Sahrens  *	This is critical because we don't want to block while holding locks.
98789Sahrens  *	Note, in particular, that if a lock is sometimes acquired before
99789Sahrens  *	the tx assigns, and sometimes after (e.g. z_lock), then failing to
100789Sahrens  *	use a non-blocking assign can deadlock the system.  The scenario:
101789Sahrens  *
102789Sahrens  *	Thread A has grabbed a lock before calling dmu_tx_assign().
103789Sahrens  *	Thread B is in an already-assigned tx, and blocks for this lock.
104789Sahrens  *	Thread A calls dmu_tx_assign(TXG_WAIT) and blocks in txg_wait_open()
105789Sahrens  *	forever, because the previous txg can't quiesce until B's tx commits.
106789Sahrens  *
107789Sahrens  *	If dmu_tx_assign() returns ERESTART and zfsvfs->z_assign is TXG_NOWAIT,
108789Sahrens  *	then drop all locks, call txg_wait_open(), and try again.
109789Sahrens  *
110789Sahrens  *  (4)	If the operation succeeded, generate the intent log entry for it
111789Sahrens  *	before dropping locks.  This ensures that the ordering of events
112789Sahrens  *	in the intent log matches the order in which they actually occurred.
113789Sahrens  *
114789Sahrens  *  (5)	At the end of each vnode op, the DMU tx must always commit,
115789Sahrens  *	regardless of whether there were any errors.
116789Sahrens  *
117789Sahrens  *  (6)	After dropping all locks, invoke zil_commit(zilog, seq, ioflag)
118789Sahrens  *	to ensure that synchronous semantics are provided when necessary.
119789Sahrens  *
120789Sahrens  * In general, this is how things should be ordered in each vnode op:
121789Sahrens  *
122789Sahrens  *	ZFS_ENTER(zfsvfs);		// exit if unmounted
123789Sahrens  * top:
124789Sahrens  *	zfs_dirent_lock(&dl, ...)	// lock directory entry (may VN_HOLD())
125789Sahrens  *	rw_enter(...);			// grab any other locks you need
126789Sahrens  *	tx = dmu_tx_create(...);	// get DMU tx
127789Sahrens  *	dmu_tx_hold_*();		// hold each object you might modify
128789Sahrens  *	error = dmu_tx_assign(tx, zfsvfs->z_assign);	// try to assign
129789Sahrens  *	if (error) {
130789Sahrens  *		dmu_tx_abort(tx);	// abort DMU tx
131789Sahrens  *		rw_exit(...);		// drop locks
132789Sahrens  *		zfs_dirent_unlock(dl);	// unlock directory entry
133789Sahrens  *		VN_RELE(...);		// release held vnodes
134789Sahrens  *		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
135789Sahrens  *			txg_wait_open(dmu_objset_pool(os), 0);
136789Sahrens  *			goto top;
137789Sahrens  *		}
138789Sahrens  *		ZFS_EXIT(zfsvfs);	// finished in zfs
139789Sahrens  *		return (error);		// really out of space
140789Sahrens  *	}
141789Sahrens  *	error = do_real_work();		// do whatever this VOP does
142789Sahrens  *	if (error == 0)
143789Sahrens  *		seq = zfs_log_*(...);	// on success, make ZIL entry
144789Sahrens  *	dmu_tx_commit(tx);		// commit DMU tx -- error or not
145789Sahrens  *	rw_exit(...);			// drop locks
146789Sahrens  *	zfs_dirent_unlock(dl);		// unlock directory entry
147789Sahrens  *	VN_RELE(...);			// release held vnodes
148789Sahrens  *	zil_commit(zilog, seq, ioflag);	// synchronous when necessary
149789Sahrens  *	ZFS_EXIT(zfsvfs);		// finished in zfs
150789Sahrens  *	return (error);			// done, report error
151789Sahrens  */
152789Sahrens 
153789Sahrens /* ARGSUSED */
154789Sahrens static int
155789Sahrens zfs_open(vnode_t **vpp, int flag, cred_t *cr)
156789Sahrens {
157789Sahrens 	return (0);
158789Sahrens }
159789Sahrens 
160789Sahrens /* ARGSUSED */
161789Sahrens static int
162789Sahrens zfs_close(vnode_t *vp, int flag, int count, offset_t offset, cred_t *cr)
163789Sahrens {
164789Sahrens 	/*
165789Sahrens 	 * Clean up any locks held by this process on the vp.
166789Sahrens 	 */
167789Sahrens 	cleanlocks(vp, ddi_get_pid(), 0);
168789Sahrens 	cleanshares(vp, ddi_get_pid());
169789Sahrens 
170789Sahrens 	return (0);
171789Sahrens }
172789Sahrens 
173789Sahrens /*
174789Sahrens  * Lseek support for finding holes (cmd == _FIO_SEEK_HOLE) and
175789Sahrens  * data (cmd == _FIO_SEEK_DATA). "off" is an in/out parameter.
176789Sahrens  */
177789Sahrens static int
178789Sahrens zfs_holey(vnode_t *vp, int cmd, offset_t *off)
179789Sahrens {
180789Sahrens 	znode_t	*zp = VTOZ(vp);
181789Sahrens 	uint64_t noff = (uint64_t)*off; /* new offset */
182789Sahrens 	uint64_t file_sz;
183789Sahrens 	int error;
184789Sahrens 	boolean_t hole;
185789Sahrens 
186789Sahrens 	rw_enter(&zp->z_grow_lock, RW_READER);
187789Sahrens 	file_sz = zp->z_phys->zp_size;
188789Sahrens 	if (noff >= file_sz)  {
189789Sahrens 		rw_exit(&zp->z_grow_lock);
190789Sahrens 		return (ENXIO);
191789Sahrens 	}
192789Sahrens 
193789Sahrens 	if (cmd == _FIO_SEEK_HOLE)
194789Sahrens 		hole = B_TRUE;
195789Sahrens 	else
196789Sahrens 		hole = B_FALSE;
197789Sahrens 
198789Sahrens 	error = dmu_offset_next(zp->z_zfsvfs->z_os, zp->z_id, hole, &noff);
199789Sahrens 	rw_exit(&zp->z_grow_lock);
200789Sahrens 
201789Sahrens 	/* end of file? */
202789Sahrens 	if ((error == ESRCH) || (noff > file_sz)) {
203789Sahrens 		/*
204789Sahrens 		 * Handle the virtual hole at the end of file.
205789Sahrens 		 */
206789Sahrens 		if (hole) {
207789Sahrens 			*off = file_sz;
208789Sahrens 			return (0);
209789Sahrens 		}
210789Sahrens 		return (ENXIO);
211789Sahrens 	}
212789Sahrens 
213789Sahrens 	if (noff < *off)
214789Sahrens 		return (error);
215789Sahrens 	*off = noff;
216789Sahrens 	return (error);
217789Sahrens }
218789Sahrens 
219789Sahrens /* ARGSUSED */
220789Sahrens static int
221789Sahrens zfs_ioctl(vnode_t *vp, int com, intptr_t data, int flag, cred_t *cred,
222789Sahrens     int *rvalp)
223789Sahrens {
224789Sahrens 	offset_t off;
225789Sahrens 	int error;
226789Sahrens 	zfsvfs_t *zfsvfs;
227789Sahrens 
228789Sahrens 	switch (com) {
229789Sahrens 	    case _FIOFFS:
230789Sahrens 		return (zfs_sync(vp->v_vfsp, 0, cred));
231789Sahrens 
232789Sahrens 	    case _FIO_SEEK_DATA:
233789Sahrens 	    case _FIO_SEEK_HOLE:
234789Sahrens 		if (ddi_copyin((void *)data, &off, sizeof (off), flag))
235789Sahrens 			return (EFAULT);
236789Sahrens 
237789Sahrens 		zfsvfs = VTOZ(vp)->z_zfsvfs;
238789Sahrens 		ZFS_ENTER(zfsvfs);
239789Sahrens 
240789Sahrens 		/* offset parameter is in/out */
241789Sahrens 		error = zfs_holey(vp, com, &off);
242789Sahrens 		ZFS_EXIT(zfsvfs);
243789Sahrens 		if (error)
244789Sahrens 			return (error);
245789Sahrens 		if (ddi_copyout(&off, (void *)data, sizeof (off), flag))
246789Sahrens 			return (EFAULT);
247789Sahrens 		return (0);
248789Sahrens 	}
249789Sahrens 	return (ENOTTY);
250789Sahrens }
251789Sahrens 
252789Sahrens /*
253789Sahrens  * When a file is memory mapped, we must keep the IO data synchronized
254789Sahrens  * between the DMU cache and the memory mapped pages.  What this means:
255789Sahrens  *
256789Sahrens  * On Write:	If we find a memory mapped page, we write to *both*
257789Sahrens  *		the page and the dmu buffer.
258789Sahrens  *
259789Sahrens  * NOTE: We will always "break up" the IO into PAGESIZE uiomoves when
260789Sahrens  *	the file is memory mapped.
261789Sahrens  */
262789Sahrens static int
263789Sahrens mappedwrite(vnode_t *vp, uint64_t woff, int nbytes, uio_t *uio, dmu_tx_t *tx)
264789Sahrens {
265789Sahrens 	znode_t	*zp = VTOZ(vp);
266789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
267789Sahrens 	int64_t	start, off;
268789Sahrens 	int len = nbytes;
269789Sahrens 	int error = 0;
270789Sahrens 
271789Sahrens 	start = uio->uio_loffset;
272789Sahrens 	off = start & PAGEOFFSET;
273789Sahrens 	for (start &= PAGEMASK; len > 0; start += PAGESIZE) {
274789Sahrens 		page_t *pp;
275789Sahrens 		uint64_t bytes = MIN(PAGESIZE - off, len);
276789Sahrens 
277789Sahrens 		/*
278789Sahrens 		 * We don't want a new page to "appear" in the middle of
279789Sahrens 		 * the file update (because it may not get the write
280789Sahrens 		 * update data), so we grab a lock to block
281789Sahrens 		 * zfs_getpage().
282789Sahrens 		 */
283789Sahrens 		rw_enter(&zp->z_map_lock, RW_WRITER);
284789Sahrens 		if (pp = page_lookup(vp, start, SE_SHARED)) {
285789Sahrens 			caddr_t va;
286789Sahrens 
287789Sahrens 			rw_exit(&zp->z_map_lock);
288789Sahrens 			va = ppmapin(pp, PROT_READ | PROT_WRITE, (caddr_t)-1L);
289789Sahrens 			error = uiomove(va+off, bytes, UIO_WRITE, uio);
290789Sahrens 			if (error == 0) {
291789Sahrens 				dmu_write(zfsvfs->z_os, zp->z_id,
292789Sahrens 				    woff, bytes, va+off, tx);
293789Sahrens 			}
294789Sahrens 			ppmapout(va);
295789Sahrens 			page_unlock(pp);
296789Sahrens 		} else {
297789Sahrens 			error = dmu_write_uio(zfsvfs->z_os, zp->z_id,
298789Sahrens 			    woff, bytes, uio, tx);
299789Sahrens 			rw_exit(&zp->z_map_lock);
300789Sahrens 		}
301789Sahrens 		len -= bytes;
302789Sahrens 		woff += bytes;
303789Sahrens 		off = 0;
304789Sahrens 		if (error)
305789Sahrens 			break;
306789Sahrens 	}
307789Sahrens 	return (error);
308789Sahrens }
309789Sahrens 
310789Sahrens /*
311789Sahrens  * When a file is memory mapped, we must keep the IO data synchronized
312789Sahrens  * between the DMU cache and the memory mapped pages.  What this means:
313789Sahrens  *
314789Sahrens  * On Read:	We "read" preferentially from memory mapped pages,
315789Sahrens  *		else we default from the dmu buffer.
316789Sahrens  *
317789Sahrens  * NOTE: We will always "break up" the IO into PAGESIZE uiomoves when
318789Sahrens  *	the file is memory mapped.
319789Sahrens  */
320789Sahrens static int
321789Sahrens mappedread(vnode_t *vp, char *addr, int nbytes, uio_t *uio)
322789Sahrens {
323789Sahrens 	int64_t	start, off, bytes;
324789Sahrens 	int len = nbytes;
325789Sahrens 	int error = 0;
326789Sahrens 
327789Sahrens 	start = uio->uio_loffset;
328789Sahrens 	off = start & PAGEOFFSET;
329789Sahrens 	for (start &= PAGEMASK; len > 0; start += PAGESIZE) {
330789Sahrens 		page_t *pp;
331789Sahrens 
332789Sahrens 		bytes = MIN(PAGESIZE - off, len);
333789Sahrens 		if (pp = page_lookup(vp, start, SE_SHARED)) {
334789Sahrens 			caddr_t va;
335789Sahrens 
336789Sahrens 			va = ppmapin(pp, PROT_READ | PROT_WRITE, (caddr_t)-1L);
337789Sahrens 			error = uiomove(va + off, bytes, UIO_READ, uio);
338789Sahrens 			ppmapout(va);
339789Sahrens 			page_unlock(pp);
340789Sahrens 		} else {
341789Sahrens 			/* XXX use dmu_read here? */
342789Sahrens 			error = uiomove(addr, bytes, UIO_READ, uio);
343789Sahrens 		}
344789Sahrens 		len -= bytes;
345789Sahrens 		addr += bytes;
346789Sahrens 		off = 0;
347789Sahrens 		if (error)
348789Sahrens 			break;
349789Sahrens 	}
350789Sahrens 	return (error);
351789Sahrens }
352789Sahrens 
353789Sahrens uint_t zfs_read_chunk_size = 1024 * 1024; /* Tunable */
354789Sahrens 
355789Sahrens /*
356789Sahrens  * Read bytes from specified file into supplied buffer.
357789Sahrens  *
358789Sahrens  *	IN:	vp	- vnode of file to be read from.
359789Sahrens  *		uio	- structure supplying read location, range info,
360789Sahrens  *			  and return buffer.
361789Sahrens  *		ioflag	- SYNC flags; used to provide FRSYNC semantics.
362789Sahrens  *		cr	- credentials of caller.
363789Sahrens  *
364789Sahrens  *	OUT:	uio	- updated offset and range, buffer filled.
365789Sahrens  *
366789Sahrens  *	RETURN:	0 if success
367789Sahrens  *		error code if failure
368789Sahrens  *
369789Sahrens  * Side Effects:
370789Sahrens  *	vp - atime updated if byte count > 0
371789Sahrens  */
372789Sahrens /* ARGSUSED */
373789Sahrens static int
374789Sahrens zfs_read(vnode_t *vp, uio_t *uio, int ioflag, cred_t *cr, caller_context_t *ct)
375789Sahrens {
376789Sahrens 	znode_t		*zp = VTOZ(vp);
377789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
378789Sahrens 	uint64_t	delta;
379789Sahrens 	ssize_t		n, size, cnt, ndone;
380789Sahrens 	int		error, i, numbufs;
381789Sahrens 	dmu_buf_t	*dbp, **dbpp;
382789Sahrens 
383789Sahrens 	ZFS_ENTER(zfsvfs);
384789Sahrens 
385789Sahrens 	/*
386789Sahrens 	 * Validate file offset
387789Sahrens 	 */
388789Sahrens 	if (uio->uio_loffset < (offset_t)0) {
389789Sahrens 		ZFS_EXIT(zfsvfs);
390789Sahrens 		return (EINVAL);
391789Sahrens 	}
392789Sahrens 
393789Sahrens 	/*
394789Sahrens 	 * Fasttrack empty reads
395789Sahrens 	 */
396789Sahrens 	if (uio->uio_resid == 0) {
397789Sahrens 		ZFS_EXIT(zfsvfs);
398789Sahrens 		return (0);
399789Sahrens 	}
400789Sahrens 
401789Sahrens 	/*
402789Sahrens 	 * Check for region locks
403789Sahrens 	 */
404789Sahrens 	if (MANDMODE((mode_t)zp->z_phys->zp_mode)) {
405789Sahrens 		if (error = chklock(vp, FREAD,
406789Sahrens 		    uio->uio_loffset, uio->uio_resid, uio->uio_fmode, ct)) {
407789Sahrens 			ZFS_EXIT(zfsvfs);
408789Sahrens 			return (error);
409789Sahrens 		}
410789Sahrens 	}
411789Sahrens 
412789Sahrens 	/*
413789Sahrens 	 * If we're in FRSYNC mode, sync out this znode before reading it.
414789Sahrens 	 */
415789Sahrens 	zil_commit(zfsvfs->z_log, zp->z_last_itx, ioflag & FRSYNC);
416789Sahrens 
417789Sahrens 	/*
418789Sahrens 	 * Make sure nobody restructures the file (changes block size)
419789Sahrens 	 * in the middle of the read.
420789Sahrens 	 */
421789Sahrens 	rw_enter(&zp->z_grow_lock, RW_READER);
422789Sahrens 	/*
423789Sahrens 	 * If we are reading past end-of-file we can skip
424789Sahrens 	 * to the end; but we might still need to set atime.
425789Sahrens 	 */
426789Sahrens 	if (uio->uio_loffset >= zp->z_phys->zp_size) {
427789Sahrens 		cnt = 0;
428789Sahrens 		error = 0;
429789Sahrens 		goto out;
430789Sahrens 	}
431789Sahrens 
432789Sahrens 	cnt = MIN(uio->uio_resid, zp->z_phys->zp_size - uio->uio_loffset);
433789Sahrens 
434789Sahrens 	for (ndone = 0; ndone < cnt; ndone += zfs_read_chunk_size) {
435789Sahrens 		ASSERT(uio->uio_loffset < zp->z_phys->zp_size);
436789Sahrens 		n = MIN(zfs_read_chunk_size,
437789Sahrens 		    zp->z_phys->zp_size - uio->uio_loffset);
438789Sahrens 		n = MIN(n, cnt);
439789Sahrens 		dbpp = dmu_buf_hold_array(zfsvfs->z_os, zp->z_id,
440789Sahrens 		    uio->uio_loffset, n, &numbufs);
441789Sahrens 		if (error = dmu_buf_read_array_canfail(dbpp, numbufs)) {
442789Sahrens 			dmu_buf_rele_array(dbpp, numbufs);
443789Sahrens 			goto out;
444789Sahrens 		}
445789Sahrens 		/*
446789Sahrens 		 * Compute the adjustment to align the dmu buffers
447789Sahrens 		 * with the uio buffer.
448789Sahrens 		 */
449789Sahrens 		delta = uio->uio_loffset - dbpp[0]->db_offset;
450789Sahrens 
451789Sahrens 		for (i = 0; i < numbufs; i++) {
452789Sahrens 			if (n < 0)
453789Sahrens 				break;
454789Sahrens 			dbp = dbpp[i];
455789Sahrens 			size = dbp->db_size - delta;
456789Sahrens 			/*
457789Sahrens 			 * XXX -- this is correct, but may be suboptimal.
458789Sahrens 			 * If the pages are all clean, we don't need to
459789Sahrens 			 * go through mappedread().  Maybe the VMODSORT
460789Sahrens 			 * stuff can help us here.
461789Sahrens 			 */
462789Sahrens 			if (vn_has_cached_data(vp)) {
463789Sahrens 				error = mappedread(vp, (caddr_t)dbp->db_data +
464789Sahrens 				    delta, (n < size ? n : size), uio);
465789Sahrens 			} else {
466789Sahrens 				error = uiomove((caddr_t)dbp->db_data + delta,
467789Sahrens 					(n < size ? n : size), UIO_READ, uio);
468789Sahrens 			}
469789Sahrens 			if (error) {
470789Sahrens 				dmu_buf_rele_array(dbpp, numbufs);
471789Sahrens 				goto out;
472789Sahrens 			}
473789Sahrens 			n -= dbp->db_size;
474789Sahrens 			if (delta) {
475789Sahrens 				n += delta;
476789Sahrens 				delta = 0;
477789Sahrens 			}
478789Sahrens 		}
479789Sahrens 		dmu_buf_rele_array(dbpp, numbufs);
480789Sahrens 	}
481789Sahrens out:
482789Sahrens 	rw_exit(&zp->z_grow_lock);
483789Sahrens 
484789Sahrens 	ZFS_ACCESSTIME_STAMP(zfsvfs, zp);
485789Sahrens 	ZFS_EXIT(zfsvfs);
486789Sahrens 	return (error);
487789Sahrens }
488789Sahrens 
489789Sahrens /*
490789Sahrens  * Fault in the pages of the first n bytes specified by the uio structure.
491789Sahrens  * 1 byte in each page is touched and the uio struct is unmodified.
492789Sahrens  * Any error will exit this routine as this is only a best
493789Sahrens  * attempt to get the pages resident. This is a copy of ufs_trans_touch().
494789Sahrens  */
495789Sahrens static void
496789Sahrens zfs_prefault_write(ssize_t n, struct uio *uio)
497789Sahrens {
498789Sahrens 	struct iovec *iov;
499789Sahrens 	ulong_t cnt, incr;
500789Sahrens 	caddr_t p;
501789Sahrens 	uint8_t tmp;
502789Sahrens 
503789Sahrens 	iov = uio->uio_iov;
504789Sahrens 
505789Sahrens 	while (n) {
506789Sahrens 		cnt = MIN(iov->iov_len, n);
507789Sahrens 		if (cnt == 0) {
508789Sahrens 			/* empty iov entry */
509789Sahrens 			iov++;
510789Sahrens 			continue;
511789Sahrens 		}
512789Sahrens 		n -= cnt;
513789Sahrens 		/*
514789Sahrens 		 * touch each page in this segment.
515789Sahrens 		 */
516789Sahrens 		p = iov->iov_base;
517789Sahrens 		while (cnt) {
518789Sahrens 			switch (uio->uio_segflg) {
519789Sahrens 			case UIO_USERSPACE:
520789Sahrens 			case UIO_USERISPACE:
521789Sahrens 				if (fuword8(p, &tmp))
522789Sahrens 					return;
523789Sahrens 				break;
524789Sahrens 			case UIO_SYSSPACE:
525789Sahrens 				if (kcopy(p, &tmp, 1))
526789Sahrens 					return;
527789Sahrens 				break;
528789Sahrens 			}
529789Sahrens 			incr = MIN(cnt, PAGESIZE);
530789Sahrens 			p += incr;
531789Sahrens 			cnt -= incr;
532789Sahrens 		}
533789Sahrens 		/*
534789Sahrens 		 * touch the last byte in case it straddles a page.
535789Sahrens 		 */
536789Sahrens 		p--;
537789Sahrens 		switch (uio->uio_segflg) {
538789Sahrens 		case UIO_USERSPACE:
539789Sahrens 		case UIO_USERISPACE:
540789Sahrens 			if (fuword8(p, &tmp))
541789Sahrens 				return;
542789Sahrens 			break;
543789Sahrens 		case UIO_SYSSPACE:
544789Sahrens 			if (kcopy(p, &tmp, 1))
545789Sahrens 				return;
546789Sahrens 			break;
547789Sahrens 		}
548789Sahrens 		iov++;
549789Sahrens 	}
550789Sahrens }
551789Sahrens 
552789Sahrens /*
553789Sahrens  * Write the bytes to a file.
554789Sahrens  *
555789Sahrens  *	IN:	vp	- vnode of file to be written to.
556789Sahrens  *		uio	- structure supplying write location, range info,
557789Sahrens  *			  and data buffer.
558789Sahrens  *		ioflag	- FAPPEND flag set if in append mode.
559789Sahrens  *		cr	- credentials of caller.
560789Sahrens  *
561789Sahrens  *	OUT:	uio	- updated offset and range.
562789Sahrens  *
563789Sahrens  *	RETURN:	0 if success
564789Sahrens  *		error code if failure
565789Sahrens  *
566789Sahrens  * Timestamps:
567789Sahrens  *	vp - ctime|mtime updated if byte count > 0
568789Sahrens  *
569789Sahrens  * Note: zfs_write() holds z_append_lock across calls to txg_wait_open().
570789Sahrens  * It has to because of the semantics of FAPPEND.  The implication is that
571789Sahrens  * we must never grab z_append_lock while in an assigned tx.
572789Sahrens  */
573789Sahrens /* ARGSUSED */
574789Sahrens static int
575789Sahrens zfs_write(vnode_t *vp, uio_t *uio, int ioflag, cred_t *cr, caller_context_t *ct)
576789Sahrens {
577789Sahrens 	znode_t		*zp = VTOZ(vp);
578789Sahrens 	rlim64_t	limit = uio->uio_llimit;
579789Sahrens 	ssize_t		start_resid = uio->uio_resid;
580789Sahrens 	ssize_t		tx_bytes;
581789Sahrens 	uint64_t	end_size;
582789Sahrens 	dmu_tx_t	*tx;
583789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
584789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
585789Sahrens 	uint64_t	seq = 0;
586789Sahrens 	offset_t	woff;
587789Sahrens 	ssize_t		n, nbytes;
588789Sahrens 	int		max_blksz = zfsvfs->z_max_blksz;
589789Sahrens 	int		need_append_lock, error;
590789Sahrens 	krw_t		grow_rw = RW_READER;
591789Sahrens 
592789Sahrens 	if (limit == RLIM64_INFINITY || limit > MAXOFFSET_T)
593789Sahrens 		limit = MAXOFFSET_T;
594789Sahrens 
595789Sahrens 	n = start_resid;
596789Sahrens 
597789Sahrens 	/*
598789Sahrens 	 * Fasttrack empty write
599789Sahrens 	 */
600789Sahrens 	if (n == 0)
601789Sahrens 		return (0);
602789Sahrens 
603789Sahrens 	ZFS_ENTER(zfsvfs);
604789Sahrens 
605789Sahrens 	/*
606789Sahrens 	 * Pre-fault the pages to ensure slow (eg NFS) pages don't hold up txg
607789Sahrens 	 */
608789Sahrens 	zfs_prefault_write(MIN(start_resid, SPA_MAXBLOCKSIZE), uio);
609789Sahrens 
610789Sahrens 	/*
611789Sahrens 	 * If in append mode, set the io offset pointer to eof.
612789Sahrens 	 */
613789Sahrens 	need_append_lock = ioflag & FAPPEND;
614789Sahrens 	if (need_append_lock) {
615789Sahrens 		rw_enter(&zp->z_append_lock, RW_WRITER);
616789Sahrens 		woff = uio->uio_loffset = zp->z_phys->zp_size;
617789Sahrens 	} else {
618789Sahrens 		woff = uio->uio_loffset;
619789Sahrens 		/*
620789Sahrens 		 * Validate file offset
621789Sahrens 		 */
622789Sahrens 		if (woff < 0) {
623789Sahrens 			ZFS_EXIT(zfsvfs);
624789Sahrens 			return (EINVAL);
625789Sahrens 		}
626789Sahrens 
627789Sahrens 		/*
628789Sahrens 		 * If this write could change the file length,
629789Sahrens 		 * we need to synchronize with "appenders".
630789Sahrens 		 */
631789Sahrens 		if (woff < limit - n && woff + n > zp->z_phys->zp_size) {
632789Sahrens 			need_append_lock = TRUE;
633789Sahrens 			rw_enter(&zp->z_append_lock, RW_READER);
634789Sahrens 		}
635789Sahrens 	}
636789Sahrens 
637789Sahrens 	if (woff >= limit) {
638789Sahrens 		error = EFBIG;
639789Sahrens 		goto no_tx_done;
640789Sahrens 	}
641789Sahrens 
642789Sahrens 	if ((woff + n) > limit || woff > (limit - n))
643789Sahrens 		n = limit - woff;
644789Sahrens 
645789Sahrens 	/*
646789Sahrens 	 * Check for region locks
647789Sahrens 	 */
648789Sahrens 	if (MANDMODE((mode_t)zp->z_phys->zp_mode) &&
649789Sahrens 	    (error = chklock(vp, FWRITE, woff, n, uio->uio_fmode, ct)) != 0)
650789Sahrens 		goto no_tx_done;
651789Sahrens top:
652789Sahrens 	/*
653789Sahrens 	 * Make sure nobody restructures the file (changes block size)
654789Sahrens 	 * in the middle of the write.
655789Sahrens 	 */
656789Sahrens 	rw_enter(&zp->z_grow_lock, grow_rw);
657789Sahrens 
658789Sahrens 	end_size = MAX(zp->z_phys->zp_size, woff + n);
659789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
660789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
661789Sahrens 	dmu_tx_hold_write(tx, zp->z_id, woff, MIN(n, max_blksz));
662789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
663789Sahrens 	if (error) {
664789Sahrens 		dmu_tx_abort(tx);
665789Sahrens 		rw_exit(&zp->z_grow_lock);
666789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
667789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
668789Sahrens 			goto top;
669789Sahrens 		}
670789Sahrens 		goto no_tx_done;
671789Sahrens 	}
672789Sahrens 
673789Sahrens 	if (end_size > zp->z_blksz &&
674789Sahrens 	    (!ISP2(zp->z_blksz) || zp->z_blksz < max_blksz)) {
675789Sahrens 		uint64_t new_blksz;
676789Sahrens 		/*
677789Sahrens 		 * This write will increase the file size beyond
678789Sahrens 		 * the current block size so increase the block size.
679789Sahrens 		 */
680789Sahrens 		if (grow_rw == RW_READER && !rw_tryupgrade(&zp->z_grow_lock)) {
681789Sahrens 			dmu_tx_commit(tx);
682789Sahrens 			rw_exit(&zp->z_grow_lock);
683789Sahrens 			grow_rw = RW_WRITER;
684789Sahrens 			goto top;
685789Sahrens 		}
686789Sahrens 		if (zp->z_blksz > max_blksz) {
687789Sahrens 			ASSERT(!ISP2(zp->z_blksz));
688789Sahrens 			new_blksz = MIN(end_size, SPA_MAXBLOCKSIZE);
689789Sahrens 		} else {
690789Sahrens 			new_blksz = MIN(end_size, max_blksz);
691789Sahrens 		}
692789Sahrens 		error = zfs_grow_blocksize(zp, new_blksz, tx);
693789Sahrens 		if (error) {
694789Sahrens 			tx_bytes = 0;
695789Sahrens 			goto tx_done;
696789Sahrens 		}
697789Sahrens 	}
698789Sahrens 
699789Sahrens 	if (grow_rw == RW_WRITER) {
700789Sahrens 		rw_downgrade(&zp->z_grow_lock);
701789Sahrens 		grow_rw = RW_READER;
702789Sahrens 	}
703789Sahrens 
704789Sahrens 	/*
705789Sahrens 	 * The file data does not fit in the znode "cache", so we
706789Sahrens 	 * will be writing to the file block data buffers.
707789Sahrens 	 * Each buffer will be written in a separate transaction;
708789Sahrens 	 * this keeps the intent log records small and allows us
709789Sahrens 	 * to do more fine-grained space accounting.
710789Sahrens 	 */
711789Sahrens 	while (n > 0) {
712789Sahrens 		/*
713789Sahrens 		 * XXX - should we really limit each write to z_max_blksz?
714789Sahrens 		 * Perhaps we should use SPA_MAXBLOCKSIZE chunks?
715789Sahrens 		 */
716789Sahrens 		nbytes = MIN(n, max_blksz - P2PHASE(woff, max_blksz));
717789Sahrens 		rw_enter(&zp->z_map_lock, RW_READER);
718789Sahrens 
719789Sahrens 		tx_bytes = uio->uio_resid;
720789Sahrens 		if (vn_has_cached_data(vp)) {
721789Sahrens 			rw_exit(&zp->z_map_lock);
722789Sahrens 			error = mappedwrite(vp, woff, nbytes, uio, tx);
723789Sahrens 		} else {
724789Sahrens 			error = dmu_write_uio(zfsvfs->z_os, zp->z_id,
725789Sahrens 			    woff, nbytes, uio, tx);
726789Sahrens 			rw_exit(&zp->z_map_lock);
727789Sahrens 		}
728789Sahrens 		tx_bytes -= uio->uio_resid;
729789Sahrens 
730789Sahrens 		if (error) {
731789Sahrens 			/* XXX - do we need to "clean up" the dmu buffer? */
732789Sahrens 			break;
733789Sahrens 		}
734789Sahrens 
735789Sahrens 		ASSERT(tx_bytes == nbytes);
736789Sahrens 
737789Sahrens 		n -= nbytes;
738789Sahrens 		if (n <= 0)
739789Sahrens 			break;
740789Sahrens 
741789Sahrens 		/*
742789Sahrens 		 * We have more work ahead of us, so wrap up this transaction
743789Sahrens 		 * and start another.  Exact same logic as tx_done below.
744789Sahrens 		 */
745789Sahrens 		while ((end_size = zp->z_phys->zp_size) < uio->uio_loffset) {
746789Sahrens 			dmu_buf_will_dirty(zp->z_dbuf, tx);
747789Sahrens 			(void) atomic_cas_64(&zp->z_phys->zp_size, end_size,
748789Sahrens 			    uio->uio_loffset);
749789Sahrens 		}
750789Sahrens 		zfs_time_stamper(zp, CONTENT_MODIFIED, tx);
751789Sahrens 		seq = zfs_log_write(zilog, tx, TX_WRITE, zp, woff, tx_bytes,
752789Sahrens 		    ioflag, uio);
753789Sahrens 		dmu_tx_commit(tx);
754789Sahrens 
755789Sahrens 		/* Pre-fault the next set of pages */
756789Sahrens 		zfs_prefault_write(MIN(n, SPA_MAXBLOCKSIZE), uio);
757789Sahrens 
758789Sahrens 		/*
759789Sahrens 		 * Start another transaction.
760789Sahrens 		 */
761789Sahrens 		woff = uio->uio_loffset;
762789Sahrens 		tx = dmu_tx_create(zfsvfs->z_os);
763789Sahrens 		dmu_tx_hold_bonus(tx, zp->z_id);
764789Sahrens 		dmu_tx_hold_write(tx, zp->z_id, woff, MIN(n, max_blksz));
765789Sahrens 		error = dmu_tx_assign(tx, zfsvfs->z_assign);
766789Sahrens 		if (error) {
767789Sahrens 			dmu_tx_abort(tx);
768789Sahrens 			rw_exit(&zp->z_grow_lock);
769789Sahrens 			if (error == ERESTART &&
770789Sahrens 			    zfsvfs->z_assign == TXG_NOWAIT) {
771789Sahrens 				txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
772789Sahrens 				goto top;
773789Sahrens 			}
774789Sahrens 			goto no_tx_done;
775789Sahrens 		}
776789Sahrens 	}
777789Sahrens 
778789Sahrens tx_done:
779789Sahrens 
780789Sahrens 	if (tx_bytes != 0) {
781789Sahrens 		/*
782789Sahrens 		 * Update the file size if it has changed; account
783789Sahrens 		 * for possible concurrent updates.
784789Sahrens 		 */
785789Sahrens 		while ((end_size = zp->z_phys->zp_size) < uio->uio_loffset) {
786789Sahrens 			dmu_buf_will_dirty(zp->z_dbuf, tx);
787789Sahrens 			(void) atomic_cas_64(&zp->z_phys->zp_size, end_size,
788789Sahrens 			    uio->uio_loffset);
789789Sahrens 		}
790789Sahrens 		zfs_time_stamper(zp, CONTENT_MODIFIED, tx);
791789Sahrens 		seq = zfs_log_write(zilog, tx, TX_WRITE, zp, woff, tx_bytes,
792789Sahrens 		    ioflag, uio);
793789Sahrens 	}
794789Sahrens 	dmu_tx_commit(tx);
795789Sahrens 
796789Sahrens 	rw_exit(&zp->z_grow_lock);
797789Sahrens 
798789Sahrens no_tx_done:
799789Sahrens 
800789Sahrens 	if (need_append_lock)
801789Sahrens 		rw_exit(&zp->z_append_lock);
802789Sahrens 
803789Sahrens 	/*
804789Sahrens 	 * If we're in replay mode, or we made no progress, return error.
805789Sahrens 	 * Otherwise, it's at least a partial write, so it's successful.
806789Sahrens 	 */
807789Sahrens 	if (zfsvfs->z_assign >= TXG_INITIAL || uio->uio_resid == start_resid) {
808789Sahrens 		ZFS_EXIT(zfsvfs);
809789Sahrens 		return (error);
810789Sahrens 	}
811789Sahrens 
812789Sahrens 	zil_commit(zilog, seq, ioflag & (FSYNC | FDSYNC));
813789Sahrens 
814789Sahrens 	ZFS_EXIT(zfsvfs);
815789Sahrens 	return (0);
816789Sahrens }
817789Sahrens 
818789Sahrens /*
819789Sahrens  * Get data to generate a TX_WRITE intent log record.
820789Sahrens  */
821789Sahrens int
822789Sahrens zfs_get_data(void *arg, lr_write_t *lr)
823789Sahrens {
824789Sahrens 	zfsvfs_t *zfsvfs = arg;
825789Sahrens 	objset_t *os = zfsvfs->z_os;
826789Sahrens 	znode_t *zp;
827789Sahrens 	uint64_t off = lr->lr_offset;
828789Sahrens 	int dlen = lr->lr_length;  		/* length of user data */
829789Sahrens 	int reclen = lr->lr_common.lrc_reclen;
830789Sahrens 	int error = 0;
831789Sahrens 
832789Sahrens 	ASSERT(dlen != 0);
833789Sahrens 
834789Sahrens 	/*
835789Sahrens 	 * Nothing to do if the file has been removed or truncated.
836789Sahrens 	 */
837789Sahrens 	if (zfs_zget(zfsvfs, lr->lr_foid, &zp) != 0)
838789Sahrens 		return (ENOENT);
839789Sahrens 	if (off >= zp->z_phys->zp_size || zp->z_reap) {
840789Sahrens 		VN_RELE(ZTOV(zp));
841789Sahrens 		return (ENOENT);
842789Sahrens 	}
843789Sahrens 
844789Sahrens 	/*
845789Sahrens 	 * Write records come in two flavors: immediate and indirect.
846789Sahrens 	 * For small writes it's cheaper to store the data with the
847789Sahrens 	 * log record (immediate); for large writes it's cheaper to
848789Sahrens 	 * sync the data and get a pointer to it (indirect) so that
849789Sahrens 	 * we don't have to write the data twice.
850789Sahrens 	 */
851789Sahrens 	if (sizeof (lr_write_t) + dlen <= reclen) { /* immediate write */
852789Sahrens 		rw_enter(&zp->z_grow_lock, RW_READER);
853789Sahrens 		dmu_buf_t *db = dmu_buf_hold(os, lr->lr_foid, off);
854789Sahrens 		dmu_buf_read(db);
855789Sahrens 		bcopy((char *)db->db_data + off - db->db_offset, lr + 1, dlen);
856789Sahrens 		dmu_buf_rele(db);
857789Sahrens 		rw_exit(&zp->z_grow_lock);
858789Sahrens 	} else {
859789Sahrens 		/*
860789Sahrens 		 * We have to grab z_grow_lock as RW_WRITER because
861789Sahrens 		 * dmu_sync() can't handle concurrent dbuf_dirty() (6313856).
862789Sahrens 		 * z_grow_lock will be replaced with a range lock soon,
863789Sahrens 		 * which will eliminate the concurrency hit, but dmu_sync()
864789Sahrens 		 * really needs more thought.  It shouldn't have to rely on
865789Sahrens 		 * the caller to provide MT safety.
866789Sahrens 		 */
867789Sahrens 		rw_enter(&zp->z_grow_lock, RW_WRITER);
868789Sahrens 		txg_suspend(dmu_objset_pool(os));
869789Sahrens 		error = dmu_sync(os, lr->lr_foid, off, &lr->lr_blkoff,
870789Sahrens 		    &lr->lr_blkptr, lr->lr_common.lrc_txg);
871789Sahrens 		txg_resume(dmu_objset_pool(os));
872789Sahrens 		rw_exit(&zp->z_grow_lock);
873789Sahrens 	}
874789Sahrens 	VN_RELE(ZTOV(zp));
875789Sahrens 	return (error);
876789Sahrens }
877789Sahrens 
878789Sahrens /*ARGSUSED*/
879789Sahrens static int
880789Sahrens zfs_access(vnode_t *vp, int mode, int flags, cred_t *cr)
881789Sahrens {
882789Sahrens 	znode_t *zp = VTOZ(vp);
883789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
884789Sahrens 	int error;
885789Sahrens 
886789Sahrens 	ZFS_ENTER(zfsvfs);
887789Sahrens 	error = zfs_zaccess_rwx(zp, mode, cr);
888789Sahrens 	ZFS_EXIT(zfsvfs);
889789Sahrens 	return (error);
890789Sahrens }
891789Sahrens 
892789Sahrens /*
893789Sahrens  * Lookup an entry in a directory, or an extended attribute directory.
894789Sahrens  * If it exists, return a held vnode reference for it.
895789Sahrens  *
896789Sahrens  *	IN:	dvp	- vnode of directory to search.
897789Sahrens  *		nm	- name of entry to lookup.
898789Sahrens  *		pnp	- full pathname to lookup [UNUSED].
899789Sahrens  *		flags	- LOOKUP_XATTR set if looking for an attribute.
900789Sahrens  *		rdir	- root directory vnode [UNUSED].
901789Sahrens  *		cr	- credentials of caller.
902789Sahrens  *
903789Sahrens  *	OUT:	vpp	- vnode of located entry, NULL if not found.
904789Sahrens  *
905789Sahrens  *	RETURN:	0 if success
906789Sahrens  *		error code if failure
907789Sahrens  *
908789Sahrens  * Timestamps:
909789Sahrens  *	NA
910789Sahrens  */
911789Sahrens /* ARGSUSED */
912789Sahrens static int
913789Sahrens zfs_lookup(vnode_t *dvp, char *nm, vnode_t **vpp, struct pathname *pnp,
914789Sahrens     int flags, vnode_t *rdir, cred_t *cr)
915789Sahrens {
916789Sahrens 
917789Sahrens 	znode_t *zdp = VTOZ(dvp);
918789Sahrens 	zfsvfs_t *zfsvfs = zdp->z_zfsvfs;
919789Sahrens 	int	error;
920789Sahrens 
921789Sahrens 	ZFS_ENTER(zfsvfs);
922789Sahrens 
923789Sahrens 	*vpp = NULL;
924789Sahrens 
925789Sahrens 	if (flags & LOOKUP_XATTR) {
926789Sahrens 		/*
927789Sahrens 		 * We don't allow recursive attributes..
928789Sahrens 		 * Maybe someday we will.
929789Sahrens 		 */
930789Sahrens 		if (zdp->z_phys->zp_flags & ZFS_XATTR) {
931789Sahrens 			ZFS_EXIT(zfsvfs);
932789Sahrens 			return (EINVAL);
933789Sahrens 		}
934789Sahrens 
935789Sahrens 		if (error = zfs_get_xattrdir(VTOZ(dvp), vpp, cr)) {
936789Sahrens 			ZFS_EXIT(zfsvfs);
937789Sahrens 			return (error);
938789Sahrens 		}
939789Sahrens 
940789Sahrens 		/*
941789Sahrens 		 * Do we have permission to get into attribute directory?
942789Sahrens 		 */
943789Sahrens 
944789Sahrens 		if (error = zfs_zaccess(VTOZ(*vpp), ACE_EXECUTE, cr)) {
945789Sahrens 			VN_RELE(*vpp);
946789Sahrens 		}
947789Sahrens 
948789Sahrens 		ZFS_EXIT(zfsvfs);
949789Sahrens 		return (error);
950789Sahrens 	}
951789Sahrens 
9521460Smarks 	if (dvp->v_type != VDIR)
9531460Smarks 		return (ENOTDIR);
9541460Smarks 
955789Sahrens 	/*
956789Sahrens 	 * Check accessibility of directory.
957789Sahrens 	 */
958789Sahrens 
959789Sahrens 	if (error = zfs_zaccess(zdp, ACE_EXECUTE, cr)) {
960789Sahrens 		ZFS_EXIT(zfsvfs);
961789Sahrens 		return (error);
962789Sahrens 	}
963789Sahrens 
964789Sahrens 	if ((error = zfs_dirlook(zdp, nm, vpp)) == 0) {
965789Sahrens 
966789Sahrens 		/*
967789Sahrens 		 * Convert device special files
968789Sahrens 		 */
969789Sahrens 		if (IS_DEVVP(*vpp)) {
970789Sahrens 			vnode_t	*svp;
971789Sahrens 
972789Sahrens 			svp = specvp(*vpp, (*vpp)->v_rdev, (*vpp)->v_type, cr);
973789Sahrens 			VN_RELE(*vpp);
974789Sahrens 			if (svp == NULL)
975789Sahrens 				error = ENOSYS;
976789Sahrens 			else
977789Sahrens 				*vpp = svp;
978789Sahrens 		}
979789Sahrens 	}
980789Sahrens 
981789Sahrens 	ZFS_EXIT(zfsvfs);
982789Sahrens 	return (error);
983789Sahrens }
984789Sahrens 
985789Sahrens /*
986789Sahrens  * Attempt to create a new entry in a directory.  If the entry
987789Sahrens  * already exists, truncate the file if permissible, else return
988789Sahrens  * an error.  Return the vp of the created or trunc'd file.
989789Sahrens  *
990789Sahrens  *	IN:	dvp	- vnode of directory to put new file entry in.
991789Sahrens  *		name	- name of new file entry.
992789Sahrens  *		vap	- attributes of new file.
993789Sahrens  *		excl	- flag indicating exclusive or non-exclusive mode.
994789Sahrens  *		mode	- mode to open file with.
995789Sahrens  *		cr	- credentials of caller.
996789Sahrens  *		flag	- large file flag [UNUSED].
997789Sahrens  *
998789Sahrens  *	OUT:	vpp	- vnode of created or trunc'd entry.
999789Sahrens  *
1000789Sahrens  *	RETURN:	0 if success
1001789Sahrens  *		error code if failure
1002789Sahrens  *
1003789Sahrens  * Timestamps:
1004789Sahrens  *	dvp - ctime|mtime updated if new entry created
1005789Sahrens  *	 vp - ctime|mtime always, atime if new
1006789Sahrens  */
1007789Sahrens /* ARGSUSED */
1008789Sahrens static int
1009789Sahrens zfs_create(vnode_t *dvp, char *name, vattr_t *vap, vcexcl_t excl,
1010789Sahrens     int mode, vnode_t **vpp, cred_t *cr, int flag)
1011789Sahrens {
1012789Sahrens 	znode_t		*zp, *dzp = VTOZ(dvp);
1013789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
1014789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
1015789Sahrens 	uint64_t	seq = 0;
1016789Sahrens 	objset_t	*os = zfsvfs->z_os;
1017789Sahrens 	zfs_dirlock_t	*dl;
1018789Sahrens 	dmu_tx_t	*tx;
1019789Sahrens 	int		error;
1020789Sahrens 	uint64_t	zoid;
1021789Sahrens 
1022789Sahrens 	ZFS_ENTER(zfsvfs);
1023789Sahrens 
1024789Sahrens top:
1025789Sahrens 	*vpp = NULL;
1026789Sahrens 
1027789Sahrens 	if ((vap->va_mode & VSVTX) && secpolicy_vnode_stky_modify(cr))
1028789Sahrens 		vap->va_mode &= ~VSVTX;
1029789Sahrens 
1030789Sahrens 	if (*name == '\0') {
1031789Sahrens 		/*
1032789Sahrens 		 * Null component name refers to the directory itself.
1033789Sahrens 		 */
1034789Sahrens 		VN_HOLD(dvp);
1035789Sahrens 		zp = dzp;
1036789Sahrens 		dl = NULL;
1037789Sahrens 		error = 0;
1038789Sahrens 	} else {
1039789Sahrens 		/* possible VN_HOLD(zp) */
1040789Sahrens 		if (error = zfs_dirent_lock(&dl, dzp, name, &zp, 0)) {
1041789Sahrens 			if (strcmp(name, "..") == 0)
1042789Sahrens 				error = EISDIR;
1043789Sahrens 			ZFS_EXIT(zfsvfs);
1044789Sahrens 			return (error);
1045789Sahrens 		}
1046789Sahrens 	}
1047789Sahrens 
1048789Sahrens 	zoid = zp ? zp->z_id : -1ULL;
1049789Sahrens 
1050789Sahrens 	if (zp == NULL) {
1051789Sahrens 		/*
1052789Sahrens 		 * Create a new file object and update the directory
1053789Sahrens 		 * to reference it.
1054789Sahrens 		 */
1055789Sahrens 		if (error = zfs_zaccess(dzp, ACE_ADD_FILE, cr)) {
1056789Sahrens 			goto out;
1057789Sahrens 		}
1058789Sahrens 
1059789Sahrens 		/*
1060789Sahrens 		 * We only support the creation of regular files in
1061789Sahrens 		 * extended attribute directories.
1062789Sahrens 		 */
1063789Sahrens 		if ((dzp->z_phys->zp_flags & ZFS_XATTR) &&
1064789Sahrens 		    (vap->va_type != VREG)) {
1065789Sahrens 			error = EINVAL;
1066789Sahrens 			goto out;
1067789Sahrens 		}
1068789Sahrens 
1069789Sahrens 		tx = dmu_tx_create(os);
1070789Sahrens 		dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT);
1071789Sahrens 		dmu_tx_hold_bonus(tx, dzp->z_id);
1072789Sahrens 		dmu_tx_hold_zap(tx, dzp->z_id, 1);
1073789Sahrens 		if (dzp->z_phys->zp_flags & ZFS_INHERIT_ACE)
1074789Sahrens 			dmu_tx_hold_write(tx, DMU_NEW_OBJECT,
1075789Sahrens 			    0, SPA_MAXBLOCKSIZE);
1076789Sahrens 		error = dmu_tx_assign(tx, zfsvfs->z_assign);
1077789Sahrens 		if (error) {
1078789Sahrens 			dmu_tx_abort(tx);
1079789Sahrens 			zfs_dirent_unlock(dl);
1080789Sahrens 			if (error == ERESTART &&
1081789Sahrens 			    zfsvfs->z_assign == TXG_NOWAIT) {
1082789Sahrens 				txg_wait_open(dmu_objset_pool(os), 0);
1083789Sahrens 				goto top;
1084789Sahrens 			}
1085789Sahrens 			ZFS_EXIT(zfsvfs);
1086789Sahrens 			return (error);
1087789Sahrens 		}
1088789Sahrens 		zfs_mknode(dzp, vap, &zoid, tx, cr, 0, &zp, 0);
1089789Sahrens 		ASSERT(zp->z_id == zoid);
1090789Sahrens 		(void) zfs_link_create(dl, zp, tx, ZNEW);
1091789Sahrens 		seq = zfs_log_create(zilog, tx, TX_CREATE, dzp, zp, name);
1092789Sahrens 		dmu_tx_commit(tx);
1093789Sahrens 	} else {
1094789Sahrens 		/*
1095789Sahrens 		 * A directory entry already exists for this name.
1096789Sahrens 		 */
1097789Sahrens 		/*
1098789Sahrens 		 * Can't truncate an existing file if in exclusive mode.
1099789Sahrens 		 */
1100789Sahrens 		if (excl == EXCL) {
1101789Sahrens 			error = EEXIST;
1102789Sahrens 			goto out;
1103789Sahrens 		}
1104789Sahrens 		/*
1105789Sahrens 		 * Can't open a directory for writing.
1106789Sahrens 		 */
1107789Sahrens 		if ((ZTOV(zp)->v_type == VDIR) && (mode & S_IWRITE)) {
1108789Sahrens 			error = EISDIR;
1109789Sahrens 			goto out;
1110789Sahrens 		}
1111789Sahrens 		/*
1112789Sahrens 		 * Verify requested access to file.
1113789Sahrens 		 */
1114789Sahrens 		if (mode && (error = zfs_zaccess_rwx(zp, mode, cr))) {
1115789Sahrens 			goto out;
1116789Sahrens 		}
1117789Sahrens 		/*
1118789Sahrens 		 * Truncate regular files if requested.
1119789Sahrens 		 */
1120789Sahrens 
1121789Sahrens 		/*
1122789Sahrens 		 * Need to update dzp->z_seq?
1123789Sahrens 		 */
1124789Sahrens 
1125789Sahrens 		mutex_enter(&dzp->z_lock);
1126789Sahrens 		dzp->z_seq++;
1127789Sahrens 		mutex_exit(&dzp->z_lock);
1128789Sahrens 
1129789Sahrens 		if ((ZTOV(zp)->v_type == VREG) && (zp->z_phys->zp_size != 0) &&
1130789Sahrens 		    (vap->va_mask & AT_SIZE) && (vap->va_size == 0)) {
1131789Sahrens 			/*
1132789Sahrens 			 * Truncate the file.
1133789Sahrens 			 */
1134789Sahrens 			tx = dmu_tx_create(os);
1135789Sahrens 			dmu_tx_hold_bonus(tx, zoid);
1136789Sahrens 			dmu_tx_hold_free(tx, zoid, 0, DMU_OBJECT_END);
1137789Sahrens 			error = dmu_tx_assign(tx, zfsvfs->z_assign);
1138789Sahrens 			if (error) {
1139789Sahrens 				dmu_tx_abort(tx);
1140789Sahrens 				if (dl)
1141789Sahrens 					zfs_dirent_unlock(dl);
1142789Sahrens 				VN_RELE(ZTOV(zp));
1143789Sahrens 				if (error == ERESTART &&
1144789Sahrens 				    zfsvfs->z_assign == TXG_NOWAIT) {
1145789Sahrens 					txg_wait_open(dmu_objset_pool(os), 0);
1146789Sahrens 					goto top;
1147789Sahrens 				}
1148789Sahrens 				ZFS_EXIT(zfsvfs);
1149789Sahrens 				return (error);
1150789Sahrens 			}
1151789Sahrens 			/*
1152789Sahrens 			 * Grab the grow_lock to serialize this change with
1153789Sahrens 			 * respect to other file manipulations.
1154789Sahrens 			 */
1155789Sahrens 			rw_enter(&zp->z_grow_lock, RW_WRITER);
1156789Sahrens 			error = zfs_freesp(zp, 0, 0, mode, tx, cr);
1157789Sahrens 			if (error == 0) {
1158789Sahrens 				zfs_time_stamper(zp, CONTENT_MODIFIED, tx);
1159789Sahrens 				seq = zfs_log_truncate(zilog, tx,
1160789Sahrens 				    TX_TRUNCATE, zp, 0, 0);
1161789Sahrens 			}
1162789Sahrens 			rw_exit(&zp->z_grow_lock);
1163789Sahrens 			dmu_tx_commit(tx);
1164789Sahrens 		}
1165789Sahrens 	}
1166789Sahrens out:
1167789Sahrens 
1168789Sahrens 	if (dl)
1169789Sahrens 		zfs_dirent_unlock(dl);
1170789Sahrens 
1171789Sahrens 	if (error) {
1172789Sahrens 		if (zp)
1173789Sahrens 			VN_RELE(ZTOV(zp));
1174789Sahrens 	} else {
1175789Sahrens 		*vpp = ZTOV(zp);
1176789Sahrens 		/*
1177789Sahrens 		 * If vnode is for a device return a specfs vnode instead.
1178789Sahrens 		 */
1179789Sahrens 		if (IS_DEVVP(*vpp)) {
1180789Sahrens 			struct vnode *svp;
1181789Sahrens 
1182789Sahrens 			svp = specvp(*vpp, (*vpp)->v_rdev, (*vpp)->v_type, cr);
1183789Sahrens 			VN_RELE(*vpp);
1184789Sahrens 			if (svp == NULL) {
1185789Sahrens 				error = ENOSYS;
1186789Sahrens 			}
1187789Sahrens 			*vpp = svp;
1188789Sahrens 		}
1189789Sahrens 	}
1190789Sahrens 
1191789Sahrens 	zil_commit(zilog, seq, 0);
1192789Sahrens 
1193789Sahrens 	ZFS_EXIT(zfsvfs);
1194789Sahrens 	return (error);
1195789Sahrens }
1196789Sahrens 
1197789Sahrens /*
1198789Sahrens  * Remove an entry from a directory.
1199789Sahrens  *
1200789Sahrens  *	IN:	dvp	- vnode of directory to remove entry from.
1201789Sahrens  *		name	- name of entry to remove.
1202789Sahrens  *		cr	- credentials of caller.
1203789Sahrens  *
1204789Sahrens  *	RETURN:	0 if success
1205789Sahrens  *		error code if failure
1206789Sahrens  *
1207789Sahrens  * Timestamps:
1208789Sahrens  *	dvp - ctime|mtime
1209789Sahrens  *	 vp - ctime (if nlink > 0)
1210789Sahrens  */
1211789Sahrens static int
1212789Sahrens zfs_remove(vnode_t *dvp, char *name, cred_t *cr)
1213789Sahrens {
1214789Sahrens 	znode_t		*zp, *dzp = VTOZ(dvp);
1215789Sahrens 	znode_t		*xzp = NULL;
1216789Sahrens 	vnode_t		*vp;
1217789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
1218789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
1219789Sahrens 	uint64_t	seq = 0;
1220789Sahrens 	uint64_t	acl_obj, xattr_obj;
1221789Sahrens 	zfs_dirlock_t	*dl;
1222789Sahrens 	dmu_tx_t	*tx;
1223789Sahrens 	int		may_delete_now, delete_now = FALSE;
1224789Sahrens 	int		reaped;
1225789Sahrens 	int		error;
1226789Sahrens 
1227789Sahrens 	ZFS_ENTER(zfsvfs);
1228789Sahrens 
1229789Sahrens top:
1230789Sahrens 	/*
1231789Sahrens 	 * Attempt to lock directory; fail if entry doesn't exist.
1232789Sahrens 	 */
1233789Sahrens 	if (error = zfs_dirent_lock(&dl, dzp, name, &zp, ZEXISTS)) {
1234789Sahrens 		ZFS_EXIT(zfsvfs);
1235789Sahrens 		return (error);
1236789Sahrens 	}
1237789Sahrens 
1238789Sahrens 	vp = ZTOV(zp);
1239789Sahrens 
1240789Sahrens 	if (error = zfs_zaccess_delete(dzp, zp, cr)) {
1241789Sahrens 		goto out;
1242789Sahrens 	}
1243789Sahrens 
1244789Sahrens 	/*
1245789Sahrens 	 * Need to use rmdir for removing directories.
1246789Sahrens 	 */
1247789Sahrens 	if (vp->v_type == VDIR) {
1248789Sahrens 		error = EPERM;
1249789Sahrens 		goto out;
1250789Sahrens 	}
1251789Sahrens 
1252789Sahrens 	vnevent_remove(vp);
1253789Sahrens 
1254*1484Sek110237 	dnlc_remove(dvp, name);
1255*1484Sek110237 
1256789Sahrens 	mutex_enter(&vp->v_lock);
1257789Sahrens 	may_delete_now = vp->v_count == 1 && !vn_has_cached_data(vp);
1258789Sahrens 	mutex_exit(&vp->v_lock);
1259789Sahrens 
1260789Sahrens 	/*
1261789Sahrens 	 * We may delete the znode now, or we may put it on the delete queue;
1262789Sahrens 	 * it depends on whether we're the last link, and on whether there are
1263789Sahrens 	 * other holds on the vnode.  So we dmu_tx_hold() the right things to
1264789Sahrens 	 * allow for either case.
1265789Sahrens 	 */
1266789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
1267789Sahrens 	dmu_tx_hold_zap(tx, dzp->z_id, -1);
1268789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
1269789Sahrens 	if (may_delete_now)
1270789Sahrens 		dmu_tx_hold_free(tx, zp->z_id, 0, DMU_OBJECT_END);
1271789Sahrens 
1272789Sahrens 	/* are there any extended attributes? */
1273789Sahrens 	if ((xattr_obj = zp->z_phys->zp_xattr) != 0) {
1274789Sahrens 		/*
1275789Sahrens 		 * XXX - There is a possibility that the delete
1276789Sahrens 		 * of the parent file could succeed, but then we get
1277789Sahrens 		 * an ENOSPC when we try to delete the xattrs...
1278789Sahrens 		 * so we would need to re-try the deletes periodically
1279789Sahrens 		 */
1280789Sahrens 		/* XXX - do we need this if we are deleting? */
1281789Sahrens 		dmu_tx_hold_bonus(tx, xattr_obj);
1282789Sahrens 	}
1283789Sahrens 
1284789Sahrens 	/* are there any additional acls */
1285789Sahrens 	if ((acl_obj = zp->z_phys->zp_acl.z_acl_extern_obj) != 0 &&
1286789Sahrens 	    may_delete_now)
1287789Sahrens 		dmu_tx_hold_free(tx, acl_obj, 0, DMU_OBJECT_END);
1288789Sahrens 
1289789Sahrens 	/* charge as an update -- would be nice not to charge at all */
1290789Sahrens 	dmu_tx_hold_zap(tx, zfsvfs->z_dqueue, -1);
1291789Sahrens 
1292789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
1293789Sahrens 	if (error) {
1294789Sahrens 		dmu_tx_abort(tx);
1295789Sahrens 		zfs_dirent_unlock(dl);
1296789Sahrens 		VN_RELE(vp);
1297789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
1298789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
1299789Sahrens 			goto top;
1300789Sahrens 		}
1301789Sahrens 		ZFS_EXIT(zfsvfs);
1302789Sahrens 		return (error);
1303789Sahrens 	}
1304789Sahrens 
1305789Sahrens 	/*
1306789Sahrens 	 * Remove the directory entry.
1307789Sahrens 	 */
1308789Sahrens 	error = zfs_link_destroy(dl, zp, tx, 0, &reaped);
1309789Sahrens 
1310789Sahrens 	if (error) {
1311789Sahrens 		dmu_tx_commit(tx);
1312789Sahrens 		goto out;
1313789Sahrens 	}
1314789Sahrens 
1315789Sahrens 	if (reaped) {
1316789Sahrens 		mutex_enter(&vp->v_lock);
1317789Sahrens 		delete_now = may_delete_now &&
1318789Sahrens 		    vp->v_count == 1 && !vn_has_cached_data(vp) &&
1319789Sahrens 		    zp->z_phys->zp_xattr == xattr_obj &&
1320789Sahrens 		    zp->z_phys->zp_acl.z_acl_extern_obj == acl_obj;
1321789Sahrens 		mutex_exit(&vp->v_lock);
1322789Sahrens 	}
1323789Sahrens 
1324789Sahrens 	if (delete_now) {
1325789Sahrens 		if (zp->z_phys->zp_xattr) {
1326789Sahrens 			error = zfs_zget(zfsvfs, zp->z_phys->zp_xattr, &xzp);
1327789Sahrens 			ASSERT3U(error, ==, 0);
1328789Sahrens 			ASSERT3U(xzp->z_phys->zp_links, ==, 2);
1329789Sahrens 			dmu_buf_will_dirty(xzp->z_dbuf, tx);
1330789Sahrens 			mutex_enter(&xzp->z_lock);
1331789Sahrens 			xzp->z_reap = 1;
1332789Sahrens 			xzp->z_phys->zp_links = 0;
1333789Sahrens 			mutex_exit(&xzp->z_lock);
1334789Sahrens 			zfs_dq_add(xzp, tx);
1335789Sahrens 			zp->z_phys->zp_xattr = 0; /* probably unnecessary */
1336789Sahrens 		}
1337789Sahrens 		mutex_enter(&zp->z_lock);
1338789Sahrens 		mutex_enter(&vp->v_lock);
1339789Sahrens 		vp->v_count--;
1340789Sahrens 		ASSERT3U(vp->v_count, ==, 0);
1341789Sahrens 		mutex_exit(&vp->v_lock);
1342789Sahrens 		zp->z_active = 0;
1343789Sahrens 		mutex_exit(&zp->z_lock);
1344789Sahrens 		zfs_znode_delete(zp, tx);
1345789Sahrens 		VFS_RELE(zfsvfs->z_vfs);
1346789Sahrens 	} else if (reaped) {
1347789Sahrens 		zfs_dq_add(zp, tx);
1348789Sahrens 	}
1349789Sahrens 
1350789Sahrens 	seq = zfs_log_remove(zilog, tx, TX_REMOVE, dzp, name);
1351789Sahrens 
1352789Sahrens 	dmu_tx_commit(tx);
1353789Sahrens out:
1354789Sahrens 	zfs_dirent_unlock(dl);
1355789Sahrens 
1356789Sahrens 	if (!delete_now) {
1357789Sahrens 		VN_RELE(vp);
1358789Sahrens 	} else if (xzp) {
1359789Sahrens 		/* this rele delayed to prevent nesting transactions */
1360789Sahrens 		VN_RELE(ZTOV(xzp));
1361789Sahrens 	}
1362789Sahrens 
1363789Sahrens 	zil_commit(zilog, seq, 0);
1364789Sahrens 
1365789Sahrens 	ZFS_EXIT(zfsvfs);
1366789Sahrens 	return (error);
1367789Sahrens }
1368789Sahrens 
1369789Sahrens /*
1370789Sahrens  * Create a new directory and insert it into dvp using the name
1371789Sahrens  * provided.  Return a pointer to the inserted directory.
1372789Sahrens  *
1373789Sahrens  *	IN:	dvp	- vnode of directory to add subdir to.
1374789Sahrens  *		dirname	- name of new directory.
1375789Sahrens  *		vap	- attributes of new directory.
1376789Sahrens  *		cr	- credentials of caller.
1377789Sahrens  *
1378789Sahrens  *	OUT:	vpp	- vnode of created directory.
1379789Sahrens  *
1380789Sahrens  *	RETURN:	0 if success
1381789Sahrens  *		error code if failure
1382789Sahrens  *
1383789Sahrens  * Timestamps:
1384789Sahrens  *	dvp - ctime|mtime updated
1385789Sahrens  *	 vp - ctime|mtime|atime updated
1386789Sahrens  */
1387789Sahrens static int
1388789Sahrens zfs_mkdir(vnode_t *dvp, char *dirname, vattr_t *vap, vnode_t **vpp, cred_t *cr)
1389789Sahrens {
1390789Sahrens 	znode_t		*zp, *dzp = VTOZ(dvp);
1391789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
1392789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
1393789Sahrens 	uint64_t	seq = 0;
1394789Sahrens 	zfs_dirlock_t	*dl;
1395789Sahrens 	uint64_t	zoid = 0;
1396789Sahrens 	dmu_tx_t	*tx;
1397789Sahrens 	int		error;
1398789Sahrens 
1399789Sahrens 	ASSERT(vap->va_type == VDIR);
1400789Sahrens 
1401789Sahrens 	ZFS_ENTER(zfsvfs);
1402789Sahrens 
1403789Sahrens 	if (dzp->z_phys->zp_flags & ZFS_XATTR) {
1404789Sahrens 		ZFS_EXIT(zfsvfs);
1405789Sahrens 		return (EINVAL);
1406789Sahrens 	}
1407789Sahrens top:
1408789Sahrens 	*vpp = NULL;
1409789Sahrens 
1410789Sahrens 	/*
1411789Sahrens 	 * First make sure the new directory doesn't exist.
1412789Sahrens 	 */
1413789Sahrens 	if (error = zfs_dirent_lock(&dl, dzp, dirname, &zp, ZNEW)) {
1414789Sahrens 		ZFS_EXIT(zfsvfs);
1415789Sahrens 		return (error);
1416789Sahrens 	}
1417789Sahrens 
14181231Smarks 	if (error = zfs_zaccess(dzp, ACE_ADD_SUBDIRECTORY, cr)) {
14191231Smarks 		zfs_dirent_unlock(dl);
14201231Smarks 		ZFS_EXIT(zfsvfs);
14211231Smarks 		return (error);
14221231Smarks 	}
14231231Smarks 
1424789Sahrens 	/*
1425789Sahrens 	 * Add a new entry to the directory.
1426789Sahrens 	 */
1427789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
1428789Sahrens 	dmu_tx_hold_zap(tx, dzp->z_id, 1);
1429789Sahrens 	dmu_tx_hold_zap(tx, DMU_NEW_OBJECT, 0);
1430789Sahrens 	if (dzp->z_phys->zp_flags & ZFS_INHERIT_ACE)
1431789Sahrens 		dmu_tx_hold_write(tx, DMU_NEW_OBJECT,
1432789Sahrens 		    0, SPA_MAXBLOCKSIZE);
1433789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
1434789Sahrens 	if (error) {
1435789Sahrens 		dmu_tx_abort(tx);
1436789Sahrens 		zfs_dirent_unlock(dl);
1437789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
1438789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
1439789Sahrens 			goto top;
1440789Sahrens 		}
1441789Sahrens 		ZFS_EXIT(zfsvfs);
1442789Sahrens 		return (error);
1443789Sahrens 	}
1444789Sahrens 
1445789Sahrens 	/*
1446789Sahrens 	 * Create new node.
1447789Sahrens 	 */
1448789Sahrens 	zfs_mknode(dzp, vap, &zoid, tx, cr, 0, &zp, 0);
1449789Sahrens 
1450789Sahrens 	/*
1451789Sahrens 	 * Now put new name in parent dir.
1452789Sahrens 	 */
1453789Sahrens 	(void) zfs_link_create(dl, zp, tx, ZNEW);
1454789Sahrens 
1455789Sahrens 	*vpp = ZTOV(zp);
1456789Sahrens 
1457789Sahrens 	seq = zfs_log_create(zilog, tx, TX_MKDIR, dzp, zp, dirname);
1458789Sahrens 	dmu_tx_commit(tx);
1459789Sahrens 
1460789Sahrens 	zfs_dirent_unlock(dl);
1461789Sahrens 
1462789Sahrens 	zil_commit(zilog, seq, 0);
1463789Sahrens 
1464789Sahrens 	ZFS_EXIT(zfsvfs);
1465789Sahrens 	return (0);
1466789Sahrens }
1467789Sahrens 
1468789Sahrens /*
1469789Sahrens  * Remove a directory subdir entry.  If the current working
1470789Sahrens  * directory is the same as the subdir to be removed, the
1471789Sahrens  * remove will fail.
1472789Sahrens  *
1473789Sahrens  *	IN:	dvp	- vnode of directory to remove from.
1474789Sahrens  *		name	- name of directory to be removed.
1475789Sahrens  *		cwd	- vnode of current working directory.
1476789Sahrens  *		cr	- credentials of caller.
1477789Sahrens  *
1478789Sahrens  *	RETURN:	0 if success
1479789Sahrens  *		error code if failure
1480789Sahrens  *
1481789Sahrens  * Timestamps:
1482789Sahrens  *	dvp - ctime|mtime updated
1483789Sahrens  */
1484789Sahrens static int
1485789Sahrens zfs_rmdir(vnode_t *dvp, char *name, vnode_t *cwd, cred_t *cr)
1486789Sahrens {
1487789Sahrens 	znode_t		*dzp = VTOZ(dvp);
1488789Sahrens 	znode_t		*zp;
1489789Sahrens 	vnode_t		*vp;
1490789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
1491789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
1492789Sahrens 	uint64_t	seq = 0;
1493789Sahrens 	zfs_dirlock_t	*dl;
1494789Sahrens 	dmu_tx_t	*tx;
1495789Sahrens 	int		error;
1496789Sahrens 
1497789Sahrens 	ZFS_ENTER(zfsvfs);
1498789Sahrens 
1499789Sahrens top:
1500789Sahrens 	zp = NULL;
1501789Sahrens 
1502789Sahrens 	/*
1503789Sahrens 	 * Attempt to lock directory; fail if entry doesn't exist.
1504789Sahrens 	 */
1505789Sahrens 	if (error = zfs_dirent_lock(&dl, dzp, name, &zp, ZEXISTS)) {
1506789Sahrens 		ZFS_EXIT(zfsvfs);
1507789Sahrens 		return (error);
1508789Sahrens 	}
1509789Sahrens 
1510789Sahrens 	vp = ZTOV(zp);
1511789Sahrens 
1512789Sahrens 	if (error = zfs_zaccess_delete(dzp, zp, cr)) {
1513789Sahrens 		goto out;
1514789Sahrens 	}
1515789Sahrens 
1516789Sahrens 	if (vp->v_type != VDIR) {
1517789Sahrens 		error = ENOTDIR;
1518789Sahrens 		goto out;
1519789Sahrens 	}
1520789Sahrens 
1521789Sahrens 	if (vp == cwd) {
1522789Sahrens 		error = EINVAL;
1523789Sahrens 		goto out;
1524789Sahrens 	}
1525789Sahrens 
1526789Sahrens 	vnevent_rmdir(vp);
1527789Sahrens 
1528789Sahrens 	/*
1529789Sahrens 	 * Grab a lock on the parent pointer make sure we play well
1530789Sahrens 	 * with the treewalk and directory rename code.
1531789Sahrens 	 */
1532789Sahrens 	rw_enter(&zp->z_parent_lock, RW_WRITER);
1533789Sahrens 
1534789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
1535789Sahrens 	dmu_tx_hold_zap(tx, dzp->z_id, 1);
1536789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
1537789Sahrens 	dmu_tx_hold_zap(tx, zfsvfs->z_dqueue, 1);
1538789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
1539789Sahrens 	if (error) {
1540789Sahrens 		dmu_tx_abort(tx);
1541789Sahrens 		rw_exit(&zp->z_parent_lock);
1542789Sahrens 		zfs_dirent_unlock(dl);
1543789Sahrens 		VN_RELE(vp);
1544789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
1545789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
1546789Sahrens 			goto top;
1547789Sahrens 		}
1548789Sahrens 		ZFS_EXIT(zfsvfs);
1549789Sahrens 		return (error);
1550789Sahrens 	}
1551789Sahrens 
1552789Sahrens 	error = zfs_link_destroy(dl, zp, tx, 0, NULL);
1553789Sahrens 
1554789Sahrens 	if (error == 0)
1555789Sahrens 		seq = zfs_log_remove(zilog, tx, TX_RMDIR, dzp, name);
1556789Sahrens 
1557789Sahrens 	dmu_tx_commit(tx);
1558789Sahrens 
1559789Sahrens 	rw_exit(&zp->z_parent_lock);
1560789Sahrens out:
1561789Sahrens 	zfs_dirent_unlock(dl);
1562789Sahrens 
1563789Sahrens 	VN_RELE(vp);
1564789Sahrens 
1565789Sahrens 	zil_commit(zilog, seq, 0);
1566789Sahrens 
1567789Sahrens 	ZFS_EXIT(zfsvfs);
1568789Sahrens 	return (error);
1569789Sahrens }
1570789Sahrens 
1571789Sahrens /*
1572789Sahrens  * Read as many directory entries as will fit into the provided
1573789Sahrens  * buffer from the given directory cursor position (specified in
1574789Sahrens  * the uio structure.
1575789Sahrens  *
1576789Sahrens  *	IN:	vp	- vnode of directory to read.
1577789Sahrens  *		uio	- structure supplying read location, range info,
1578789Sahrens  *			  and return buffer.
1579789Sahrens  *		cr	- credentials of caller.
1580789Sahrens  *
1581789Sahrens  *	OUT:	uio	- updated offset and range, buffer filled.
1582789Sahrens  *		eofp	- set to true if end-of-file detected.
1583789Sahrens  *
1584789Sahrens  *	RETURN:	0 if success
1585789Sahrens  *		error code if failure
1586789Sahrens  *
1587789Sahrens  * Timestamps:
1588789Sahrens  *	vp - atime updated
1589789Sahrens  *
1590789Sahrens  * Note that the low 4 bits of the cookie returned by zap is always zero.
1591789Sahrens  * This allows us to use the low range for "special" directory entries:
1592789Sahrens  * We use 0 for '.', and 1 for '..'.  If this is the root of the filesystem,
1593789Sahrens  * we use the offset 2 for the '.zfs' directory.
1594789Sahrens  */
1595789Sahrens /* ARGSUSED */
1596789Sahrens static int
1597789Sahrens zfs_readdir(vnode_t *vp, uio_t *uio, cred_t *cr, int *eofp)
1598789Sahrens {
1599789Sahrens 	znode_t		*zp = VTOZ(vp);
1600789Sahrens 	iovec_t		*iovp;
1601789Sahrens 	dirent64_t	*odp;
1602789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
1603869Sperrin 	objset_t	*os;
1604789Sahrens 	caddr_t		outbuf;
1605789Sahrens 	size_t		bufsize;
1606789Sahrens 	zap_cursor_t	zc;
1607789Sahrens 	zap_attribute_t	zap;
1608789Sahrens 	uint_t		bytes_wanted;
1609789Sahrens 	ushort_t	this_reclen;
1610789Sahrens 	uint64_t	offset; /* must be unsigned; checks for < 1 */
1611789Sahrens 	off64_t		*next;
1612789Sahrens 	int		local_eof;
1613869Sperrin 	int		outcount;
1614869Sperrin 	int		error;
1615869Sperrin 	uint8_t		prefetch;
1616789Sahrens 
1617789Sahrens 	ZFS_ENTER(zfsvfs);
1618789Sahrens 
1619789Sahrens 	/*
1620789Sahrens 	 * If we are not given an eof variable,
1621789Sahrens 	 * use a local one.
1622789Sahrens 	 */
1623789Sahrens 	if (eofp == NULL)
1624789Sahrens 		eofp = &local_eof;
1625789Sahrens 
1626789Sahrens 	/*
1627789Sahrens 	 * Check for valid iov_len.
1628789Sahrens 	 */
1629789Sahrens 	if (uio->uio_iov->iov_len <= 0) {
1630789Sahrens 		ZFS_EXIT(zfsvfs);
1631789Sahrens 		return (EINVAL);
1632789Sahrens 	}
1633789Sahrens 
1634789Sahrens 	/*
1635789Sahrens 	 * Quit if directory has been removed (posix)
1636789Sahrens 	 */
1637789Sahrens 	if ((*eofp = zp->z_reap) != 0) {
1638789Sahrens 		ZFS_EXIT(zfsvfs);
1639789Sahrens 		return (0);
1640789Sahrens 	}
1641789Sahrens 
1642869Sperrin 	error = 0;
1643869Sperrin 	os = zfsvfs->z_os;
1644869Sperrin 	offset = uio->uio_loffset;
1645869Sperrin 	prefetch = zp->z_zn_prefetch;
1646869Sperrin 
1647789Sahrens 	/*
1648789Sahrens 	 * Initialize the iterator cursor.
1649789Sahrens 	 */
1650789Sahrens 	if (offset <= 3) {
1651789Sahrens 		/*
1652789Sahrens 		 * Start iteration from the beginning of the directory.
1653789Sahrens 		 */
1654869Sperrin 		zap_cursor_init(&zc, os, zp->z_id);
1655789Sahrens 	} else {
1656789Sahrens 		/*
1657789Sahrens 		 * The offset is a serialized cursor.
1658789Sahrens 		 */
1659869Sperrin 		zap_cursor_init_serialized(&zc, os, zp->z_id, offset);
1660789Sahrens 	}
1661789Sahrens 
1662789Sahrens 	/*
1663789Sahrens 	 * Get space to change directory entries into fs independent format.
1664789Sahrens 	 */
1665789Sahrens 	iovp = uio->uio_iov;
1666789Sahrens 	bytes_wanted = iovp->iov_len;
1667789Sahrens 	if (uio->uio_segflg != UIO_SYSSPACE || uio->uio_iovcnt != 1) {
1668789Sahrens 		bufsize = bytes_wanted;
1669789Sahrens 		outbuf = kmem_alloc(bufsize, KM_SLEEP);
1670789Sahrens 		odp = (struct dirent64 *)outbuf;
1671789Sahrens 	} else {
1672789Sahrens 		bufsize = bytes_wanted;
1673789Sahrens 		odp = (struct dirent64 *)iovp->iov_base;
1674789Sahrens 	}
1675789Sahrens 
1676789Sahrens 	/*
1677789Sahrens 	 * Transform to file-system independent format
1678789Sahrens 	 */
1679789Sahrens 	outcount = 0;
1680789Sahrens 	while (outcount < bytes_wanted) {
1681789Sahrens 		/*
1682789Sahrens 		 * Special case `.', `..', and `.zfs'.
1683789Sahrens 		 */
1684789Sahrens 		if (offset == 0) {
1685789Sahrens 			(void) strcpy(zap.za_name, ".");
1686789Sahrens 			zap.za_first_integer = zp->z_id;
1687789Sahrens 			this_reclen = DIRENT64_RECLEN(1);
1688789Sahrens 		} else if (offset == 1) {
1689789Sahrens 			(void) strcpy(zap.za_name, "..");
1690789Sahrens 			zap.za_first_integer = zp->z_phys->zp_parent;
1691789Sahrens 			this_reclen = DIRENT64_RECLEN(2);
1692789Sahrens 		} else if (offset == 2 && zfs_show_ctldir(zp)) {
1693789Sahrens 			(void) strcpy(zap.za_name, ZFS_CTLDIR_NAME);
1694789Sahrens 			zap.za_first_integer = ZFSCTL_INO_ROOT;
1695789Sahrens 			this_reclen =
1696789Sahrens 			    DIRENT64_RECLEN(sizeof (ZFS_CTLDIR_NAME) - 1);
1697789Sahrens 		} else {
1698789Sahrens 			/*
1699789Sahrens 			 * Grab next entry.
1700789Sahrens 			 */
1701789Sahrens 			if (error = zap_cursor_retrieve(&zc, &zap)) {
1702789Sahrens 				if ((*eofp = (error == ENOENT)) != 0)
1703789Sahrens 					break;
1704789Sahrens 				else
1705789Sahrens 					goto update;
1706789Sahrens 			}
1707789Sahrens 
1708789Sahrens 			if (zap.za_integer_length != 8 ||
1709789Sahrens 			    zap.za_num_integers != 1) {
1710789Sahrens 				cmn_err(CE_WARN, "zap_readdir: bad directory "
1711789Sahrens 				    "entry, obj = %lld, offset = %lld\n",
1712789Sahrens 				    (u_longlong_t)zp->z_id,
1713789Sahrens 				    (u_longlong_t)offset);
1714789Sahrens 				error = ENXIO;
1715789Sahrens 				goto update;
1716789Sahrens 			}
1717789Sahrens 			this_reclen = DIRENT64_RECLEN(strlen(zap.za_name));
1718789Sahrens 		}
1719789Sahrens 
1720789Sahrens 		/*
1721789Sahrens 		 * Will this entry fit in the buffer?
1722789Sahrens 		 */
1723789Sahrens 		if (outcount + this_reclen > bufsize) {
1724789Sahrens 			/*
1725789Sahrens 			 * Did we manage to fit anything in the buffer?
1726789Sahrens 			 */
1727789Sahrens 			if (!outcount) {
1728789Sahrens 				error = EINVAL;
1729789Sahrens 				goto update;
1730789Sahrens 			}
1731789Sahrens 			break;
1732789Sahrens 		}
1733789Sahrens 		/*
1734789Sahrens 		 * Add this entry:
1735789Sahrens 		 */
1736789Sahrens 		odp->d_ino = (ino64_t)zap.za_first_integer;
1737789Sahrens 		odp->d_reclen = (ushort_t)this_reclen;
1738789Sahrens 		/* NOTE: d_off is the offset for the *next* entry */
1739789Sahrens 		next = &(odp->d_off);
1740789Sahrens 		(void) strncpy(odp->d_name, zap.za_name,
1741789Sahrens 		    DIRENT64_NAMELEN(this_reclen));
1742789Sahrens 		outcount += this_reclen;
1743789Sahrens 		odp = (dirent64_t *)((intptr_t)odp + this_reclen);
1744789Sahrens 
1745789Sahrens 		ASSERT(outcount <= bufsize);
1746789Sahrens 
1747789Sahrens 		/* Prefetch znode */
1748869Sperrin 		if (prefetch)
1749869Sperrin 			dmu_prefetch(os, zap.za_first_integer, 0, 0);
1750789Sahrens 
1751789Sahrens 		/*
1752789Sahrens 		 * Move to the next entry, fill in the previous offset.
1753789Sahrens 		 */
1754789Sahrens 		if (offset > 2 || (offset == 2 && !zfs_show_ctldir(zp))) {
1755789Sahrens 			zap_cursor_advance(&zc);
1756789Sahrens 			offset = zap_cursor_serialize(&zc);
1757789Sahrens 		} else {
1758789Sahrens 			offset += 1;
1759789Sahrens 		}
1760789Sahrens 		*next = offset;
1761789Sahrens 	}
1762869Sperrin 	zp->z_zn_prefetch = B_FALSE; /* a lookup will re-enable pre-fetching */
1763789Sahrens 
1764789Sahrens 	if (uio->uio_segflg == UIO_SYSSPACE && uio->uio_iovcnt == 1) {
1765789Sahrens 		iovp->iov_base += outcount;
1766789Sahrens 		iovp->iov_len -= outcount;
1767789Sahrens 		uio->uio_resid -= outcount;
1768789Sahrens 	} else if (error = uiomove(outbuf, (long)outcount, UIO_READ, uio)) {
1769789Sahrens 		/*
1770789Sahrens 		 * Reset the pointer.
1771789Sahrens 		 */
1772789Sahrens 		offset = uio->uio_loffset;
1773789Sahrens 	}
1774789Sahrens 
1775789Sahrens update:
1776885Sahrens 	zap_cursor_fini(&zc);
1777789Sahrens 	if (uio->uio_segflg != UIO_SYSSPACE || uio->uio_iovcnt != 1)
1778789Sahrens 		kmem_free(outbuf, bufsize);
1779789Sahrens 
1780789Sahrens 	if (error == ENOENT)
1781789Sahrens 		error = 0;
1782789Sahrens 
1783789Sahrens 	ZFS_ACCESSTIME_STAMP(zfsvfs, zp);
1784789Sahrens 
1785789Sahrens 	uio->uio_loffset = offset;
1786789Sahrens 	ZFS_EXIT(zfsvfs);
1787789Sahrens 	return (error);
1788789Sahrens }
1789789Sahrens 
1790789Sahrens /* ARGSUSED */
1791789Sahrens static int
1792789Sahrens zfs_fsync(vnode_t *vp, int syncflag, cred_t *cr)
1793789Sahrens {
1794789Sahrens 	znode_t	*zp = VTOZ(vp);
1795789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
1796789Sahrens 
1797789Sahrens 	ZFS_ENTER(zfsvfs);
1798789Sahrens 	zil_commit(zfsvfs->z_log, zp->z_last_itx, FSYNC);
1799789Sahrens 	ZFS_EXIT(zfsvfs);
1800789Sahrens 	return (0);
1801789Sahrens }
1802789Sahrens 
1803789Sahrens /*
1804789Sahrens  * Get the requested file attributes and place them in the provided
1805789Sahrens  * vattr structure.
1806789Sahrens  *
1807789Sahrens  *	IN:	vp	- vnode of file.
1808789Sahrens  *		vap	- va_mask identifies requested attributes.
1809789Sahrens  *		flags	- [UNUSED]
1810789Sahrens  *		cr	- credentials of caller.
1811789Sahrens  *
1812789Sahrens  *	OUT:	vap	- attribute values.
1813789Sahrens  *
1814789Sahrens  *	RETURN:	0 (always succeeds)
1815789Sahrens  */
1816789Sahrens /* ARGSUSED */
1817789Sahrens static int
1818789Sahrens zfs_getattr(vnode_t *vp, vattr_t *vap, int flags, cred_t *cr)
1819789Sahrens {
1820789Sahrens 	znode_t *zp = VTOZ(vp);
1821789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
1822789Sahrens 	znode_phys_t *pzp = zp->z_phys;
1823789Sahrens 	int	error;
1824789Sahrens 
1825789Sahrens 	ZFS_ENTER(zfsvfs);
1826789Sahrens 
1827789Sahrens 	/*
1828789Sahrens 	 * Return all attributes.  It's cheaper to provide the answer
1829789Sahrens 	 * than to determine whether we were asked the question.
1830789Sahrens 	 */
1831789Sahrens 	mutex_enter(&zp->z_lock);
1832789Sahrens 
1833789Sahrens 	vap->va_type = vp->v_type;
1834789Sahrens 	vap->va_mode = pzp->zp_mode & MODEMASK;
1835789Sahrens 	vap->va_uid = zp->z_phys->zp_uid;
1836789Sahrens 	vap->va_gid = zp->z_phys->zp_gid;
1837789Sahrens 	vap->va_fsid = zp->z_zfsvfs->z_vfs->vfs_dev;
1838789Sahrens 	vap->va_nodeid = zp->z_id;
1839789Sahrens 	vap->va_nlink = MIN(pzp->zp_links, UINT32_MAX);	/* nlink_t limit! */
1840789Sahrens 	vap->va_size = pzp->zp_size;
1841789Sahrens 	vap->va_rdev = pzp->zp_rdev;
1842789Sahrens 	vap->va_seq = zp->z_seq;
1843789Sahrens 
1844789Sahrens 	ZFS_TIME_DECODE(&vap->va_atime, pzp->zp_atime);
1845789Sahrens 	ZFS_TIME_DECODE(&vap->va_mtime, pzp->zp_mtime);
1846789Sahrens 	ZFS_TIME_DECODE(&vap->va_ctime, pzp->zp_ctime);
1847789Sahrens 
1848789Sahrens 	/*
1849905Smarks 	 * If ACL is trivial don't bother looking for ACE_READ_ATTRIBUTES.
1850905Smarks 	 * Also, if we are the owner don't bother, since owner should
1851905Smarks 	 * always be allowed to read basic attributes of file.
1852789Sahrens 	 */
1853905Smarks 	if (!(zp->z_phys->zp_flags & ZFS_ACL_TRIVIAL) &&
1854905Smarks 	    (zp->z_phys->zp_uid != crgetuid(cr))) {
1855905Smarks 		if (error = zfs_zaccess(zp, ACE_READ_ATTRIBUTES, cr)) {
1856789Sahrens 			mutex_exit(&zp->z_lock);
1857789Sahrens 			ZFS_EXIT(zfsvfs);
1858789Sahrens 			return (error);
1859789Sahrens 		}
1860789Sahrens 	}
1861789Sahrens 
1862789Sahrens 	mutex_exit(&zp->z_lock);
1863789Sahrens 
1864789Sahrens 	dmu_object_size_from_db(zp->z_dbuf, &vap->va_blksize, &vap->va_nblocks);
1865789Sahrens 
1866789Sahrens 	if (zp->z_blksz == 0) {
1867789Sahrens 		/*
1868789Sahrens 		 * Block size hasn't been set; suggest maximal I/O transfers.
1869789Sahrens 		 */
1870789Sahrens 		vap->va_blksize = zfsvfs->z_max_blksz;
1871789Sahrens 	}
1872789Sahrens 
1873789Sahrens 	ZFS_EXIT(zfsvfs);
1874789Sahrens 	return (0);
1875789Sahrens }
1876789Sahrens 
1877789Sahrens /*
1878789Sahrens  * Set the file attributes to the values contained in the
1879789Sahrens  * vattr structure.
1880789Sahrens  *
1881789Sahrens  *	IN:	vp	- vnode of file to be modified.
1882789Sahrens  *		vap	- new attribute values.
1883789Sahrens  *		flags	- ATTR_UTIME set if non-default time values provided.
1884789Sahrens  *		cr	- credentials of caller.
1885789Sahrens  *
1886789Sahrens  *	RETURN:	0 if success
1887789Sahrens  *		error code if failure
1888789Sahrens  *
1889789Sahrens  * Timestamps:
1890789Sahrens  *	vp - ctime updated, mtime updated if size changed.
1891789Sahrens  */
1892789Sahrens /* ARGSUSED */
1893789Sahrens static int
1894789Sahrens zfs_setattr(vnode_t *vp, vattr_t *vap, int flags, cred_t *cr,
1895789Sahrens 	caller_context_t *ct)
1896789Sahrens {
1897789Sahrens 	struct znode	*zp = VTOZ(vp);
1898789Sahrens 	znode_phys_t	*pzp = zp->z_phys;
1899789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
1900789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
1901789Sahrens 	uint64_t	seq = 0;
1902789Sahrens 	dmu_tx_t	*tx;
1903789Sahrens 	uint_t		mask = vap->va_mask;
1904789Sahrens 	uint_t		mask_applied = 0;
1905789Sahrens 	vattr_t		oldva;
19061115Smarks 	int		trim_mask = FALSE;
19071115Smarks 	int		saved_mask;
1908789Sahrens 	uint64_t	new_mode;
19091231Smarks 	znode_t		*attrzp;
1910789Sahrens 	int		have_grow_lock;
1911789Sahrens 	int		need_policy = FALSE;
1912789Sahrens 	int		err;
1913789Sahrens 
1914789Sahrens 	if (mask == 0)
1915789Sahrens 		return (0);
1916789Sahrens 
1917789Sahrens 	if (mask & AT_NOSET)
1918789Sahrens 		return (EINVAL);
1919789Sahrens 
1920789Sahrens 	if (mask & AT_SIZE && vp->v_type == VDIR)
1921789Sahrens 		return (EISDIR);
1922789Sahrens 
19231394Smarks 	if (mask & AT_SIZE && vp->v_type != VREG && vp->v_type != VFIFO)
19241308Smarks 		return (EINVAL);
19251308Smarks 
1926789Sahrens 	ZFS_ENTER(zfsvfs);
1927789Sahrens 
1928789Sahrens top:
1929789Sahrens 	have_grow_lock = FALSE;
19301231Smarks 	attrzp = NULL;
1931789Sahrens 
1932789Sahrens 	if (zfsvfs->z_vfs->vfs_flag & VFS_RDONLY) {
1933789Sahrens 		ZFS_EXIT(zfsvfs);
1934789Sahrens 		return (EROFS);
1935789Sahrens 	}
1936789Sahrens 
1937789Sahrens 	/*
1938789Sahrens 	 * First validate permissions
1939789Sahrens 	 */
1940789Sahrens 
1941789Sahrens 	if (mask & AT_SIZE) {
1942789Sahrens 		err = zfs_zaccess(zp, ACE_WRITE_DATA, cr);
1943789Sahrens 		if (err) {
1944789Sahrens 			ZFS_EXIT(zfsvfs);
1945789Sahrens 			return (err);
1946789Sahrens 		}
1947789Sahrens 	}
1948789Sahrens 
1949789Sahrens 	if (mask & (AT_ATIME|AT_MTIME))
1950789Sahrens 		need_policy = zfs_zaccess_v4_perm(zp, ACE_WRITE_ATTRIBUTES, cr);
1951789Sahrens 
1952789Sahrens 	if (mask & (AT_UID|AT_GID)) {
1953789Sahrens 		int	idmask = (mask & (AT_UID|AT_GID));
1954789Sahrens 		int	take_owner;
1955789Sahrens 		int	take_group;
1956789Sahrens 
1957789Sahrens 		/*
1958913Smarks 		 * NOTE: even if a new mode is being set,
1959913Smarks 		 * we may clear S_ISUID/S_ISGID bits.
1960913Smarks 		 */
1961913Smarks 
1962913Smarks 		if (!(mask & AT_MODE))
1963913Smarks 			vap->va_mode = pzp->zp_mode;
1964913Smarks 
1965913Smarks 		/*
1966789Sahrens 		 * Take ownership or chgrp to group we are a member of
1967789Sahrens 		 */
1968789Sahrens 
1969789Sahrens 		take_owner = (mask & AT_UID) && (vap->va_uid == crgetuid(cr));
1970789Sahrens 		take_group = (mask & AT_GID) && groupmember(vap->va_gid, cr);
1971789Sahrens 
1972789Sahrens 		/*
1973789Sahrens 		 * If both AT_UID and AT_GID are set then take_owner and
1974789Sahrens 		 * take_group must both be set in order to allow taking
1975789Sahrens 		 * ownership.
1976789Sahrens 		 *
1977789Sahrens 		 * Otherwise, send the check through secpolicy_vnode_setattr()
1978789Sahrens 		 *
1979789Sahrens 		 */
1980789Sahrens 
1981789Sahrens 		if (((idmask == (AT_UID|AT_GID)) && take_owner && take_group) ||
1982789Sahrens 		    ((idmask == AT_UID) && take_owner) ||
1983789Sahrens 		    ((idmask == AT_GID) && take_group)) {
1984789Sahrens 			if (zfs_zaccess_v4_perm(zp, ACE_WRITE_OWNER, cr) == 0) {
1985789Sahrens 				/*
1986789Sahrens 				 * Remove setuid/setgid for non-privileged users
1987789Sahrens 				 */
19881115Smarks 				secpolicy_setid_clear(vap, cr);
19891115Smarks 				trim_mask = TRUE;
19901115Smarks 				saved_mask = vap->va_mask;
1991789Sahrens 			} else {
1992789Sahrens 				need_policy =  TRUE;
1993789Sahrens 			}
1994789Sahrens 		} else {
1995789Sahrens 			need_policy =  TRUE;
1996789Sahrens 		}
1997789Sahrens 	}
1998789Sahrens 
1999789Sahrens 	if (mask & AT_MODE)
2000789Sahrens 		need_policy = TRUE;
2001789Sahrens 
2002789Sahrens 	if (need_policy) {
2003789Sahrens 		mutex_enter(&zp->z_lock);
2004789Sahrens 		oldva.va_mode = pzp->zp_mode;
2005789Sahrens 		oldva.va_uid = zp->z_phys->zp_uid;
2006789Sahrens 		oldva.va_gid = zp->z_phys->zp_gid;
2007789Sahrens 		mutex_exit(&zp->z_lock);
20081115Smarks 
20091115Smarks 		/*
20101115Smarks 		 * If trim_mask is set then take ownership
20111115Smarks 		 * has been granted.  In that case remove
20121115Smarks 		 * UID|GID from mask so that
20131115Smarks 		 * secpolicy_vnode_setattr() doesn't revoke it.
20141115Smarks 		 */
20151115Smarks 		if (trim_mask)
20161115Smarks 			vap->va_mask &= ~(AT_UID|AT_GID);
20171115Smarks 
2018789Sahrens 		err = secpolicy_vnode_setattr(cr, vp, vap, &oldva, flags,
2019789Sahrens 		    (int (*)(void *, int, cred_t *))zfs_zaccess_rwx, zp);
2020789Sahrens 		if (err) {
2021789Sahrens 			ZFS_EXIT(zfsvfs);
2022789Sahrens 			return (err);
2023789Sahrens 		}
20241115Smarks 
20251115Smarks 		if (trim_mask)
20261115Smarks 			vap->va_mask |= (saved_mask & (AT_UID|AT_GID));
2027789Sahrens 	}
2028789Sahrens 
2029789Sahrens 	/*
2030789Sahrens 	 * secpolicy_vnode_setattr, or take ownership may have
2031789Sahrens 	 * changed va_mask
2032789Sahrens 	 */
2033789Sahrens 	mask = vap->va_mask;
2034789Sahrens 
2035789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2036789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
2037789Sahrens 
2038789Sahrens 	if (mask & AT_MODE) {
2039789Sahrens 
2040789Sahrens 		new_mode = (pzp->zp_mode & S_IFMT) | (vap->va_mode & ~S_IFMT);
2041789Sahrens 
2042789Sahrens 		if (zp->z_phys->zp_acl.z_acl_extern_obj)
2043789Sahrens 			dmu_tx_hold_write(tx,
2044789Sahrens 			    pzp->zp_acl.z_acl_extern_obj, 0, SPA_MAXBLOCKSIZE);
2045789Sahrens 		else
2046789Sahrens 			dmu_tx_hold_write(tx, DMU_NEW_OBJECT,
2047789Sahrens 			    0, ZFS_ACL_SIZE(MAX_ACL_SIZE));
2048789Sahrens 	}
2049789Sahrens 
2050789Sahrens 	if (mask & AT_SIZE) {
2051789Sahrens 		uint64_t off = vap->va_size;
2052789Sahrens 		/*
2053789Sahrens 		 * Grab the grow_lock to serialize this change with
2054789Sahrens 		 * respect to other file manipulations.
2055789Sahrens 		 */
2056789Sahrens 		rw_enter(&zp->z_grow_lock, RW_WRITER);
2057789Sahrens 		have_grow_lock = TRUE;
2058789Sahrens 		if (off < zp->z_phys->zp_size)
2059789Sahrens 			dmu_tx_hold_free(tx, zp->z_id, off, DMU_OBJECT_END);
2060789Sahrens 		else if (zp->z_phys->zp_size &&
2061789Sahrens 		    zp->z_blksz < zfsvfs->z_max_blksz && off > zp->z_blksz)
2062789Sahrens 			/* we will rewrite this block if we grow */
2063789Sahrens 			dmu_tx_hold_write(tx, zp->z_id, 0, zp->z_phys->zp_size);
2064789Sahrens 	}
2065789Sahrens 
20661231Smarks 	if ((mask & (AT_UID | AT_GID)) && zp->z_phys->zp_xattr != 0) {
20671231Smarks 		err = zfs_zget(zp->z_zfsvfs, zp->z_phys->zp_xattr, &attrzp);
20681231Smarks 		if (err) {
20691231Smarks 			dmu_tx_abort(tx);
20701231Smarks 			if (have_grow_lock)
20711231Smarks 				rw_exit(&zp->z_grow_lock);
20721231Smarks 			ZFS_EXIT(zfsvfs);
20731231Smarks 			return (err);
20741231Smarks 		}
20751231Smarks 		dmu_tx_hold_bonus(tx, attrzp->z_id);
20761231Smarks 	}
20771231Smarks 
2078789Sahrens 	err = dmu_tx_assign(tx, zfsvfs->z_assign);
2079789Sahrens 	if (err) {
20801231Smarks 		if (attrzp)
20811231Smarks 			VN_RELE(ZTOV(attrzp));
2082789Sahrens 		dmu_tx_abort(tx);
2083789Sahrens 		if (have_grow_lock)
2084789Sahrens 			rw_exit(&zp->z_grow_lock);
2085789Sahrens 		if (err == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
2086789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
2087789Sahrens 			goto top;
2088789Sahrens 		}
2089789Sahrens 		ZFS_EXIT(zfsvfs);
2090789Sahrens 		return (err);
2091789Sahrens 	}
2092789Sahrens 
2093789Sahrens 	dmu_buf_will_dirty(zp->z_dbuf, tx);
2094789Sahrens 
2095789Sahrens 	/*
2096789Sahrens 	 * Set each attribute requested.
2097789Sahrens 	 * We group settings according to the locks they need to acquire.
2098789Sahrens 	 *
2099789Sahrens 	 * Note: you cannot set ctime directly, although it will be
2100789Sahrens 	 * updated as a side-effect of calling this function.
2101789Sahrens 	 */
2102789Sahrens 	if (mask & AT_SIZE) {
2103789Sahrens 		/*
2104789Sahrens 		 * XXX - Note, we are not providing any open
2105789Sahrens 		 * mode flags here (like FNDELAY), so we may
2106789Sahrens 		 * block if there are locks present... this
2107789Sahrens 		 * should be addressed in openat().
2108789Sahrens 		 */
2109789Sahrens 		err = zfs_freesp(zp, vap->va_size, 0, 0, tx, cr);
2110789Sahrens 		if (err) {
2111789Sahrens 			mutex_enter(&zp->z_lock);
2112789Sahrens 			goto out;
2113789Sahrens 		}
2114789Sahrens 		mask_applied |= AT_SIZE;
2115789Sahrens 	}
2116789Sahrens 
2117789Sahrens 	mask_applied = mask;	/* no errors after this point */
2118789Sahrens 
2119789Sahrens 	mutex_enter(&zp->z_lock);
2120789Sahrens 
2121789Sahrens 	if (mask & AT_MODE) {
2122789Sahrens 		err = zfs_acl_chmod_setattr(zp, new_mode, tx);
2123789Sahrens 		ASSERT3U(err, ==, 0);
2124789Sahrens 	}
2125789Sahrens 
21261231Smarks 	if (attrzp)
21271231Smarks 		mutex_enter(&attrzp->z_lock);
21281231Smarks 
21291231Smarks 	if (mask & AT_UID) {
2130789Sahrens 		zp->z_phys->zp_uid = (uint64_t)vap->va_uid;
21311231Smarks 		if (attrzp) {
21321231Smarks 			attrzp->z_phys->zp_uid = (uint64_t)vap->va_uid;
21331231Smarks 		}
21341231Smarks 	}
21351231Smarks 
21361231Smarks 	if (mask & AT_GID) {
2137789Sahrens 		zp->z_phys->zp_gid = (uint64_t)vap->va_gid;
21381231Smarks 		if (attrzp)
21391231Smarks 			attrzp->z_phys->zp_gid = (uint64_t)vap->va_gid;
21401231Smarks 	}
21411231Smarks 
21421231Smarks 	if (attrzp)
21431231Smarks 		mutex_exit(&attrzp->z_lock);
2144789Sahrens 
2145789Sahrens 	if (mask & AT_ATIME)
2146789Sahrens 		ZFS_TIME_ENCODE(&vap->va_atime, pzp->zp_atime);
2147789Sahrens 
2148789Sahrens 	if (mask & AT_MTIME)
2149789Sahrens 		ZFS_TIME_ENCODE(&vap->va_mtime, pzp->zp_mtime);
2150789Sahrens 
2151789Sahrens 	if (mask_applied & AT_SIZE)
2152789Sahrens 		zfs_time_stamper_locked(zp, CONTENT_MODIFIED, tx);
2153789Sahrens 	else if (mask_applied != 0)
2154789Sahrens 		zfs_time_stamper_locked(zp, STATE_CHANGED, tx);
2155789Sahrens 
2156789Sahrens out:
21571231Smarks 
2158789Sahrens 	if (mask_applied != 0)
2159789Sahrens 		seq = zfs_log_setattr(zilog, tx, TX_SETATTR, zp, vap,
2160789Sahrens 		    mask_applied);
2161789Sahrens 
2162789Sahrens 	mutex_exit(&zp->z_lock);
2163789Sahrens 
21641231Smarks 	if (attrzp)
21651231Smarks 		VN_RELE(ZTOV(attrzp));
21661231Smarks 
2167789Sahrens 	if (have_grow_lock)
2168789Sahrens 		rw_exit(&zp->z_grow_lock);
2169789Sahrens 
2170789Sahrens 	dmu_tx_commit(tx);
2171789Sahrens 
2172789Sahrens 	zil_commit(zilog, seq, 0);
2173789Sahrens 
2174789Sahrens 	ZFS_EXIT(zfsvfs);
2175789Sahrens 	return (err);
2176789Sahrens }
2177789Sahrens 
2178789Sahrens /*
2179789Sahrens  * Search back through the directory tree, using the ".." entries.
2180789Sahrens  * Lock each directory in the chain to prevent concurrent renames.
2181789Sahrens  * Fail any attempt to move a directory into one of its own descendants.
2182789Sahrens  * XXX - z_parent_lock can overlap with map or grow locks
2183789Sahrens  */
2184789Sahrens typedef struct zfs_zlock {
2185789Sahrens 	krwlock_t	*zl_rwlock;	/* lock we acquired */
2186789Sahrens 	znode_t		*zl_znode;	/* znode we held */
2187789Sahrens 	struct zfs_zlock *zl_next;	/* next in list */
2188789Sahrens } zfs_zlock_t;
2189789Sahrens 
2190789Sahrens static int
2191789Sahrens zfs_rename_lock(znode_t *szp, znode_t *tdzp, znode_t *sdzp, zfs_zlock_t **zlpp)
2192789Sahrens {
2193789Sahrens 	zfs_zlock_t	*zl;
2194789Sahrens 	znode_t 	*zp = tdzp;
2195789Sahrens 	uint64_t	rootid = zp->z_zfsvfs->z_root;
2196789Sahrens 	uint64_t	*oidp = &zp->z_id;
2197789Sahrens 	krwlock_t	*rwlp = &szp->z_parent_lock;
2198789Sahrens 	krw_t		rw = RW_WRITER;
2199789Sahrens 
2200789Sahrens 	/*
2201789Sahrens 	 * First pass write-locks szp and compares to zp->z_id.
2202789Sahrens 	 * Later passes read-lock zp and compare to zp->z_parent.
2203789Sahrens 	 */
2204789Sahrens 	do {
2205789Sahrens 		zl = kmem_alloc(sizeof (*zl), KM_SLEEP);
2206789Sahrens 		zl->zl_rwlock = rwlp;
2207789Sahrens 		zl->zl_znode = NULL;
2208789Sahrens 		zl->zl_next = *zlpp;
2209789Sahrens 		*zlpp = zl;
2210789Sahrens 
2211789Sahrens 		rw_enter(rwlp, rw);
2212789Sahrens 
2213789Sahrens 		if (*oidp == szp->z_id)		/* We're a descendant of szp */
2214789Sahrens 			return (EINVAL);
2215789Sahrens 
2216789Sahrens 		if (*oidp == rootid)		/* We've hit the top */
2217789Sahrens 			return (0);
2218789Sahrens 
2219789Sahrens 		if (rw == RW_READER) {		/* i.e. not the first pass */
2220789Sahrens 			int error = zfs_zget(zp->z_zfsvfs, *oidp, &zp);
2221789Sahrens 			if (error)
2222789Sahrens 				return (error);
2223789Sahrens 			zl->zl_znode = zp;
2224789Sahrens 		}
2225789Sahrens 		oidp = &zp->z_phys->zp_parent;
2226789Sahrens 		rwlp = &zp->z_parent_lock;
2227789Sahrens 		rw = RW_READER;
2228789Sahrens 
2229789Sahrens 	} while (zp->z_id != sdzp->z_id);
2230789Sahrens 
2231789Sahrens 	return (0);
2232789Sahrens }
2233789Sahrens 
2234789Sahrens /*
2235789Sahrens  * Drop locks and release vnodes that were held by zfs_rename_lock().
2236789Sahrens  */
2237789Sahrens static void
2238789Sahrens zfs_rename_unlock(zfs_zlock_t **zlpp)
2239789Sahrens {
2240789Sahrens 	zfs_zlock_t *zl;
2241789Sahrens 
2242789Sahrens 	while ((zl = *zlpp) != NULL) {
2243789Sahrens 		if (zl->zl_znode != NULL)
2244789Sahrens 			VN_RELE(ZTOV(zl->zl_znode));
2245789Sahrens 		rw_exit(zl->zl_rwlock);
2246789Sahrens 		*zlpp = zl->zl_next;
2247789Sahrens 		kmem_free(zl, sizeof (*zl));
2248789Sahrens 	}
2249789Sahrens }
2250789Sahrens 
2251789Sahrens /*
2252789Sahrens  * Move an entry from the provided source directory to the target
2253789Sahrens  * directory.  Change the entry name as indicated.
2254789Sahrens  *
2255789Sahrens  *	IN:	sdvp	- Source directory containing the "old entry".
2256789Sahrens  *		snm	- Old entry name.
2257789Sahrens  *		tdvp	- Target directory to contain the "new entry".
2258789Sahrens  *		tnm	- New entry name.
2259789Sahrens  *		cr	- credentials of caller.
2260789Sahrens  *
2261789Sahrens  *	RETURN:	0 if success
2262789Sahrens  *		error code if failure
2263789Sahrens  *
2264789Sahrens  * Timestamps:
2265789Sahrens  *	sdvp,tdvp - ctime|mtime updated
2266789Sahrens  */
2267789Sahrens static int
2268789Sahrens zfs_rename(vnode_t *sdvp, char *snm, vnode_t *tdvp, char *tnm, cred_t *cr)
2269789Sahrens {
2270789Sahrens 	znode_t		*tdzp, *szp, *tzp;
2271789Sahrens 	znode_t		*sdzp = VTOZ(sdvp);
2272789Sahrens 	zfsvfs_t	*zfsvfs = sdzp->z_zfsvfs;
2273789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
2274789Sahrens 	uint64_t	seq = 0;
2275789Sahrens 	vnode_t		*realvp;
2276789Sahrens 	zfs_dirlock_t	*sdl, *tdl;
2277789Sahrens 	dmu_tx_t	*tx;
2278789Sahrens 	zfs_zlock_t	*zl;
2279789Sahrens 	int		cmp, serr, terr, error;
2280789Sahrens 
2281789Sahrens 	ZFS_ENTER(zfsvfs);
2282789Sahrens 
2283789Sahrens 	/*
2284789Sahrens 	 * Make sure we have the real vp for the target directory.
2285789Sahrens 	 */
2286789Sahrens 	if (VOP_REALVP(tdvp, &realvp) == 0)
2287789Sahrens 		tdvp = realvp;
2288789Sahrens 
2289789Sahrens 	if (tdvp->v_vfsp != sdvp->v_vfsp) {
2290789Sahrens 		ZFS_EXIT(zfsvfs);
2291789Sahrens 		return (EXDEV);
2292789Sahrens 	}
2293789Sahrens 
2294789Sahrens 	tdzp = VTOZ(tdvp);
2295789Sahrens top:
2296789Sahrens 	szp = NULL;
2297789Sahrens 	tzp = NULL;
2298789Sahrens 	zl = NULL;
2299789Sahrens 
2300789Sahrens 	/*
2301789Sahrens 	 * This is to prevent the creation of links into attribute space
2302789Sahrens 	 * by renaming a linked file into/outof an attribute directory.
2303789Sahrens 	 * See the comment in zfs_link() for why this is considered bad.
2304789Sahrens 	 */
2305789Sahrens 	if ((tdzp->z_phys->zp_flags & ZFS_XATTR) !=
2306789Sahrens 	    (sdzp->z_phys->zp_flags & ZFS_XATTR)) {
2307789Sahrens 		ZFS_EXIT(zfsvfs);
2308789Sahrens 		return (EINVAL);
2309789Sahrens 	}
2310789Sahrens 
2311789Sahrens 	/*
2312789Sahrens 	 * Lock source and target directory entries.  To prevent deadlock,
2313789Sahrens 	 * a lock ordering must be defined.  We lock the directory with
2314789Sahrens 	 * the smallest object id first, or if it's a tie, the one with
2315789Sahrens 	 * the lexically first name.
2316789Sahrens 	 */
2317789Sahrens 	if (sdzp->z_id < tdzp->z_id) {
2318789Sahrens 		cmp = -1;
2319789Sahrens 	} else if (sdzp->z_id > tdzp->z_id) {
2320789Sahrens 		cmp = 1;
2321789Sahrens 	} else {
2322789Sahrens 		cmp = strcmp(snm, tnm);
2323789Sahrens 		if (cmp == 0) {
2324789Sahrens 			/*
2325789Sahrens 			 * POSIX: "If the old argument and the new argument
2326789Sahrens 			 * both refer to links to the same existing file,
2327789Sahrens 			 * the rename() function shall return successfully
2328789Sahrens 			 * and perform no other action."
2329789Sahrens 			 */
2330789Sahrens 			ZFS_EXIT(zfsvfs);
2331789Sahrens 			return (0);
2332789Sahrens 		}
2333789Sahrens 	}
2334789Sahrens 	if (cmp < 0) {
2335789Sahrens 		serr = zfs_dirent_lock(&sdl, sdzp, snm, &szp, ZEXISTS);
2336789Sahrens 		terr = zfs_dirent_lock(&tdl, tdzp, tnm, &tzp, 0);
2337789Sahrens 	} else {
2338789Sahrens 		terr = zfs_dirent_lock(&tdl, tdzp, tnm, &tzp, 0);
2339789Sahrens 		serr = zfs_dirent_lock(&sdl, sdzp, snm, &szp, ZEXISTS);
2340789Sahrens 	}
2341789Sahrens 
2342789Sahrens 	if (serr) {
2343789Sahrens 		/*
2344789Sahrens 		 * Source entry invalid or not there.
2345789Sahrens 		 */
2346789Sahrens 		if (!terr) {
2347789Sahrens 			zfs_dirent_unlock(tdl);
2348789Sahrens 			if (tzp)
2349789Sahrens 				VN_RELE(ZTOV(tzp));
2350789Sahrens 		}
2351789Sahrens 		if (strcmp(snm, "..") == 0)
2352789Sahrens 			serr = EINVAL;
2353789Sahrens 		ZFS_EXIT(zfsvfs);
2354789Sahrens 		return (serr);
2355789Sahrens 	}
2356789Sahrens 	if (terr) {
2357789Sahrens 		zfs_dirent_unlock(sdl);
2358789Sahrens 		VN_RELE(ZTOV(szp));
2359789Sahrens 		if (strcmp(tnm, "..") == 0)
2360789Sahrens 			terr = EINVAL;
2361789Sahrens 		ZFS_EXIT(zfsvfs);
2362789Sahrens 		return (terr);
2363789Sahrens 	}
2364789Sahrens 
2365789Sahrens 	/*
2366789Sahrens 	 * Must have write access at the source to remove the old entry
2367789Sahrens 	 * and write access at the target to create the new entry.
2368789Sahrens 	 * Note that if target and source are the same, this can be
2369789Sahrens 	 * done in a single check.
2370789Sahrens 	 */
2371789Sahrens 
2372789Sahrens 	if (error = zfs_zaccess_rename(sdzp, szp, tdzp, tzp, cr))
2373789Sahrens 		goto out;
2374789Sahrens 
2375789Sahrens 	if (ZTOV(szp)->v_type == VDIR) {
2376789Sahrens 		/*
2377789Sahrens 		 * Check to make sure rename is valid.
2378789Sahrens 		 * Can't do a move like this: /usr/a/b to /usr/a/b/c/d
2379789Sahrens 		 */
2380789Sahrens 		if (error = zfs_rename_lock(szp, tdzp, sdzp, &zl))
2381789Sahrens 			goto out;
2382789Sahrens 	}
2383789Sahrens 
2384789Sahrens 	/*
2385789Sahrens 	 * Does target exist?
2386789Sahrens 	 */
2387789Sahrens 	if (tzp) {
2388789Sahrens 		/*
2389789Sahrens 		 * Source and target must be the same type.
2390789Sahrens 		 */
2391789Sahrens 		if (ZTOV(szp)->v_type == VDIR) {
2392789Sahrens 			if (ZTOV(tzp)->v_type != VDIR) {
2393789Sahrens 				error = ENOTDIR;
2394789Sahrens 				goto out;
2395789Sahrens 			}
2396789Sahrens 		} else {
2397789Sahrens 			if (ZTOV(tzp)->v_type == VDIR) {
2398789Sahrens 				error = EISDIR;
2399789Sahrens 				goto out;
2400789Sahrens 			}
2401789Sahrens 		}
2402789Sahrens 		/*
2403789Sahrens 		 * POSIX dictates that when the source and target
2404789Sahrens 		 * entries refer to the same file object, rename
2405789Sahrens 		 * must do nothing and exit without error.
2406789Sahrens 		 */
2407789Sahrens 		if (szp->z_id == tzp->z_id) {
2408789Sahrens 			error = 0;
2409789Sahrens 			goto out;
2410789Sahrens 		}
2411789Sahrens 	}
2412789Sahrens 
2413789Sahrens 	vnevent_rename_src(ZTOV(szp));
2414789Sahrens 	if (tzp)
2415789Sahrens 		vnevent_rename_dest(ZTOV(tzp));
2416789Sahrens 
2417789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2418789Sahrens 	dmu_tx_hold_bonus(tx, szp->z_id);	/* nlink changes */
2419789Sahrens 	dmu_tx_hold_bonus(tx, sdzp->z_id);	/* nlink changes */
2420789Sahrens 	if (sdzp != tdzp) {
2421789Sahrens 		dmu_tx_hold_zap(tx, sdzp->z_id, 1);
2422789Sahrens 		dmu_tx_hold_zap(tx, tdzp->z_id, 1);
2423789Sahrens 		dmu_tx_hold_bonus(tx, tdzp->z_id);	/* nlink changes */
2424789Sahrens 	} else {
2425789Sahrens 		dmu_tx_hold_zap(tx, sdzp->z_id, 2);
2426789Sahrens 	}
2427789Sahrens 	if (tzp) {
2428789Sahrens 		dmu_tx_hold_bonus(tx, tzp->z_id);	/* nlink changes */
2429789Sahrens 	}
2430789Sahrens 	dmu_tx_hold_zap(tx, zfsvfs->z_dqueue, 1);
2431789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
2432789Sahrens 	if (error) {
2433789Sahrens 		dmu_tx_abort(tx);
2434789Sahrens 		if (zl != NULL)
2435789Sahrens 			zfs_rename_unlock(&zl);
2436789Sahrens 		zfs_dirent_unlock(sdl);
2437789Sahrens 		zfs_dirent_unlock(tdl);
2438789Sahrens 		VN_RELE(ZTOV(szp));
2439789Sahrens 		if (tzp)
2440789Sahrens 			VN_RELE(ZTOV(tzp));
2441789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
2442789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
2443789Sahrens 			goto top;
2444789Sahrens 		}
2445789Sahrens 		ZFS_EXIT(zfsvfs);
2446789Sahrens 		return (error);
2447789Sahrens 	}
2448789Sahrens 
2449789Sahrens 	if (tzp)	/* Attempt to remove the existing target */
2450789Sahrens 		error = zfs_link_destroy(tdl, tzp, tx, 0, NULL);
2451789Sahrens 
2452789Sahrens 	if (error == 0) {
2453789Sahrens 		error = zfs_link_create(tdl, szp, tx, ZRENAMING);
2454789Sahrens 		if (error == 0) {
2455789Sahrens 			error = zfs_link_destroy(sdl, szp, tx, ZRENAMING, NULL);
2456789Sahrens 			ASSERT(error == 0);
2457789Sahrens 			seq = zfs_log_rename(zilog, tx, TX_RENAME,
2458789Sahrens 			    sdzp, sdl->dl_name, tdzp, tdl->dl_name, szp);
2459789Sahrens 		}
2460789Sahrens 	}
2461789Sahrens 
2462789Sahrens 	dmu_tx_commit(tx);
2463789Sahrens out:
2464789Sahrens 	if (zl != NULL)
2465789Sahrens 		zfs_rename_unlock(&zl);
2466789Sahrens 
2467789Sahrens 	zfs_dirent_unlock(sdl);
2468789Sahrens 	zfs_dirent_unlock(tdl);
2469789Sahrens 
2470789Sahrens 	VN_RELE(ZTOV(szp));
2471789Sahrens 	if (tzp)
2472789Sahrens 		VN_RELE(ZTOV(tzp));
2473789Sahrens 
2474789Sahrens 	zil_commit(zilog, seq, 0);
2475789Sahrens 
2476789Sahrens 	ZFS_EXIT(zfsvfs);
2477789Sahrens 	return (error);
2478789Sahrens }
2479789Sahrens 
2480789Sahrens /*
2481789Sahrens  * Insert the indicated symbolic reference entry into the directory.
2482789Sahrens  *
2483789Sahrens  *	IN:	dvp	- Directory to contain new symbolic link.
2484789Sahrens  *		link	- Name for new symlink entry.
2485789Sahrens  *		vap	- Attributes of new entry.
2486789Sahrens  *		target	- Target path of new symlink.
2487789Sahrens  *		cr	- credentials of caller.
2488789Sahrens  *
2489789Sahrens  *	RETURN:	0 if success
2490789Sahrens  *		error code if failure
2491789Sahrens  *
2492789Sahrens  * Timestamps:
2493789Sahrens  *	dvp - ctime|mtime updated
2494789Sahrens  */
2495789Sahrens static int
2496789Sahrens zfs_symlink(vnode_t *dvp, char *name, vattr_t *vap, char *link, cred_t *cr)
2497789Sahrens {
2498789Sahrens 	znode_t		*zp, *dzp = VTOZ(dvp);
2499789Sahrens 	zfs_dirlock_t	*dl;
2500789Sahrens 	dmu_tx_t	*tx;
2501789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
2502789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
2503789Sahrens 	uint64_t	seq = 0;
2504789Sahrens 	uint64_t	zoid;
2505789Sahrens 	int		len = strlen(link);
2506789Sahrens 	int		error;
2507789Sahrens 
2508789Sahrens 	ASSERT(vap->va_type == VLNK);
2509789Sahrens 
2510789Sahrens 	ZFS_ENTER(zfsvfs);
2511789Sahrens top:
2512789Sahrens 	if (error = zfs_zaccess(dzp, ACE_ADD_FILE, cr)) {
2513789Sahrens 		ZFS_EXIT(zfsvfs);
2514789Sahrens 		return (error);
2515789Sahrens 	}
2516789Sahrens 
2517789Sahrens 	if (len > MAXPATHLEN) {
2518789Sahrens 		ZFS_EXIT(zfsvfs);
2519789Sahrens 		return (ENAMETOOLONG);
2520789Sahrens 	}
2521789Sahrens 
2522789Sahrens 	/*
2523789Sahrens 	 * Attempt to lock directory; fail if entry already exists.
2524789Sahrens 	 */
2525789Sahrens 	if (error = zfs_dirent_lock(&dl, dzp, name, &zp, ZNEW)) {
2526789Sahrens 		ZFS_EXIT(zfsvfs);
2527789Sahrens 		return (error);
2528789Sahrens 	}
2529789Sahrens 
2530789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2531789Sahrens 	dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, MAX(1, len));
2532789Sahrens 	dmu_tx_hold_bonus(tx, dzp->z_id);
2533789Sahrens 	dmu_tx_hold_zap(tx, dzp->z_id, 1);
2534789Sahrens 	if (dzp->z_phys->zp_flags & ZFS_INHERIT_ACE)
2535789Sahrens 		dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, SPA_MAXBLOCKSIZE);
2536789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
2537789Sahrens 	if (error) {
2538789Sahrens 		dmu_tx_abort(tx);
2539789Sahrens 		zfs_dirent_unlock(dl);
2540789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
2541789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
2542789Sahrens 			goto top;
2543789Sahrens 		}
2544789Sahrens 		ZFS_EXIT(zfsvfs);
2545789Sahrens 		return (error);
2546789Sahrens 	}
2547789Sahrens 
2548789Sahrens 	dmu_buf_will_dirty(dzp->z_dbuf, tx);
2549789Sahrens 
2550789Sahrens 	/*
2551789Sahrens 	 * Create a new object for the symlink.
2552789Sahrens 	 * Put the link content into bonus buffer if it will fit;
2553789Sahrens 	 * otherwise, store it just like any other file data.
2554789Sahrens 	 */
2555789Sahrens 	zoid = 0;
2556789Sahrens 	if (sizeof (znode_phys_t) + len <= dmu_bonus_max()) {
2557789Sahrens 		zfs_mknode(dzp, vap, &zoid, tx, cr, 0, &zp, len);
2558789Sahrens 		if (len != 0)
2559789Sahrens 			bcopy(link, zp->z_phys + 1, len);
2560789Sahrens 	} else {
2561789Sahrens 		dmu_buf_t *dbp;
2562789Sahrens 		zfs_mknode(dzp, vap, &zoid, tx, cr, 0, &zp, 0);
2563789Sahrens 
2564789Sahrens 		rw_enter(&zp->z_grow_lock, RW_WRITER);
2565789Sahrens 		error = zfs_grow_blocksize(zp, len, tx);
2566789Sahrens 		rw_exit(&zp->z_grow_lock);
2567789Sahrens 		if (error)
2568789Sahrens 			goto out;
2569789Sahrens 
2570789Sahrens 		dbp = dmu_buf_hold(zfsvfs->z_os, zoid, 0);
2571789Sahrens 		dmu_buf_will_dirty(dbp, tx);
2572789Sahrens 
2573789Sahrens 		ASSERT3U(len, <=, dbp->db_size);
2574789Sahrens 		bcopy(link, dbp->db_data, len);
2575789Sahrens 		dmu_buf_rele(dbp);
2576789Sahrens 	}
2577789Sahrens 	zp->z_phys->zp_size = len;
2578789Sahrens 
2579789Sahrens 	/*
2580789Sahrens 	 * Insert the new object into the directory.
2581789Sahrens 	 */
2582789Sahrens 	(void) zfs_link_create(dl, zp, tx, ZNEW);
2583789Sahrens out:
2584789Sahrens 	if (error == 0)
2585789Sahrens 		seq = zfs_log_symlink(zilog, tx, TX_SYMLINK,
2586789Sahrens 		    dzp, zp, name, link);
2587789Sahrens 
2588789Sahrens 	dmu_tx_commit(tx);
2589789Sahrens 
2590789Sahrens 	zfs_dirent_unlock(dl);
2591789Sahrens 
2592789Sahrens 	VN_RELE(ZTOV(zp));
2593789Sahrens 
2594789Sahrens 	zil_commit(zilog, seq, 0);
2595789Sahrens 
2596789Sahrens 	ZFS_EXIT(zfsvfs);
2597789Sahrens 	return (error);
2598789Sahrens }
2599789Sahrens 
2600789Sahrens /*
2601789Sahrens  * Return, in the buffer contained in the provided uio structure,
2602789Sahrens  * the symbolic path referred to by vp.
2603789Sahrens  *
2604789Sahrens  *	IN:	vp	- vnode of symbolic link.
2605789Sahrens  *		uoip	- structure to contain the link path.
2606789Sahrens  *		cr	- credentials of caller.
2607789Sahrens  *
2608789Sahrens  *	OUT:	uio	- structure to contain the link path.
2609789Sahrens  *
2610789Sahrens  *	RETURN:	0 if success
2611789Sahrens  *		error code if failure
2612789Sahrens  *
2613789Sahrens  * Timestamps:
2614789Sahrens  *	vp - atime updated
2615789Sahrens  */
2616789Sahrens /* ARGSUSED */
2617789Sahrens static int
2618789Sahrens zfs_readlink(vnode_t *vp, uio_t *uio, cred_t *cr)
2619789Sahrens {
2620789Sahrens 	znode_t		*zp = VTOZ(vp);
2621789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
2622789Sahrens 	size_t		bufsz;
2623789Sahrens 	int		error;
2624789Sahrens 
2625789Sahrens 	ZFS_ENTER(zfsvfs);
2626789Sahrens 
2627789Sahrens 	bufsz = (size_t)zp->z_phys->zp_size;
2628789Sahrens 	if (bufsz + sizeof (znode_phys_t) <= zp->z_dbuf->db_size) {
2629789Sahrens 		error = uiomove(zp->z_phys + 1,
2630789Sahrens 		    MIN((size_t)bufsz, uio->uio_resid), UIO_READ, uio);
2631789Sahrens 	} else {
2632789Sahrens 		dmu_buf_t *dbp = dmu_buf_hold(zfsvfs->z_os, zp->z_id, 0);
2633789Sahrens 		if ((error = dmu_buf_read_canfail(dbp)) != 0) {
2634789Sahrens 			dmu_buf_rele(dbp);
2635789Sahrens 			ZFS_EXIT(zfsvfs);
2636789Sahrens 			return (error);
2637789Sahrens 		}
2638789Sahrens 		error = uiomove(dbp->db_data,
2639789Sahrens 		    MIN((size_t)bufsz, uio->uio_resid), UIO_READ, uio);
2640789Sahrens 		dmu_buf_rele(dbp);
2641789Sahrens 	}
2642789Sahrens 
2643789Sahrens 	ZFS_ACCESSTIME_STAMP(zfsvfs, zp);
2644789Sahrens 	ZFS_EXIT(zfsvfs);
2645789Sahrens 	return (error);
2646789Sahrens }
2647789Sahrens 
2648789Sahrens /*
2649789Sahrens  * Insert a new entry into directory tdvp referencing svp.
2650789Sahrens  *
2651789Sahrens  *	IN:	tdvp	- Directory to contain new entry.
2652789Sahrens  *		svp	- vnode of new entry.
2653789Sahrens  *		name	- name of new entry.
2654789Sahrens  *		cr	- credentials of caller.
2655789Sahrens  *
2656789Sahrens  *	RETURN:	0 if success
2657789Sahrens  *		error code if failure
2658789Sahrens  *
2659789Sahrens  * Timestamps:
2660789Sahrens  *	tdvp - ctime|mtime updated
2661789Sahrens  *	 svp - ctime updated
2662789Sahrens  */
2663789Sahrens /* ARGSUSED */
2664789Sahrens static int
2665789Sahrens zfs_link(vnode_t *tdvp, vnode_t *svp, char *name, cred_t *cr)
2666789Sahrens {
2667789Sahrens 	znode_t		*dzp = VTOZ(tdvp);
2668789Sahrens 	znode_t		*tzp, *szp;
2669789Sahrens 	zfsvfs_t	*zfsvfs = dzp->z_zfsvfs;
2670789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
2671789Sahrens 	uint64_t	seq = 0;
2672789Sahrens 	zfs_dirlock_t	*dl;
2673789Sahrens 	dmu_tx_t	*tx;
2674789Sahrens 	vnode_t		*realvp;
2675789Sahrens 	int		error;
2676789Sahrens 
2677789Sahrens 	ASSERT(tdvp->v_type == VDIR);
2678789Sahrens 
2679789Sahrens 	ZFS_ENTER(zfsvfs);
2680789Sahrens 
2681789Sahrens 	if (VOP_REALVP(svp, &realvp) == 0)
2682789Sahrens 		svp = realvp;
2683789Sahrens 
2684789Sahrens 	if (svp->v_vfsp != tdvp->v_vfsp) {
2685789Sahrens 		ZFS_EXIT(zfsvfs);
2686789Sahrens 		return (EXDEV);
2687789Sahrens 	}
2688789Sahrens 
2689789Sahrens 	szp = VTOZ(svp);
2690789Sahrens top:
2691789Sahrens 	/*
2692789Sahrens 	 * We do not support links between attributes and non-attributes
2693789Sahrens 	 * because of the potential security risk of creating links
2694789Sahrens 	 * into "normal" file space in order to circumvent restrictions
2695789Sahrens 	 * imposed in attribute space.
2696789Sahrens 	 */
2697789Sahrens 	if ((szp->z_phys->zp_flags & ZFS_XATTR) !=
2698789Sahrens 	    (dzp->z_phys->zp_flags & ZFS_XATTR)) {
2699789Sahrens 		ZFS_EXIT(zfsvfs);
2700789Sahrens 		return (EINVAL);
2701789Sahrens 	}
2702789Sahrens 
2703789Sahrens 	/*
2704789Sahrens 	 * POSIX dictates that we return EPERM here.
2705789Sahrens 	 * Better choices include ENOTSUP or EISDIR.
2706789Sahrens 	 */
2707789Sahrens 	if (svp->v_type == VDIR) {
2708789Sahrens 		ZFS_EXIT(zfsvfs);
2709789Sahrens 		return (EPERM);
2710789Sahrens 	}
2711789Sahrens 
2712789Sahrens 	if ((uid_t)szp->z_phys->zp_uid != crgetuid(cr) &&
2713789Sahrens 	    secpolicy_basic_link(cr) != 0) {
2714789Sahrens 		ZFS_EXIT(zfsvfs);
2715789Sahrens 		return (EPERM);
2716789Sahrens 	}
2717789Sahrens 
2718789Sahrens 	if (error = zfs_zaccess(dzp, ACE_ADD_FILE, cr)) {
2719789Sahrens 		ZFS_EXIT(zfsvfs);
2720789Sahrens 		return (error);
2721789Sahrens 	}
2722789Sahrens 
2723789Sahrens 	/*
2724789Sahrens 	 * Attempt to lock directory; fail if entry already exists.
2725789Sahrens 	 */
2726789Sahrens 	if (error = zfs_dirent_lock(&dl, dzp, name, &tzp, ZNEW)) {
2727789Sahrens 		ZFS_EXIT(zfsvfs);
2728789Sahrens 		return (error);
2729789Sahrens 	}
2730789Sahrens 
2731789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2732789Sahrens 	dmu_tx_hold_bonus(tx, szp->z_id);
2733789Sahrens 	dmu_tx_hold_zap(tx, dzp->z_id, 1);
2734789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
2735789Sahrens 	if (error) {
2736789Sahrens 		dmu_tx_abort(tx);
2737789Sahrens 		zfs_dirent_unlock(dl);
2738789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
2739789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
2740789Sahrens 			goto top;
2741789Sahrens 		}
2742789Sahrens 		ZFS_EXIT(zfsvfs);
2743789Sahrens 		return (error);
2744789Sahrens 	}
2745789Sahrens 
2746789Sahrens 	error = zfs_link_create(dl, szp, tx, 0);
2747789Sahrens 
2748789Sahrens 	if (error == 0)
2749789Sahrens 		seq = zfs_log_link(zilog, tx, TX_LINK, dzp, szp, name);
2750789Sahrens 
2751789Sahrens 	dmu_tx_commit(tx);
2752789Sahrens 
2753789Sahrens 	zfs_dirent_unlock(dl);
2754789Sahrens 
2755789Sahrens 	zil_commit(zilog, seq, 0);
2756789Sahrens 
2757789Sahrens 	ZFS_EXIT(zfsvfs);
2758789Sahrens 	return (error);
2759789Sahrens }
2760789Sahrens 
2761789Sahrens /*
2762789Sahrens  * zfs_null_putapage() is used when the file system has been force
2763789Sahrens  * unmounted. It just drops the pages.
2764789Sahrens  */
2765789Sahrens /* ARGSUSED */
2766789Sahrens static int
2767789Sahrens zfs_null_putapage(vnode_t *vp, page_t *pp, u_offset_t *offp,
2768789Sahrens 		size_t *lenp, int flags, cred_t *cr)
2769789Sahrens {
2770789Sahrens 	pvn_write_done(pp, B_INVAL|B_FORCE|B_ERROR);
2771789Sahrens 	return (0);
2772789Sahrens }
2773789Sahrens 
2774789Sahrens /* ARGSUSED */
2775789Sahrens static int
2776789Sahrens zfs_putapage(vnode_t *vp, page_t *pp, u_offset_t *offp,
2777789Sahrens 		size_t *lenp, int flags, cred_t *cr)
2778789Sahrens {
2779789Sahrens 	znode_t		*zp = VTOZ(vp);
2780789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
2781789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
2782789Sahrens 	dmu_tx_t	*tx;
2783789Sahrens 	u_offset_t	off;
2784789Sahrens 	ssize_t		len;
2785789Sahrens 	caddr_t		va;
2786789Sahrens 	int		err;
2787789Sahrens 
2788789Sahrens top:
2789789Sahrens 	rw_enter(&zp->z_grow_lock, RW_READER);
2790789Sahrens 
2791789Sahrens 	off = pp->p_offset;
2792789Sahrens 	len = MIN(PAGESIZE, zp->z_phys->zp_size - off);
2793789Sahrens 
2794789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2795789Sahrens 	dmu_tx_hold_write(tx, zp->z_id, off, len);
2796789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
2797789Sahrens 	err = dmu_tx_assign(tx, zfsvfs->z_assign);
2798789Sahrens 	if (err != 0) {
2799789Sahrens 		dmu_tx_abort(tx);
2800789Sahrens 		rw_exit(&zp->z_grow_lock);
2801789Sahrens 		if (err == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
2802789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
2803789Sahrens 			goto top;
2804789Sahrens 		}
2805789Sahrens 		goto out;
2806789Sahrens 	}
2807789Sahrens 
2808789Sahrens 	va = ppmapin(pp, PROT_READ | PROT_WRITE, (caddr_t)-1);
2809789Sahrens 
2810789Sahrens 	dmu_write(zfsvfs->z_os, zp->z_id, off, len, va, tx);
2811789Sahrens 
2812789Sahrens 	ppmapout(va);
2813789Sahrens 
2814789Sahrens 	zfs_time_stamper(zp, CONTENT_MODIFIED, tx);
28151472Sperrin 	(void) zfs_log_write(zilog, tx, TX_WRITE, zp, off, len, 0, NULL);
2816789Sahrens 	dmu_tx_commit(tx);
2817789Sahrens 
2818789Sahrens 	rw_exit(&zp->z_grow_lock);
2819789Sahrens 
2820789Sahrens 	pvn_write_done(pp, B_WRITE | flags);
2821789Sahrens 	if (offp)
2822789Sahrens 		*offp = off;
2823789Sahrens 	if (lenp)
2824789Sahrens 		*lenp = len;
2825789Sahrens 
2826789Sahrens out:
2827789Sahrens 	return (err);
2828789Sahrens }
2829789Sahrens 
2830789Sahrens /*
2831789Sahrens  * Copy the portion of the file indicated from pages into the file.
2832789Sahrens  * The pages are stored in a page list attached to the files vnode.
2833789Sahrens  *
2834789Sahrens  *	IN:	vp	- vnode of file to push page data to.
2835789Sahrens  *		off	- position in file to put data.
2836789Sahrens  *		len	- amount of data to write.
2837789Sahrens  *		flags	- flags to control the operation.
2838789Sahrens  *		cr	- credentials of caller.
2839789Sahrens  *
2840789Sahrens  *	RETURN:	0 if success
2841789Sahrens  *		error code if failure
2842789Sahrens  *
2843789Sahrens  * Timestamps:
2844789Sahrens  *	vp - ctime|mtime updated
2845789Sahrens  */
2846789Sahrens static int
2847789Sahrens zfs_putpage(vnode_t *vp, offset_t off, size_t len, int flags, cred_t *cr)
2848789Sahrens {
2849789Sahrens 	znode_t		*zp = VTOZ(vp);
2850789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
2851789Sahrens 	page_t		*pp;
2852789Sahrens 	size_t		io_len;
2853789Sahrens 	u_offset_t	io_off;
2854789Sahrens 	int		error = 0;
2855789Sahrens 
2856789Sahrens 	ZFS_ENTER(zfsvfs);
2857789Sahrens 
2858789Sahrens 	ASSERT(zp->z_dbuf_held && zp->z_phys);
2859789Sahrens 
2860789Sahrens 	if (len == 0) {
2861789Sahrens 		/*
2862789Sahrens 		 * Search the entire vp list for pages >= off.
2863789Sahrens 		 */
2864789Sahrens 		error = pvn_vplist_dirty(vp, (u_offset_t)off, zfs_putapage,
2865789Sahrens 		    flags, cr);
28661472Sperrin 		goto out;
2867789Sahrens 	}
2868789Sahrens 
2869789Sahrens 	if (off > zp->z_phys->zp_size) {
2870789Sahrens 		/* past end of file */
2871789Sahrens 		ZFS_EXIT(zfsvfs);
2872789Sahrens 		return (0);
2873789Sahrens 	}
2874789Sahrens 
2875789Sahrens 	len = MIN(len, zp->z_phys->zp_size - off);
2876789Sahrens 
28771472Sperrin 	for (io_off = off; io_off < off + len; io_off += io_len) {
2878789Sahrens 		if ((flags & B_INVAL) || ((flags & B_ASYNC) == 0)) {
2879789Sahrens 			pp  = page_lookup(vp, io_off,
2880789Sahrens 				(flags & (B_INVAL | B_FREE)) ?
2881789Sahrens 					SE_EXCL : SE_SHARED);
2882789Sahrens 		} else {
2883789Sahrens 			pp = page_lookup_nowait(vp, io_off,
2884789Sahrens 				(flags & B_FREE) ? SE_EXCL : SE_SHARED);
2885789Sahrens 		}
2886789Sahrens 
2887789Sahrens 		if (pp != NULL && pvn_getdirty(pp, flags)) {
2888789Sahrens 			int err;
2889789Sahrens 
2890789Sahrens 			/*
2891789Sahrens 			 * Found a dirty page to push
2892789Sahrens 			 */
2893789Sahrens 			if (err =
2894789Sahrens 			    zfs_putapage(vp, pp, &io_off, &io_len, flags, cr))
2895789Sahrens 				error = err;
2896789Sahrens 		} else {
2897789Sahrens 			io_len = PAGESIZE;
2898789Sahrens 		}
2899789Sahrens 	}
29001472Sperrin out:
29011472Sperrin 	zil_commit(zfsvfs->z_log, UINT64_MAX, (flags & B_ASYNC) ? 0 : FDSYNC);
2902789Sahrens 	ZFS_EXIT(zfsvfs);
2903789Sahrens 	return (error);
2904789Sahrens }
2905789Sahrens 
2906789Sahrens void
2907789Sahrens zfs_inactive(vnode_t *vp, cred_t *cr)
2908789Sahrens {
2909789Sahrens 	znode_t	*zp = VTOZ(vp);
2910789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
2911789Sahrens 	int error;
2912789Sahrens 
2913789Sahrens 	rw_enter(&zfsvfs->z_um_lock, RW_READER);
2914789Sahrens 	if (zfsvfs->z_unmounted2) {
2915789Sahrens 		ASSERT(zp->z_dbuf_held == 0);
2916789Sahrens 
2917789Sahrens 		if (vn_has_cached_data(vp)) {
2918789Sahrens 			(void) pvn_vplist_dirty(vp, 0, zfs_null_putapage,
2919789Sahrens 			    B_INVAL, cr);
2920789Sahrens 		}
2921789Sahrens 
2922789Sahrens 		vp->v_count = 0; /* count arrives as 1 */
2923789Sahrens 		zfs_znode_free(zp);
2924789Sahrens 		rw_exit(&zfsvfs->z_um_lock);
2925789Sahrens 		VFS_RELE(zfsvfs->z_vfs);
2926789Sahrens 		return;
2927789Sahrens 	}
2928789Sahrens 
2929789Sahrens 	/*
2930789Sahrens 	 * Attempt to push any data in the page cache.  If this fails
2931789Sahrens 	 * we will get kicked out later in zfs_zinactive().
2932789Sahrens 	 */
29331298Sperrin 	if (vn_has_cached_data(vp)) {
29341298Sperrin 		(void) pvn_vplist_dirty(vp, 0, zfs_putapage, B_INVAL|B_ASYNC,
29351298Sperrin 		    cr);
29361298Sperrin 	}
2937789Sahrens 
2938789Sahrens 	if (zp->z_atime_dirty && zp->z_reap == 0) {
2939789Sahrens 		dmu_tx_t *tx = dmu_tx_create(zfsvfs->z_os);
2940789Sahrens 
2941789Sahrens 		dmu_tx_hold_bonus(tx, zp->z_id);
2942789Sahrens 		error = dmu_tx_assign(tx, TXG_WAIT);
2943789Sahrens 		if (error) {
2944789Sahrens 			dmu_tx_abort(tx);
2945789Sahrens 		} else {
2946789Sahrens 			dmu_buf_will_dirty(zp->z_dbuf, tx);
2947789Sahrens 			mutex_enter(&zp->z_lock);
2948789Sahrens 			zp->z_atime_dirty = 0;
2949789Sahrens 			mutex_exit(&zp->z_lock);
2950789Sahrens 			dmu_tx_commit(tx);
2951789Sahrens 		}
2952789Sahrens 	}
2953789Sahrens 
2954789Sahrens 	zfs_zinactive(zp);
2955789Sahrens 	rw_exit(&zfsvfs->z_um_lock);
2956789Sahrens }
2957789Sahrens 
2958789Sahrens /*
2959789Sahrens  * Bounds-check the seek operation.
2960789Sahrens  *
2961789Sahrens  *	IN:	vp	- vnode seeking within
2962789Sahrens  *		ooff	- old file offset
2963789Sahrens  *		noffp	- pointer to new file offset
2964789Sahrens  *
2965789Sahrens  *	RETURN:	0 if success
2966789Sahrens  *		EINVAL if new offset invalid
2967789Sahrens  */
2968789Sahrens /* ARGSUSED */
2969789Sahrens static int
2970789Sahrens zfs_seek(vnode_t *vp, offset_t ooff, offset_t *noffp)
2971789Sahrens {
2972789Sahrens 	if (vp->v_type == VDIR)
2973789Sahrens 		return (0);
2974789Sahrens 	return ((*noffp < 0 || *noffp > MAXOFFSET_T) ? EINVAL : 0);
2975789Sahrens }
2976789Sahrens 
2977789Sahrens /*
2978789Sahrens  * Pre-filter the generic locking function to trap attempts to place
2979789Sahrens  * a mandatory lock on a memory mapped file.
2980789Sahrens  */
2981789Sahrens static int
2982789Sahrens zfs_frlock(vnode_t *vp, int cmd, flock64_t *bfp, int flag, offset_t offset,
2983789Sahrens     flk_callback_t *flk_cbp, cred_t *cr)
2984789Sahrens {
2985789Sahrens 	znode_t *zp = VTOZ(vp);
2986789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
2987789Sahrens 	uint_t cnt = 1;
2988789Sahrens 	int error;
2989789Sahrens 
2990789Sahrens 	ZFS_ENTER(zfsvfs);
2991789Sahrens 
2992789Sahrens 	/*
2993789Sahrens 	 * If file is being mapped, disallow frlock.  We set the mapcnt to
2994789Sahrens 	 * -1 here to signal that we are in the process of setting a lock.
2995789Sahrens 	 * This prevents a race with zfs_map().
2996789Sahrens 	 * XXX - well, sort of; since zfs_map() does not change z_mapcnt,
2997789Sahrens 	 * we could be in the middle of zfs_map() and still call fs_frlock().
2998789Sahrens 	 * Also, we are doing no checking in zfs_addmap() (where z_mapcnt
2999789Sahrens 	 * *is* manipulated).
3000789Sahrens 	 */
3001789Sahrens 	if (MANDMODE((mode_t)zp->z_phys->zp_mode) &&
3002789Sahrens 	    (int)(cnt = atomic_cas_32(&zp->z_mapcnt, 0, -1)) > 0) {
3003789Sahrens 		ZFS_EXIT(zfsvfs);
3004789Sahrens 		return (EAGAIN);
3005789Sahrens 	}
3006789Sahrens 	error = fs_frlock(vp, cmd, bfp, flag, offset, flk_cbp, cr);
3007789Sahrens 	ASSERT((cnt != 0) || ((int)atomic_cas_32(&zp->z_mapcnt, -1, 0) == -1));
3008789Sahrens 	ZFS_EXIT(zfsvfs);
3009789Sahrens 	return (error);
3010789Sahrens }
3011789Sahrens 
3012789Sahrens /*
3013789Sahrens  * If we can't find a page in the cache, we will create a new page
3014789Sahrens  * and fill it with file data.  For efficiency, we may try to fill
3015789Sahrens  * multiple pages as once (klustering).
3016789Sahrens  */
3017789Sahrens static int
3018789Sahrens zfs_fillpage(vnode_t *vp, u_offset_t off, struct seg *seg,
3019789Sahrens     caddr_t addr, page_t *pl[], size_t plsz, enum seg_rw rw)
3020789Sahrens {
3021789Sahrens 	znode_t *zp = VTOZ(vp);
3022789Sahrens 	page_t *pp, *cur_pp;
3023789Sahrens 	objset_t *os = zp->z_zfsvfs->z_os;
3024789Sahrens 	caddr_t va;
3025789Sahrens 	u_offset_t io_off, total;
3026789Sahrens 	uint64_t oid = zp->z_id;
3027789Sahrens 	size_t io_len;
3028789Sahrens 	int err;
3029789Sahrens 
3030789Sahrens 	/*
3031789Sahrens 	 * If we are only asking for a single page don't bother klustering.
3032789Sahrens 	 */
3033789Sahrens 	if (plsz == PAGESIZE || zp->z_blksz <= PAGESIZE ||
3034789Sahrens 	    off > zp->z_phys->zp_size) {
3035789Sahrens 		io_off = off;
3036789Sahrens 		io_len = PAGESIZE;
3037789Sahrens 		pp = page_create_va(vp, io_off, io_len, PG_WAIT, seg, addr);
3038789Sahrens 	} else {
3039789Sahrens 		/*
3040789Sahrens 		 * Try to fill a kluster of pages (a blocks worth).
3041789Sahrens 		 */
3042789Sahrens 		size_t klen;
3043789Sahrens 		u_offset_t koff;
3044789Sahrens 
3045789Sahrens 		if (!ISP2(zp->z_blksz)) {
3046789Sahrens 			/* Only one block in the file. */
3047789Sahrens 			klen = P2ROUNDUP((ulong_t)zp->z_blksz, PAGESIZE);
3048789Sahrens 			koff = 0;
3049789Sahrens 		} else {
3050789Sahrens 			klen = plsz;
3051789Sahrens 			koff = P2ALIGN(off, (u_offset_t)klen);
3052789Sahrens 		}
3053789Sahrens 		if (klen > zp->z_phys->zp_size)
3054789Sahrens 			klen = P2ROUNDUP(zp->z_phys->zp_size,
3055789Sahrens 			    (uint64_t)PAGESIZE);
3056789Sahrens 		pp = pvn_read_kluster(vp, off, seg, addr, &io_off,
3057789Sahrens 			    &io_len, koff, klen, 0);
3058789Sahrens 	}
3059789Sahrens 	if (pp == NULL) {
3060789Sahrens 		/*
3061789Sahrens 		 * Some other thread entered the page before us.
3062789Sahrens 		 * Return to zfs_getpage to retry the lookup.
3063789Sahrens 		 */
3064789Sahrens 		*pl = NULL;
3065789Sahrens 		return (0);
3066789Sahrens 	}
3067789Sahrens 
3068789Sahrens 	/*
3069789Sahrens 	 * Fill the pages in the kluster.
3070789Sahrens 	 */
3071789Sahrens 	cur_pp = pp;
3072789Sahrens 	for (total = io_off + io_len; io_off < total; io_off += PAGESIZE) {
3073789Sahrens 		ASSERT(io_off == cur_pp->p_offset);
3074789Sahrens 		va = ppmapin(cur_pp, PROT_READ | PROT_WRITE, (caddr_t)-1);
3075789Sahrens 		err = dmu_read_canfail(os, oid, io_off, PAGESIZE, va);
3076789Sahrens 		ppmapout(va);
3077789Sahrens 		if (err) {
3078789Sahrens 			/* On error, toss the entire kluster */
3079789Sahrens 			pvn_read_done(pp, B_ERROR);
3080789Sahrens 			return (err);
3081789Sahrens 		}
3082789Sahrens 		cur_pp = cur_pp->p_next;
3083789Sahrens 	}
3084789Sahrens out:
3085789Sahrens 	/*
3086789Sahrens 	 * Fill in the page list array from the kluster.  If
3087789Sahrens 	 * there are too many pages in the kluster, return
3088789Sahrens 	 * as many pages as possible starting from the desired
3089789Sahrens 	 * offset `off'.
3090789Sahrens 	 * NOTE: the page list will always be null terminated.
3091789Sahrens 	 */
3092789Sahrens 	pvn_plist_init(pp, pl, plsz, off, io_len, rw);
3093789Sahrens 
3094789Sahrens 	return (0);
3095789Sahrens }
3096789Sahrens 
3097789Sahrens /*
3098789Sahrens  * Return pointers to the pages for the file region [off, off + len]
3099789Sahrens  * in the pl array.  If plsz is greater than len, this function may
3100789Sahrens  * also return page pointers from before or after the specified
3101789Sahrens  * region (i.e. some region [off', off' + plsz]).  These additional
3102789Sahrens  * pages are only returned if they are already in the cache, or were
3103789Sahrens  * created as part of a klustered read.
3104789Sahrens  *
3105789Sahrens  *	IN:	vp	- vnode of file to get data from.
3106789Sahrens  *		off	- position in file to get data from.
3107789Sahrens  *		len	- amount of data to retrieve.
3108789Sahrens  *		plsz	- length of provided page list.
3109789Sahrens  *		seg	- segment to obtain pages for.
3110789Sahrens  *		addr	- virtual address of fault.
3111789Sahrens  *		rw	- mode of created pages.
3112789Sahrens  *		cr	- credentials of caller.
3113789Sahrens  *
3114789Sahrens  *	OUT:	protp	- protection mode of created pages.
3115789Sahrens  *		pl	- list of pages created.
3116789Sahrens  *
3117789Sahrens  *	RETURN:	0 if success
3118789Sahrens  *		error code if failure
3119789Sahrens  *
3120789Sahrens  * Timestamps:
3121789Sahrens  *	vp - atime updated
3122789Sahrens  */
3123789Sahrens /* ARGSUSED */
3124789Sahrens static int
3125789Sahrens zfs_getpage(vnode_t *vp, offset_t off, size_t len, uint_t *protp,
3126789Sahrens 	page_t *pl[], size_t plsz, struct seg *seg, caddr_t addr,
3127789Sahrens 	enum seg_rw rw, cred_t *cr)
3128789Sahrens {
3129789Sahrens 	znode_t		*zp = VTOZ(vp);
3130789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
3131789Sahrens 	page_t		*pp, **pl0 = pl;
3132789Sahrens 	int		cnt = 0, need_unlock = 0, err = 0;
3133789Sahrens 
3134789Sahrens 	ZFS_ENTER(zfsvfs);
3135789Sahrens 
3136789Sahrens 	if (protp)
3137789Sahrens 		*protp = PROT_ALL;
3138789Sahrens 
3139789Sahrens 	ASSERT(zp->z_dbuf_held && zp->z_phys);
3140789Sahrens 
3141789Sahrens 	/* no faultahead (for now) */
3142789Sahrens 	if (pl == NULL) {
3143789Sahrens 		ZFS_EXIT(zfsvfs);
3144789Sahrens 		return (0);
3145789Sahrens 	}
3146789Sahrens 
3147789Sahrens 	/* can't fault past EOF */
3148789Sahrens 	if (off >= zp->z_phys->zp_size) {
3149789Sahrens 		ZFS_EXIT(zfsvfs);
3150789Sahrens 		return (EFAULT);
3151789Sahrens 	}
3152789Sahrens 
3153789Sahrens 	/*
3154789Sahrens 	 * Make sure nobody restructures the file (changes block size)
3155789Sahrens 	 * in the middle of the getpage.
3156789Sahrens 	 */
3157789Sahrens 	rw_enter(&zp->z_grow_lock, RW_READER);
3158789Sahrens 
3159789Sahrens 	/*
3160789Sahrens 	 * If we already own the lock, then we must be page faulting
3161789Sahrens 	 * in the middle of a write to this file (i.e., we are writing
3162789Sahrens 	 * to this file using data from a mapped region of the file).
3163789Sahrens 	 */
3164789Sahrens 	if (!rw_owner(&zp->z_map_lock)) {
3165789Sahrens 		rw_enter(&zp->z_map_lock, RW_WRITER);
3166789Sahrens 		need_unlock = TRUE;
3167789Sahrens 	}
3168789Sahrens 
3169789Sahrens 	/*
3170789Sahrens 	 * Loop through the requested range [off, off + len] looking
3171789Sahrens 	 * for pages.  If we don't find a page, we will need to create
3172789Sahrens 	 * a new page and fill it with data from the file.
3173789Sahrens 	 */
3174789Sahrens 	while (len > 0) {
3175789Sahrens 		if (plsz < PAGESIZE)
3176789Sahrens 			break;
3177789Sahrens 		if (pp = page_lookup(vp, off, SE_SHARED)) {
3178789Sahrens 			*pl++ = pp;
3179789Sahrens 			off += PAGESIZE;
3180789Sahrens 			addr += PAGESIZE;
3181789Sahrens 			len -= PAGESIZE;
3182789Sahrens 			plsz -= PAGESIZE;
3183789Sahrens 		} else {
3184789Sahrens 			err = zfs_fillpage(vp, off, seg, addr, pl, plsz, rw);
3185789Sahrens 			/*
3186789Sahrens 			 * klustering may have changed our region
3187789Sahrens 			 * to be block aligned.
3188789Sahrens 			 */
3189789Sahrens 			if (((pp = *pl) != 0) && (off != pp->p_offset)) {
3190789Sahrens 				int delta = off - pp->p_offset;
3191789Sahrens 				len += delta;
3192789Sahrens 				off -= delta;
3193789Sahrens 				addr -= delta;
3194789Sahrens 			}
3195789Sahrens 			while (*pl) {
3196789Sahrens 				pl++;
3197789Sahrens 				cnt++;
3198789Sahrens 				off += PAGESIZE;
3199789Sahrens 				addr += PAGESIZE;
3200789Sahrens 				plsz -= PAGESIZE;
3201789Sahrens 				if (len > PAGESIZE)
3202789Sahrens 					len -= PAGESIZE;
3203789Sahrens 				else
3204789Sahrens 					len = 0;
3205789Sahrens 			}
3206789Sahrens 		}
3207789Sahrens 		if (err)
3208789Sahrens 			goto out;
3209789Sahrens 	}
3210789Sahrens 
3211789Sahrens 	/*
3212789Sahrens 	 * Fill out the page array with any pages already in the cache.
3213789Sahrens 	 */
3214789Sahrens 	while (plsz > 0) {
3215789Sahrens 		pp = page_lookup_nowait(vp, off, SE_SHARED);
3216789Sahrens 		if (pp == NULL)
3217789Sahrens 			break;
3218789Sahrens 		*pl++ = pp;
3219789Sahrens 		off += PAGESIZE;
3220789Sahrens 		plsz -= PAGESIZE;
3221789Sahrens 	}
3222789Sahrens 
3223789Sahrens 	ZFS_ACCESSTIME_STAMP(zfsvfs, zp);
3224789Sahrens out:
3225789Sahrens 	if (err) {
3226789Sahrens 		/*
3227789Sahrens 		 * Release any pages we have locked.
3228789Sahrens 		 */
3229789Sahrens 		while (pl > pl0)
3230789Sahrens 			page_unlock(*--pl);
3231789Sahrens 	}
3232789Sahrens 	*pl = NULL;
3233789Sahrens 
3234789Sahrens 	if (need_unlock)
3235789Sahrens 		rw_exit(&zp->z_map_lock);
3236789Sahrens 	rw_exit(&zp->z_grow_lock);
3237789Sahrens 
3238789Sahrens 	ZFS_EXIT(zfsvfs);
3239789Sahrens 	return (err);
3240789Sahrens }
3241789Sahrens 
3242789Sahrens static int
3243789Sahrens zfs_map(vnode_t *vp, offset_t off, struct as *as, caddr_t *addrp,
3244789Sahrens     size_t len, uchar_t prot, uchar_t maxprot, uint_t flags, cred_t *cr)
3245789Sahrens {
3246789Sahrens 	znode_t *zp = VTOZ(vp);
3247789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
3248789Sahrens 	segvn_crargs_t	vn_a;
3249789Sahrens 	int		error;
3250789Sahrens 
3251789Sahrens 	ZFS_ENTER(zfsvfs);
3252789Sahrens 
3253789Sahrens 	if (vp->v_flag & VNOMAP) {
3254789Sahrens 		ZFS_EXIT(zfsvfs);
3255789Sahrens 		return (ENOSYS);
3256789Sahrens 	}
3257789Sahrens 
3258789Sahrens 	if (off < 0 || len > MAXOFFSET_T - off) {
3259789Sahrens 		ZFS_EXIT(zfsvfs);
3260789Sahrens 		return (ENXIO);
3261789Sahrens 	}
3262789Sahrens 
3263789Sahrens 	if (vp->v_type != VREG) {
3264789Sahrens 		ZFS_EXIT(zfsvfs);
3265789Sahrens 		return (ENODEV);
3266789Sahrens 	}
3267789Sahrens 
3268789Sahrens 	/*
3269789Sahrens 	 * If file is locked, disallow mapping.
3270789Sahrens 	 * XXX - since we don't modify z_mapcnt here, there is nothing
3271789Sahrens 	 * to stop a file lock being placed immediately after we complete
3272789Sahrens 	 * this check.
3273789Sahrens 	 */
3274789Sahrens 	if (MANDMODE((mode_t)zp->z_phys->zp_mode)) {
3275789Sahrens 		if (vn_has_flocks(vp) || zp->z_mapcnt == -1) {
3276789Sahrens 			ZFS_EXIT(zfsvfs);
3277789Sahrens 			return (EAGAIN);
3278789Sahrens 		}
3279789Sahrens 	}
3280789Sahrens 
3281789Sahrens 	as_rangelock(as);
3282789Sahrens 	if ((flags & MAP_FIXED) == 0) {
3283789Sahrens 		map_addr(addrp, len, off, 1, flags);
3284789Sahrens 		if (*addrp == NULL) {
3285789Sahrens 			as_rangeunlock(as);
3286789Sahrens 			ZFS_EXIT(zfsvfs);
3287789Sahrens 			return (ENOMEM);
3288789Sahrens 		}
3289789Sahrens 	} else {
3290789Sahrens 		/*
3291789Sahrens 		 * User specified address - blow away any previous mappings
3292789Sahrens 		 */
3293789Sahrens 		(void) as_unmap(as, *addrp, len);
3294789Sahrens 	}
3295789Sahrens 
3296789Sahrens 	vn_a.vp = vp;
3297789Sahrens 	vn_a.offset = (u_offset_t)off;
3298789Sahrens 	vn_a.type = flags & MAP_TYPE;
3299789Sahrens 	vn_a.prot = prot;
3300789Sahrens 	vn_a.maxprot = maxprot;
3301789Sahrens 	vn_a.cred = cr;
3302789Sahrens 	vn_a.amp = NULL;
3303789Sahrens 	vn_a.flags = flags & ~MAP_TYPE;
33041417Skchow 	vn_a.szc = 0;
33051417Skchow 	vn_a.lgrp_mem_policy_flags = 0;
3306789Sahrens 
3307789Sahrens 	error = as_map(as, *addrp, len, segvn_create, &vn_a);
3308789Sahrens 
3309789Sahrens 	as_rangeunlock(as);
3310789Sahrens 	ZFS_EXIT(zfsvfs);
3311789Sahrens 	return (error);
3312789Sahrens }
3313789Sahrens 
3314789Sahrens /* ARGSUSED */
3315789Sahrens static int
3316789Sahrens zfs_addmap(vnode_t *vp, offset_t off, struct as *as, caddr_t addr,
3317789Sahrens     size_t len, uchar_t prot, uchar_t maxprot, uint_t flags, cred_t *cr)
3318789Sahrens {
3319789Sahrens 	/*
3320789Sahrens 	 * XXX - shouldn't we be checking for file locks here?
3321789Sahrens 	 */
3322789Sahrens 	ASSERT3U(VTOZ(vp)->z_mapcnt, >=, 0);
3323789Sahrens 	atomic_add_32(&VTOZ(vp)->z_mapcnt, btopr(len));
3324789Sahrens 	return (0);
3325789Sahrens }
3326789Sahrens 
3327789Sahrens /* ARGSUSED */
3328789Sahrens static int
3329789Sahrens zfs_delmap(vnode_t *vp, offset_t off, struct as *as, caddr_t addr,
3330789Sahrens     size_t len, uint_t prot, uint_t maxprot, uint_t flags, cred_t *cr)
3331789Sahrens {
3332789Sahrens 	atomic_add_32(&VTOZ(vp)->z_mapcnt, -btopr(len));
3333789Sahrens 	ASSERT3U(VTOZ(vp)->z_mapcnt, >=, 0);
3334789Sahrens 	return (0);
3335789Sahrens }
3336789Sahrens 
3337789Sahrens /*
3338789Sahrens  * Free or allocate space in a file.  Currently, this function only
3339789Sahrens  * supports the `F_FREESP' command.  However, this command is somewhat
3340789Sahrens  * misnamed, as its functionality includes the ability to allocate as
3341789Sahrens  * well as free space.
3342789Sahrens  *
3343789Sahrens  *	IN:	vp	- vnode of file to free data in.
3344789Sahrens  *		cmd	- action to take (only F_FREESP supported).
3345789Sahrens  *		bfp	- section of file to free/alloc.
3346789Sahrens  *		flag	- current file open mode flags.
3347789Sahrens  *		offset	- current file offset.
3348789Sahrens  *		cr	- credentials of caller [UNUSED].
3349789Sahrens  *
3350789Sahrens  *	RETURN:	0 if success
3351789Sahrens  *		error code if failure
3352789Sahrens  *
3353789Sahrens  * Timestamps:
3354789Sahrens  *	vp - ctime|mtime updated
3355789Sahrens  *
3356789Sahrens  * NOTE: This function is limited in that it will only permit space to
3357789Sahrens  *   be freed at the end of a file.  In essence, this function simply
3358789Sahrens  *   allows one to set the file size.
3359789Sahrens  */
3360789Sahrens /* ARGSUSED */
3361789Sahrens static int
3362789Sahrens zfs_space(vnode_t *vp, int cmd, flock64_t *bfp, int flag,
3363789Sahrens     offset_t offset, cred_t *cr, caller_context_t *ct)
3364789Sahrens {
3365789Sahrens 	dmu_tx_t	*tx;
3366789Sahrens 	znode_t		*zp = VTOZ(vp);
3367789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
3368789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
3369789Sahrens 	uint64_t	seq = 0;
3370789Sahrens 	uint64_t	off, len;
3371789Sahrens 	int		error;
3372789Sahrens 
3373789Sahrens 	ZFS_ENTER(zfsvfs);
3374789Sahrens 
3375789Sahrens top:
3376789Sahrens 	if (cmd != F_FREESP) {
3377789Sahrens 		ZFS_EXIT(zfsvfs);
3378789Sahrens 		return (EINVAL);
3379789Sahrens 	}
3380789Sahrens 
3381789Sahrens 	if (error = convoff(vp, bfp, 0, offset)) {
3382789Sahrens 		ZFS_EXIT(zfsvfs);
3383789Sahrens 		return (error);
3384789Sahrens 	}
3385789Sahrens 
3386789Sahrens 	if (bfp->l_len < 0) {
3387789Sahrens 		ZFS_EXIT(zfsvfs);
3388789Sahrens 		return (EINVAL);
3389789Sahrens 	}
3390789Sahrens 
3391789Sahrens 	off = bfp->l_start;
3392789Sahrens 	len = bfp->l_len;
3393789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
3394789Sahrens 	/*
3395789Sahrens 	 * Grab the grow_lock to serialize this change with
3396789Sahrens 	 * respect to other file size changes.
3397789Sahrens 	 */
3398789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
3399789Sahrens 	rw_enter(&zp->z_grow_lock, RW_WRITER);
3400789Sahrens 	if (off + len > zp->z_blksz && zp->z_blksz < zfsvfs->z_max_blksz &&
3401789Sahrens 	    off >= zp->z_phys->zp_size) {
3402789Sahrens 		/*
3403789Sahrens 		 * We are increasing the length of the file,
3404789Sahrens 		 * and this may mean a block size increase.
3405789Sahrens 		 */
3406789Sahrens 		dmu_tx_hold_write(tx, zp->z_id, 0,
3407789Sahrens 		    MIN(off + len, zfsvfs->z_max_blksz));
3408789Sahrens 	} else if (off < zp->z_phys->zp_size) {
3409789Sahrens 		/*
3410789Sahrens 		 * If len == 0, we are truncating the file.
3411789Sahrens 		 */
3412789Sahrens 		dmu_tx_hold_free(tx, zp->z_id, off, len ? len : DMU_OBJECT_END);
3413789Sahrens 	}
3414789Sahrens 
3415789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
3416789Sahrens 	if (error) {
3417789Sahrens 		dmu_tx_abort(tx);
3418789Sahrens 		rw_exit(&zp->z_grow_lock);
3419789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
3420789Sahrens 			txg_wait_open(dmu_objset_pool(zfsvfs->z_os), 0);
3421789Sahrens 			goto top;
3422789Sahrens 		}
3423789Sahrens 		ZFS_EXIT(zfsvfs);
3424789Sahrens 		return (error);
3425789Sahrens 	}
3426789Sahrens 
3427789Sahrens 	error = zfs_freesp(zp, off, len, flag, tx, cr);
3428789Sahrens 
3429789Sahrens 	if (error == 0) {
3430789Sahrens 		zfs_time_stamper(zp, CONTENT_MODIFIED, tx);
3431789Sahrens 		seq = zfs_log_truncate(zilog, tx, TX_TRUNCATE, zp, off, len);
3432789Sahrens 	}
3433789Sahrens 
3434789Sahrens 	rw_exit(&zp->z_grow_lock);
3435789Sahrens 
3436789Sahrens 	dmu_tx_commit(tx);
3437789Sahrens 
3438789Sahrens 	zil_commit(zilog, seq, 0);
3439789Sahrens 
3440789Sahrens 	ZFS_EXIT(zfsvfs);
3441789Sahrens 	return (error);
3442789Sahrens }
3443789Sahrens 
3444789Sahrens static int
3445789Sahrens zfs_fid(vnode_t *vp, fid_t *fidp)
3446789Sahrens {
3447789Sahrens 	znode_t		*zp = VTOZ(vp);
3448789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
3449789Sahrens 	uint32_t	gen = (uint32_t)zp->z_phys->zp_gen;
3450789Sahrens 	uint64_t	object = zp->z_id;
3451789Sahrens 	zfid_short_t	*zfid;
3452789Sahrens 	int		size, i;
3453789Sahrens 
3454789Sahrens 	ZFS_ENTER(zfsvfs);
3455789Sahrens 
3456789Sahrens 	size = (zfsvfs->z_parent != zfsvfs) ? LONG_FID_LEN : SHORT_FID_LEN;
3457789Sahrens 	if (fidp->fid_len < size) {
3458789Sahrens 		fidp->fid_len = size;
3459789Sahrens 		return (ENOSPC);
3460789Sahrens 	}
3461789Sahrens 
3462789Sahrens 	zfid = (zfid_short_t *)fidp;
3463789Sahrens 
3464789Sahrens 	zfid->zf_len = size;
3465789Sahrens 
3466789Sahrens 	for (i = 0; i < sizeof (zfid->zf_object); i++)
3467789Sahrens 		zfid->zf_object[i] = (uint8_t)(object >> (8 * i));
3468789Sahrens 
3469789Sahrens 	/* Must have a non-zero generation number to distinguish from .zfs */
3470789Sahrens 	if (gen == 0)
3471789Sahrens 		gen = 1;
3472789Sahrens 	for (i = 0; i < sizeof (zfid->zf_gen); i++)
3473789Sahrens 		zfid->zf_gen[i] = (uint8_t)(gen >> (8 * i));
3474789Sahrens 
3475789Sahrens 	if (size == LONG_FID_LEN) {
3476789Sahrens 		uint64_t	objsetid = dmu_objset_id(zfsvfs->z_os);
3477789Sahrens 		zfid_long_t	*zlfid;
3478789Sahrens 
3479789Sahrens 		zlfid = (zfid_long_t *)fidp;
3480789Sahrens 
3481789Sahrens 		for (i = 0; i < sizeof (zlfid->zf_setid); i++)
3482789Sahrens 			zlfid->zf_setid[i] = (uint8_t)(objsetid >> (8 * i));
3483789Sahrens 
3484789Sahrens 		/* XXX - this should be the generation number for the objset */
3485789Sahrens 		for (i = 0; i < sizeof (zlfid->zf_setgen); i++)
3486789Sahrens 			zlfid->zf_setgen[i] = 0;
3487789Sahrens 	}
3488789Sahrens 
3489789Sahrens 	ZFS_EXIT(zfsvfs);
3490789Sahrens 	return (0);
3491789Sahrens }
3492789Sahrens 
3493789Sahrens static int
3494789Sahrens zfs_pathconf(vnode_t *vp, int cmd, ulong_t *valp, cred_t *cr)
3495789Sahrens {
3496789Sahrens 	znode_t		*zp, *xzp;
3497789Sahrens 	zfsvfs_t	*zfsvfs;
3498789Sahrens 	zfs_dirlock_t	*dl;
3499789Sahrens 	int		error;
3500789Sahrens 
3501789Sahrens 	switch (cmd) {
3502789Sahrens 	case _PC_LINK_MAX:
3503789Sahrens 		*valp = ULONG_MAX;
3504789Sahrens 		return (0);
3505789Sahrens 
3506789Sahrens 	case _PC_FILESIZEBITS:
3507789Sahrens 		*valp = 64;
3508789Sahrens 		return (0);
3509789Sahrens 
3510789Sahrens 	case _PC_XATTR_EXISTS:
3511789Sahrens 		zp = VTOZ(vp);
3512789Sahrens 		zfsvfs = zp->z_zfsvfs;
3513789Sahrens 		ZFS_ENTER(zfsvfs);
3514789Sahrens 		*valp = 0;
3515789Sahrens 		error = zfs_dirent_lock(&dl, zp, "", &xzp,
3516789Sahrens 		    ZXATTR | ZEXISTS | ZSHARED);
3517789Sahrens 		if (error == 0) {
3518789Sahrens 			zfs_dirent_unlock(dl);
3519789Sahrens 			if (!zfs_dirempty(xzp))
3520789Sahrens 				*valp = 1;
3521789Sahrens 			VN_RELE(ZTOV(xzp));
3522789Sahrens 		} else if (error == ENOENT) {
3523789Sahrens 			/*
3524789Sahrens 			 * If there aren't extended attributes, it's the
3525789Sahrens 			 * same as having zero of them.
3526789Sahrens 			 */
3527789Sahrens 			error = 0;
3528789Sahrens 		}
3529789Sahrens 		ZFS_EXIT(zfsvfs);
3530789Sahrens 		return (error);
3531789Sahrens 
3532789Sahrens 	case _PC_ACL_ENABLED:
3533789Sahrens 		*valp = _ACL_ACE_ENABLED;
3534789Sahrens 		return (0);
3535789Sahrens 
3536789Sahrens 	case _PC_MIN_HOLE_SIZE:
3537789Sahrens 		*valp = (ulong_t)SPA_MINBLOCKSIZE;
3538789Sahrens 		return (0);
3539789Sahrens 
3540789Sahrens 	default:
3541789Sahrens 		return (fs_pathconf(vp, cmd, valp, cr));
3542789Sahrens 	}
3543789Sahrens }
3544789Sahrens 
3545789Sahrens /*ARGSUSED*/
3546789Sahrens static int
3547789Sahrens zfs_getsecattr(vnode_t *vp, vsecattr_t *vsecp, int flag, cred_t *cr)
3548789Sahrens {
3549789Sahrens 	znode_t *zp = VTOZ(vp);
3550789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
3551789Sahrens 	int error;
3552789Sahrens 
3553789Sahrens 	ZFS_ENTER(zfsvfs);
3554789Sahrens 	error = zfs_getacl(zp, vsecp, cr);
3555789Sahrens 	ZFS_EXIT(zfsvfs);
3556789Sahrens 
3557789Sahrens 	return (error);
3558789Sahrens }
3559789Sahrens 
3560789Sahrens /*ARGSUSED*/
3561789Sahrens static int
3562789Sahrens zfs_setsecattr(vnode_t *vp, vsecattr_t *vsecp, int flag, cred_t *cr)
3563789Sahrens {
3564789Sahrens 	znode_t *zp = VTOZ(vp);
3565789Sahrens 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
3566789Sahrens 	int error;
3567789Sahrens 
3568789Sahrens 	ZFS_ENTER(zfsvfs);
3569789Sahrens 	error = zfs_setacl(zp, vsecp, cr);
3570789Sahrens 	ZFS_EXIT(zfsvfs);
3571789Sahrens 	return (error);
3572789Sahrens }
3573789Sahrens 
3574789Sahrens /*
3575789Sahrens  * Predeclare these here so that the compiler assumes that
3576789Sahrens  * this is an "old style" function declaration that does
3577789Sahrens  * not include arguments => we won't get type mismatch errors
3578789Sahrens  * in the initializations that follow.
3579789Sahrens  */
3580789Sahrens static int zfs_inval();
3581789Sahrens static int zfs_isdir();
3582789Sahrens 
3583789Sahrens static int
3584789Sahrens zfs_inval()
3585789Sahrens {
3586789Sahrens 	return (EINVAL);
3587789Sahrens }
3588789Sahrens 
3589789Sahrens static int
3590789Sahrens zfs_isdir()
3591789Sahrens {
3592789Sahrens 	return (EISDIR);
3593789Sahrens }
3594789Sahrens /*
3595789Sahrens  * Directory vnode operations template
3596789Sahrens  */
3597789Sahrens vnodeops_t *zfs_dvnodeops;
3598789Sahrens const fs_operation_def_t zfs_dvnodeops_template[] = {
3599789Sahrens 	VOPNAME_OPEN, zfs_open,
3600789Sahrens 	VOPNAME_CLOSE, zfs_close,
3601789Sahrens 	VOPNAME_READ, zfs_isdir,
3602789Sahrens 	VOPNAME_WRITE, zfs_isdir,
3603789Sahrens 	VOPNAME_IOCTL, zfs_ioctl,
3604789Sahrens 	VOPNAME_GETATTR, zfs_getattr,
3605789Sahrens 	VOPNAME_SETATTR, zfs_setattr,
3606789Sahrens 	VOPNAME_ACCESS, zfs_access,
3607789Sahrens 	VOPNAME_LOOKUP, zfs_lookup,
3608789Sahrens 	VOPNAME_CREATE, zfs_create,
3609789Sahrens 	VOPNAME_REMOVE, zfs_remove,
3610789Sahrens 	VOPNAME_LINK, zfs_link,
3611789Sahrens 	VOPNAME_RENAME, zfs_rename,
3612789Sahrens 	VOPNAME_MKDIR, zfs_mkdir,
3613789Sahrens 	VOPNAME_RMDIR, zfs_rmdir,
3614789Sahrens 	VOPNAME_READDIR, zfs_readdir,
3615789Sahrens 	VOPNAME_SYMLINK, zfs_symlink,
3616789Sahrens 	VOPNAME_FSYNC, zfs_fsync,
3617789Sahrens 	VOPNAME_INACTIVE, (fs_generic_func_p) zfs_inactive,
3618789Sahrens 	VOPNAME_FID, zfs_fid,
3619789Sahrens 	VOPNAME_SEEK, zfs_seek,
3620789Sahrens 	VOPNAME_PATHCONF, zfs_pathconf,
3621789Sahrens 	VOPNAME_GETSECATTR, zfs_getsecattr,
3622789Sahrens 	VOPNAME_SETSECATTR, zfs_setsecattr,
3623789Sahrens 	NULL, NULL
3624789Sahrens };
3625789Sahrens 
3626789Sahrens /*
3627789Sahrens  * Regular file vnode operations template
3628789Sahrens  */
3629789Sahrens vnodeops_t *zfs_fvnodeops;
3630789Sahrens const fs_operation_def_t zfs_fvnodeops_template[] = {
3631789Sahrens 	VOPNAME_OPEN, zfs_open,
3632789Sahrens 	VOPNAME_CLOSE, zfs_close,
3633789Sahrens 	VOPNAME_READ, zfs_read,
3634789Sahrens 	VOPNAME_WRITE, zfs_write,
3635789Sahrens 	VOPNAME_IOCTL, zfs_ioctl,
3636789Sahrens 	VOPNAME_GETATTR, zfs_getattr,
3637789Sahrens 	VOPNAME_SETATTR, zfs_setattr,
3638789Sahrens 	VOPNAME_ACCESS, zfs_access,
3639789Sahrens 	VOPNAME_LOOKUP, zfs_lookup,
3640789Sahrens 	VOPNAME_RENAME, zfs_rename,
3641789Sahrens 	VOPNAME_FSYNC, zfs_fsync,
3642789Sahrens 	VOPNAME_INACTIVE, (fs_generic_func_p)zfs_inactive,
3643789Sahrens 	VOPNAME_FID, zfs_fid,
3644789Sahrens 	VOPNAME_SEEK, zfs_seek,
3645789Sahrens 	VOPNAME_FRLOCK, zfs_frlock,
3646789Sahrens 	VOPNAME_SPACE, zfs_space,
3647789Sahrens 	VOPNAME_GETPAGE, zfs_getpage,
3648789Sahrens 	VOPNAME_PUTPAGE, zfs_putpage,
3649789Sahrens 	VOPNAME_MAP, (fs_generic_func_p) zfs_map,
3650789Sahrens 	VOPNAME_ADDMAP, (fs_generic_func_p) zfs_addmap,
3651789Sahrens 	VOPNAME_DELMAP, zfs_delmap,
3652789Sahrens 	VOPNAME_PATHCONF, zfs_pathconf,
3653789Sahrens 	VOPNAME_GETSECATTR, zfs_getsecattr,
3654789Sahrens 	VOPNAME_SETSECATTR, zfs_setsecattr,
3655789Sahrens 	VOPNAME_VNEVENT, fs_vnevent_support,
3656789Sahrens 	NULL, NULL
3657789Sahrens };
3658789Sahrens 
3659789Sahrens /*
3660789Sahrens  * Symbolic link vnode operations template
3661789Sahrens  */
3662789Sahrens vnodeops_t *zfs_symvnodeops;
3663789Sahrens const fs_operation_def_t zfs_symvnodeops_template[] = {
3664789Sahrens 	VOPNAME_GETATTR, zfs_getattr,
3665789Sahrens 	VOPNAME_SETATTR, zfs_setattr,
3666789Sahrens 	VOPNAME_ACCESS, zfs_access,
3667789Sahrens 	VOPNAME_RENAME, zfs_rename,
3668789Sahrens 	VOPNAME_READLINK, zfs_readlink,
3669789Sahrens 	VOPNAME_INACTIVE, (fs_generic_func_p) zfs_inactive,
3670789Sahrens 	VOPNAME_FID, zfs_fid,
3671789Sahrens 	VOPNAME_PATHCONF, zfs_pathconf,
3672789Sahrens 	VOPNAME_VNEVENT, fs_vnevent_support,
3673789Sahrens 	NULL, NULL
3674789Sahrens };
3675789Sahrens 
3676789Sahrens /*
3677789Sahrens  * Extended attribute directory vnode operations template
3678789Sahrens  *	This template is identical to the directory vnodes
3679789Sahrens  *	operation template except for restricted operations:
3680789Sahrens  *		VOP_MKDIR()
3681789Sahrens  *		VOP_SYMLINK()
3682789Sahrens  * Note that there are other restrictions embedded in:
3683789Sahrens  *	zfs_create()	- restrict type to VREG
3684789Sahrens  *	zfs_link()	- no links into/out of attribute space
3685789Sahrens  *	zfs_rename()	- no moves into/out of attribute space
3686789Sahrens  */
3687789Sahrens vnodeops_t *zfs_xdvnodeops;
3688789Sahrens const fs_operation_def_t zfs_xdvnodeops_template[] = {
3689789Sahrens 	VOPNAME_OPEN, zfs_open,
3690789Sahrens 	VOPNAME_CLOSE, zfs_close,
3691789Sahrens 	VOPNAME_IOCTL, zfs_ioctl,
3692789Sahrens 	VOPNAME_GETATTR, zfs_getattr,
3693789Sahrens 	VOPNAME_SETATTR, zfs_setattr,
3694789Sahrens 	VOPNAME_ACCESS, zfs_access,
3695789Sahrens 	VOPNAME_LOOKUP, zfs_lookup,
3696789Sahrens 	VOPNAME_CREATE, zfs_create,
3697789Sahrens 	VOPNAME_REMOVE, zfs_remove,
3698789Sahrens 	VOPNAME_LINK, zfs_link,
3699789Sahrens 	VOPNAME_RENAME, zfs_rename,
3700789Sahrens 	VOPNAME_MKDIR, zfs_inval,
3701789Sahrens 	VOPNAME_RMDIR, zfs_rmdir,
3702789Sahrens 	VOPNAME_READDIR, zfs_readdir,
3703789Sahrens 	VOPNAME_SYMLINK, zfs_inval,
3704789Sahrens 	VOPNAME_FSYNC, zfs_fsync,
3705789Sahrens 	VOPNAME_INACTIVE, (fs_generic_func_p) zfs_inactive,
3706789Sahrens 	VOPNAME_FID, zfs_fid,
3707789Sahrens 	VOPNAME_SEEK, zfs_seek,
3708789Sahrens 	VOPNAME_PATHCONF, zfs_pathconf,
3709789Sahrens 	VOPNAME_GETSECATTR, zfs_getsecattr,
3710789Sahrens 	VOPNAME_SETSECATTR, zfs_setsecattr,
3711789Sahrens 	VOPNAME_VNEVENT, fs_vnevent_support,
3712789Sahrens 	NULL, NULL
3713789Sahrens };
3714789Sahrens 
3715789Sahrens /*
3716789Sahrens  * Error vnode operations template
3717789Sahrens  */
3718789Sahrens vnodeops_t *zfs_evnodeops;
3719789Sahrens const fs_operation_def_t zfs_evnodeops_template[] = {
3720789Sahrens 	VOPNAME_INACTIVE, (fs_generic_func_p) zfs_inactive,
3721789Sahrens 	VOPNAME_PATHCONF, zfs_pathconf,
3722789Sahrens 	NULL, NULL
3723789Sahrens };
3724