tmpfs_subr.c revision 250189
1/*	$NetBSD: tmpfs_subr.c,v 1.35 2007/07/09 21:10:50 ad Exp $	*/
2
3/*-
4 * Copyright (c) 2005 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Julio M. Merino Vidal, developed as part of Google's Summer of Code
9 * 2005 program.
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 *    notice, this list of conditions and the following disclaimer.
16 * 2. Redistributions in binary form must reproduce the above copyright
17 *    notice, this list of conditions and the following disclaimer in the
18 *    documentation and/or other materials provided with the distribution.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 * POSSIBILITY OF SUCH DAMAGE.
31 */
32
33/*
34 * Efficient memory file system supporting functions.
35 */
36#include <sys/cdefs.h>
37__FBSDID("$FreeBSD: head/sys/fs/tmpfs/tmpfs_subr.c 250189 2013-05-02 18:44:31Z kib $");
38
39#include <sys/param.h>
40#include <sys/fnv_hash.h>
41#include <sys/lock.h>
42#include <sys/namei.h>
43#include <sys/priv.h>
44#include <sys/proc.h>
45#include <sys/rwlock.h>
46#include <sys/stat.h>
47#include <sys/systm.h>
48#include <sys/sysctl.h>
49#include <sys/vnode.h>
50#include <sys/vmmeter.h>
51
52#include <vm/vm.h>
53#include <vm/vm_param.h>
54#include <vm/vm_object.h>
55#include <vm/vm_page.h>
56#include <vm/vm_pageout.h>
57#include <vm/vm_pager.h>
58#include <vm/vm_extern.h>
59
60#include <fs/tmpfs/tmpfs.h>
61#include <fs/tmpfs/tmpfs_fifoops.h>
62#include <fs/tmpfs/tmpfs_vnops.h>
63
64struct tmpfs_dir_cursor {
65	struct tmpfs_dirent	*tdc_current;
66	struct tmpfs_dirent	*tdc_tree;
67};
68
69SYSCTL_NODE(_vfs, OID_AUTO, tmpfs, CTLFLAG_RW, 0, "tmpfs file system");
70
71static long tmpfs_pages_reserved = TMPFS_PAGES_MINRESERVED;
72
73static int
74sysctl_mem_reserved(SYSCTL_HANDLER_ARGS)
75{
76	int error;
77	long pages, bytes;
78
79	pages = *(long *)arg1;
80	bytes = pages * PAGE_SIZE;
81
82	error = sysctl_handle_long(oidp, &bytes, 0, req);
83	if (error || !req->newptr)
84		return (error);
85
86	pages = bytes / PAGE_SIZE;
87	if (pages < TMPFS_PAGES_MINRESERVED)
88		return (EINVAL);
89
90	*(long *)arg1 = pages;
91	return (0);
92}
93
94SYSCTL_PROC(_vfs_tmpfs, OID_AUTO, memory_reserved, CTLTYPE_LONG|CTLFLAG_RW,
95    &tmpfs_pages_reserved, 0, sysctl_mem_reserved, "L",
96    "Amount of available memory and swap below which tmpfs growth stops");
97
98static __inline int tmpfs_dirtree_cmp(struct tmpfs_dirent *a,
99    struct tmpfs_dirent *b);
100RB_PROTOTYPE_STATIC(tmpfs_dir, tmpfs_dirent, uh.td_entries, tmpfs_dirtree_cmp);
101
102size_t
103tmpfs_mem_avail(void)
104{
105	vm_ooffset_t avail;
106
107	avail = swap_pager_avail + cnt.v_free_count + cnt.v_cache_count -
108	    tmpfs_pages_reserved;
109	if (__predict_false(avail < 0))
110		avail = 0;
111	return (avail);
112}
113
114size_t
115tmpfs_pages_used(struct tmpfs_mount *tmp)
116{
117	const size_t node_size = sizeof(struct tmpfs_node) +
118	    sizeof(struct tmpfs_dirent);
119	size_t meta_pages;
120
121	meta_pages = howmany((uintmax_t)tmp->tm_nodes_inuse * node_size,
122	    PAGE_SIZE);
123	return (meta_pages + tmp->tm_pages_used);
124}
125
126static size_t
127tmpfs_pages_check_avail(struct tmpfs_mount *tmp, size_t req_pages)
128{
129	if (tmpfs_mem_avail() < req_pages)
130		return (0);
131
132	if (tmp->tm_pages_max != SIZE_MAX &&
133	    tmp->tm_pages_max < req_pages + tmpfs_pages_used(tmp))
134			return (0);
135
136	return (1);
137}
138
139/* --------------------------------------------------------------------- */
140
141/*
142 * Allocates a new node of type 'type' inside the 'tmp' mount point, with
143 * its owner set to 'uid', its group to 'gid' and its mode set to 'mode',
144 * using the credentials of the process 'p'.
145 *
146 * If the node type is set to 'VDIR', then the parent parameter must point
147 * to the parent directory of the node being created.  It may only be NULL
148 * while allocating the root node.
149 *
150 * If the node type is set to 'VBLK' or 'VCHR', then the rdev parameter
151 * specifies the device the node represents.
152 *
153 * If the node type is set to 'VLNK', then the parameter target specifies
154 * the file name of the target file for the symbolic link that is being
155 * created.
156 *
157 * Note that new nodes are retrieved from the available list if it has
158 * items or, if it is empty, from the node pool as long as there is enough
159 * space to create them.
160 *
161 * Returns zero on success or an appropriate error code on failure.
162 */
163int
164tmpfs_alloc_node(struct tmpfs_mount *tmp, enum vtype type,
165    uid_t uid, gid_t gid, mode_t mode, struct tmpfs_node *parent,
166    char *target, dev_t rdev, struct tmpfs_node **node)
167{
168	struct tmpfs_node *nnode;
169	vm_object_t obj;
170
171	/* If the root directory of the 'tmp' file system is not yet
172	 * allocated, this must be the request to do it. */
173	MPASS(IMPLIES(tmp->tm_root == NULL, parent == NULL && type == VDIR));
174
175	MPASS(IFF(type == VLNK, target != NULL));
176	MPASS(IFF(type == VBLK || type == VCHR, rdev != VNOVAL));
177
178	if (tmp->tm_nodes_inuse >= tmp->tm_nodes_max)
179		return (ENOSPC);
180	if (tmpfs_pages_check_avail(tmp, 1) == 0)
181		return (ENOSPC);
182
183	nnode = (struct tmpfs_node *)uma_zalloc_arg(
184				tmp->tm_node_pool, tmp, M_WAITOK);
185
186	/* Generic initialization. */
187	nnode->tn_type = type;
188	vfs_timestamp(&nnode->tn_atime);
189	nnode->tn_birthtime = nnode->tn_ctime = nnode->tn_mtime =
190	    nnode->tn_atime;
191	nnode->tn_uid = uid;
192	nnode->tn_gid = gid;
193	nnode->tn_mode = mode;
194	nnode->tn_id = alloc_unr(tmp->tm_ino_unr);
195
196	/* Type-specific initialization. */
197	switch (nnode->tn_type) {
198	case VBLK:
199	case VCHR:
200		nnode->tn_rdev = rdev;
201		break;
202
203	case VDIR:
204		RB_INIT(&nnode->tn_dir.tn_dirhead);
205		LIST_INIT(&nnode->tn_dir.tn_dupindex);
206		MPASS(parent != nnode);
207		MPASS(IMPLIES(parent == NULL, tmp->tm_root == NULL));
208		nnode->tn_dir.tn_parent = (parent == NULL) ? nnode : parent;
209		nnode->tn_dir.tn_readdir_lastn = 0;
210		nnode->tn_dir.tn_readdir_lastp = NULL;
211		nnode->tn_links++;
212		TMPFS_NODE_LOCK(nnode->tn_dir.tn_parent);
213		nnode->tn_dir.tn_parent->tn_links++;
214		TMPFS_NODE_UNLOCK(nnode->tn_dir.tn_parent);
215		break;
216
217	case VFIFO:
218		/* FALLTHROUGH */
219	case VSOCK:
220		break;
221
222	case VLNK:
223		MPASS(strlen(target) < MAXPATHLEN);
224		nnode->tn_size = strlen(target);
225		nnode->tn_link = malloc(nnode->tn_size, M_TMPFSNAME,
226		    M_WAITOK);
227		memcpy(nnode->tn_link, target, nnode->tn_size);
228		break;
229
230	case VREG:
231		obj = nnode->tn_reg.tn_aobj =
232		    vm_pager_allocate(OBJT_SWAP, NULL, 0, VM_PROT_DEFAULT, 0,
233			NULL /* XXXKIB - tmpfs needs swap reservation */);
234		VM_OBJECT_WLOCK(obj);
235		/* OBJ_TMPFS is set together with the setting of vp->v_object */
236		vm_object_set_flag(obj, OBJ_NOSPLIT);
237		vm_object_clear_flag(obj, OBJ_ONEMAPPING);
238		VM_OBJECT_WUNLOCK(obj);
239		break;
240
241	default:
242		panic("tmpfs_alloc_node: type %p %d", nnode, (int)nnode->tn_type);
243	}
244
245	TMPFS_LOCK(tmp);
246	LIST_INSERT_HEAD(&tmp->tm_nodes_used, nnode, tn_entries);
247	tmp->tm_nodes_inuse++;
248	TMPFS_UNLOCK(tmp);
249
250	*node = nnode;
251	return 0;
252}
253
254/* --------------------------------------------------------------------- */
255
256/*
257 * Destroys the node pointed to by node from the file system 'tmp'.
258 * If the node does not belong to the given mount point, the results are
259 * unpredicted.
260 *
261 * If the node references a directory; no entries are allowed because
262 * their removal could need a recursive algorithm, something forbidden in
263 * kernel space.  Furthermore, there is not need to provide such
264 * functionality (recursive removal) because the only primitives offered
265 * to the user are the removal of empty directories and the deletion of
266 * individual files.
267 *
268 * Note that nodes are not really deleted; in fact, when a node has been
269 * allocated, it cannot be deleted during the whole life of the file
270 * system.  Instead, they are moved to the available list and remain there
271 * until reused.
272 */
273void
274tmpfs_free_node(struct tmpfs_mount *tmp, struct tmpfs_node *node)
275{
276	vm_object_t uobj;
277
278#ifdef INVARIANTS
279	TMPFS_NODE_LOCK(node);
280	MPASS(node->tn_vnode == NULL);
281	MPASS((node->tn_vpstate & TMPFS_VNODE_ALLOCATING) == 0);
282	TMPFS_NODE_UNLOCK(node);
283#endif
284
285	TMPFS_LOCK(tmp);
286	LIST_REMOVE(node, tn_entries);
287	tmp->tm_nodes_inuse--;
288	TMPFS_UNLOCK(tmp);
289
290	switch (node->tn_type) {
291	case VNON:
292		/* Do not do anything.  VNON is provided to let the
293		 * allocation routine clean itself easily by avoiding
294		 * duplicating code in it. */
295		/* FALLTHROUGH */
296	case VBLK:
297		/* FALLTHROUGH */
298	case VCHR:
299		/* FALLTHROUGH */
300	case VDIR:
301		/* FALLTHROUGH */
302	case VFIFO:
303		/* FALLTHROUGH */
304	case VSOCK:
305		break;
306
307	case VLNK:
308		free(node->tn_link, M_TMPFSNAME);
309		break;
310
311	case VREG:
312		uobj = node->tn_reg.tn_aobj;
313		if (uobj != NULL) {
314			TMPFS_LOCK(tmp);
315			tmp->tm_pages_used -= uobj->size;
316			TMPFS_UNLOCK(tmp);
317			vm_object_deallocate(uobj);
318		}
319		break;
320
321	default:
322		panic("tmpfs_free_node: type %p %d", node, (int)node->tn_type);
323	}
324
325	free_unr(tmp->tm_ino_unr, node->tn_id);
326	uma_zfree(tmp->tm_node_pool, node);
327}
328
329/* --------------------------------------------------------------------- */
330
331static __inline uint32_t
332tmpfs_dirent_hash(const char *name, u_int len)
333{
334	uint32_t hash;
335
336	hash = fnv_32_buf(name, len, FNV1_32_INIT + len) & TMPFS_DIRCOOKIE_MASK;
337#ifdef TMPFS_DEBUG_DIRCOOKIE_DUP
338	hash &= 0xf;
339#endif
340	if (hash < TMPFS_DIRCOOKIE_MIN)
341		hash += TMPFS_DIRCOOKIE_MIN;
342
343	return (hash);
344}
345
346static __inline off_t
347tmpfs_dirent_cookie(struct tmpfs_dirent *de)
348{
349	MPASS(de->td_cookie >= TMPFS_DIRCOOKIE_MIN);
350
351	return (de->td_cookie);
352}
353
354static __inline boolean_t
355tmpfs_dirent_dup(struct tmpfs_dirent *de)
356{
357	return ((de->td_cookie & TMPFS_DIRCOOKIE_DUP) != 0);
358}
359
360static __inline boolean_t
361tmpfs_dirent_duphead(struct tmpfs_dirent *de)
362{
363	return ((de->td_cookie & TMPFS_DIRCOOKIE_DUPHEAD) != 0);
364}
365
366void
367tmpfs_dirent_init(struct tmpfs_dirent *de, const char *name, u_int namelen)
368{
369	de->td_hash = de->td_cookie = tmpfs_dirent_hash(name, namelen);
370	memcpy(de->ud.td_name, name, namelen);
371	de->td_namelen = namelen;
372}
373
374/*
375 * Allocates a new directory entry for the node node with a name of name.
376 * The new directory entry is returned in *de.
377 *
378 * The link count of node is increased by one to reflect the new object
379 * referencing it.
380 *
381 * Returns zero on success or an appropriate error code on failure.
382 */
383int
384tmpfs_alloc_dirent(struct tmpfs_mount *tmp, struct tmpfs_node *node,
385    const char *name, u_int len, struct tmpfs_dirent **de)
386{
387	struct tmpfs_dirent *nde;
388
389	nde = uma_zalloc(tmp->tm_dirent_pool, M_WAITOK);
390	nde->td_node = node;
391	if (name != NULL) {
392		nde->ud.td_name = malloc(len, M_TMPFSNAME, M_WAITOK);
393		tmpfs_dirent_init(nde, name, len);
394	} else
395		nde->td_namelen = 0;
396	if (node != NULL)
397		node->tn_links++;
398
399	*de = nde;
400
401	return 0;
402}
403
404/* --------------------------------------------------------------------- */
405
406/*
407 * Frees a directory entry.  It is the caller's responsibility to destroy
408 * the node referenced by it if needed.
409 *
410 * The link count of node is decreased by one to reflect the removal of an
411 * object that referenced it.  This only happens if 'node_exists' is true;
412 * otherwise the function will not access the node referred to by the
413 * directory entry, as it may already have been released from the outside.
414 */
415void
416tmpfs_free_dirent(struct tmpfs_mount *tmp, struct tmpfs_dirent *de)
417{
418	struct tmpfs_node *node;
419
420	node = de->td_node;
421	if (node != NULL) {
422		MPASS(node->tn_links > 0);
423		node->tn_links--;
424	}
425	if (!tmpfs_dirent_duphead(de) && de->ud.td_name != NULL)
426		free(de->ud.td_name, M_TMPFSNAME);
427	uma_zfree(tmp->tm_dirent_pool, de);
428}
429
430/* --------------------------------------------------------------------- */
431
432void
433tmpfs_destroy_vobject(struct vnode *vp, vm_object_t obj)
434{
435
436	if (vp->v_type != VREG || obj == NULL)
437		return;
438
439	VM_OBJECT_WLOCK(obj);
440	VI_LOCK(vp);
441	vm_object_clear_flag(obj, OBJ_TMPFS);
442	obj->un_pager.swp.swp_tmpfs = NULL;
443	VI_UNLOCK(vp);
444	VM_OBJECT_WUNLOCK(obj);
445}
446
447/*
448 * Need to clear v_object for insmntque failure.
449 */
450static void
451tmpfs_insmntque_dtr(struct vnode *vp, void *dtr_arg)
452{
453
454	tmpfs_destroy_vobject(vp, vp->v_object);
455	vp->v_object = NULL;
456	vp->v_data = NULL;
457	vp->v_op = &dead_vnodeops;
458	vgone(vp);
459	vput(vp);
460}
461
462/*
463 * Allocates a new vnode for the node node or returns a new reference to
464 * an existing one if the node had already a vnode referencing it.  The
465 * resulting locked vnode is returned in *vpp.
466 *
467 * Returns zero on success or an appropriate error code on failure.
468 */
469int
470tmpfs_alloc_vp(struct mount *mp, struct tmpfs_node *node, int lkflag,
471    struct vnode **vpp)
472{
473	struct vnode *vp;
474	vm_object_t object;
475	int error;
476
477	error = 0;
478loop:
479	TMPFS_NODE_LOCK(node);
480	if ((vp = node->tn_vnode) != NULL) {
481		MPASS((node->tn_vpstate & TMPFS_VNODE_DOOMED) == 0);
482		VI_LOCK(vp);
483		TMPFS_NODE_UNLOCK(node);
484		error = vget(vp, lkflag | LK_INTERLOCK, curthread);
485		if (error != 0) {
486			vp = NULL;
487			goto out;
488		}
489
490		/*
491		 * Make sure the vnode is still there after
492		 * getting the interlock to avoid racing a free.
493		 */
494		if (node->tn_vnode == NULL || node->tn_vnode != vp) {
495			vput(vp);
496			goto loop;
497		}
498
499		goto out;
500	}
501
502	if ((node->tn_vpstate & TMPFS_VNODE_DOOMED) ||
503	    (node->tn_type == VDIR && node->tn_dir.tn_parent == NULL)) {
504		TMPFS_NODE_UNLOCK(node);
505		error = ENOENT;
506		vp = NULL;
507		goto out;
508	}
509
510	/*
511	 * otherwise lock the vp list while we call getnewvnode
512	 * since that can block.
513	 */
514	if (node->tn_vpstate & TMPFS_VNODE_ALLOCATING) {
515		node->tn_vpstate |= TMPFS_VNODE_WANT;
516		error = msleep((caddr_t) &node->tn_vpstate,
517		    TMPFS_NODE_MTX(node), PDROP | PCATCH,
518		    "tmpfs_alloc_vp", 0);
519		if (error)
520			return error;
521
522		goto loop;
523	} else
524		node->tn_vpstate |= TMPFS_VNODE_ALLOCATING;
525
526	TMPFS_NODE_UNLOCK(node);
527
528	/* Get a new vnode and associate it with our node. */
529	error = getnewvnode("tmpfs", mp, &tmpfs_vnodeop_entries, &vp);
530	if (error != 0)
531		goto unlock;
532	MPASS(vp != NULL);
533
534	(void) vn_lock(vp, lkflag | LK_RETRY);
535
536	vp->v_data = node;
537	vp->v_type = node->tn_type;
538
539	/* Type-specific initialization. */
540	switch (node->tn_type) {
541	case VBLK:
542		/* FALLTHROUGH */
543	case VCHR:
544		/* FALLTHROUGH */
545	case VLNK:
546		/* FALLTHROUGH */
547	case VSOCK:
548		break;
549	case VFIFO:
550		vp->v_op = &tmpfs_fifoop_entries;
551		break;
552	case VREG:
553		object = node->tn_reg.tn_aobj;
554		VM_OBJECT_WLOCK(object);
555		VI_LOCK(vp);
556		KASSERT(vp->v_object == NULL, ("Not NULL v_object in tmpfs"));
557		vp->v_object = object;
558		object->un_pager.swp.swp_tmpfs = vp;
559		vm_object_set_flag(object, OBJ_TMPFS);
560		VI_UNLOCK(vp);
561		VM_OBJECT_WUNLOCK(object);
562		break;
563	case VDIR:
564		MPASS(node->tn_dir.tn_parent != NULL);
565		if (node->tn_dir.tn_parent == node)
566			vp->v_vflag |= VV_ROOT;
567		break;
568
569	default:
570		panic("tmpfs_alloc_vp: type %p %d", node, (int)node->tn_type);
571	}
572
573	error = insmntque1(vp, mp, tmpfs_insmntque_dtr, NULL);
574	if (error)
575		vp = NULL;
576
577unlock:
578	TMPFS_NODE_LOCK(node);
579
580	MPASS(node->tn_vpstate & TMPFS_VNODE_ALLOCATING);
581	node->tn_vpstate &= ~TMPFS_VNODE_ALLOCATING;
582	node->tn_vnode = vp;
583
584	if (node->tn_vpstate & TMPFS_VNODE_WANT) {
585		node->tn_vpstate &= ~TMPFS_VNODE_WANT;
586		TMPFS_NODE_UNLOCK(node);
587		wakeup((caddr_t) &node->tn_vpstate);
588	} else
589		TMPFS_NODE_UNLOCK(node);
590
591out:
592	*vpp = vp;
593
594#ifdef INVARIANTS
595	if (error == 0) {
596		MPASS(*vpp != NULL && VOP_ISLOCKED(*vpp));
597		TMPFS_NODE_LOCK(node);
598		MPASS(*vpp == node->tn_vnode);
599		TMPFS_NODE_UNLOCK(node);
600	}
601#endif
602
603	return error;
604}
605
606/* --------------------------------------------------------------------- */
607
608/*
609 * Destroys the association between the vnode vp and the node it
610 * references.
611 */
612void
613tmpfs_free_vp(struct vnode *vp)
614{
615	struct tmpfs_node *node;
616
617	node = VP_TO_TMPFS_NODE(vp);
618
619	mtx_assert(TMPFS_NODE_MTX(node), MA_OWNED);
620	node->tn_vnode = NULL;
621	vp->v_data = NULL;
622}
623
624/* --------------------------------------------------------------------- */
625
626/*
627 * Allocates a new file of type 'type' and adds it to the parent directory
628 * 'dvp'; this addition is done using the component name given in 'cnp'.
629 * The ownership of the new file is automatically assigned based on the
630 * credentials of the caller (through 'cnp'), the group is set based on
631 * the parent directory and the mode is determined from the 'vap' argument.
632 * If successful, *vpp holds a vnode to the newly created file and zero
633 * is returned.  Otherwise *vpp is NULL and the function returns an
634 * appropriate error code.
635 */
636int
637tmpfs_alloc_file(struct vnode *dvp, struct vnode **vpp, struct vattr *vap,
638    struct componentname *cnp, char *target)
639{
640	int error;
641	struct tmpfs_dirent *de;
642	struct tmpfs_mount *tmp;
643	struct tmpfs_node *dnode;
644	struct tmpfs_node *node;
645	struct tmpfs_node *parent;
646
647	MPASS(VOP_ISLOCKED(dvp));
648	MPASS(cnp->cn_flags & HASBUF);
649
650	tmp = VFS_TO_TMPFS(dvp->v_mount);
651	dnode = VP_TO_TMPFS_DIR(dvp);
652	*vpp = NULL;
653
654	/* If the entry we are creating is a directory, we cannot overflow
655	 * the number of links of its parent, because it will get a new
656	 * link. */
657	if (vap->va_type == VDIR) {
658		/* Ensure that we do not overflow the maximum number of links
659		 * imposed by the system. */
660		MPASS(dnode->tn_links <= LINK_MAX);
661		if (dnode->tn_links == LINK_MAX) {
662			error = EMLINK;
663			goto out;
664		}
665
666		parent = dnode;
667		MPASS(parent != NULL);
668	} else
669		parent = NULL;
670
671	/* Allocate a node that represents the new file. */
672	error = tmpfs_alloc_node(tmp, vap->va_type, cnp->cn_cred->cr_uid,
673	    dnode->tn_gid, vap->va_mode, parent, target, vap->va_rdev, &node);
674	if (error != 0)
675		goto out;
676
677	/* Allocate a directory entry that points to the new file. */
678	error = tmpfs_alloc_dirent(tmp, node, cnp->cn_nameptr, cnp->cn_namelen,
679	    &de);
680	if (error != 0) {
681		tmpfs_free_node(tmp, node);
682		goto out;
683	}
684
685	/* Allocate a vnode for the new file. */
686	error = tmpfs_alloc_vp(dvp->v_mount, node, LK_EXCLUSIVE, vpp);
687	if (error != 0) {
688		tmpfs_free_dirent(tmp, de);
689		tmpfs_free_node(tmp, node);
690		goto out;
691	}
692
693	/* Now that all required items are allocated, we can proceed to
694	 * insert the new node into the directory, an operation that
695	 * cannot fail. */
696	if (cnp->cn_flags & ISWHITEOUT)
697		tmpfs_dir_whiteout_remove(dvp, cnp);
698	tmpfs_dir_attach(dvp, de);
699
700out:
701
702	return error;
703}
704
705/* --------------------------------------------------------------------- */
706
707static struct tmpfs_dirent *
708tmpfs_dir_first(struct tmpfs_node *dnode, struct tmpfs_dir_cursor *dc)
709{
710	struct tmpfs_dirent *de;
711
712	de = RB_MIN(tmpfs_dir, &dnode->tn_dir.tn_dirhead);
713	dc->tdc_tree = de;
714	if (de != NULL && tmpfs_dirent_duphead(de))
715		de = LIST_FIRST(&de->ud.td_duphead);
716	dc->tdc_current = de;
717
718	return (dc->tdc_current);
719}
720
721static struct tmpfs_dirent *
722tmpfs_dir_next(struct tmpfs_node *dnode, struct tmpfs_dir_cursor *dc)
723{
724	struct tmpfs_dirent *de;
725
726	MPASS(dc->tdc_tree != NULL);
727	if (tmpfs_dirent_dup(dc->tdc_current)) {
728		dc->tdc_current = LIST_NEXT(dc->tdc_current, uh.td_dup.entries);
729		if (dc->tdc_current != NULL)
730			return (dc->tdc_current);
731	}
732	dc->tdc_tree = dc->tdc_current = RB_NEXT(tmpfs_dir,
733	    &dnode->tn_dir.tn_dirhead, dc->tdc_tree);
734	if ((de = dc->tdc_current) != NULL && tmpfs_dirent_duphead(de)) {
735		dc->tdc_current = LIST_FIRST(&de->ud.td_duphead);
736		MPASS(dc->tdc_current != NULL);
737	}
738
739	return (dc->tdc_current);
740}
741
742/* Lookup directory entry in RB-Tree. Function may return duphead entry. */
743static struct tmpfs_dirent *
744tmpfs_dir_xlookup_hash(struct tmpfs_node *dnode, uint32_t hash)
745{
746	struct tmpfs_dirent *de, dekey;
747
748	dekey.td_hash = hash;
749	de = RB_FIND(tmpfs_dir, &dnode->tn_dir.tn_dirhead, &dekey);
750	return (de);
751}
752
753/* Lookup directory entry by cookie, initialize directory cursor accordingly. */
754static struct tmpfs_dirent *
755tmpfs_dir_lookup_cookie(struct tmpfs_node *node, off_t cookie,
756    struct tmpfs_dir_cursor *dc)
757{
758	struct tmpfs_dir *dirhead = &node->tn_dir.tn_dirhead;
759	struct tmpfs_dirent *de, dekey;
760
761	MPASS(cookie >= TMPFS_DIRCOOKIE_MIN);
762
763	if (cookie == node->tn_dir.tn_readdir_lastn &&
764	    (de = node->tn_dir.tn_readdir_lastp) != NULL) {
765		/* Protect against possible race, tn_readdir_last[pn]
766		 * may be updated with only shared vnode lock held. */
767		if (cookie == tmpfs_dirent_cookie(de))
768			goto out;
769	}
770
771	if ((cookie & TMPFS_DIRCOOKIE_DUP) != 0) {
772		LIST_FOREACH(de, &node->tn_dir.tn_dupindex,
773		    uh.td_dup.index_entries) {
774			MPASS(tmpfs_dirent_dup(de));
775			if (de->td_cookie == cookie)
776				goto out;
777			/* dupindex list is sorted. */
778			if (de->td_cookie < cookie) {
779				de = NULL;
780				goto out;
781			}
782		}
783		MPASS(de == NULL);
784		goto out;
785	}
786
787	MPASS((cookie & TMPFS_DIRCOOKIE_MASK) == cookie);
788	dekey.td_hash = cookie;
789	/* Recover if direntry for cookie was removed */
790	de = RB_NFIND(tmpfs_dir, dirhead, &dekey);
791	dc->tdc_tree = de;
792	dc->tdc_current = de;
793	if (de != NULL && tmpfs_dirent_duphead(de)) {
794		dc->tdc_current = LIST_FIRST(&de->ud.td_duphead);
795		MPASS(dc->tdc_current != NULL);
796	}
797	return (dc->tdc_current);
798
799out:
800	dc->tdc_tree = de;
801	dc->tdc_current = de;
802	if (de != NULL && tmpfs_dirent_dup(de))
803		dc->tdc_tree = tmpfs_dir_xlookup_hash(node,
804		    de->td_hash);
805	return (dc->tdc_current);
806}
807
808/*
809 * Looks for a directory entry in the directory represented by node.
810 * 'cnp' describes the name of the entry to look for.  Note that the .
811 * and .. components are not allowed as they do not physically exist
812 * within directories.
813 *
814 * Returns a pointer to the entry when found, otherwise NULL.
815 */
816struct tmpfs_dirent *
817tmpfs_dir_lookup(struct tmpfs_node *node, struct tmpfs_node *f,
818    struct componentname *cnp)
819{
820	struct tmpfs_dir_duphead *duphead;
821	struct tmpfs_dirent *de;
822	uint32_t hash;
823
824	MPASS(IMPLIES(cnp->cn_namelen == 1, cnp->cn_nameptr[0] != '.'));
825	MPASS(IMPLIES(cnp->cn_namelen == 2, !(cnp->cn_nameptr[0] == '.' &&
826	    cnp->cn_nameptr[1] == '.')));
827	TMPFS_VALIDATE_DIR(node);
828
829	hash = tmpfs_dirent_hash(cnp->cn_nameptr, cnp->cn_namelen);
830	de = tmpfs_dir_xlookup_hash(node, hash);
831	if (de != NULL && tmpfs_dirent_duphead(de)) {
832		duphead = &de->ud.td_duphead;
833		LIST_FOREACH(de, duphead, uh.td_dup.entries) {
834			if (TMPFS_DIRENT_MATCHES(de, cnp->cn_nameptr,
835			    cnp->cn_namelen))
836				break;
837		}
838	} else if (de != NULL) {
839		if (!TMPFS_DIRENT_MATCHES(de, cnp->cn_nameptr,
840		    cnp->cn_namelen))
841			de = NULL;
842	}
843	if (de != NULL && f != NULL && de->td_node != f)
844		de = NULL;
845
846	return (de);
847}
848
849/*
850 * Attach duplicate-cookie directory entry nde to dnode and insert to dupindex
851 * list, allocate new cookie value.
852 */
853static void
854tmpfs_dir_attach_dup(struct tmpfs_node *dnode,
855    struct tmpfs_dir_duphead *duphead, struct tmpfs_dirent *nde)
856{
857	struct tmpfs_dir_duphead *dupindex;
858	struct tmpfs_dirent *de, *pde;
859
860	dupindex = &dnode->tn_dir.tn_dupindex;
861	de = LIST_FIRST(dupindex);
862	if (de == NULL || de->td_cookie < TMPFS_DIRCOOKIE_DUP_MAX) {
863		if (de == NULL)
864			nde->td_cookie = TMPFS_DIRCOOKIE_DUP_MIN;
865		else
866			nde->td_cookie = de->td_cookie + 1;
867		MPASS(tmpfs_dirent_dup(nde));
868		LIST_INSERT_HEAD(dupindex, nde, uh.td_dup.index_entries);
869		LIST_INSERT_HEAD(duphead, nde, uh.td_dup.entries);
870		return;
871	}
872
873	/*
874	 * Cookie numbers are near exhaustion. Scan dupindex list for unused
875	 * numbers. dupindex list is sorted in descending order. Keep it so
876	 * after inserting nde.
877	 */
878	while (1) {
879		pde = de;
880		de = LIST_NEXT(de, uh.td_dup.index_entries);
881		if (de == NULL && pde->td_cookie != TMPFS_DIRCOOKIE_DUP_MIN) {
882			/*
883			 * Last element of the index doesn't have minimal cookie
884			 * value, use it.
885			 */
886			nde->td_cookie = TMPFS_DIRCOOKIE_DUP_MIN;
887			LIST_INSERT_AFTER(pde, nde, uh.td_dup.index_entries);
888			LIST_INSERT_HEAD(duphead, nde, uh.td_dup.entries);
889			return;
890		} else if (de == NULL) {
891			/*
892			 * We are so lucky have 2^30 hash duplicates in single
893			 * directory :) Return largest possible cookie value.
894			 * It should be fine except possible issues with
895			 * VOP_READDIR restart.
896			 */
897			nde->td_cookie = TMPFS_DIRCOOKIE_DUP_MAX;
898			LIST_INSERT_HEAD(dupindex, nde,
899			    uh.td_dup.index_entries);
900			LIST_INSERT_HEAD(duphead, nde, uh.td_dup.entries);
901			return;
902		}
903		if (de->td_cookie + 1 == pde->td_cookie ||
904		    de->td_cookie >= TMPFS_DIRCOOKIE_DUP_MAX)
905			continue;	/* No hole or invalid cookie. */
906		nde->td_cookie = de->td_cookie + 1;
907		MPASS(tmpfs_dirent_dup(nde));
908		MPASS(pde->td_cookie > nde->td_cookie);
909		MPASS(nde->td_cookie > de->td_cookie);
910		LIST_INSERT_BEFORE(de, nde, uh.td_dup.index_entries);
911		LIST_INSERT_HEAD(duphead, nde, uh.td_dup.entries);
912		return;
913	};
914}
915
916/*
917 * Attaches the directory entry de to the directory represented by vp.
918 * Note that this does not change the link count of the node pointed by
919 * the directory entry, as this is done by tmpfs_alloc_dirent.
920 */
921void
922tmpfs_dir_attach(struct vnode *vp, struct tmpfs_dirent *de)
923{
924	struct tmpfs_node *dnode;
925	struct tmpfs_dirent *xde, *nde;
926
927	ASSERT_VOP_ELOCKED(vp, __func__);
928	MPASS(de->td_namelen > 0);
929	MPASS(de->td_hash >= TMPFS_DIRCOOKIE_MIN);
930	MPASS(de->td_cookie == de->td_hash);
931
932	dnode = VP_TO_TMPFS_DIR(vp);
933	dnode->tn_dir.tn_readdir_lastn = 0;
934	dnode->tn_dir.tn_readdir_lastp = NULL;
935
936	MPASS(!tmpfs_dirent_dup(de));
937	xde = RB_INSERT(tmpfs_dir, &dnode->tn_dir.tn_dirhead, de);
938	if (xde != NULL && tmpfs_dirent_duphead(xde))
939		tmpfs_dir_attach_dup(dnode, &xde->ud.td_duphead, de);
940	else if (xde != NULL) {
941		/*
942		 * Allocate new duphead. Swap xde with duphead to avoid
943		 * adding/removing elements with the same hash.
944		 */
945		MPASS(!tmpfs_dirent_dup(xde));
946		tmpfs_alloc_dirent(VFS_TO_TMPFS(vp->v_mount), NULL, NULL, 0,
947		    &nde);
948		/* *nde = *xde; XXX gcc 4.2.1 may generate invalid code. */
949		memcpy(nde, xde, sizeof(*xde));
950		xde->td_cookie |= TMPFS_DIRCOOKIE_DUPHEAD;
951		LIST_INIT(&xde->ud.td_duphead);
952		xde->td_namelen = 0;
953		xde->td_node = NULL;
954		tmpfs_dir_attach_dup(dnode, &xde->ud.td_duphead, nde);
955		tmpfs_dir_attach_dup(dnode, &xde->ud.td_duphead, de);
956	}
957	dnode->tn_size += sizeof(struct tmpfs_dirent);
958	dnode->tn_status |= TMPFS_NODE_ACCESSED | TMPFS_NODE_CHANGED | \
959	    TMPFS_NODE_MODIFIED;
960}
961
962/* --------------------------------------------------------------------- */
963
964/*
965 * Detaches the directory entry de from the directory represented by vp.
966 * Note that this does not change the link count of the node pointed by
967 * the directory entry, as this is done by tmpfs_free_dirent.
968 */
969void
970tmpfs_dir_detach(struct vnode *vp, struct tmpfs_dirent *de)
971{
972	struct tmpfs_mount *tmp;
973	struct tmpfs_dir *head;
974	struct tmpfs_node *dnode;
975	struct tmpfs_dirent *xde;
976
977	ASSERT_VOP_ELOCKED(vp, __func__);
978
979	dnode = VP_TO_TMPFS_DIR(vp);
980	head = &dnode->tn_dir.tn_dirhead;
981	dnode->tn_dir.tn_readdir_lastn = 0;
982	dnode->tn_dir.tn_readdir_lastp = NULL;
983
984	if (tmpfs_dirent_dup(de)) {
985		/* Remove duphead if de was last entry. */
986		if (LIST_NEXT(de, uh.td_dup.entries) == NULL) {
987			xde = tmpfs_dir_xlookup_hash(dnode, de->td_hash);
988			MPASS(tmpfs_dirent_duphead(xde));
989		} else
990			xde = NULL;
991		LIST_REMOVE(de, uh.td_dup.entries);
992		LIST_REMOVE(de, uh.td_dup.index_entries);
993		if (xde != NULL) {
994			if (LIST_EMPTY(&xde->ud.td_duphead)) {
995				RB_REMOVE(tmpfs_dir, head, xde);
996				tmp = VFS_TO_TMPFS(vp->v_mount);
997				MPASS(xde->td_node == NULL);
998				tmpfs_free_dirent(tmp, xde);
999			}
1000		}
1001	} else
1002		RB_REMOVE(tmpfs_dir, head, de);
1003
1004	dnode->tn_size -= sizeof(struct tmpfs_dirent);
1005	dnode->tn_status |= TMPFS_NODE_ACCESSED | TMPFS_NODE_CHANGED | \
1006	    TMPFS_NODE_MODIFIED;
1007}
1008
1009void
1010tmpfs_dir_destroy(struct tmpfs_mount *tmp, struct tmpfs_node *dnode)
1011{
1012	struct tmpfs_dirent *de, *dde, *nde;
1013
1014	RB_FOREACH_SAFE(de, tmpfs_dir, &dnode->tn_dir.tn_dirhead, nde) {
1015		RB_REMOVE(tmpfs_dir, &dnode->tn_dir.tn_dirhead, de);
1016		/* Node may already be destroyed. */
1017		de->td_node = NULL;
1018		if (tmpfs_dirent_duphead(de)) {
1019			while ((dde = LIST_FIRST(&de->ud.td_duphead)) != NULL) {
1020				LIST_REMOVE(dde, uh.td_dup.entries);
1021				dde->td_node = NULL;
1022				tmpfs_free_dirent(tmp, dde);
1023			}
1024		}
1025		tmpfs_free_dirent(tmp, de);
1026	}
1027}
1028
1029/* --------------------------------------------------------------------- */
1030
1031/*
1032 * Helper function for tmpfs_readdir.  Creates a '.' entry for the given
1033 * directory and returns it in the uio space.  The function returns 0
1034 * on success, -1 if there was not enough space in the uio structure to
1035 * hold the directory entry or an appropriate error code if another
1036 * error happens.
1037 */
1038static int
1039tmpfs_dir_getdotdent(struct tmpfs_node *node, struct uio *uio)
1040{
1041	int error;
1042	struct dirent dent;
1043
1044	TMPFS_VALIDATE_DIR(node);
1045	MPASS(uio->uio_offset == TMPFS_DIRCOOKIE_DOT);
1046
1047	dent.d_fileno = node->tn_id;
1048	dent.d_type = DT_DIR;
1049	dent.d_namlen = 1;
1050	dent.d_name[0] = '.';
1051	dent.d_name[1] = '\0';
1052	dent.d_reclen = GENERIC_DIRSIZ(&dent);
1053
1054	if (dent.d_reclen > uio->uio_resid)
1055		error = EJUSTRETURN;
1056	else
1057		error = uiomove(&dent, dent.d_reclen, uio);
1058
1059	node->tn_status |= TMPFS_NODE_ACCESSED;
1060
1061	return error;
1062}
1063
1064/* --------------------------------------------------------------------- */
1065
1066/*
1067 * Helper function for tmpfs_readdir.  Creates a '..' entry for the given
1068 * directory and returns it in the uio space.  The function returns 0
1069 * on success, -1 if there was not enough space in the uio structure to
1070 * hold the directory entry or an appropriate error code if another
1071 * error happens.
1072 */
1073static int
1074tmpfs_dir_getdotdotdent(struct tmpfs_node *node, struct uio *uio)
1075{
1076	int error;
1077	struct dirent dent;
1078
1079	TMPFS_VALIDATE_DIR(node);
1080	MPASS(uio->uio_offset == TMPFS_DIRCOOKIE_DOTDOT);
1081
1082	/*
1083	 * Return ENOENT if the current node is already removed.
1084	 */
1085	TMPFS_ASSERT_LOCKED(node);
1086	if (node->tn_dir.tn_parent == NULL) {
1087		return (ENOENT);
1088	}
1089
1090	TMPFS_NODE_LOCK(node->tn_dir.tn_parent);
1091	dent.d_fileno = node->tn_dir.tn_parent->tn_id;
1092	TMPFS_NODE_UNLOCK(node->tn_dir.tn_parent);
1093
1094	dent.d_type = DT_DIR;
1095	dent.d_namlen = 2;
1096	dent.d_name[0] = '.';
1097	dent.d_name[1] = '.';
1098	dent.d_name[2] = '\0';
1099	dent.d_reclen = GENERIC_DIRSIZ(&dent);
1100
1101	if (dent.d_reclen > uio->uio_resid)
1102		error = EJUSTRETURN;
1103	else
1104		error = uiomove(&dent, dent.d_reclen, uio);
1105
1106	node->tn_status |= TMPFS_NODE_ACCESSED;
1107
1108	return error;
1109}
1110
1111/* --------------------------------------------------------------------- */
1112
1113/*
1114 * Helper function for tmpfs_readdir.  Returns as much directory entries
1115 * as can fit in the uio space.  The read starts at uio->uio_offset.
1116 * The function returns 0 on success, -1 if there was not enough space
1117 * in the uio structure to hold the directory entry or an appropriate
1118 * error code if another error happens.
1119 */
1120int
1121tmpfs_dir_getdents(struct tmpfs_node *node, struct uio *uio, int cnt,
1122    u_long *cookies, int *ncookies)
1123{
1124	struct tmpfs_dir_cursor dc;
1125	struct tmpfs_dirent *de;
1126	off_t off;
1127	int error;
1128
1129	TMPFS_VALIDATE_DIR(node);
1130
1131	off = 0;
1132	switch (uio->uio_offset) {
1133	case TMPFS_DIRCOOKIE_DOT:
1134		error = tmpfs_dir_getdotdent(node, uio);
1135		if (error != 0)
1136			return (error);
1137		uio->uio_offset = TMPFS_DIRCOOKIE_DOTDOT;
1138		if (cnt != 0)
1139			cookies[(*ncookies)++] = off = uio->uio_offset;
1140	case TMPFS_DIRCOOKIE_DOTDOT:
1141		error = tmpfs_dir_getdotdotdent(node, uio);
1142		if (error != 0)
1143			return (error);
1144		de = tmpfs_dir_first(node, &dc);
1145		if (de == NULL)
1146			uio->uio_offset = TMPFS_DIRCOOKIE_EOF;
1147		else
1148			uio->uio_offset = tmpfs_dirent_cookie(de);
1149		if (cnt != 0)
1150			cookies[(*ncookies)++] = off = uio->uio_offset;
1151		if (de == NULL)
1152			return (0);
1153		break;
1154	case TMPFS_DIRCOOKIE_EOF:
1155		return (0);
1156	default:
1157		de = tmpfs_dir_lookup_cookie(node, uio->uio_offset, &dc);
1158		if (de == NULL)
1159			return (EINVAL);
1160		if (cnt != 0)
1161			off = tmpfs_dirent_cookie(de);
1162	}
1163
1164	/* Read as much entries as possible; i.e., until we reach the end of
1165	 * the directory or we exhaust uio space. */
1166	do {
1167		struct dirent d;
1168
1169		/* Create a dirent structure representing the current
1170		 * tmpfs_node and fill it. */
1171		if (de->td_node == NULL) {
1172			d.d_fileno = 1;
1173			d.d_type = DT_WHT;
1174		} else {
1175			d.d_fileno = de->td_node->tn_id;
1176			switch (de->td_node->tn_type) {
1177			case VBLK:
1178				d.d_type = DT_BLK;
1179				break;
1180
1181			case VCHR:
1182				d.d_type = DT_CHR;
1183				break;
1184
1185			case VDIR:
1186				d.d_type = DT_DIR;
1187				break;
1188
1189			case VFIFO:
1190				d.d_type = DT_FIFO;
1191				break;
1192
1193			case VLNK:
1194				d.d_type = DT_LNK;
1195				break;
1196
1197			case VREG:
1198				d.d_type = DT_REG;
1199				break;
1200
1201			case VSOCK:
1202				d.d_type = DT_SOCK;
1203				break;
1204
1205			default:
1206				panic("tmpfs_dir_getdents: type %p %d",
1207				    de->td_node, (int)de->td_node->tn_type);
1208			}
1209		}
1210		d.d_namlen = de->td_namelen;
1211		MPASS(de->td_namelen < sizeof(d.d_name));
1212		(void)memcpy(d.d_name, de->ud.td_name, de->td_namelen);
1213		d.d_name[de->td_namelen] = '\0';
1214		d.d_reclen = GENERIC_DIRSIZ(&d);
1215
1216		/* Stop reading if the directory entry we are treating is
1217		 * bigger than the amount of data that can be returned. */
1218		if (d.d_reclen > uio->uio_resid) {
1219			error = EJUSTRETURN;
1220			break;
1221		}
1222
1223		/* Copy the new dirent structure into the output buffer and
1224		 * advance pointers. */
1225		error = uiomove(&d, d.d_reclen, uio);
1226		if (error == 0) {
1227			de = tmpfs_dir_next(node, &dc);
1228			if (cnt != 0) {
1229				if (de == NULL)
1230					off = TMPFS_DIRCOOKIE_EOF;
1231				else
1232					off = tmpfs_dirent_cookie(de);
1233				MPASS(*ncookies < cnt);
1234				cookies[(*ncookies)++] = off;
1235			}
1236		}
1237	} while (error == 0 && uio->uio_resid > 0 && de != NULL);
1238
1239	/* Update the offset and cache. */
1240	if (cnt == 0) {
1241		if (de == NULL)
1242			off = TMPFS_DIRCOOKIE_EOF;
1243		else
1244			off = tmpfs_dirent_cookie(de);
1245	}
1246
1247	uio->uio_offset = off;
1248	node->tn_dir.tn_readdir_lastn = off;
1249	node->tn_dir.tn_readdir_lastp = de;
1250
1251	node->tn_status |= TMPFS_NODE_ACCESSED;
1252	return error;
1253}
1254
1255int
1256tmpfs_dir_whiteout_add(struct vnode *dvp, struct componentname *cnp)
1257{
1258	struct tmpfs_dirent *de;
1259	int error;
1260
1261	error = tmpfs_alloc_dirent(VFS_TO_TMPFS(dvp->v_mount), NULL,
1262	    cnp->cn_nameptr, cnp->cn_namelen, &de);
1263	if (error != 0)
1264		return (error);
1265	tmpfs_dir_attach(dvp, de);
1266	return (0);
1267}
1268
1269void
1270tmpfs_dir_whiteout_remove(struct vnode *dvp, struct componentname *cnp)
1271{
1272	struct tmpfs_dirent *de;
1273
1274	de = tmpfs_dir_lookup(VP_TO_TMPFS_DIR(dvp), NULL, cnp);
1275	MPASS(de != NULL && de->td_node == NULL);
1276	tmpfs_dir_detach(dvp, de);
1277	tmpfs_free_dirent(VFS_TO_TMPFS(dvp->v_mount), de);
1278}
1279
1280/* --------------------------------------------------------------------- */
1281
1282/*
1283 * Resizes the aobj associated with the regular file pointed to by 'vp' to the
1284 * size 'newsize'.  'vp' must point to a vnode that represents a regular file.
1285 * 'newsize' must be positive.
1286 *
1287 * Returns zero on success or an appropriate error code on failure.
1288 */
1289int
1290tmpfs_reg_resize(struct vnode *vp, off_t newsize, boolean_t ignerr)
1291{
1292	struct tmpfs_mount *tmp;
1293	struct tmpfs_node *node;
1294	vm_object_t uobj;
1295	vm_page_t m, ma[1];
1296	vm_pindex_t idx, newpages, oldpages;
1297	off_t oldsize;
1298	int base, rv;
1299
1300	MPASS(vp->v_type == VREG);
1301	MPASS(newsize >= 0);
1302
1303	node = VP_TO_TMPFS_NODE(vp);
1304	uobj = node->tn_reg.tn_aobj;
1305	tmp = VFS_TO_TMPFS(vp->v_mount);
1306
1307	/*
1308	 * Convert the old and new sizes to the number of pages needed to
1309	 * store them.  It may happen that we do not need to do anything
1310	 * because the last allocated page can accommodate the change on
1311	 * its own.
1312	 */
1313	oldsize = node->tn_size;
1314	oldpages = OFF_TO_IDX(oldsize + PAGE_MASK);
1315	MPASS(oldpages == uobj->size);
1316	newpages = OFF_TO_IDX(newsize + PAGE_MASK);
1317	if (newpages > oldpages &&
1318	    tmpfs_pages_check_avail(tmp, newpages - oldpages) == 0)
1319		return (ENOSPC);
1320
1321	VM_OBJECT_WLOCK(uobj);
1322	if (newsize < oldsize) {
1323		/*
1324		 * Zero the truncated part of the last page.
1325		 */
1326		base = newsize & PAGE_MASK;
1327		if (base != 0) {
1328			idx = OFF_TO_IDX(newsize);
1329retry:
1330			m = vm_page_lookup(uobj, idx);
1331			if (m != NULL) {
1332				if ((m->oflags & VPO_BUSY) != 0 ||
1333				    m->busy != 0) {
1334					vm_page_sleep(m, "tmfssz");
1335					goto retry;
1336				}
1337				MPASS(m->valid == VM_PAGE_BITS_ALL);
1338			} else if (vm_pager_has_page(uobj, idx, NULL, NULL)) {
1339				m = vm_page_alloc(uobj, idx, VM_ALLOC_NORMAL);
1340				if (m == NULL) {
1341					VM_OBJECT_WUNLOCK(uobj);
1342					VM_WAIT;
1343					VM_OBJECT_WLOCK(uobj);
1344					goto retry;
1345				} else if (m->valid != VM_PAGE_BITS_ALL) {
1346					ma[0] = m;
1347					rv = vm_pager_get_pages(uobj, ma, 1, 0);
1348					m = vm_page_lookup(uobj, idx);
1349				} else
1350					/* A cached page was reactivated. */
1351					rv = VM_PAGER_OK;
1352				vm_page_lock(m);
1353				if (rv == VM_PAGER_OK) {
1354					vm_page_deactivate(m);
1355					vm_page_unlock(m);
1356					vm_page_wakeup(m);
1357				} else {
1358					vm_page_free(m);
1359					vm_page_unlock(m);
1360					if (ignerr)
1361						m = NULL;
1362					else {
1363						VM_OBJECT_WUNLOCK(uobj);
1364						return (EIO);
1365					}
1366				}
1367			}
1368			if (m != NULL) {
1369				pmap_zero_page_area(m, base, PAGE_SIZE - base);
1370				vm_page_dirty(m);
1371				vm_pager_page_unswapped(m);
1372			}
1373		}
1374
1375		/*
1376		 * Release any swap space and free any whole pages.
1377		 */
1378		if (newpages < oldpages) {
1379			swap_pager_freespace(uobj, newpages, oldpages -
1380			    newpages);
1381			vm_object_page_remove(uobj, newpages, 0, 0);
1382		}
1383	}
1384	uobj->size = newpages;
1385	VM_OBJECT_WUNLOCK(uobj);
1386
1387	TMPFS_LOCK(tmp);
1388	tmp->tm_pages_used += (newpages - oldpages);
1389	TMPFS_UNLOCK(tmp);
1390
1391	node->tn_size = newsize;
1392	return (0);
1393}
1394
1395/* --------------------------------------------------------------------- */
1396
1397/*
1398 * Change flags of the given vnode.
1399 * Caller should execute tmpfs_update on vp after a successful execution.
1400 * The vnode must be locked on entry and remain locked on exit.
1401 */
1402int
1403tmpfs_chflags(struct vnode *vp, u_long flags, struct ucred *cred,
1404    struct thread *p)
1405{
1406	int error;
1407	struct tmpfs_node *node;
1408
1409	MPASS(VOP_ISLOCKED(vp));
1410
1411	node = VP_TO_TMPFS_NODE(vp);
1412
1413	if ((flags & ~(UF_NODUMP | UF_IMMUTABLE | UF_APPEND | UF_OPAQUE |
1414	    UF_NOUNLINK | SF_ARCHIVED | SF_IMMUTABLE | SF_APPEND |
1415	    SF_NOUNLINK)) != 0)
1416		return (EOPNOTSUPP);
1417
1418	/* Disallow this operation if the file system is mounted read-only. */
1419	if (vp->v_mount->mnt_flag & MNT_RDONLY)
1420		return EROFS;
1421
1422	/*
1423	 * Callers may only modify the file flags on objects they
1424	 * have VADMIN rights for.
1425	 */
1426	if ((error = VOP_ACCESS(vp, VADMIN, cred, p)))
1427		return (error);
1428	/*
1429	 * Unprivileged processes are not permitted to unset system
1430	 * flags, or modify flags if any system flags are set.
1431	 */
1432	if (!priv_check_cred(cred, PRIV_VFS_SYSFLAGS, 0)) {
1433		if (node->tn_flags &
1434		    (SF_NOUNLINK | SF_IMMUTABLE | SF_APPEND)) {
1435			error = securelevel_gt(cred, 0);
1436			if (error)
1437				return (error);
1438		}
1439	} else {
1440		if (node->tn_flags &
1441		    (SF_NOUNLINK | SF_IMMUTABLE | SF_APPEND) ||
1442		    ((flags ^ node->tn_flags) & SF_SETTABLE))
1443			return (EPERM);
1444	}
1445	node->tn_flags = flags;
1446	node->tn_status |= TMPFS_NODE_CHANGED;
1447
1448	MPASS(VOP_ISLOCKED(vp));
1449
1450	return 0;
1451}
1452
1453/* --------------------------------------------------------------------- */
1454
1455/*
1456 * Change access mode on the given vnode.
1457 * Caller should execute tmpfs_update on vp after a successful execution.
1458 * The vnode must be locked on entry and remain locked on exit.
1459 */
1460int
1461tmpfs_chmod(struct vnode *vp, mode_t mode, struct ucred *cred, struct thread *p)
1462{
1463	int error;
1464	struct tmpfs_node *node;
1465
1466	MPASS(VOP_ISLOCKED(vp));
1467
1468	node = VP_TO_TMPFS_NODE(vp);
1469
1470	/* Disallow this operation if the file system is mounted read-only. */
1471	if (vp->v_mount->mnt_flag & MNT_RDONLY)
1472		return EROFS;
1473
1474	/* Immutable or append-only files cannot be modified, either. */
1475	if (node->tn_flags & (IMMUTABLE | APPEND))
1476		return EPERM;
1477
1478	/*
1479	 * To modify the permissions on a file, must possess VADMIN
1480	 * for that file.
1481	 */
1482	if ((error = VOP_ACCESS(vp, VADMIN, cred, p)))
1483		return (error);
1484
1485	/*
1486	 * Privileged processes may set the sticky bit on non-directories,
1487	 * as well as set the setgid bit on a file with a group that the
1488	 * process is not a member of.
1489	 */
1490	if (vp->v_type != VDIR && (mode & S_ISTXT)) {
1491		if (priv_check_cred(cred, PRIV_VFS_STICKYFILE, 0))
1492			return (EFTYPE);
1493	}
1494	if (!groupmember(node->tn_gid, cred) && (mode & S_ISGID)) {
1495		error = priv_check_cred(cred, PRIV_VFS_SETGID, 0);
1496		if (error)
1497			return (error);
1498	}
1499
1500
1501	node->tn_mode &= ~ALLPERMS;
1502	node->tn_mode |= mode & ALLPERMS;
1503
1504	node->tn_status |= TMPFS_NODE_CHANGED;
1505
1506	MPASS(VOP_ISLOCKED(vp));
1507
1508	return 0;
1509}
1510
1511/* --------------------------------------------------------------------- */
1512
1513/*
1514 * Change ownership of the given vnode.  At least one of uid or gid must
1515 * be different than VNOVAL.  If one is set to that value, the attribute
1516 * is unchanged.
1517 * Caller should execute tmpfs_update on vp after a successful execution.
1518 * The vnode must be locked on entry and remain locked on exit.
1519 */
1520int
1521tmpfs_chown(struct vnode *vp, uid_t uid, gid_t gid, struct ucred *cred,
1522    struct thread *p)
1523{
1524	int error;
1525	struct tmpfs_node *node;
1526	uid_t ouid;
1527	gid_t ogid;
1528
1529	MPASS(VOP_ISLOCKED(vp));
1530
1531	node = VP_TO_TMPFS_NODE(vp);
1532
1533	/* Assign default values if they are unknown. */
1534	MPASS(uid != VNOVAL || gid != VNOVAL);
1535	if (uid == VNOVAL)
1536		uid = node->tn_uid;
1537	if (gid == VNOVAL)
1538		gid = node->tn_gid;
1539	MPASS(uid != VNOVAL && gid != VNOVAL);
1540
1541	/* Disallow this operation if the file system is mounted read-only. */
1542	if (vp->v_mount->mnt_flag & MNT_RDONLY)
1543		return EROFS;
1544
1545	/* Immutable or append-only files cannot be modified, either. */
1546	if (node->tn_flags & (IMMUTABLE | APPEND))
1547		return EPERM;
1548
1549	/*
1550	 * To modify the ownership of a file, must possess VADMIN for that
1551	 * file.
1552	 */
1553	if ((error = VOP_ACCESS(vp, VADMIN, cred, p)))
1554		return (error);
1555
1556	/*
1557	 * To change the owner of a file, or change the group of a file to a
1558	 * group of which we are not a member, the caller must have
1559	 * privilege.
1560	 */
1561	if ((uid != node->tn_uid ||
1562	    (gid != node->tn_gid && !groupmember(gid, cred))) &&
1563	    (error = priv_check_cred(cred, PRIV_VFS_CHOWN, 0)))
1564		return (error);
1565
1566	ogid = node->tn_gid;
1567	ouid = node->tn_uid;
1568
1569	node->tn_uid = uid;
1570	node->tn_gid = gid;
1571
1572	node->tn_status |= TMPFS_NODE_CHANGED;
1573
1574	if ((node->tn_mode & (S_ISUID | S_ISGID)) && (ouid != uid || ogid != gid)) {
1575		if (priv_check_cred(cred, PRIV_VFS_RETAINSUGID, 0))
1576			node->tn_mode &= ~(S_ISUID | S_ISGID);
1577	}
1578
1579	MPASS(VOP_ISLOCKED(vp));
1580
1581	return 0;
1582}
1583
1584/* --------------------------------------------------------------------- */
1585
1586/*
1587 * Change size of the given vnode.
1588 * Caller should execute tmpfs_update on vp after a successful execution.
1589 * The vnode must be locked on entry and remain locked on exit.
1590 */
1591int
1592tmpfs_chsize(struct vnode *vp, u_quad_t size, struct ucred *cred,
1593    struct thread *p)
1594{
1595	int error;
1596	struct tmpfs_node *node;
1597
1598	MPASS(VOP_ISLOCKED(vp));
1599
1600	node = VP_TO_TMPFS_NODE(vp);
1601
1602	/* Decide whether this is a valid operation based on the file type. */
1603	error = 0;
1604	switch (vp->v_type) {
1605	case VDIR:
1606		return EISDIR;
1607
1608	case VREG:
1609		if (vp->v_mount->mnt_flag & MNT_RDONLY)
1610			return EROFS;
1611		break;
1612
1613	case VBLK:
1614		/* FALLTHROUGH */
1615	case VCHR:
1616		/* FALLTHROUGH */
1617	case VFIFO:
1618		/* Allow modifications of special files even if in the file
1619		 * system is mounted read-only (we are not modifying the
1620		 * files themselves, but the objects they represent). */
1621		return 0;
1622
1623	default:
1624		/* Anything else is unsupported. */
1625		return EOPNOTSUPP;
1626	}
1627
1628	/* Immutable or append-only files cannot be modified, either. */
1629	if (node->tn_flags & (IMMUTABLE | APPEND))
1630		return EPERM;
1631
1632	error = tmpfs_truncate(vp, size);
1633	/* tmpfs_truncate will raise the NOTE_EXTEND and NOTE_ATTRIB kevents
1634	 * for us, as will update tn_status; no need to do that here. */
1635
1636	MPASS(VOP_ISLOCKED(vp));
1637
1638	return error;
1639}
1640
1641/* --------------------------------------------------------------------- */
1642
1643/*
1644 * Change access and modification times of the given vnode.
1645 * Caller should execute tmpfs_update on vp after a successful execution.
1646 * The vnode must be locked on entry and remain locked on exit.
1647 */
1648int
1649tmpfs_chtimes(struct vnode *vp, struct timespec *atime, struct timespec *mtime,
1650	struct timespec *birthtime, int vaflags, struct ucred *cred, struct thread *l)
1651{
1652	int error;
1653	struct tmpfs_node *node;
1654
1655	MPASS(VOP_ISLOCKED(vp));
1656
1657	node = VP_TO_TMPFS_NODE(vp);
1658
1659	/* Disallow this operation if the file system is mounted read-only. */
1660	if (vp->v_mount->mnt_flag & MNT_RDONLY)
1661		return EROFS;
1662
1663	/* Immutable or append-only files cannot be modified, either. */
1664	if (node->tn_flags & (IMMUTABLE | APPEND))
1665		return EPERM;
1666
1667	/* Determine if the user have proper privilege to update time. */
1668	if (vaflags & VA_UTIMES_NULL) {
1669		error = VOP_ACCESS(vp, VADMIN, cred, l);
1670		if (error)
1671			error = VOP_ACCESS(vp, VWRITE, cred, l);
1672	} else
1673		error = VOP_ACCESS(vp, VADMIN, cred, l);
1674	if (error)
1675		return (error);
1676
1677	if (atime->tv_sec != VNOVAL && atime->tv_nsec != VNOVAL)
1678		node->tn_status |= TMPFS_NODE_ACCESSED;
1679
1680	if (mtime->tv_sec != VNOVAL && mtime->tv_nsec != VNOVAL)
1681		node->tn_status |= TMPFS_NODE_MODIFIED;
1682
1683	if (birthtime->tv_nsec != VNOVAL && birthtime->tv_nsec != VNOVAL)
1684		node->tn_status |= TMPFS_NODE_MODIFIED;
1685
1686	tmpfs_itimes(vp, atime, mtime);
1687
1688	if (birthtime->tv_nsec != VNOVAL && birthtime->tv_nsec != VNOVAL)
1689		node->tn_birthtime = *birthtime;
1690	MPASS(VOP_ISLOCKED(vp));
1691
1692	return 0;
1693}
1694
1695/* --------------------------------------------------------------------- */
1696/* Sync timestamps */
1697void
1698tmpfs_itimes(struct vnode *vp, const struct timespec *acc,
1699    const struct timespec *mod)
1700{
1701	struct tmpfs_node *node;
1702	struct timespec now;
1703
1704	node = VP_TO_TMPFS_NODE(vp);
1705
1706	if ((node->tn_status & (TMPFS_NODE_ACCESSED | TMPFS_NODE_MODIFIED |
1707	    TMPFS_NODE_CHANGED)) == 0)
1708		return;
1709
1710	vfs_timestamp(&now);
1711	if (node->tn_status & TMPFS_NODE_ACCESSED) {
1712		if (acc == NULL)
1713			 acc = &now;
1714		node->tn_atime = *acc;
1715	}
1716	if (node->tn_status & TMPFS_NODE_MODIFIED) {
1717		if (mod == NULL)
1718			mod = &now;
1719		node->tn_mtime = *mod;
1720	}
1721	if (node->tn_status & TMPFS_NODE_CHANGED) {
1722		node->tn_ctime = now;
1723	}
1724	node->tn_status &=
1725	    ~(TMPFS_NODE_ACCESSED | TMPFS_NODE_MODIFIED | TMPFS_NODE_CHANGED);
1726}
1727
1728/* --------------------------------------------------------------------- */
1729
1730void
1731tmpfs_update(struct vnode *vp)
1732{
1733
1734	tmpfs_itimes(vp, NULL, NULL);
1735}
1736
1737/* --------------------------------------------------------------------- */
1738
1739int
1740tmpfs_truncate(struct vnode *vp, off_t length)
1741{
1742	int error;
1743	struct tmpfs_node *node;
1744
1745	node = VP_TO_TMPFS_NODE(vp);
1746
1747	if (length < 0) {
1748		error = EINVAL;
1749		goto out;
1750	}
1751
1752	if (node->tn_size == length) {
1753		error = 0;
1754		goto out;
1755	}
1756
1757	if (length > VFS_TO_TMPFS(vp->v_mount)->tm_maxfilesize)
1758		return (EFBIG);
1759
1760	error = tmpfs_reg_resize(vp, length, FALSE);
1761	if (error == 0) {
1762		node->tn_status |= TMPFS_NODE_CHANGED | TMPFS_NODE_MODIFIED;
1763	}
1764
1765out:
1766	tmpfs_update(vp);
1767
1768	return error;
1769}
1770
1771static __inline int
1772tmpfs_dirtree_cmp(struct tmpfs_dirent *a, struct tmpfs_dirent *b)
1773{
1774	if (a->td_hash > b->td_hash)
1775		return (1);
1776	else if (a->td_hash < b->td_hash)
1777		return (-1);
1778	return (0);
1779}
1780
1781RB_GENERATE_STATIC(tmpfs_dir, tmpfs_dirent, uh.td_entries, tmpfs_dirtree_cmp);
1782