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kern_event.c revision 1.25.6.2
      1  1.25.6.2    simonb /*	$NetBSD: kern_event.c,v 1.25.6.2 2006/04/22 11:39:58 simonb Exp $	*/
      2  1.25.6.2    simonb 
      3       1.1     lukem /*-
      4       1.1     lukem  * Copyright (c) 1999,2000,2001 Jonathan Lemon <jlemon (at) FreeBSD.org>
      5       1.1     lukem  * All rights reserved.
      6       1.1     lukem  *
      7       1.1     lukem  * Redistribution and use in source and binary forms, with or without
      8       1.1     lukem  * modification, are permitted provided that the following conditions
      9       1.1     lukem  * are met:
     10       1.1     lukem  * 1. Redistributions of source code must retain the above copyright
     11       1.1     lukem  *    notice, this list of conditions and the following disclaimer.
     12       1.1     lukem  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1     lukem  *    notice, this list of conditions and the following disclaimer in the
     14       1.1     lukem  *    documentation and/or other materials provided with the distribution.
     15       1.1     lukem  *
     16       1.1     lukem  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     17       1.1     lukem  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     18       1.1     lukem  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     19       1.1     lukem  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     20       1.1     lukem  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     21       1.1     lukem  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     22       1.1     lukem  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     23       1.1     lukem  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     24       1.1     lukem  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25       1.1     lukem  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26       1.1     lukem  * SUCH DAMAGE.
     27       1.1     lukem  *
     28       1.1     lukem  * $FreeBSD: src/sys/kern/kern_event.c,v 1.27 2001/07/05 17:10:44 rwatson Exp $
     29       1.1     lukem  */
     30      1.14  jdolecek 
     31      1.14  jdolecek #include <sys/cdefs.h>
     32  1.25.6.2    simonb __KERNEL_RCSID(0, "$NetBSD: kern_event.c,v 1.25.6.2 2006/04/22 11:39:58 simonb Exp $");
     33       1.1     lukem 
     34       1.1     lukem #include <sys/param.h>
     35       1.1     lukem #include <sys/systm.h>
     36       1.1     lukem #include <sys/kernel.h>
     37       1.1     lukem #include <sys/proc.h>
     38      1.22     perry #include <sys/malloc.h>
     39       1.1     lukem #include <sys/unistd.h>
     40       1.1     lukem #include <sys/file.h>
     41       1.1     lukem #include <sys/fcntl.h>
     42       1.3  jdolecek #include <sys/select.h>
     43       1.1     lukem #include <sys/queue.h>
     44       1.1     lukem #include <sys/event.h>
     45       1.1     lukem #include <sys/eventvar.h>
     46       1.1     lukem #include <sys/poll.h>
     47       1.3  jdolecek #include <sys/pool.h>
     48       1.1     lukem #include <sys/protosw.h>
     49       1.1     lukem #include <sys/socket.h>
     50       1.1     lukem #include <sys/socketvar.h>
     51       1.1     lukem #include <sys/stat.h>
     52       1.1     lukem #include <sys/uio.h>
     53       1.3  jdolecek #include <sys/mount.h>
     54       1.3  jdolecek #include <sys/filedesc.h>
     55       1.6   thorpej #include <sys/sa.h>
     56       1.3  jdolecek #include <sys/syscallargs.h>
     57       1.1     lukem 
     58       1.3  jdolecek static void	kqueue_wakeup(struct kqueue *kq);
     59       1.1     lukem 
     60      1.24      cube static int	kqueue_scan(struct file *, size_t, struct kevent *,
     61      1.25  christos     const struct timespec *, struct lwp *, register_t *,
     62      1.24      cube     const struct kevent_ops *);
     63       1.3  jdolecek static int	kqueue_read(struct file *fp, off_t *offset, struct uio *uio,
     64       1.3  jdolecek 		    struct ucred *cred, int flags);
     65       1.3  jdolecek static int	kqueue_write(struct file *fp, off_t *offset, struct uio *uio,
     66       1.3  jdolecek 		    struct ucred *cred, int flags);
     67      1.13       dsl static int	kqueue_ioctl(struct file *fp, u_long com, void *data,
     68      1.25  christos 		    struct lwp *l);
     69      1.13       dsl static int	kqueue_fcntl(struct file *fp, u_int com, void *data,
     70      1.25  christos 		    struct lwp *l);
     71      1.25  christos static int	kqueue_poll(struct file *fp, int events, struct lwp *l);
     72       1.3  jdolecek static int	kqueue_kqfilter(struct file *fp, struct knote *kn);
     73      1.25  christos static int	kqueue_stat(struct file *fp, struct stat *sp, struct lwp *l);
     74      1.25  christos static int	kqueue_close(struct file *fp, struct lwp *l);
     75       1.1     lukem 
     76      1.21  christos static const struct fileops kqueueops = {
     77       1.3  jdolecek 	kqueue_read, kqueue_write, kqueue_ioctl, kqueue_fcntl, kqueue_poll,
     78       1.3  jdolecek 	kqueue_stat, kqueue_close, kqueue_kqfilter
     79       1.1     lukem };
     80       1.1     lukem 
     81       1.3  jdolecek static void	knote_attach(struct knote *kn, struct filedesc *fdp);
     82      1.25  christos static void	knote_drop(struct knote *kn, struct lwp *l,
     83       1.3  jdolecek 		    struct filedesc *fdp);
     84       1.3  jdolecek static void	knote_enqueue(struct knote *kn);
     85       1.3  jdolecek static void	knote_dequeue(struct knote *kn);
     86       1.1     lukem 
     87       1.1     lukem static void	filt_kqdetach(struct knote *kn);
     88       1.1     lukem static int	filt_kqueue(struct knote *kn, long hint);
     89       1.1     lukem static int	filt_procattach(struct knote *kn);
     90       1.1     lukem static void	filt_procdetach(struct knote *kn);
     91       1.1     lukem static int	filt_proc(struct knote *kn, long hint);
     92       1.1     lukem static int	filt_fileattach(struct knote *kn);
     93       1.8  jdolecek static void	filt_timerexpire(void *knx);
     94       1.8  jdolecek static int	filt_timerattach(struct knote *kn);
     95       1.8  jdolecek static void	filt_timerdetach(struct knote *kn);
     96       1.8  jdolecek static int	filt_timer(struct knote *kn, long hint);
     97       1.1     lukem 
     98       1.3  jdolecek static const struct filterops kqread_filtops =
     99       1.1     lukem 	{ 1, NULL, filt_kqdetach, filt_kqueue };
    100       1.3  jdolecek static const struct filterops proc_filtops =
    101       1.1     lukem 	{ 0, filt_procattach, filt_procdetach, filt_proc };
    102       1.3  jdolecek static const struct filterops file_filtops =
    103       1.1     lukem 	{ 1, filt_fileattach, NULL, NULL };
    104  1.25.6.2    simonb static const struct filterops timer_filtops =
    105       1.8  jdolecek 	{ 0, filt_timerattach, filt_timerdetach, filt_timer };
    106       1.1     lukem 
    107  1.25.6.2    simonb static POOL_INIT(kqueue_pool, sizeof(struct kqueue), 0, 0, 0, "kqueuepl", NULL);
    108  1.25.6.2    simonb static POOL_INIT(knote_pool, sizeof(struct knote), 0, 0, 0, "knotepl", NULL);
    109       1.8  jdolecek static int	kq_ncallouts = 0;
    110       1.8  jdolecek static int	kq_calloutmax = (4 * 1024);
    111       1.7   thorpej 
    112       1.7   thorpej MALLOC_DEFINE(M_KEVENT, "kevent", "kevents/knotes");
    113       1.1     lukem 
    114       1.3  jdolecek #define	KNOTE_ACTIVATE(kn)						\
    115       1.3  jdolecek do {									\
    116       1.1     lukem 	kn->kn_status |= KN_ACTIVE;					\
    117       1.1     lukem 	if ((kn->kn_status & (KN_QUEUED | KN_DISABLED)) == 0)		\
    118       1.1     lukem 		knote_enqueue(kn);					\
    119       1.1     lukem } while(0)
    120       1.1     lukem 
    121       1.1     lukem #define	KN_HASHSIZE		64		/* XXX should be tunable */
    122       1.3  jdolecek #define	KN_HASH(val, mask)	(((val) ^ (val >> 8)) & (mask))
    123       1.1     lukem 
    124       1.3  jdolecek extern const struct filterops sig_filtops;
    125       1.1     lukem 
    126       1.1     lukem /*
    127       1.1     lukem  * Table for for all system-defined filters.
    128       1.3  jdolecek  * These should be listed in the numeric order of the EVFILT_* defines.
    129       1.3  jdolecek  * If filtops is NULL, the filter isn't implemented in NetBSD.
    130       1.3  jdolecek  * End of list is when name is NULL.
    131       1.1     lukem  */
    132       1.3  jdolecek struct kfilter {
    133       1.3  jdolecek 	const char	 *name;		/* name of filter */
    134       1.3  jdolecek 	uint32_t	  filter;	/* id of filter */
    135       1.3  jdolecek 	const struct filterops *filtops;/* operations for filter */
    136       1.3  jdolecek };
    137       1.3  jdolecek 
    138       1.3  jdolecek 		/* System defined filters */
    139       1.3  jdolecek static const struct kfilter sys_kfilters[] = {
    140       1.3  jdolecek 	{ "EVFILT_READ",	EVFILT_READ,	&file_filtops },
    141       1.3  jdolecek 	{ "EVFILT_WRITE",	EVFILT_WRITE,	&file_filtops },
    142       1.3  jdolecek 	{ "EVFILT_AIO",		EVFILT_AIO,	NULL },
    143       1.3  jdolecek 	{ "EVFILT_VNODE",	EVFILT_VNODE,	&file_filtops },
    144       1.3  jdolecek 	{ "EVFILT_PROC",	EVFILT_PROC,	&proc_filtops },
    145       1.3  jdolecek 	{ "EVFILT_SIGNAL",	EVFILT_SIGNAL,	&sig_filtops },
    146       1.8  jdolecek 	{ "EVFILT_TIMER",	EVFILT_TIMER,	&timer_filtops },
    147      1.22     perry 	{ NULL,			0,		NULL },	/* end of list */
    148       1.1     lukem };
    149       1.1     lukem 
    150       1.3  jdolecek 		/* User defined kfilters */
    151       1.3  jdolecek static struct kfilter	*user_kfilters;		/* array */
    152       1.3  jdolecek static int		user_kfilterc;		/* current offset */
    153       1.3  jdolecek static int		user_kfiltermaxc;	/* max size so far */
    154       1.3  jdolecek 
    155       1.3  jdolecek /*
    156       1.3  jdolecek  * Find kfilter entry by name, or NULL if not found.
    157       1.3  jdolecek  */
    158       1.3  jdolecek static const struct kfilter *
    159       1.3  jdolecek kfilter_byname_sys(const char *name)
    160       1.3  jdolecek {
    161       1.3  jdolecek 	int i;
    162       1.3  jdolecek 
    163       1.3  jdolecek 	for (i = 0; sys_kfilters[i].name != NULL; i++) {
    164       1.3  jdolecek 		if (strcmp(name, sys_kfilters[i].name) == 0)
    165       1.3  jdolecek 			return (&sys_kfilters[i]);
    166       1.3  jdolecek 	}
    167       1.3  jdolecek 	return (NULL);
    168       1.3  jdolecek }
    169       1.3  jdolecek 
    170       1.3  jdolecek static struct kfilter *
    171       1.3  jdolecek kfilter_byname_user(const char *name)
    172       1.3  jdolecek {
    173       1.3  jdolecek 	int i;
    174       1.3  jdolecek 
    175       1.3  jdolecek 	/* user_kfilters[] could be NULL if no filters were registered */
    176       1.3  jdolecek 	if (!user_kfilters)
    177       1.3  jdolecek 		return (NULL);
    178       1.3  jdolecek 
    179       1.3  jdolecek 	for (i = 0; user_kfilters[i].name != NULL; i++) {
    180       1.3  jdolecek 		if (user_kfilters[i].name != '\0' &&
    181       1.3  jdolecek 		    strcmp(name, user_kfilters[i].name) == 0)
    182       1.3  jdolecek 			return (&user_kfilters[i]);
    183       1.3  jdolecek 	}
    184       1.3  jdolecek 	return (NULL);
    185       1.3  jdolecek }
    186       1.3  jdolecek 
    187       1.3  jdolecek static const struct kfilter *
    188       1.3  jdolecek kfilter_byname(const char *name)
    189       1.3  jdolecek {
    190       1.3  jdolecek 	const struct kfilter *kfilter;
    191       1.3  jdolecek 
    192       1.3  jdolecek 	if ((kfilter = kfilter_byname_sys(name)) != NULL)
    193       1.3  jdolecek 		return (kfilter);
    194       1.3  jdolecek 
    195       1.3  jdolecek 	return (kfilter_byname_user(name));
    196       1.3  jdolecek }
    197       1.3  jdolecek 
    198       1.3  jdolecek /*
    199       1.3  jdolecek  * Find kfilter entry by filter id, or NULL if not found.
    200       1.3  jdolecek  * Assumes entries are indexed in filter id order, for speed.
    201       1.3  jdolecek  */
    202       1.3  jdolecek static const struct kfilter *
    203       1.3  jdolecek kfilter_byfilter(uint32_t filter)
    204       1.3  jdolecek {
    205       1.3  jdolecek 	const struct kfilter *kfilter;
    206       1.3  jdolecek 
    207       1.3  jdolecek 	if (filter < EVFILT_SYSCOUNT)	/* it's a system filter */
    208       1.3  jdolecek 		kfilter = &sys_kfilters[filter];
    209       1.3  jdolecek 	else if (user_kfilters != NULL &&
    210       1.3  jdolecek 	    filter < EVFILT_SYSCOUNT + user_kfilterc)
    211       1.3  jdolecek 					/* it's a user filter */
    212       1.3  jdolecek 		kfilter = &user_kfilters[filter - EVFILT_SYSCOUNT];
    213       1.3  jdolecek 	else
    214       1.3  jdolecek 		return (NULL);		/* out of range */
    215       1.3  jdolecek 	KASSERT(kfilter->filter == filter);	/* sanity check! */
    216       1.3  jdolecek 	return (kfilter);
    217       1.3  jdolecek }
    218       1.3  jdolecek 
    219       1.3  jdolecek /*
    220       1.3  jdolecek  * Register a new kfilter. Stores the entry in user_kfilters.
    221       1.3  jdolecek  * Returns 0 if operation succeeded, or an appropriate errno(2) otherwise.
    222       1.3  jdolecek  * If retfilter != NULL, the new filterid is returned in it.
    223       1.3  jdolecek  */
    224       1.3  jdolecek int
    225       1.3  jdolecek kfilter_register(const char *name, const struct filterops *filtops,
    226       1.3  jdolecek     int *retfilter)
    227       1.1     lukem {
    228       1.3  jdolecek 	struct kfilter *kfilter;
    229       1.3  jdolecek 	void *space;
    230       1.3  jdolecek 	int len;
    231       1.3  jdolecek 
    232       1.3  jdolecek 	if (name == NULL || name[0] == '\0' || filtops == NULL)
    233       1.3  jdolecek 		return (EINVAL);	/* invalid args */
    234       1.3  jdolecek 	if (kfilter_byname(name) != NULL)
    235       1.3  jdolecek 		return (EEXIST);	/* already exists */
    236       1.3  jdolecek 	if (user_kfilterc > 0xffffffff - EVFILT_SYSCOUNT)
    237       1.3  jdolecek 		return (EINVAL);	/* too many */
    238       1.3  jdolecek 
    239       1.3  jdolecek 	/* check if need to grow user_kfilters */
    240       1.3  jdolecek 	if (user_kfilterc + 1 > user_kfiltermaxc) {
    241       1.3  jdolecek 		/*
    242       1.3  jdolecek 		 * Grow in KFILTER_EXTENT chunks. Use malloc(9), because we
    243       1.3  jdolecek 		 * want to traverse user_kfilters as an array.
    244       1.3  jdolecek 		 */
    245       1.3  jdolecek 		user_kfiltermaxc += KFILTER_EXTENT;
    246       1.3  jdolecek 		kfilter = malloc(user_kfiltermaxc * sizeof(struct filter *),
    247       1.3  jdolecek 		    M_KEVENT, M_WAITOK);
    248       1.3  jdolecek 
    249       1.3  jdolecek 		/* copy existing user_kfilters */
    250       1.3  jdolecek 		if (user_kfilters != NULL)
    251       1.3  jdolecek 			memcpy((caddr_t)kfilter, (caddr_t)user_kfilters,
    252       1.3  jdolecek 			    user_kfilterc * sizeof(struct kfilter *));
    253       1.3  jdolecek 					/* zero new sections */
    254       1.3  jdolecek 		memset((caddr_t)kfilter +
    255       1.3  jdolecek 		    user_kfilterc * sizeof(struct kfilter *), 0,
    256       1.3  jdolecek 		    (user_kfiltermaxc - user_kfilterc) *
    257       1.3  jdolecek 		    sizeof(struct kfilter *));
    258       1.3  jdolecek 					/* switch to new kfilter */
    259       1.3  jdolecek 		if (user_kfilters != NULL)
    260       1.3  jdolecek 			free(user_kfilters, M_KEVENT);
    261       1.3  jdolecek 		user_kfilters = kfilter;
    262       1.3  jdolecek 	}
    263       1.3  jdolecek 	len = strlen(name) + 1;		/* copy name */
    264       1.3  jdolecek 	space = malloc(len, M_KEVENT, M_WAITOK);
    265       1.3  jdolecek 	memcpy(space, name, len);
    266       1.3  jdolecek 	user_kfilters[user_kfilterc].name = space;
    267       1.3  jdolecek 
    268       1.3  jdolecek 	user_kfilters[user_kfilterc].filter = user_kfilterc + EVFILT_SYSCOUNT;
    269       1.3  jdolecek 
    270       1.3  jdolecek 	len = sizeof(struct filterops);	/* copy filtops */
    271       1.3  jdolecek 	space = malloc(len, M_KEVENT, M_WAITOK);
    272       1.3  jdolecek 	memcpy(space, filtops, len);
    273       1.3  jdolecek 	user_kfilters[user_kfilterc].filtops = space;
    274       1.3  jdolecek 
    275       1.3  jdolecek 	if (retfilter != NULL)
    276       1.3  jdolecek 		*retfilter = user_kfilters[user_kfilterc].filter;
    277       1.3  jdolecek 	user_kfilterc++;		/* finally, increment count */
    278       1.3  jdolecek 	return (0);
    279       1.1     lukem }
    280       1.1     lukem 
    281       1.3  jdolecek /*
    282       1.3  jdolecek  * Unregister a kfilter previously registered with kfilter_register.
    283       1.3  jdolecek  * This retains the filter id, but clears the name and frees filtops (filter
    284       1.3  jdolecek  * operations), so that the number isn't reused during a boot.
    285       1.3  jdolecek  * Returns 0 if operation succeeded, or an appropriate errno(2) otherwise.
    286       1.3  jdolecek  */
    287       1.3  jdolecek int
    288       1.3  jdolecek kfilter_unregister(const char *name)
    289       1.1     lukem {
    290       1.3  jdolecek 	struct kfilter *kfilter;
    291       1.3  jdolecek 
    292       1.3  jdolecek 	if (name == NULL || name[0] == '\0')
    293       1.3  jdolecek 		return (EINVAL);	/* invalid name */
    294       1.3  jdolecek 
    295       1.3  jdolecek 	if (kfilter_byname_sys(name) != NULL)
    296       1.3  jdolecek 		return (EINVAL);	/* can't detach system filters */
    297       1.1     lukem 
    298       1.3  jdolecek 	kfilter = kfilter_byname_user(name);
    299       1.3  jdolecek 	if (kfilter == NULL)		/* not found */
    300       1.3  jdolecek 		return (ENOENT);
    301       1.1     lukem 
    302       1.3  jdolecek 	if (kfilter->name[0] != '\0') {
    303      1.23  christos 		/* XXXUNCONST Cast away const (but we know it's safe. */
    304      1.23  christos 		free(__UNCONST(kfilter->name), M_KEVENT);
    305       1.3  jdolecek 		kfilter->name = "";	/* mark as `not implemented' */
    306       1.3  jdolecek 	}
    307       1.3  jdolecek 	if (kfilter->filtops != NULL) {
    308      1.23  christos 		/* XXXUNCONST Cast away const (but we know it's safe. */
    309      1.23  christos 		free(__UNCONST(kfilter->filtops), M_KEVENT);
    310       1.3  jdolecek 		kfilter->filtops = NULL; /* mark as `not implemented' */
    311       1.3  jdolecek 	}
    312       1.1     lukem 	return (0);
    313       1.1     lukem }
    314       1.1     lukem 
    315       1.3  jdolecek 
    316       1.3  jdolecek /*
    317       1.3  jdolecek  * Filter attach method for EVFILT_READ and EVFILT_WRITE on normal file
    318       1.3  jdolecek  * descriptors. Calls struct fileops kqfilter method for given file descriptor.
    319       1.3  jdolecek  */
    320       1.3  jdolecek static int
    321       1.3  jdolecek filt_fileattach(struct knote *kn)
    322       1.3  jdolecek {
    323       1.3  jdolecek 	struct file *fp;
    324       1.3  jdolecek 
    325       1.3  jdolecek 	fp = kn->kn_fp;
    326       1.3  jdolecek 	return ((*fp->f_ops->fo_kqfilter)(fp, kn));
    327       1.3  jdolecek }
    328       1.3  jdolecek 
    329       1.3  jdolecek /*
    330       1.3  jdolecek  * Filter detach method for EVFILT_READ on kqueue descriptor.
    331       1.3  jdolecek  */
    332       1.1     lukem static void
    333       1.1     lukem filt_kqdetach(struct knote *kn)
    334       1.1     lukem {
    335       1.3  jdolecek 	struct kqueue *kq;
    336       1.1     lukem 
    337       1.3  jdolecek 	kq = (struct kqueue *)kn->kn_fp->f_data;
    338       1.5  christos 	SLIST_REMOVE(&kq->kq_sel.sel_klist, kn, knote, kn_selnext);
    339       1.1     lukem }
    340       1.1     lukem 
    341       1.3  jdolecek /*
    342       1.3  jdolecek  * Filter event method for EVFILT_READ on kqueue descriptor.
    343       1.3  jdolecek  */
    344       1.1     lukem /*ARGSUSED*/
    345       1.1     lukem static int
    346       1.1     lukem filt_kqueue(struct knote *kn, long hint)
    347       1.1     lukem {
    348       1.3  jdolecek 	struct kqueue *kq;
    349       1.1     lukem 
    350       1.3  jdolecek 	kq = (struct kqueue *)kn->kn_fp->f_data;
    351       1.1     lukem 	kn->kn_data = kq->kq_count;
    352       1.1     lukem 	return (kn->kn_data > 0);
    353       1.1     lukem }
    354       1.1     lukem 
    355       1.3  jdolecek /*
    356       1.3  jdolecek  * Filter attach method for EVFILT_PROC.
    357       1.3  jdolecek  */
    358       1.1     lukem static int
    359       1.1     lukem filt_procattach(struct knote *kn)
    360       1.1     lukem {
    361       1.1     lukem 	struct proc *p;
    362       1.1     lukem 
    363       1.1     lukem 	p = pfind(kn->kn_id);
    364       1.1     lukem 	if (p == NULL)
    365       1.1     lukem 		return (ESRCH);
    366       1.3  jdolecek 
    367       1.3  jdolecek 	/*
    368       1.3  jdolecek 	 * Fail if it's not owned by you, or the last exec gave us
    369       1.3  jdolecek 	 * setuid/setgid privs (unless you're root).
    370       1.3  jdolecek 	 */
    371       1.3  jdolecek 	if ((p->p_cred->p_ruid != curproc->p_cred->p_ruid ||
    372       1.3  jdolecek 		(p->p_flag & P_SUGID))
    373       1.3  jdolecek 	    && suser(curproc->p_ucred, &curproc->p_acflag) != 0)
    374       1.3  jdolecek 		return (EACCES);
    375       1.1     lukem 
    376       1.1     lukem 	kn->kn_ptr.p_proc = p;
    377       1.3  jdolecek 	kn->kn_flags |= EV_CLEAR;	/* automatically set */
    378       1.1     lukem 
    379       1.1     lukem 	/*
    380       1.1     lukem 	 * internal flag indicating registration done by kernel
    381       1.1     lukem 	 */
    382       1.1     lukem 	if (kn->kn_flags & EV_FLAG1) {
    383       1.3  jdolecek 		kn->kn_data = kn->kn_sdata;	/* ppid */
    384       1.1     lukem 		kn->kn_fflags = NOTE_CHILD;
    385       1.1     lukem 		kn->kn_flags &= ~EV_FLAG1;
    386       1.1     lukem 	}
    387       1.1     lukem 
    388       1.3  jdolecek 	/* XXXSMP lock the process? */
    389       1.1     lukem 	SLIST_INSERT_HEAD(&p->p_klist, kn, kn_selnext);
    390       1.1     lukem 
    391       1.1     lukem 	return (0);
    392       1.1     lukem }
    393       1.1     lukem 
    394       1.1     lukem /*
    395       1.3  jdolecek  * Filter detach method for EVFILT_PROC.
    396       1.3  jdolecek  *
    397       1.1     lukem  * The knote may be attached to a different process, which may exit,
    398       1.1     lukem  * leaving nothing for the knote to be attached to.  So when the process
    399       1.1     lukem  * exits, the knote is marked as DETACHED and also flagged as ONESHOT so
    400       1.1     lukem  * it will be deleted when read out.  However, as part of the knote deletion,
    401       1.1     lukem  * this routine is called, so a check is needed to avoid actually performing
    402       1.3  jdolecek  * a detach, because the original process might not exist any more.
    403       1.1     lukem  */
    404       1.1     lukem static void
    405       1.1     lukem filt_procdetach(struct knote *kn)
    406       1.1     lukem {
    407       1.3  jdolecek 	struct proc *p;
    408       1.1     lukem 
    409       1.1     lukem 	if (kn->kn_status & KN_DETACHED)
    410       1.1     lukem 		return;
    411       1.1     lukem 
    412       1.3  jdolecek 	p = kn->kn_ptr.p_proc;
    413      1.18  jdolecek 	KASSERT(p->p_stat == SZOMB || pfind(kn->kn_id) == p);
    414       1.3  jdolecek 
    415       1.3  jdolecek 	/* XXXSMP lock the process? */
    416       1.1     lukem 	SLIST_REMOVE(&p->p_klist, kn, knote, kn_selnext);
    417       1.1     lukem }
    418       1.1     lukem 
    419       1.3  jdolecek /*
    420       1.3  jdolecek  * Filter event method for EVFILT_PROC.
    421       1.3  jdolecek  */
    422       1.1     lukem static int
    423       1.1     lukem filt_proc(struct knote *kn, long hint)
    424       1.1     lukem {
    425       1.1     lukem 	u_int event;
    426       1.1     lukem 
    427       1.1     lukem 	/*
    428       1.1     lukem 	 * mask off extra data
    429       1.1     lukem 	 */
    430       1.1     lukem 	event = (u_int)hint & NOTE_PCTRLMASK;
    431       1.1     lukem 
    432       1.1     lukem 	/*
    433       1.1     lukem 	 * if the user is interested in this event, record it.
    434       1.1     lukem 	 */
    435       1.1     lukem 	if (kn->kn_sfflags & event)
    436       1.1     lukem 		kn->kn_fflags |= event;
    437       1.1     lukem 
    438       1.1     lukem 	/*
    439       1.1     lukem 	 * process is gone, so flag the event as finished.
    440       1.1     lukem 	 */
    441       1.1     lukem 	if (event == NOTE_EXIT) {
    442       1.3  jdolecek 		/*
    443       1.3  jdolecek 		 * Detach the knote from watched process and mark
    444       1.3  jdolecek 		 * it as such. We can't leave this to kqueue_scan(),
    445       1.3  jdolecek 		 * since the process might not exist by then. And we
    446       1.3  jdolecek 		 * have to do this now, since psignal KNOTE() is called
    447       1.3  jdolecek 		 * also for zombies and we might end up reading freed
    448       1.3  jdolecek 		 * memory if the kevent would already be picked up
    449      1.22     perry 		 * and knote g/c'ed.
    450       1.3  jdolecek 		 */
    451       1.3  jdolecek 		kn->kn_fop->f_detach(kn);
    452       1.1     lukem 		kn->kn_status |= KN_DETACHED;
    453       1.3  jdolecek 
    454       1.3  jdolecek 		/* Mark as ONESHOT, so that the knote it g/c'ed when read */
    455      1.22     perry 		kn->kn_flags |= (EV_EOF | EV_ONESHOT);
    456       1.1     lukem 		return (1);
    457       1.1     lukem 	}
    458       1.1     lukem 
    459       1.1     lukem 	/*
    460       1.1     lukem 	 * process forked, and user wants to track the new process,
    461       1.1     lukem 	 * so attach a new knote to it, and immediately report an
    462       1.1     lukem 	 * event with the parent's pid.
    463       1.1     lukem 	 */
    464       1.1     lukem 	if ((event == NOTE_FORK) && (kn->kn_sfflags & NOTE_TRACK)) {
    465       1.1     lukem 		struct kevent kev;
    466       1.1     lukem 		int error;
    467       1.1     lukem 
    468       1.1     lukem 		/*
    469       1.1     lukem 		 * register knote with new process.
    470       1.1     lukem 		 */
    471       1.1     lukem 		kev.ident = hint & NOTE_PDATAMASK;	/* pid */
    472       1.1     lukem 		kev.filter = kn->kn_filter;
    473       1.1     lukem 		kev.flags = kn->kn_flags | EV_ADD | EV_ENABLE | EV_FLAG1;
    474       1.1     lukem 		kev.fflags = kn->kn_sfflags;
    475       1.1     lukem 		kev.data = kn->kn_id;			/* parent */
    476       1.1     lukem 		kev.udata = kn->kn_kevent.udata;	/* preserve udata */
    477       1.1     lukem 		error = kqueue_register(kn->kn_kq, &kev, NULL);
    478       1.1     lukem 		if (error)
    479       1.1     lukem 			kn->kn_fflags |= NOTE_TRACKERR;
    480       1.1     lukem 	}
    481       1.1     lukem 
    482       1.1     lukem 	return (kn->kn_fflags != 0);
    483       1.8  jdolecek }
    484       1.8  jdolecek 
    485       1.8  jdolecek static void
    486       1.8  jdolecek filt_timerexpire(void *knx)
    487       1.8  jdolecek {
    488       1.8  jdolecek 	struct knote *kn = knx;
    489       1.8  jdolecek 	int tticks;
    490       1.8  jdolecek 
    491       1.8  jdolecek 	kn->kn_data++;
    492       1.8  jdolecek 	KNOTE_ACTIVATE(kn);
    493       1.8  jdolecek 
    494       1.8  jdolecek 	if ((kn->kn_flags & EV_ONESHOT) == 0) {
    495       1.8  jdolecek 		tticks = mstohz(kn->kn_sdata);
    496       1.8  jdolecek 		callout_schedule((struct callout *)kn->kn_hook, tticks);
    497       1.8  jdolecek 	}
    498       1.8  jdolecek }
    499       1.8  jdolecek 
    500       1.8  jdolecek /*
    501       1.8  jdolecek  * data contains amount of time to sleep, in milliseconds
    502      1.22     perry  */
    503       1.8  jdolecek static int
    504       1.8  jdolecek filt_timerattach(struct knote *kn)
    505       1.8  jdolecek {
    506       1.8  jdolecek 	struct callout *calloutp;
    507       1.8  jdolecek 	int tticks;
    508       1.8  jdolecek 
    509       1.8  jdolecek 	if (kq_ncallouts >= kq_calloutmax)
    510       1.8  jdolecek 		return (ENOMEM);
    511       1.8  jdolecek 	kq_ncallouts++;
    512       1.8  jdolecek 
    513       1.8  jdolecek 	tticks = mstohz(kn->kn_sdata);
    514       1.8  jdolecek 
    515       1.8  jdolecek 	/* if the supplied value is under our resolution, use 1 tick */
    516       1.8  jdolecek 	if (tticks == 0) {
    517       1.8  jdolecek 		if (kn->kn_sdata == 0)
    518       1.8  jdolecek 			return (EINVAL);
    519       1.8  jdolecek 		tticks = 1;
    520       1.8  jdolecek 	}
    521       1.8  jdolecek 
    522       1.8  jdolecek 	kn->kn_flags |= EV_CLEAR;		/* automatically set */
    523       1.8  jdolecek 	MALLOC(calloutp, struct callout *, sizeof(*calloutp),
    524       1.8  jdolecek 	    M_KEVENT, 0);
    525       1.8  jdolecek 	callout_init(calloutp);
    526       1.8  jdolecek 	callout_reset(calloutp, tticks, filt_timerexpire, kn);
    527       1.8  jdolecek 	kn->kn_hook = calloutp;
    528       1.8  jdolecek 
    529       1.8  jdolecek 	return (0);
    530       1.8  jdolecek }
    531       1.8  jdolecek 
    532       1.8  jdolecek static void
    533       1.8  jdolecek filt_timerdetach(struct knote *kn)
    534       1.8  jdolecek {
    535       1.8  jdolecek 	struct callout *calloutp;
    536       1.8  jdolecek 
    537       1.8  jdolecek 	calloutp = (struct callout *)kn->kn_hook;
    538       1.8  jdolecek 	callout_stop(calloutp);
    539       1.8  jdolecek 	FREE(calloutp, M_KEVENT);
    540       1.8  jdolecek 	kq_ncallouts--;
    541       1.8  jdolecek }
    542       1.8  jdolecek 
    543       1.8  jdolecek static int
    544       1.8  jdolecek filt_timer(struct knote *kn, long hint)
    545       1.8  jdolecek {
    546       1.8  jdolecek 	return (kn->kn_data != 0);
    547       1.1     lukem }
    548       1.1     lukem 
    549       1.3  jdolecek /*
    550       1.3  jdolecek  * filt_seltrue:
    551       1.3  jdolecek  *
    552       1.3  jdolecek  *	This filter "event" routine simulates seltrue().
    553       1.3  jdolecek  */
    554       1.1     lukem int
    555       1.3  jdolecek filt_seltrue(struct knote *kn, long hint)
    556       1.1     lukem {
    557       1.1     lukem 
    558       1.3  jdolecek 	/*
    559       1.3  jdolecek 	 * We don't know how much data can be read/written,
    560       1.3  jdolecek 	 * but we know that it *can* be.  This is about as
    561       1.3  jdolecek 	 * good as select/poll does as well.
    562       1.3  jdolecek 	 */
    563       1.3  jdolecek 	kn->kn_data = 0;
    564       1.3  jdolecek 	return (1);
    565       1.3  jdolecek }
    566       1.3  jdolecek 
    567       1.3  jdolecek /*
    568       1.3  jdolecek  * This provides full kqfilter entry for device switch tables, which
    569       1.3  jdolecek  * has same effect as filter using filt_seltrue() as filter method.
    570       1.3  jdolecek  */
    571       1.3  jdolecek static void
    572       1.3  jdolecek filt_seltruedetach(struct knote *kn)
    573       1.3  jdolecek {
    574       1.3  jdolecek 	/* Nothing to do */
    575       1.3  jdolecek }
    576       1.3  jdolecek 
    577       1.3  jdolecek static const struct filterops seltrue_filtops =
    578       1.3  jdolecek 	{ 1, NULL, filt_seltruedetach, filt_seltrue };
    579       1.3  jdolecek 
    580       1.3  jdolecek int
    581       1.3  jdolecek seltrue_kqfilter(dev_t dev, struct knote *kn)
    582       1.3  jdolecek {
    583       1.3  jdolecek 	switch (kn->kn_filter) {
    584       1.3  jdolecek 	case EVFILT_READ:
    585       1.3  jdolecek 	case EVFILT_WRITE:
    586       1.3  jdolecek 		kn->kn_fop = &seltrue_filtops;
    587       1.3  jdolecek 		break;
    588       1.3  jdolecek 	default:
    589       1.3  jdolecek 		return (1);
    590       1.3  jdolecek 	}
    591       1.3  jdolecek 
    592       1.3  jdolecek 	/* Nothing more to do */
    593       1.3  jdolecek 	return (0);
    594       1.3  jdolecek }
    595       1.3  jdolecek 
    596       1.3  jdolecek /*
    597       1.3  jdolecek  * kqueue(2) system call.
    598       1.3  jdolecek  */
    599       1.3  jdolecek int
    600       1.6   thorpej sys_kqueue(struct lwp *l, void *v, register_t *retval)
    601       1.3  jdolecek {
    602       1.3  jdolecek 	struct filedesc	*fdp;
    603       1.3  jdolecek 	struct kqueue	*kq;
    604       1.3  jdolecek 	struct file	*fp;
    605       1.6   thorpej 	struct proc	*p;
    606       1.3  jdolecek 	int		fd, error;
    607       1.3  jdolecek 
    608       1.6   thorpej 	p = l->l_proc;
    609       1.3  jdolecek 	fdp = p->p_fd;
    610       1.3  jdolecek 	error = falloc(p, &fp, &fd);	/* setup a new file descriptor */
    611       1.1     lukem 	if (error)
    612       1.1     lukem 		return (error);
    613       1.1     lukem 	fp->f_flag = FREAD | FWRITE;
    614       1.1     lukem 	fp->f_type = DTYPE_KQUEUE;
    615       1.1     lukem 	fp->f_ops = &kqueueops;
    616       1.3  jdolecek 	kq = pool_get(&kqueue_pool, PR_WAITOK);
    617       1.3  jdolecek 	memset((char *)kq, 0, sizeof(struct kqueue));
    618      1.12        pk 	simple_lock_init(&kq->kq_lock);
    619       1.1     lukem 	TAILQ_INIT(&kq->kq_head);
    620       1.3  jdolecek 	fp->f_data = (caddr_t)kq;	/* store the kqueue with the fp */
    621       1.3  jdolecek 	*retval = fd;
    622       1.1     lukem 	if (fdp->fd_knlistsize < 0)
    623       1.3  jdolecek 		fdp->fd_knlistsize = 0;	/* this process has a kq */
    624       1.1     lukem 	kq->kq_fdp = fdp;
    625       1.3  jdolecek 	FILE_SET_MATURE(fp);
    626      1.25  christos 	FILE_UNUSE(fp, l);		/* falloc() does FILE_USE() */
    627       1.1     lukem 	return (error);
    628       1.1     lukem }
    629       1.1     lukem 
    630       1.3  jdolecek /*
    631       1.3  jdolecek  * kevent(2) system call.
    632       1.3  jdolecek  */
    633      1.24      cube static int
    634      1.24      cube kevent_fetch_changes(void *private, const struct kevent *changelist,
    635      1.24      cube     struct kevent *changes, size_t index, int n)
    636      1.24      cube {
    637      1.24      cube 	return copyin(changelist + index, changes, n * sizeof(*changes));
    638      1.24      cube }
    639      1.24      cube 
    640      1.24      cube static int
    641      1.24      cube kevent_put_events(void *private, struct kevent *events,
    642      1.24      cube     struct kevent *eventlist, size_t index, int n)
    643      1.24      cube {
    644      1.24      cube 	return copyout(events, eventlist + index, n * sizeof(*events));
    645      1.24      cube }
    646      1.24      cube 
    647      1.24      cube static const struct kevent_ops kevent_native_ops = {
    648      1.24      cube 	keo_private: NULL,
    649      1.24      cube 	keo_fetch_timeout: copyin,
    650      1.24      cube 	keo_fetch_changes: kevent_fetch_changes,
    651      1.24      cube 	keo_put_events: kevent_put_events,
    652      1.24      cube };
    653      1.24      cube 
    654       1.1     lukem int
    655       1.6   thorpej sys_kevent(struct lwp *l, void *v, register_t *retval)
    656       1.1     lukem {
    657       1.3  jdolecek 	struct sys_kevent_args /* {
    658       1.3  jdolecek 		syscallarg(int) fd;
    659       1.3  jdolecek 		syscallarg(const struct kevent *) changelist;
    660       1.3  jdolecek 		syscallarg(size_t) nchanges;
    661       1.3  jdolecek 		syscallarg(struct kevent *) eventlist;
    662       1.3  jdolecek 		syscallarg(size_t) nevents;
    663       1.3  jdolecek 		syscallarg(const struct timespec *) timeout;
    664       1.3  jdolecek 	} */ *uap = v;
    665      1.24      cube 
    666      1.24      cube 	return kevent1(l, retval, SCARG(uap, fd), SCARG(uap, changelist),
    667      1.24      cube 	    SCARG(uap, nchanges), SCARG(uap, eventlist), SCARG(uap, nevents),
    668      1.24      cube 	    SCARG(uap, timeout), &kevent_native_ops);
    669      1.24      cube }
    670      1.24      cube 
    671      1.24      cube int
    672      1.24      cube kevent1(struct lwp *l, register_t *retval, int fd,
    673      1.24      cube     const struct kevent *changelist, size_t nchanges, struct kevent *eventlist,
    674      1.24      cube     size_t nevents, const struct timespec *timeout,
    675      1.24      cube     const struct kevent_ops *keops)
    676      1.24      cube {
    677       1.3  jdolecek 	struct kevent	*kevp;
    678       1.3  jdolecek 	struct kqueue	*kq;
    679       1.3  jdolecek 	struct file	*fp;
    680       1.3  jdolecek 	struct timespec	ts;
    681       1.6   thorpej 	struct proc	*p;
    682      1.24      cube 	size_t		i, n, ichange;
    683       1.3  jdolecek 	int		nerrors, error;
    684       1.3  jdolecek 
    685       1.6   thorpej 	p = l->l_proc;
    686       1.3  jdolecek 	/* check that we're dealing with a kq */
    687      1.24      cube 	fp = fd_getfile(p->p_fd, fd);
    688      1.10        pk 	if (fp == NULL)
    689       1.1     lukem 		return (EBADF);
    690      1.10        pk 
    691      1.10        pk 	if (fp->f_type != DTYPE_KQUEUE) {
    692      1.10        pk 		simple_unlock(&fp->f_slock);
    693      1.10        pk 		return (EBADF);
    694      1.10        pk 	}
    695       1.1     lukem 
    696       1.3  jdolecek 	FILE_USE(fp);
    697       1.1     lukem 
    698      1.24      cube 	if (timeout != NULL) {
    699      1.24      cube 		error = (*keops->keo_fetch_timeout)(timeout, &ts, sizeof(ts));
    700       1.1     lukem 		if (error)
    701       1.1     lukem 			goto done;
    702      1.24      cube 		timeout = &ts;
    703       1.1     lukem 	}
    704       1.1     lukem 
    705       1.1     lukem 	kq = (struct kqueue *)fp->f_data;
    706       1.1     lukem 	nerrors = 0;
    707      1.24      cube 	ichange = 0;
    708       1.1     lukem 
    709       1.3  jdolecek 	/* traverse list of events to register */
    710      1.24      cube 	while (nchanges > 0) {
    711       1.3  jdolecek 		/* copyin a maximum of KQ_EVENTS at each pass */
    712      1.24      cube 		n = MIN(nchanges, KQ_NEVENTS);
    713      1.24      cube 		error = (*keops->keo_fetch_changes)(keops->keo_private,
    714      1.24      cube 		    changelist, kq->kq_kev, ichange, n);
    715       1.1     lukem 		if (error)
    716       1.1     lukem 			goto done;
    717       1.1     lukem 		for (i = 0; i < n; i++) {
    718       1.1     lukem 			kevp = &kq->kq_kev[i];
    719       1.1     lukem 			kevp->flags &= ~EV_SYSFLAGS;
    720       1.3  jdolecek 			/* register each knote */
    721      1.25  christos 			error = kqueue_register(kq, kevp, l);
    722       1.1     lukem 			if (error) {
    723      1.24      cube 				if (nevents != 0) {
    724       1.1     lukem 					kevp->flags = EV_ERROR;
    725       1.1     lukem 					kevp->data = error;
    726      1.24      cube 					error = (*keops->keo_put_events)
    727      1.24      cube 					    (keops->keo_private, kevp,
    728      1.24      cube 					    eventlist, nerrors, 1);
    729       1.3  jdolecek 					if (error)
    730       1.3  jdolecek 						goto done;
    731      1.24      cube 					nevents--;
    732       1.1     lukem 					nerrors++;
    733       1.1     lukem 				} else {
    734       1.1     lukem 					goto done;
    735       1.1     lukem 				}
    736       1.1     lukem 			}
    737       1.1     lukem 		}
    738      1.24      cube 		nchanges -= n;	/* update the results */
    739      1.24      cube 		ichange += n;
    740       1.1     lukem 	}
    741       1.1     lukem 	if (nerrors) {
    742       1.3  jdolecek 		*retval = nerrors;
    743       1.1     lukem 		error = 0;
    744       1.1     lukem 		goto done;
    745       1.1     lukem 	}
    746       1.1     lukem 
    747       1.3  jdolecek 	/* actually scan through the events */
    748      1.25  christos 	error = kqueue_scan(fp, nevents, eventlist, timeout, l, retval, keops);
    749       1.3  jdolecek  done:
    750      1.25  christos 	FILE_UNUSE(fp, l);
    751       1.1     lukem 	return (error);
    752       1.1     lukem }
    753       1.1     lukem 
    754       1.3  jdolecek /*
    755       1.3  jdolecek  * Register a given kevent kev onto the kqueue
    756       1.3  jdolecek  */
    757       1.1     lukem int
    758      1.25  christos kqueue_register(struct kqueue *kq, struct kevent *kev, struct lwp *l)
    759       1.1     lukem {
    760       1.3  jdolecek 	const struct kfilter *kfilter;
    761       1.3  jdolecek 	struct filedesc	*fdp;
    762      1.16      fvdl 	struct file	*fp;
    763      1.15   darrenr 	struct knote	*kn;
    764       1.3  jdolecek 	int		s, error;
    765       1.3  jdolecek 
    766       1.3  jdolecek 	fdp = kq->kq_fdp;
    767       1.3  jdolecek 	fp = NULL;
    768       1.3  jdolecek 	kn = NULL;
    769       1.3  jdolecek 	error = 0;
    770       1.3  jdolecek 	kfilter = kfilter_byfilter(kev->filter);
    771       1.3  jdolecek 	if (kfilter == NULL || kfilter->filtops == NULL) {
    772       1.3  jdolecek 		/* filter not found nor implemented */
    773       1.1     lukem 		return (EINVAL);
    774       1.1     lukem 	}
    775       1.1     lukem 
    776       1.3  jdolecek 	/* search if knote already exists */
    777       1.3  jdolecek 	if (kfilter->filtops->f_isfd) {
    778       1.3  jdolecek 		/* monitoring a file descriptor */
    779       1.3  jdolecek 		if ((fp = fd_getfile(fdp, kev->ident)) == NULL)
    780       1.3  jdolecek 			return (EBADF);	/* validate descriptor */
    781       1.3  jdolecek 		FILE_USE(fp);
    782       1.1     lukem 
    783       1.1     lukem 		if (kev->ident < fdp->fd_knlistsize) {
    784       1.1     lukem 			SLIST_FOREACH(kn, &fdp->fd_knlist[kev->ident], kn_link)
    785       1.1     lukem 				if (kq == kn->kn_kq &&
    786       1.1     lukem 				    kev->filter == kn->kn_filter)
    787       1.1     lukem 					break;
    788       1.1     lukem 		}
    789       1.1     lukem 	} else {
    790       1.3  jdolecek 		/*
    791       1.3  jdolecek 		 * not monitoring a file descriptor, so
    792       1.3  jdolecek 		 * lookup knotes in internal hash table
    793       1.3  jdolecek 		 */
    794       1.1     lukem 		if (fdp->fd_knhashmask != 0) {
    795       1.1     lukem 			struct klist *list;
    796      1.22     perry 
    797       1.1     lukem 			list = &fdp->fd_knhash[
    798       1.1     lukem 			    KN_HASH((u_long)kev->ident, fdp->fd_knhashmask)];
    799       1.1     lukem 			SLIST_FOREACH(kn, list, kn_link)
    800       1.1     lukem 				if (kev->ident == kn->kn_id &&
    801       1.1     lukem 				    kq == kn->kn_kq &&
    802       1.1     lukem 				    kev->filter == kn->kn_filter)
    803       1.1     lukem 					break;
    804       1.1     lukem 		}
    805       1.1     lukem 	}
    806       1.1     lukem 
    807       1.1     lukem 	if (kn == NULL && ((kev->flags & EV_ADD) == 0)) {
    808       1.3  jdolecek 		error = ENOENT;		/* filter not found */
    809       1.1     lukem 		goto done;
    810       1.1     lukem 	}
    811       1.1     lukem 
    812       1.1     lukem 	/*
    813       1.1     lukem 	 * kn now contains the matching knote, or NULL if no match
    814       1.1     lukem 	 */
    815       1.1     lukem 	if (kev->flags & EV_ADD) {
    816       1.3  jdolecek 		/* add knote */
    817       1.1     lukem 
    818       1.1     lukem 		if (kn == NULL) {
    819       1.3  jdolecek 			/* create new knote */
    820       1.3  jdolecek 			kn = pool_get(&knote_pool, PR_WAITOK);
    821       1.1     lukem 			if (kn == NULL) {
    822       1.1     lukem 				error = ENOMEM;
    823       1.1     lukem 				goto done;
    824       1.1     lukem 			}
    825       1.1     lukem 			kn->kn_fp = fp;
    826       1.1     lukem 			kn->kn_kq = kq;
    827       1.3  jdolecek 			kn->kn_fop = kfilter->filtops;
    828       1.1     lukem 
    829       1.1     lukem 			/*
    830       1.1     lukem 			 * apply reference count to knote structure, and
    831       1.1     lukem 			 * do not release it at the end of this routine.
    832       1.1     lukem 			 */
    833       1.1     lukem 			fp = NULL;
    834       1.1     lukem 
    835       1.1     lukem 			kn->kn_sfflags = kev->fflags;
    836       1.1     lukem 			kn->kn_sdata = kev->data;
    837       1.1     lukem 			kev->fflags = 0;
    838       1.1     lukem 			kev->data = 0;
    839       1.1     lukem 			kn->kn_kevent = *kev;
    840       1.1     lukem 
    841       1.1     lukem 			knote_attach(kn, fdp);
    842       1.3  jdolecek 			if ((error = kfilter->filtops->f_attach(kn)) != 0) {
    843      1.25  christos 				knote_drop(kn, l, fdp);
    844       1.1     lukem 				goto done;
    845       1.1     lukem 			}
    846       1.1     lukem 		} else {
    847       1.3  jdolecek 			/* modify existing knote */
    848       1.3  jdolecek 
    849       1.1     lukem 			/*
    850       1.1     lukem 			 * The user may change some filter values after the
    851      1.22     perry 			 * initial EV_ADD, but doing so will not reset any
    852       1.1     lukem 			 * filter which have already been triggered.
    853       1.1     lukem 			 */
    854       1.1     lukem 			kn->kn_sfflags = kev->fflags;
    855       1.1     lukem 			kn->kn_sdata = kev->data;
    856       1.1     lukem 			kn->kn_kevent.udata = kev->udata;
    857       1.1     lukem 		}
    858       1.1     lukem 
    859      1.11        pk 		s = splsched();
    860       1.1     lukem 		if (kn->kn_fop->f_event(kn, 0))
    861       1.1     lukem 			KNOTE_ACTIVATE(kn);
    862       1.1     lukem 		splx(s);
    863       1.1     lukem 
    864       1.3  jdolecek 	} else if (kev->flags & EV_DELETE) {	/* delete knote */
    865       1.1     lukem 		kn->kn_fop->f_detach(kn);
    866      1.25  christos 		knote_drop(kn, l, fdp);
    867       1.1     lukem 		goto done;
    868       1.1     lukem 	}
    869       1.1     lukem 
    870       1.3  jdolecek 	/* disable knote */
    871       1.1     lukem 	if ((kev->flags & EV_DISABLE) &&
    872       1.1     lukem 	    ((kn->kn_status & KN_DISABLED) == 0)) {
    873      1.11        pk 		s = splsched();
    874       1.1     lukem 		kn->kn_status |= KN_DISABLED;
    875       1.1     lukem 		splx(s);
    876       1.1     lukem 	}
    877       1.1     lukem 
    878       1.3  jdolecek 	/* enable knote */
    879       1.1     lukem 	if ((kev->flags & EV_ENABLE) && (kn->kn_status & KN_DISABLED)) {
    880      1.11        pk 		s = splsched();
    881       1.1     lukem 		kn->kn_status &= ~KN_DISABLED;
    882       1.1     lukem 		if ((kn->kn_status & KN_ACTIVE) &&
    883       1.1     lukem 		    ((kn->kn_status & KN_QUEUED) == 0))
    884       1.1     lukem 			knote_enqueue(kn);
    885       1.1     lukem 		splx(s);
    886       1.1     lukem 	}
    887       1.1     lukem 
    888       1.3  jdolecek  done:
    889       1.1     lukem 	if (fp != NULL)
    890      1.25  christos 		FILE_UNUSE(fp, l);
    891       1.1     lukem 	return (error);
    892       1.1     lukem }
    893       1.1     lukem 
    894       1.3  jdolecek /*
    895       1.3  jdolecek  * Scan through the list of events on fp (for a maximum of maxevents),
    896       1.3  jdolecek  * returning the results in to ulistp. Timeout is determined by tsp; if
    897       1.3  jdolecek  * NULL, wait indefinitely, if 0 valued, perform a poll, otherwise wait
    898       1.3  jdolecek  * as appropriate.
    899       1.3  jdolecek  */
    900       1.1     lukem static int
    901       1.3  jdolecek kqueue_scan(struct file *fp, size_t maxevents, struct kevent *ulistp,
    902      1.25  christos     const struct timespec *tsp, struct lwp *l, register_t *retval,
    903      1.24      cube     const struct kevent_ops *keops)
    904       1.1     lukem {
    905      1.25  christos 	struct proc	*p = l->l_proc;
    906       1.3  jdolecek 	struct kqueue	*kq;
    907       1.3  jdolecek 	struct kevent	*kevp;
    908       1.3  jdolecek 	struct timeval	atv;
    909      1.19  jdolecek 	struct knote	*kn, *marker=NULL;
    910      1.24      cube 	size_t		count, nkev, nevents;
    911       1.3  jdolecek 	int		s, timeout, error;
    912       1.1     lukem 
    913       1.3  jdolecek 	kq = (struct kqueue *)fp->f_data;
    914       1.1     lukem 	count = maxevents;
    915      1.24      cube 	nkev = nevents = error = 0;
    916       1.1     lukem 	if (count == 0)
    917       1.1     lukem 		goto done;
    918       1.1     lukem 
    919       1.9  jdolecek 	if (tsp) {				/* timeout supplied */
    920       1.1     lukem 		TIMESPEC_TO_TIMEVAL(&atv, tsp);
    921       1.1     lukem 		if (itimerfix(&atv)) {
    922       1.1     lukem 			error = EINVAL;
    923       1.1     lukem 			goto done;
    924       1.1     lukem 		}
    925  1.25.6.1    simonb 		timeout = tvtohz(&atv);
    926       1.9  jdolecek 		if (timeout <= 0)
    927       1.9  jdolecek 			timeout = -1;		/* do poll */
    928       1.1     lukem 	} else {
    929       1.9  jdolecek 		/* no timeout, wait forever */
    930       1.1     lukem 		timeout = 0;
    931       1.1     lukem 	}
    932      1.19  jdolecek 
    933      1.19  jdolecek 	MALLOC(marker, struct knote *, sizeof(*marker), M_KEVENT, M_WAITOK);
    934      1.19  jdolecek 	memset(marker, 0, sizeof(*marker));
    935      1.19  jdolecek 
    936       1.1     lukem 	goto start;
    937       1.1     lukem 
    938       1.3  jdolecek  retry:
    939       1.9  jdolecek 	if (tsp) {
    940       1.9  jdolecek 		/*
    941       1.9  jdolecek 		 * We have to recalculate the timeout on every retry.
    942       1.9  jdolecek 		 */
    943       1.9  jdolecek 		timeout = hzto(&atv);
    944       1.9  jdolecek 		if (timeout <= 0)
    945       1.9  jdolecek 			goto done;
    946       1.1     lukem 	}
    947       1.1     lukem 
    948       1.3  jdolecek  start:
    949       1.1     lukem 	kevp = kq->kq_kev;
    950      1.11        pk 	s = splsched();
    951      1.12        pk 	simple_lock(&kq->kq_lock);
    952       1.1     lukem 	if (kq->kq_count == 0) {
    953      1.22     perry 		if (timeout < 0) {
    954       1.1     lukem 			error = EWOULDBLOCK;
    955      1.17      fvdl 			simple_unlock(&kq->kq_lock);
    956       1.1     lukem 		} else {
    957       1.1     lukem 			kq->kq_state |= KQ_SLEEP;
    958      1.12        pk 			error = ltsleep(kq, PSOCK | PCATCH | PNORELOCK,
    959      1.12        pk 					"kqread", timeout, &kq->kq_lock);
    960       1.1     lukem 		}
    961       1.1     lukem 		splx(s);
    962       1.1     lukem 		if (error == 0)
    963       1.1     lukem 			goto retry;
    964       1.1     lukem 		/* don't restart after signals... */
    965       1.1     lukem 		if (error == ERESTART)
    966       1.1     lukem 			error = EINTR;
    967       1.1     lukem 		else if (error == EWOULDBLOCK)
    968       1.1     lukem 			error = 0;
    969       1.1     lukem 		goto done;
    970       1.1     lukem 	}
    971       1.1     lukem 
    972       1.3  jdolecek 	/* mark end of knote list */
    973      1.22     perry 	TAILQ_INSERT_TAIL(&kq->kq_head, marker, kn_tqe);
    974      1.12        pk 	simple_unlock(&kq->kq_lock);
    975       1.3  jdolecek 
    976       1.3  jdolecek 	while (count) {				/* while user wants data ... */
    977      1.12        pk 		simple_lock(&kq->kq_lock);
    978       1.3  jdolecek 		kn = TAILQ_FIRST(&kq->kq_head);	/* get next knote */
    979      1.22     perry 		TAILQ_REMOVE(&kq->kq_head, kn, kn_tqe);
    980      1.19  jdolecek 		if (kn == marker) {		/* if it's our marker, stop */
    981      1.12        pk 			/* What if it's some else's marker? */
    982      1.12        pk 			simple_unlock(&kq->kq_lock);
    983       1.1     lukem 			splx(s);
    984       1.1     lukem 			if (count == maxevents)
    985       1.1     lukem 				goto retry;
    986       1.1     lukem 			goto done;
    987       1.1     lukem 		}
    988      1.12        pk 		kq->kq_count--;
    989      1.12        pk 		simple_unlock(&kq->kq_lock);
    990      1.12        pk 
    991       1.1     lukem 		if (kn->kn_status & KN_DISABLED) {
    992       1.3  jdolecek 			/* don't want disabled events */
    993       1.1     lukem 			kn->kn_status &= ~KN_QUEUED;
    994       1.1     lukem 			continue;
    995       1.1     lukem 		}
    996       1.1     lukem 		if ((kn->kn_flags & EV_ONESHOT) == 0 &&
    997       1.1     lukem 		    kn->kn_fop->f_event(kn, 0) == 0) {
    998       1.3  jdolecek 			/*
    999       1.3  jdolecek 			 * non-ONESHOT event that hasn't
   1000       1.3  jdolecek 			 * triggered again, so de-queue.
   1001       1.3  jdolecek 			 */
   1002       1.1     lukem 			kn->kn_status &= ~(KN_QUEUED | KN_ACTIVE);
   1003       1.1     lukem 			continue;
   1004       1.1     lukem 		}
   1005       1.1     lukem 		*kevp = kn->kn_kevent;
   1006       1.1     lukem 		kevp++;
   1007       1.1     lukem 		nkev++;
   1008       1.1     lukem 		if (kn->kn_flags & EV_ONESHOT) {
   1009       1.3  jdolecek 			/* delete ONESHOT events after retrieval */
   1010       1.1     lukem 			kn->kn_status &= ~KN_QUEUED;
   1011       1.1     lukem 			splx(s);
   1012       1.1     lukem 			kn->kn_fop->f_detach(kn);
   1013      1.25  christos 			knote_drop(kn, l, p->p_fd);
   1014      1.11        pk 			s = splsched();
   1015       1.1     lukem 		} else if (kn->kn_flags & EV_CLEAR) {
   1016       1.3  jdolecek 			/* clear state after retrieval */
   1017       1.1     lukem 			kn->kn_data = 0;
   1018       1.1     lukem 			kn->kn_fflags = 0;
   1019       1.1     lukem 			kn->kn_status &= ~(KN_QUEUED | KN_ACTIVE);
   1020       1.1     lukem 		} else {
   1021       1.3  jdolecek 			/* add event back on list */
   1022      1.12        pk 			simple_lock(&kq->kq_lock);
   1023      1.22     perry 			TAILQ_INSERT_TAIL(&kq->kq_head, kn, kn_tqe);
   1024      1.12        pk 			kq->kq_count++;
   1025      1.12        pk 			simple_unlock(&kq->kq_lock);
   1026       1.1     lukem 		}
   1027       1.1     lukem 		count--;
   1028       1.1     lukem 		if (nkev == KQ_NEVENTS) {
   1029       1.3  jdolecek 			/* do copyouts in KQ_NEVENTS chunks */
   1030       1.1     lukem 			splx(s);
   1031      1.24      cube 			error = (*keops->keo_put_events)(keops->keo_private,
   1032      1.24      cube 			    &kq->kq_kev[0], ulistp, nevents, nkev);
   1033      1.24      cube 			nevents += nkev;
   1034       1.1     lukem 			nkev = 0;
   1035       1.1     lukem 			kevp = kq->kq_kev;
   1036      1.11        pk 			s = splsched();
   1037       1.1     lukem 			if (error)
   1038       1.1     lukem 				break;
   1039       1.1     lukem 		}
   1040       1.1     lukem 	}
   1041       1.3  jdolecek 
   1042       1.3  jdolecek 	/* remove marker */
   1043      1.12        pk 	simple_lock(&kq->kq_lock);
   1044      1.22     perry 	TAILQ_REMOVE(&kq->kq_head, marker, kn_tqe);
   1045      1.12        pk 	simple_unlock(&kq->kq_lock);
   1046       1.1     lukem 	splx(s);
   1047       1.3  jdolecek  done:
   1048      1.19  jdolecek 	if (marker)
   1049      1.19  jdolecek 		FREE(marker, M_KEVENT);
   1050      1.19  jdolecek 
   1051      1.24      cube 	if (nkev != 0)
   1052       1.3  jdolecek 		/* copyout remaining events */
   1053      1.24      cube 		error = (*keops->keo_put_events)(keops->keo_private,
   1054      1.24      cube 		    &kq->kq_kev[0], ulistp, nevents, nkev);
   1055       1.3  jdolecek 	*retval = maxevents - count;
   1056       1.3  jdolecek 
   1057       1.1     lukem 	return (error);
   1058       1.1     lukem }
   1059       1.1     lukem 
   1060       1.1     lukem /*
   1061       1.3  jdolecek  * struct fileops read method for a kqueue descriptor.
   1062       1.3  jdolecek  * Not implemented.
   1063       1.3  jdolecek  * XXX: This could be expanded to call kqueue_scan, if desired.
   1064       1.1     lukem  */
   1065       1.1     lukem /*ARGSUSED*/
   1066       1.1     lukem static int
   1067       1.3  jdolecek kqueue_read(struct file *fp, off_t *offset, struct uio *uio,
   1068       1.3  jdolecek 	struct ucred *cred, int flags)
   1069       1.1     lukem {
   1070       1.3  jdolecek 
   1071       1.1     lukem 	return (ENXIO);
   1072       1.1     lukem }
   1073       1.1     lukem 
   1074       1.3  jdolecek /*
   1075       1.3  jdolecek  * struct fileops write method for a kqueue descriptor.
   1076       1.3  jdolecek  * Not implemented.
   1077       1.3  jdolecek  */
   1078       1.1     lukem /*ARGSUSED*/
   1079       1.1     lukem static int
   1080       1.3  jdolecek kqueue_write(struct file *fp, off_t *offset, struct uio *uio,
   1081       1.3  jdolecek 	struct ucred *cred, int flags)
   1082       1.1     lukem {
   1083       1.3  jdolecek 
   1084       1.1     lukem 	return (ENXIO);
   1085       1.1     lukem }
   1086       1.1     lukem 
   1087       1.3  jdolecek /*
   1088       1.3  jdolecek  * struct fileops ioctl method for a kqueue descriptor.
   1089       1.3  jdolecek  *
   1090       1.3  jdolecek  * Two ioctls are currently supported. They both use struct kfilter_mapping:
   1091       1.3  jdolecek  *	KFILTER_BYNAME		find name for filter, and return result in
   1092       1.3  jdolecek  *				name, which is of size len.
   1093       1.3  jdolecek  *	KFILTER_BYFILTER	find filter for name. len is ignored.
   1094       1.3  jdolecek  */
   1095       1.1     lukem /*ARGSUSED*/
   1096       1.1     lukem static int
   1097      1.25  christos kqueue_ioctl(struct file *fp, u_long com, void *data, struct lwp *l)
   1098       1.1     lukem {
   1099       1.3  jdolecek 	struct kfilter_mapping	*km;
   1100       1.3  jdolecek 	const struct kfilter	*kfilter;
   1101       1.3  jdolecek 	char			*name;
   1102       1.3  jdolecek 	int			error;
   1103       1.3  jdolecek 
   1104      1.22     perry 	km = (struct kfilter_mapping *)data;
   1105       1.3  jdolecek 	error = 0;
   1106       1.3  jdolecek 
   1107       1.3  jdolecek 	switch (com) {
   1108       1.3  jdolecek 	case KFILTER_BYFILTER:	/* convert filter -> name */
   1109       1.3  jdolecek 		kfilter = kfilter_byfilter(km->filter);
   1110       1.3  jdolecek 		if (kfilter != NULL)
   1111       1.3  jdolecek 			error = copyoutstr(kfilter->name, km->name, km->len,
   1112       1.3  jdolecek 			    NULL);
   1113       1.3  jdolecek 		else
   1114       1.3  jdolecek 			error = ENOENT;
   1115       1.3  jdolecek 		break;
   1116       1.3  jdolecek 
   1117       1.3  jdolecek 	case KFILTER_BYNAME:	/* convert name -> filter */
   1118       1.3  jdolecek 		MALLOC(name, char *, KFILTER_MAXNAME, M_KEVENT, M_WAITOK);
   1119       1.3  jdolecek 		error = copyinstr(km->name, name, KFILTER_MAXNAME, NULL);
   1120       1.3  jdolecek 		if (error) {
   1121       1.3  jdolecek 			FREE(name, M_KEVENT);
   1122       1.3  jdolecek 			break;
   1123       1.3  jdolecek 		}
   1124       1.3  jdolecek 		kfilter = kfilter_byname(name);
   1125       1.3  jdolecek 		if (kfilter != NULL)
   1126       1.3  jdolecek 			km->filter = kfilter->filter;
   1127       1.3  jdolecek 		else
   1128       1.3  jdolecek 			error = ENOENT;
   1129       1.3  jdolecek 		FREE(name, M_KEVENT);
   1130       1.3  jdolecek 		break;
   1131       1.3  jdolecek 
   1132       1.3  jdolecek 	default:
   1133       1.3  jdolecek 		error = ENOTTY;
   1134       1.3  jdolecek 
   1135       1.3  jdolecek 	}
   1136       1.3  jdolecek 	return (error);
   1137       1.3  jdolecek }
   1138       1.3  jdolecek 
   1139       1.3  jdolecek /*
   1140       1.3  jdolecek  * struct fileops fcntl method for a kqueue descriptor.
   1141       1.3  jdolecek  * Not implemented.
   1142       1.3  jdolecek  */
   1143       1.3  jdolecek /*ARGSUSED*/
   1144       1.3  jdolecek static int
   1145      1.25  christos kqueue_fcntl(struct file *fp, u_int com, void *data, struct lwp *l)
   1146       1.3  jdolecek {
   1147       1.3  jdolecek 
   1148       1.1     lukem 	return (ENOTTY);
   1149       1.1     lukem }
   1150       1.1     lukem 
   1151       1.3  jdolecek /*
   1152       1.3  jdolecek  * struct fileops poll method for a kqueue descriptor.
   1153       1.3  jdolecek  * Determine if kqueue has events pending.
   1154       1.3  jdolecek  */
   1155       1.1     lukem static int
   1156      1.25  christos kqueue_poll(struct file *fp, int events, struct lwp *l)
   1157       1.1     lukem {
   1158       1.3  jdolecek 	struct kqueue	*kq;
   1159       1.3  jdolecek 	int		revents;
   1160       1.3  jdolecek 
   1161       1.3  jdolecek 	kq = (struct kqueue *)fp->f_data;
   1162       1.3  jdolecek 	revents = 0;
   1163       1.3  jdolecek 	if (events & (POLLIN | POLLRDNORM)) {
   1164       1.3  jdolecek 		if (kq->kq_count) {
   1165       1.3  jdolecek 			revents |= events & (POLLIN | POLLRDNORM);
   1166       1.1     lukem 		} else {
   1167      1.25  christos 			selrecord(l, &kq->kq_sel);
   1168       1.1     lukem 		}
   1169       1.1     lukem 	}
   1170       1.1     lukem 	return (revents);
   1171       1.1     lukem }
   1172       1.1     lukem 
   1173       1.3  jdolecek /*
   1174       1.3  jdolecek  * struct fileops stat method for a kqueue descriptor.
   1175       1.3  jdolecek  * Returns dummy info, with st_size being number of events pending.
   1176       1.3  jdolecek  */
   1177       1.1     lukem static int
   1178      1.25  christos kqueue_stat(struct file *fp, struct stat *st, struct lwp *l)
   1179       1.1     lukem {
   1180       1.3  jdolecek 	struct kqueue	*kq;
   1181       1.1     lukem 
   1182       1.3  jdolecek 	kq = (struct kqueue *)fp->f_data;
   1183       1.3  jdolecek 	memset((void *)st, 0, sizeof(*st));
   1184       1.1     lukem 	st->st_size = kq->kq_count;
   1185       1.1     lukem 	st->st_blksize = sizeof(struct kevent);
   1186       1.1     lukem 	st->st_mode = S_IFIFO;
   1187       1.1     lukem 	return (0);
   1188       1.1     lukem }
   1189       1.1     lukem 
   1190       1.3  jdolecek /*
   1191       1.3  jdolecek  * struct fileops close method for a kqueue descriptor.
   1192       1.3  jdolecek  * Cleans up kqueue.
   1193       1.3  jdolecek  */
   1194       1.1     lukem static int
   1195      1.25  christos kqueue_close(struct file *fp, struct lwp *l)
   1196       1.1     lukem {
   1197      1.25  christos 	struct proc	*p = l->l_proc;
   1198       1.3  jdolecek 	struct kqueue	*kq;
   1199      1.16      fvdl 	struct filedesc	*fdp;
   1200      1.15   darrenr 	struct knote	**knp, *kn, *kn0;
   1201       1.3  jdolecek 	int		i;
   1202       1.1     lukem 
   1203       1.3  jdolecek 	kq = (struct kqueue *)fp->f_data;
   1204       1.3  jdolecek 	fdp = p->p_fd;
   1205       1.1     lukem 	for (i = 0; i < fdp->fd_knlistsize; i++) {
   1206       1.1     lukem 		knp = &SLIST_FIRST(&fdp->fd_knlist[i]);
   1207       1.1     lukem 		kn = *knp;
   1208       1.1     lukem 		while (kn != NULL) {
   1209       1.1     lukem 			kn0 = SLIST_NEXT(kn, kn_link);
   1210       1.1     lukem 			if (kq == kn->kn_kq) {
   1211       1.1     lukem 				kn->kn_fop->f_detach(kn);
   1212      1.25  christos 				FILE_UNUSE(kn->kn_fp, l);
   1213       1.3  jdolecek 				pool_put(&knote_pool, kn);
   1214       1.1     lukem 				*knp = kn0;
   1215       1.1     lukem 			} else {
   1216       1.1     lukem 				knp = &SLIST_NEXT(kn, kn_link);
   1217       1.1     lukem 			}
   1218       1.1     lukem 			kn = kn0;
   1219       1.1     lukem 		}
   1220       1.1     lukem 	}
   1221       1.1     lukem 	if (fdp->fd_knhashmask != 0) {
   1222       1.1     lukem 		for (i = 0; i < fdp->fd_knhashmask + 1; i++) {
   1223       1.1     lukem 			knp = &SLIST_FIRST(&fdp->fd_knhash[i]);
   1224       1.1     lukem 			kn = *knp;
   1225       1.1     lukem 			while (kn != NULL) {
   1226       1.1     lukem 				kn0 = SLIST_NEXT(kn, kn_link);
   1227       1.1     lukem 				if (kq == kn->kn_kq) {
   1228       1.1     lukem 					kn->kn_fop->f_detach(kn);
   1229       1.3  jdolecek 					/* XXX non-fd release of kn->kn_ptr */
   1230       1.3  jdolecek 					pool_put(&knote_pool, kn);
   1231       1.1     lukem 					*knp = kn0;
   1232       1.1     lukem 				} else {
   1233       1.1     lukem 					knp = &SLIST_NEXT(kn, kn_link);
   1234       1.1     lukem 				}
   1235       1.1     lukem 				kn = kn0;
   1236       1.1     lukem 			}
   1237       1.1     lukem 		}
   1238       1.1     lukem 	}
   1239       1.3  jdolecek 	pool_put(&kqueue_pool, kq);
   1240       1.1     lukem 	fp->f_data = NULL;
   1241       1.1     lukem 
   1242       1.1     lukem 	return (0);
   1243       1.1     lukem }
   1244       1.1     lukem 
   1245       1.3  jdolecek /*
   1246       1.3  jdolecek  * wakeup a kqueue
   1247       1.3  jdolecek  */
   1248       1.1     lukem static void
   1249       1.1     lukem kqueue_wakeup(struct kqueue *kq)
   1250       1.1     lukem {
   1251      1.12        pk 	int s;
   1252       1.1     lukem 
   1253      1.12        pk 	s = splsched();
   1254      1.12        pk 	simple_lock(&kq->kq_lock);
   1255       1.3  jdolecek 	if (kq->kq_state & KQ_SLEEP) {		/* if currently sleeping ...  */
   1256       1.1     lukem 		kq->kq_state &= ~KQ_SLEEP;
   1257       1.3  jdolecek 		wakeup(kq);			/* ... wakeup */
   1258       1.1     lukem 	}
   1259       1.3  jdolecek 
   1260       1.3  jdolecek 	/* Notify select/poll and kevent. */
   1261       1.3  jdolecek 	selnotify(&kq->kq_sel, 0);
   1262      1.12        pk 	simple_unlock(&kq->kq_lock);
   1263      1.12        pk 	splx(s);
   1264       1.1     lukem }
   1265       1.1     lukem 
   1266       1.1     lukem /*
   1267       1.3  jdolecek  * struct fileops kqfilter method for a kqueue descriptor.
   1268       1.3  jdolecek  * Event triggered when monitored kqueue changes.
   1269       1.3  jdolecek  */
   1270       1.3  jdolecek /*ARGSUSED*/
   1271       1.3  jdolecek static int
   1272       1.3  jdolecek kqueue_kqfilter(struct file *fp, struct knote *kn)
   1273       1.3  jdolecek {
   1274       1.3  jdolecek 	struct kqueue *kq;
   1275       1.3  jdolecek 
   1276       1.3  jdolecek 	KASSERT(fp == kn->kn_fp);
   1277       1.3  jdolecek 	kq = (struct kqueue *)kn->kn_fp->f_data;
   1278       1.3  jdolecek 	if (kn->kn_filter != EVFILT_READ)
   1279       1.3  jdolecek 		return (1);
   1280       1.3  jdolecek 	kn->kn_fop = &kqread_filtops;
   1281       1.5  christos 	SLIST_INSERT_HEAD(&kq->kq_sel.sel_klist, kn, kn_selnext);
   1282       1.3  jdolecek 	return (0);
   1283       1.3  jdolecek }
   1284       1.3  jdolecek 
   1285       1.3  jdolecek 
   1286       1.3  jdolecek /*
   1287       1.3  jdolecek  * Walk down a list of knotes, activating them if their event has triggered.
   1288       1.1     lukem  */
   1289       1.1     lukem void
   1290       1.1     lukem knote(struct klist *list, long hint)
   1291       1.1     lukem {
   1292       1.1     lukem 	struct knote *kn;
   1293       1.1     lukem 
   1294       1.1     lukem 	SLIST_FOREACH(kn, list, kn_selnext)
   1295       1.1     lukem 		if (kn->kn_fop->f_event(kn, hint))
   1296       1.1     lukem 			KNOTE_ACTIVATE(kn);
   1297       1.1     lukem }
   1298       1.1     lukem 
   1299       1.1     lukem /*
   1300       1.3  jdolecek  * Remove all knotes from a specified klist
   1301       1.1     lukem  */
   1302       1.1     lukem void
   1303      1.25  christos knote_remove(struct lwp *l, struct klist *list)
   1304       1.1     lukem {
   1305       1.1     lukem 	struct knote *kn;
   1306       1.1     lukem 
   1307       1.1     lukem 	while ((kn = SLIST_FIRST(list)) != NULL) {
   1308       1.1     lukem 		kn->kn_fop->f_detach(kn);
   1309      1.25  christos 		knote_drop(kn, l, l->l_proc->p_fd);
   1310       1.1     lukem 	}
   1311       1.1     lukem }
   1312       1.1     lukem 
   1313       1.1     lukem /*
   1314       1.3  jdolecek  * Remove all knotes referencing a specified fd
   1315       1.1     lukem  */
   1316       1.1     lukem void
   1317      1.25  christos knote_fdclose(struct lwp *l, int fd)
   1318       1.1     lukem {
   1319       1.3  jdolecek 	struct filedesc	*fdp;
   1320       1.3  jdolecek 	struct klist	*list;
   1321       1.1     lukem 
   1322      1.25  christos 	fdp = l->l_proc->p_fd;
   1323       1.3  jdolecek 	list = &fdp->fd_knlist[fd];
   1324      1.25  christos 	knote_remove(l, list);
   1325       1.1     lukem }
   1326       1.1     lukem 
   1327       1.3  jdolecek /*
   1328       1.3  jdolecek  * Attach a new knote to a file descriptor
   1329       1.3  jdolecek  */
   1330       1.1     lukem static void
   1331       1.1     lukem knote_attach(struct knote *kn, struct filedesc *fdp)
   1332       1.1     lukem {
   1333       1.3  jdolecek 	struct klist	*list;
   1334       1.3  jdolecek 	int		size;
   1335       1.1     lukem 
   1336       1.1     lukem 	if (! kn->kn_fop->f_isfd) {
   1337       1.3  jdolecek 		/* if knote is not on an fd, store on internal hash table */
   1338       1.1     lukem 		if (fdp->fd_knhashmask == 0)
   1339       1.3  jdolecek 			fdp->fd_knhash = hashinit(KN_HASHSIZE, HASH_LIST,
   1340       1.3  jdolecek 			    M_KEVENT, M_WAITOK, &fdp->fd_knhashmask);
   1341       1.1     lukem 		list = &fdp->fd_knhash[KN_HASH(kn->kn_id, fdp->fd_knhashmask)];
   1342       1.1     lukem 		goto done;
   1343       1.1     lukem 	}
   1344       1.1     lukem 
   1345       1.3  jdolecek 	/*
   1346       1.3  jdolecek 	 * otherwise, knote is on an fd.
   1347       1.3  jdolecek 	 * knotes are stored in fd_knlist indexed by kn->kn_id.
   1348       1.3  jdolecek 	 */
   1349       1.1     lukem 	if (fdp->fd_knlistsize <= kn->kn_id) {
   1350       1.3  jdolecek 		/* expand list, it's too small */
   1351       1.1     lukem 		size = fdp->fd_knlistsize;
   1352       1.3  jdolecek 		while (size <= kn->kn_id) {
   1353       1.3  jdolecek 			/* grow in KQ_EXTENT chunks */
   1354       1.3  jdolecek 			size += KQ_EXTENT;
   1355       1.3  jdolecek 		}
   1356       1.3  jdolecek 		list = malloc(size * sizeof(struct klist *), M_KEVENT,M_WAITOK);
   1357       1.3  jdolecek 		if (fdp->fd_knlist) {
   1358       1.3  jdolecek 			/* copy existing knlist */
   1359       1.3  jdolecek 			memcpy((caddr_t)list, (caddr_t)fdp->fd_knlist,
   1360       1.3  jdolecek 			    fdp->fd_knlistsize * sizeof(struct klist *));
   1361       1.3  jdolecek 		}
   1362       1.3  jdolecek 		/*
   1363       1.3  jdolecek 		 * Zero new memory. Stylistically, SLIST_INIT() should be
   1364       1.3  jdolecek 		 * used here, but that does same thing as the memset() anyway.
   1365       1.3  jdolecek 		 */
   1366       1.3  jdolecek 		memset(&list[fdp->fd_knlistsize], 0,
   1367       1.1     lukem 		    (size - fdp->fd_knlistsize) * sizeof(struct klist *));
   1368       1.3  jdolecek 
   1369       1.3  jdolecek 		/* switch to new knlist */
   1370       1.1     lukem 		if (fdp->fd_knlist != NULL)
   1371       1.3  jdolecek 			free(fdp->fd_knlist, M_KEVENT);
   1372       1.1     lukem 		fdp->fd_knlistsize = size;
   1373       1.1     lukem 		fdp->fd_knlist = list;
   1374       1.1     lukem 	}
   1375       1.3  jdolecek 
   1376       1.3  jdolecek 	/* get list head for this fd */
   1377       1.1     lukem 	list = &fdp->fd_knlist[kn->kn_id];
   1378       1.3  jdolecek  done:
   1379       1.3  jdolecek 	/* add new knote */
   1380       1.1     lukem 	SLIST_INSERT_HEAD(list, kn, kn_link);
   1381       1.1     lukem 	kn->kn_status = 0;
   1382       1.1     lukem }
   1383       1.1     lukem 
   1384       1.1     lukem /*
   1385       1.3  jdolecek  * Drop knote.
   1386       1.3  jdolecek  * Should be called at spl == 0, since we don't want to hold spl
   1387       1.3  jdolecek  * while calling FILE_UNUSE and free.
   1388       1.1     lukem  */
   1389       1.1     lukem static void
   1390      1.25  christos knote_drop(struct knote *kn, struct lwp *l, struct filedesc *fdp)
   1391       1.1     lukem {
   1392       1.3  jdolecek 	struct klist	*list;
   1393       1.1     lukem 
   1394       1.1     lukem 	if (kn->kn_fop->f_isfd)
   1395       1.1     lukem 		list = &fdp->fd_knlist[kn->kn_id];
   1396       1.1     lukem 	else
   1397       1.1     lukem 		list = &fdp->fd_knhash[KN_HASH(kn->kn_id, fdp->fd_knhashmask)];
   1398       1.1     lukem 
   1399       1.1     lukem 	SLIST_REMOVE(list, kn, knote, kn_link);
   1400       1.1     lukem 	if (kn->kn_status & KN_QUEUED)
   1401       1.1     lukem 		knote_dequeue(kn);
   1402       1.1     lukem 	if (kn->kn_fop->f_isfd)
   1403      1.25  christos 		FILE_UNUSE(kn->kn_fp, l);
   1404       1.3  jdolecek 	pool_put(&knote_pool, kn);
   1405       1.1     lukem }
   1406       1.1     lukem 
   1407       1.1     lukem 
   1408       1.3  jdolecek /*
   1409       1.3  jdolecek  * Queue new event for knote.
   1410       1.3  jdolecek  */
   1411       1.1     lukem static void
   1412       1.1     lukem knote_enqueue(struct knote *kn)
   1413       1.1     lukem {
   1414       1.3  jdolecek 	struct kqueue	*kq;
   1415       1.3  jdolecek 	int		s;
   1416       1.1     lukem 
   1417       1.3  jdolecek 	kq = kn->kn_kq;
   1418       1.3  jdolecek 	KASSERT((kn->kn_status & KN_QUEUED) == 0);
   1419       1.1     lukem 
   1420      1.12        pk 	s = splsched();
   1421      1.12        pk 	simple_lock(&kq->kq_lock);
   1422      1.22     perry 	TAILQ_INSERT_TAIL(&kq->kq_head, kn, kn_tqe);
   1423       1.1     lukem 	kn->kn_status |= KN_QUEUED;
   1424       1.1     lukem 	kq->kq_count++;
   1425      1.12        pk 	simple_unlock(&kq->kq_lock);
   1426       1.1     lukem 	splx(s);
   1427       1.1     lukem 	kqueue_wakeup(kq);
   1428       1.1     lukem }
   1429       1.1     lukem 
   1430       1.3  jdolecek /*
   1431       1.3  jdolecek  * Dequeue event for knote.
   1432       1.3  jdolecek  */
   1433       1.1     lukem static void
   1434       1.1     lukem knote_dequeue(struct knote *kn)
   1435       1.1     lukem {
   1436       1.3  jdolecek 	struct kqueue	*kq;
   1437       1.3  jdolecek 	int		s;
   1438       1.1     lukem 
   1439      1.12        pk 	KASSERT(kn->kn_status & KN_QUEUED);
   1440       1.3  jdolecek 	kq = kn->kn_kq;
   1441      1.12        pk 
   1442      1.11        pk 	s = splsched();
   1443      1.12        pk 	simple_lock(&kq->kq_lock);
   1444      1.22     perry 	TAILQ_REMOVE(&kq->kq_head, kn, kn_tqe);
   1445       1.1     lukem 	kn->kn_status &= ~KN_QUEUED;
   1446       1.1     lukem 	kq->kq_count--;
   1447      1.12        pk 	simple_unlock(&kq->kq_lock);
   1448       1.1     lukem 	splx(s);
   1449       1.1     lukem }
   1450