kern_event.c revision 1.18 1 1.18 jdolecek /* $NetBSD: kern_event.c,v 1.18 2004/01/11 18:51:15 jdolecek Exp $ */
2 1.1 lukem /*-
3 1.1 lukem * Copyright (c) 1999,2000,2001 Jonathan Lemon <jlemon (at) FreeBSD.org>
4 1.1 lukem * All rights reserved.
5 1.1 lukem *
6 1.1 lukem * Redistribution and use in source and binary forms, with or without
7 1.1 lukem * modification, are permitted provided that the following conditions
8 1.1 lukem * are met:
9 1.1 lukem * 1. Redistributions of source code must retain the above copyright
10 1.1 lukem * notice, this list of conditions and the following disclaimer.
11 1.1 lukem * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 lukem * notice, this list of conditions and the following disclaimer in the
13 1.1 lukem * documentation and/or other materials provided with the distribution.
14 1.1 lukem *
15 1.1 lukem * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 1.1 lukem * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 1.1 lukem * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 1.1 lukem * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 1.1 lukem * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 1.1 lukem * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 1.1 lukem * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 1.1 lukem * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 1.1 lukem * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 lukem * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 lukem * SUCH DAMAGE.
26 1.1 lukem *
27 1.1 lukem * $FreeBSD: src/sys/kern/kern_event.c,v 1.27 2001/07/05 17:10:44 rwatson Exp $
28 1.1 lukem */
29 1.14 jdolecek
30 1.14 jdolecek #include <sys/cdefs.h>
31 1.18 jdolecek __KERNEL_RCSID(0, "$NetBSD: kern_event.c,v 1.18 2004/01/11 18:51:15 jdolecek Exp $");
32 1.1 lukem
33 1.1 lukem #include <sys/param.h>
34 1.1 lukem #include <sys/systm.h>
35 1.1 lukem #include <sys/kernel.h>
36 1.1 lukem #include <sys/proc.h>
37 1.1 lukem #include <sys/malloc.h>
38 1.1 lukem #include <sys/unistd.h>
39 1.1 lukem #include <sys/file.h>
40 1.1 lukem #include <sys/fcntl.h>
41 1.3 jdolecek #include <sys/select.h>
42 1.1 lukem #include <sys/queue.h>
43 1.1 lukem #include <sys/event.h>
44 1.1 lukem #include <sys/eventvar.h>
45 1.1 lukem #include <sys/poll.h>
46 1.3 jdolecek #include <sys/pool.h>
47 1.1 lukem #include <sys/protosw.h>
48 1.1 lukem #include <sys/socket.h>
49 1.1 lukem #include <sys/socketvar.h>
50 1.1 lukem #include <sys/stat.h>
51 1.1 lukem #include <sys/uio.h>
52 1.3 jdolecek #include <sys/mount.h>
53 1.3 jdolecek #include <sys/filedesc.h>
54 1.6 thorpej #include <sys/sa.h>
55 1.3 jdolecek #include <sys/syscallargs.h>
56 1.1 lukem
57 1.3 jdolecek static int kqueue_scan(struct file *fp, size_t maxevents,
58 1.3 jdolecek struct kevent *ulistp, const struct timespec *timeout,
59 1.16 fvdl struct proc *p, register_t *retval);
60 1.3 jdolecek static void kqueue_wakeup(struct kqueue *kq);
61 1.1 lukem
62 1.3 jdolecek static int kqueue_read(struct file *fp, off_t *offset, struct uio *uio,
63 1.3 jdolecek struct ucred *cred, int flags);
64 1.3 jdolecek static int kqueue_write(struct file *fp, off_t *offset, struct uio *uio,
65 1.3 jdolecek struct ucred *cred, int flags);
66 1.13 dsl static int kqueue_ioctl(struct file *fp, u_long com, void *data,
67 1.16 fvdl struct proc *p);
68 1.13 dsl static int kqueue_fcntl(struct file *fp, u_int com, void *data,
69 1.16 fvdl struct proc *p);
70 1.16 fvdl static int kqueue_poll(struct file *fp, int events, struct proc *p);
71 1.3 jdolecek static int kqueue_kqfilter(struct file *fp, struct knote *kn);
72 1.16 fvdl static int kqueue_stat(struct file *fp, struct stat *sp, struct proc *p);
73 1.16 fvdl static int kqueue_close(struct file *fp, struct proc *p);
74 1.1 lukem
75 1.1 lukem static struct fileops kqueueops = {
76 1.3 jdolecek kqueue_read, kqueue_write, kqueue_ioctl, kqueue_fcntl, kqueue_poll,
77 1.3 jdolecek kqueue_stat, kqueue_close, kqueue_kqfilter
78 1.1 lukem };
79 1.1 lukem
80 1.3 jdolecek static void knote_attach(struct knote *kn, struct filedesc *fdp);
81 1.16 fvdl static void knote_drop(struct knote *kn, struct proc *p,
82 1.3 jdolecek struct filedesc *fdp);
83 1.3 jdolecek static void knote_enqueue(struct knote *kn);
84 1.3 jdolecek static void knote_dequeue(struct knote *kn);
85 1.1 lukem
86 1.1 lukem static void filt_kqdetach(struct knote *kn);
87 1.1 lukem static int filt_kqueue(struct knote *kn, long hint);
88 1.1 lukem static int filt_procattach(struct knote *kn);
89 1.1 lukem static void filt_procdetach(struct knote *kn);
90 1.1 lukem static int filt_proc(struct knote *kn, long hint);
91 1.1 lukem static int filt_fileattach(struct knote *kn);
92 1.8 jdolecek static void filt_timerexpire(void *knx);
93 1.8 jdolecek static int filt_timerattach(struct knote *kn);
94 1.8 jdolecek static void filt_timerdetach(struct knote *kn);
95 1.8 jdolecek static int filt_timer(struct knote *kn, long hint);
96 1.1 lukem
97 1.3 jdolecek static const struct filterops kqread_filtops =
98 1.1 lukem { 1, NULL, filt_kqdetach, filt_kqueue };
99 1.3 jdolecek static const struct filterops proc_filtops =
100 1.1 lukem { 0, filt_procattach, filt_procdetach, filt_proc };
101 1.3 jdolecek static const struct filterops file_filtops =
102 1.1 lukem { 1, filt_fileattach, NULL, NULL };
103 1.8 jdolecek static struct filterops timer_filtops =
104 1.8 jdolecek { 0, filt_timerattach, filt_timerdetach, filt_timer };
105 1.1 lukem
106 1.3 jdolecek struct pool kqueue_pool;
107 1.3 jdolecek struct pool knote_pool;
108 1.8 jdolecek static int kq_ncallouts = 0;
109 1.8 jdolecek static int kq_calloutmax = (4 * 1024);
110 1.7 thorpej
111 1.7 thorpej MALLOC_DEFINE(M_KEVENT, "kevent", "kevents/knotes");
112 1.1 lukem
113 1.3 jdolecek #define KNOTE_ACTIVATE(kn) \
114 1.3 jdolecek do { \
115 1.1 lukem kn->kn_status |= KN_ACTIVE; \
116 1.1 lukem if ((kn->kn_status & (KN_QUEUED | KN_DISABLED)) == 0) \
117 1.1 lukem knote_enqueue(kn); \
118 1.1 lukem } while(0)
119 1.1 lukem
120 1.1 lukem #define KN_HASHSIZE 64 /* XXX should be tunable */
121 1.3 jdolecek #define KN_HASH(val, mask) (((val) ^ (val >> 8)) & (mask))
122 1.1 lukem
123 1.3 jdolecek extern const struct filterops sig_filtops;
124 1.1 lukem
125 1.1 lukem /*
126 1.1 lukem * Table for for all system-defined filters.
127 1.3 jdolecek * These should be listed in the numeric order of the EVFILT_* defines.
128 1.3 jdolecek * If filtops is NULL, the filter isn't implemented in NetBSD.
129 1.3 jdolecek * End of list is when name is NULL.
130 1.1 lukem */
131 1.3 jdolecek struct kfilter {
132 1.3 jdolecek const char *name; /* name of filter */
133 1.3 jdolecek uint32_t filter; /* id of filter */
134 1.3 jdolecek const struct filterops *filtops;/* operations for filter */
135 1.3 jdolecek };
136 1.3 jdolecek
137 1.3 jdolecek /* System defined filters */
138 1.3 jdolecek static const struct kfilter sys_kfilters[] = {
139 1.3 jdolecek { "EVFILT_READ", EVFILT_READ, &file_filtops },
140 1.3 jdolecek { "EVFILT_WRITE", EVFILT_WRITE, &file_filtops },
141 1.3 jdolecek { "EVFILT_AIO", EVFILT_AIO, NULL },
142 1.3 jdolecek { "EVFILT_VNODE", EVFILT_VNODE, &file_filtops },
143 1.3 jdolecek { "EVFILT_PROC", EVFILT_PROC, &proc_filtops },
144 1.3 jdolecek { "EVFILT_SIGNAL", EVFILT_SIGNAL, &sig_filtops },
145 1.8 jdolecek { "EVFILT_TIMER", EVFILT_TIMER, &timer_filtops },
146 1.3 jdolecek { NULL, 0, NULL }, /* end of list */
147 1.1 lukem };
148 1.1 lukem
149 1.3 jdolecek /* User defined kfilters */
150 1.3 jdolecek static struct kfilter *user_kfilters; /* array */
151 1.3 jdolecek static int user_kfilterc; /* current offset */
152 1.3 jdolecek static int user_kfiltermaxc; /* max size so far */
153 1.3 jdolecek
154 1.3 jdolecek /*
155 1.3 jdolecek * kqueue_init:
156 1.3 jdolecek *
157 1.3 jdolecek * Initialize the kqueue/knote facility.
158 1.3 jdolecek */
159 1.3 jdolecek void
160 1.3 jdolecek kqueue_init(void)
161 1.3 jdolecek {
162 1.3 jdolecek
163 1.3 jdolecek pool_init(&kqueue_pool, sizeof(struct kqueue), 0, 0, 0, "kqueuepl",
164 1.3 jdolecek NULL);
165 1.3 jdolecek pool_init(&knote_pool, sizeof(struct knote), 0, 0, 0, "knotepl",
166 1.3 jdolecek NULL);
167 1.3 jdolecek }
168 1.3 jdolecek
169 1.3 jdolecek /*
170 1.3 jdolecek * Find kfilter entry by name, or NULL if not found.
171 1.3 jdolecek */
172 1.3 jdolecek static const struct kfilter *
173 1.3 jdolecek kfilter_byname_sys(const char *name)
174 1.3 jdolecek {
175 1.3 jdolecek int i;
176 1.3 jdolecek
177 1.3 jdolecek for (i = 0; sys_kfilters[i].name != NULL; i++) {
178 1.3 jdolecek if (strcmp(name, sys_kfilters[i].name) == 0)
179 1.3 jdolecek return (&sys_kfilters[i]);
180 1.3 jdolecek }
181 1.3 jdolecek return (NULL);
182 1.3 jdolecek }
183 1.3 jdolecek
184 1.3 jdolecek static struct kfilter *
185 1.3 jdolecek kfilter_byname_user(const char *name)
186 1.3 jdolecek {
187 1.3 jdolecek int i;
188 1.3 jdolecek
189 1.3 jdolecek /* user_kfilters[] could be NULL if no filters were registered */
190 1.3 jdolecek if (!user_kfilters)
191 1.3 jdolecek return (NULL);
192 1.3 jdolecek
193 1.3 jdolecek for (i = 0; user_kfilters[i].name != NULL; i++) {
194 1.3 jdolecek if (user_kfilters[i].name != '\0' &&
195 1.3 jdolecek strcmp(name, user_kfilters[i].name) == 0)
196 1.3 jdolecek return (&user_kfilters[i]);
197 1.3 jdolecek }
198 1.3 jdolecek return (NULL);
199 1.3 jdolecek }
200 1.3 jdolecek
201 1.3 jdolecek static const struct kfilter *
202 1.3 jdolecek kfilter_byname(const char *name)
203 1.3 jdolecek {
204 1.3 jdolecek const struct kfilter *kfilter;
205 1.3 jdolecek
206 1.3 jdolecek if ((kfilter = kfilter_byname_sys(name)) != NULL)
207 1.3 jdolecek return (kfilter);
208 1.3 jdolecek
209 1.3 jdolecek return (kfilter_byname_user(name));
210 1.3 jdolecek }
211 1.3 jdolecek
212 1.3 jdolecek /*
213 1.3 jdolecek * Find kfilter entry by filter id, or NULL if not found.
214 1.3 jdolecek * Assumes entries are indexed in filter id order, for speed.
215 1.3 jdolecek */
216 1.3 jdolecek static const struct kfilter *
217 1.3 jdolecek kfilter_byfilter(uint32_t filter)
218 1.3 jdolecek {
219 1.3 jdolecek const struct kfilter *kfilter;
220 1.3 jdolecek
221 1.3 jdolecek if (filter < EVFILT_SYSCOUNT) /* it's a system filter */
222 1.3 jdolecek kfilter = &sys_kfilters[filter];
223 1.3 jdolecek else if (user_kfilters != NULL &&
224 1.3 jdolecek filter < EVFILT_SYSCOUNT + user_kfilterc)
225 1.3 jdolecek /* it's a user filter */
226 1.3 jdolecek kfilter = &user_kfilters[filter - EVFILT_SYSCOUNT];
227 1.3 jdolecek else
228 1.3 jdolecek return (NULL); /* out of range */
229 1.3 jdolecek KASSERT(kfilter->filter == filter); /* sanity check! */
230 1.3 jdolecek return (kfilter);
231 1.3 jdolecek }
232 1.3 jdolecek
233 1.3 jdolecek /*
234 1.3 jdolecek * Register a new kfilter. Stores the entry in user_kfilters.
235 1.3 jdolecek * Returns 0 if operation succeeded, or an appropriate errno(2) otherwise.
236 1.3 jdolecek * If retfilter != NULL, the new filterid is returned in it.
237 1.3 jdolecek */
238 1.3 jdolecek int
239 1.3 jdolecek kfilter_register(const char *name, const struct filterops *filtops,
240 1.3 jdolecek int *retfilter)
241 1.1 lukem {
242 1.3 jdolecek struct kfilter *kfilter;
243 1.3 jdolecek void *space;
244 1.3 jdolecek int len;
245 1.3 jdolecek
246 1.3 jdolecek if (name == NULL || name[0] == '\0' || filtops == NULL)
247 1.3 jdolecek return (EINVAL); /* invalid args */
248 1.3 jdolecek if (kfilter_byname(name) != NULL)
249 1.3 jdolecek return (EEXIST); /* already exists */
250 1.3 jdolecek if (user_kfilterc > 0xffffffff - EVFILT_SYSCOUNT)
251 1.3 jdolecek return (EINVAL); /* too many */
252 1.3 jdolecek
253 1.3 jdolecek /* check if need to grow user_kfilters */
254 1.3 jdolecek if (user_kfilterc + 1 > user_kfiltermaxc) {
255 1.3 jdolecek /*
256 1.3 jdolecek * Grow in KFILTER_EXTENT chunks. Use malloc(9), because we
257 1.3 jdolecek * want to traverse user_kfilters as an array.
258 1.3 jdolecek */
259 1.3 jdolecek user_kfiltermaxc += KFILTER_EXTENT;
260 1.3 jdolecek kfilter = malloc(user_kfiltermaxc * sizeof(struct filter *),
261 1.3 jdolecek M_KEVENT, M_WAITOK);
262 1.3 jdolecek
263 1.3 jdolecek /* copy existing user_kfilters */
264 1.3 jdolecek if (user_kfilters != NULL)
265 1.3 jdolecek memcpy((caddr_t)kfilter, (caddr_t)user_kfilters,
266 1.3 jdolecek user_kfilterc * sizeof(struct kfilter *));
267 1.3 jdolecek /* zero new sections */
268 1.3 jdolecek memset((caddr_t)kfilter +
269 1.3 jdolecek user_kfilterc * sizeof(struct kfilter *), 0,
270 1.3 jdolecek (user_kfiltermaxc - user_kfilterc) *
271 1.3 jdolecek sizeof(struct kfilter *));
272 1.3 jdolecek /* switch to new kfilter */
273 1.3 jdolecek if (user_kfilters != NULL)
274 1.3 jdolecek free(user_kfilters, M_KEVENT);
275 1.3 jdolecek user_kfilters = kfilter;
276 1.3 jdolecek }
277 1.3 jdolecek len = strlen(name) + 1; /* copy name */
278 1.3 jdolecek space = malloc(len, M_KEVENT, M_WAITOK);
279 1.3 jdolecek memcpy(space, name, len);
280 1.3 jdolecek user_kfilters[user_kfilterc].name = space;
281 1.3 jdolecek
282 1.3 jdolecek user_kfilters[user_kfilterc].filter = user_kfilterc + EVFILT_SYSCOUNT;
283 1.3 jdolecek
284 1.3 jdolecek len = sizeof(struct filterops); /* copy filtops */
285 1.3 jdolecek space = malloc(len, M_KEVENT, M_WAITOK);
286 1.3 jdolecek memcpy(space, filtops, len);
287 1.3 jdolecek user_kfilters[user_kfilterc].filtops = space;
288 1.3 jdolecek
289 1.3 jdolecek if (retfilter != NULL)
290 1.3 jdolecek *retfilter = user_kfilters[user_kfilterc].filter;
291 1.3 jdolecek user_kfilterc++; /* finally, increment count */
292 1.3 jdolecek return (0);
293 1.1 lukem }
294 1.1 lukem
295 1.3 jdolecek /*
296 1.3 jdolecek * Unregister a kfilter previously registered with kfilter_register.
297 1.3 jdolecek * This retains the filter id, but clears the name and frees filtops (filter
298 1.3 jdolecek * operations), so that the number isn't reused during a boot.
299 1.3 jdolecek * Returns 0 if operation succeeded, or an appropriate errno(2) otherwise.
300 1.3 jdolecek */
301 1.3 jdolecek int
302 1.3 jdolecek kfilter_unregister(const char *name)
303 1.1 lukem {
304 1.3 jdolecek struct kfilter *kfilter;
305 1.3 jdolecek
306 1.3 jdolecek if (name == NULL || name[0] == '\0')
307 1.3 jdolecek return (EINVAL); /* invalid name */
308 1.3 jdolecek
309 1.3 jdolecek if (kfilter_byname_sys(name) != NULL)
310 1.3 jdolecek return (EINVAL); /* can't detach system filters */
311 1.1 lukem
312 1.3 jdolecek kfilter = kfilter_byname_user(name);
313 1.3 jdolecek if (kfilter == NULL) /* not found */
314 1.3 jdolecek return (ENOENT);
315 1.1 lukem
316 1.3 jdolecek if (kfilter->name[0] != '\0') {
317 1.3 jdolecek /* XXX Cast away const (but we know it's safe. */
318 1.3 jdolecek free((void *) kfilter->name, M_KEVENT);
319 1.3 jdolecek kfilter->name = ""; /* mark as `not implemented' */
320 1.3 jdolecek }
321 1.3 jdolecek if (kfilter->filtops != NULL) {
322 1.3 jdolecek /* XXX Cast away const (but we know it's safe. */
323 1.3 jdolecek free((void *) kfilter->filtops, M_KEVENT);
324 1.3 jdolecek kfilter->filtops = NULL; /* mark as `not implemented' */
325 1.3 jdolecek }
326 1.1 lukem return (0);
327 1.1 lukem }
328 1.1 lukem
329 1.3 jdolecek
330 1.3 jdolecek /*
331 1.3 jdolecek * Filter attach method for EVFILT_READ and EVFILT_WRITE on normal file
332 1.3 jdolecek * descriptors. Calls struct fileops kqfilter method for given file descriptor.
333 1.3 jdolecek */
334 1.3 jdolecek static int
335 1.3 jdolecek filt_fileattach(struct knote *kn)
336 1.3 jdolecek {
337 1.3 jdolecek struct file *fp;
338 1.3 jdolecek
339 1.3 jdolecek fp = kn->kn_fp;
340 1.3 jdolecek return ((*fp->f_ops->fo_kqfilter)(fp, kn));
341 1.3 jdolecek }
342 1.3 jdolecek
343 1.3 jdolecek /*
344 1.3 jdolecek * Filter detach method for EVFILT_READ on kqueue descriptor.
345 1.3 jdolecek */
346 1.1 lukem static void
347 1.1 lukem filt_kqdetach(struct knote *kn)
348 1.1 lukem {
349 1.3 jdolecek struct kqueue *kq;
350 1.1 lukem
351 1.3 jdolecek kq = (struct kqueue *)kn->kn_fp->f_data;
352 1.5 christos SLIST_REMOVE(&kq->kq_sel.sel_klist, kn, knote, kn_selnext);
353 1.1 lukem }
354 1.1 lukem
355 1.3 jdolecek /*
356 1.3 jdolecek * Filter event method for EVFILT_READ on kqueue descriptor.
357 1.3 jdolecek */
358 1.1 lukem /*ARGSUSED*/
359 1.1 lukem static int
360 1.1 lukem filt_kqueue(struct knote *kn, long hint)
361 1.1 lukem {
362 1.3 jdolecek struct kqueue *kq;
363 1.1 lukem
364 1.3 jdolecek kq = (struct kqueue *)kn->kn_fp->f_data;
365 1.1 lukem kn->kn_data = kq->kq_count;
366 1.1 lukem return (kn->kn_data > 0);
367 1.1 lukem }
368 1.1 lukem
369 1.3 jdolecek /*
370 1.3 jdolecek * Filter attach method for EVFILT_PROC.
371 1.3 jdolecek */
372 1.1 lukem static int
373 1.1 lukem filt_procattach(struct knote *kn)
374 1.1 lukem {
375 1.1 lukem struct proc *p;
376 1.1 lukem
377 1.1 lukem p = pfind(kn->kn_id);
378 1.1 lukem if (p == NULL)
379 1.1 lukem return (ESRCH);
380 1.3 jdolecek
381 1.3 jdolecek /*
382 1.3 jdolecek * Fail if it's not owned by you, or the last exec gave us
383 1.3 jdolecek * setuid/setgid privs (unless you're root).
384 1.3 jdolecek */
385 1.3 jdolecek if ((p->p_cred->p_ruid != curproc->p_cred->p_ruid ||
386 1.3 jdolecek (p->p_flag & P_SUGID))
387 1.3 jdolecek && suser(curproc->p_ucred, &curproc->p_acflag) != 0)
388 1.3 jdolecek return (EACCES);
389 1.1 lukem
390 1.1 lukem kn->kn_ptr.p_proc = p;
391 1.3 jdolecek kn->kn_flags |= EV_CLEAR; /* automatically set */
392 1.1 lukem
393 1.1 lukem /*
394 1.1 lukem * internal flag indicating registration done by kernel
395 1.1 lukem */
396 1.1 lukem if (kn->kn_flags & EV_FLAG1) {
397 1.3 jdolecek kn->kn_data = kn->kn_sdata; /* ppid */
398 1.1 lukem kn->kn_fflags = NOTE_CHILD;
399 1.1 lukem kn->kn_flags &= ~EV_FLAG1;
400 1.1 lukem }
401 1.1 lukem
402 1.3 jdolecek /* XXXSMP lock the process? */
403 1.1 lukem SLIST_INSERT_HEAD(&p->p_klist, kn, kn_selnext);
404 1.1 lukem
405 1.1 lukem return (0);
406 1.1 lukem }
407 1.1 lukem
408 1.1 lukem /*
409 1.3 jdolecek * Filter detach method for EVFILT_PROC.
410 1.3 jdolecek *
411 1.1 lukem * The knote may be attached to a different process, which may exit,
412 1.1 lukem * leaving nothing for the knote to be attached to. So when the process
413 1.1 lukem * exits, the knote is marked as DETACHED and also flagged as ONESHOT so
414 1.1 lukem * it will be deleted when read out. However, as part of the knote deletion,
415 1.1 lukem * this routine is called, so a check is needed to avoid actually performing
416 1.3 jdolecek * a detach, because the original process might not exist any more.
417 1.1 lukem */
418 1.1 lukem static void
419 1.1 lukem filt_procdetach(struct knote *kn)
420 1.1 lukem {
421 1.3 jdolecek struct proc *p;
422 1.1 lukem
423 1.1 lukem if (kn->kn_status & KN_DETACHED)
424 1.1 lukem return;
425 1.1 lukem
426 1.3 jdolecek p = kn->kn_ptr.p_proc;
427 1.18 jdolecek KASSERT(p->p_stat == SZOMB || pfind(kn->kn_id) == p);
428 1.3 jdolecek
429 1.3 jdolecek /* XXXSMP lock the process? */
430 1.1 lukem SLIST_REMOVE(&p->p_klist, kn, knote, kn_selnext);
431 1.1 lukem }
432 1.1 lukem
433 1.3 jdolecek /*
434 1.3 jdolecek * Filter event method for EVFILT_PROC.
435 1.3 jdolecek */
436 1.1 lukem static int
437 1.1 lukem filt_proc(struct knote *kn, long hint)
438 1.1 lukem {
439 1.1 lukem u_int event;
440 1.1 lukem
441 1.1 lukem /*
442 1.1 lukem * mask off extra data
443 1.1 lukem */
444 1.1 lukem event = (u_int)hint & NOTE_PCTRLMASK;
445 1.1 lukem
446 1.1 lukem /*
447 1.1 lukem * if the user is interested in this event, record it.
448 1.1 lukem */
449 1.1 lukem if (kn->kn_sfflags & event)
450 1.1 lukem kn->kn_fflags |= event;
451 1.1 lukem
452 1.1 lukem /*
453 1.1 lukem * process is gone, so flag the event as finished.
454 1.1 lukem */
455 1.1 lukem if (event == NOTE_EXIT) {
456 1.3 jdolecek /*
457 1.3 jdolecek * Detach the knote from watched process and mark
458 1.3 jdolecek * it as such. We can't leave this to kqueue_scan(),
459 1.3 jdolecek * since the process might not exist by then. And we
460 1.3 jdolecek * have to do this now, since psignal KNOTE() is called
461 1.3 jdolecek * also for zombies and we might end up reading freed
462 1.3 jdolecek * memory if the kevent would already be picked up
463 1.3 jdolecek * and knote g/c'ed.
464 1.3 jdolecek */
465 1.3 jdolecek kn->kn_fop->f_detach(kn);
466 1.1 lukem kn->kn_status |= KN_DETACHED;
467 1.3 jdolecek
468 1.3 jdolecek /* Mark as ONESHOT, so that the knote it g/c'ed when read */
469 1.1 lukem kn->kn_flags |= (EV_EOF | EV_ONESHOT);
470 1.1 lukem return (1);
471 1.1 lukem }
472 1.1 lukem
473 1.1 lukem /*
474 1.1 lukem * process forked, and user wants to track the new process,
475 1.1 lukem * so attach a new knote to it, and immediately report an
476 1.1 lukem * event with the parent's pid.
477 1.1 lukem */
478 1.1 lukem if ((event == NOTE_FORK) && (kn->kn_sfflags & NOTE_TRACK)) {
479 1.1 lukem struct kevent kev;
480 1.1 lukem int error;
481 1.1 lukem
482 1.1 lukem /*
483 1.1 lukem * register knote with new process.
484 1.1 lukem */
485 1.1 lukem kev.ident = hint & NOTE_PDATAMASK; /* pid */
486 1.1 lukem kev.filter = kn->kn_filter;
487 1.1 lukem kev.flags = kn->kn_flags | EV_ADD | EV_ENABLE | EV_FLAG1;
488 1.1 lukem kev.fflags = kn->kn_sfflags;
489 1.1 lukem kev.data = kn->kn_id; /* parent */
490 1.1 lukem kev.udata = kn->kn_kevent.udata; /* preserve udata */
491 1.1 lukem error = kqueue_register(kn->kn_kq, &kev, NULL);
492 1.1 lukem if (error)
493 1.1 lukem kn->kn_fflags |= NOTE_TRACKERR;
494 1.1 lukem }
495 1.1 lukem
496 1.1 lukem return (kn->kn_fflags != 0);
497 1.8 jdolecek }
498 1.8 jdolecek
499 1.8 jdolecek static void
500 1.8 jdolecek filt_timerexpire(void *knx)
501 1.8 jdolecek {
502 1.8 jdolecek struct knote *kn = knx;
503 1.8 jdolecek int tticks;
504 1.8 jdolecek
505 1.8 jdolecek kn->kn_data++;
506 1.8 jdolecek KNOTE_ACTIVATE(kn);
507 1.8 jdolecek
508 1.8 jdolecek if ((kn->kn_flags & EV_ONESHOT) == 0) {
509 1.8 jdolecek tticks = mstohz(kn->kn_sdata);
510 1.8 jdolecek callout_schedule((struct callout *)kn->kn_hook, tticks);
511 1.8 jdolecek }
512 1.8 jdolecek }
513 1.8 jdolecek
514 1.8 jdolecek /*
515 1.8 jdolecek * data contains amount of time to sleep, in milliseconds
516 1.8 jdolecek */
517 1.8 jdolecek static int
518 1.8 jdolecek filt_timerattach(struct knote *kn)
519 1.8 jdolecek {
520 1.8 jdolecek struct callout *calloutp;
521 1.8 jdolecek int tticks;
522 1.8 jdolecek
523 1.8 jdolecek if (kq_ncallouts >= kq_calloutmax)
524 1.8 jdolecek return (ENOMEM);
525 1.8 jdolecek kq_ncallouts++;
526 1.8 jdolecek
527 1.8 jdolecek tticks = mstohz(kn->kn_sdata);
528 1.8 jdolecek
529 1.8 jdolecek /* if the supplied value is under our resolution, use 1 tick */
530 1.8 jdolecek if (tticks == 0) {
531 1.8 jdolecek if (kn->kn_sdata == 0)
532 1.8 jdolecek return (EINVAL);
533 1.8 jdolecek tticks = 1;
534 1.8 jdolecek }
535 1.8 jdolecek
536 1.8 jdolecek kn->kn_flags |= EV_CLEAR; /* automatically set */
537 1.8 jdolecek MALLOC(calloutp, struct callout *, sizeof(*calloutp),
538 1.8 jdolecek M_KEVENT, 0);
539 1.8 jdolecek callout_init(calloutp);
540 1.8 jdolecek callout_reset(calloutp, tticks, filt_timerexpire, kn);
541 1.8 jdolecek kn->kn_hook = calloutp;
542 1.8 jdolecek
543 1.8 jdolecek return (0);
544 1.8 jdolecek }
545 1.8 jdolecek
546 1.8 jdolecek static void
547 1.8 jdolecek filt_timerdetach(struct knote *kn)
548 1.8 jdolecek {
549 1.8 jdolecek struct callout *calloutp;
550 1.8 jdolecek
551 1.8 jdolecek calloutp = (struct callout *)kn->kn_hook;
552 1.8 jdolecek callout_stop(calloutp);
553 1.8 jdolecek FREE(calloutp, M_KEVENT);
554 1.8 jdolecek kq_ncallouts--;
555 1.8 jdolecek }
556 1.8 jdolecek
557 1.8 jdolecek static int
558 1.8 jdolecek filt_timer(struct knote *kn, long hint)
559 1.8 jdolecek {
560 1.8 jdolecek return (kn->kn_data != 0);
561 1.1 lukem }
562 1.1 lukem
563 1.3 jdolecek /*
564 1.3 jdolecek * filt_seltrue:
565 1.3 jdolecek *
566 1.3 jdolecek * This filter "event" routine simulates seltrue().
567 1.3 jdolecek */
568 1.1 lukem int
569 1.3 jdolecek filt_seltrue(struct knote *kn, long hint)
570 1.1 lukem {
571 1.1 lukem
572 1.3 jdolecek /*
573 1.3 jdolecek * We don't know how much data can be read/written,
574 1.3 jdolecek * but we know that it *can* be. This is about as
575 1.3 jdolecek * good as select/poll does as well.
576 1.3 jdolecek */
577 1.3 jdolecek kn->kn_data = 0;
578 1.3 jdolecek return (1);
579 1.3 jdolecek }
580 1.3 jdolecek
581 1.3 jdolecek /*
582 1.3 jdolecek * This provides full kqfilter entry for device switch tables, which
583 1.3 jdolecek * has same effect as filter using filt_seltrue() as filter method.
584 1.3 jdolecek */
585 1.3 jdolecek static void
586 1.3 jdolecek filt_seltruedetach(struct knote *kn)
587 1.3 jdolecek {
588 1.3 jdolecek /* Nothing to do */
589 1.3 jdolecek }
590 1.3 jdolecek
591 1.3 jdolecek static const struct filterops seltrue_filtops =
592 1.3 jdolecek { 1, NULL, filt_seltruedetach, filt_seltrue };
593 1.3 jdolecek
594 1.3 jdolecek int
595 1.3 jdolecek seltrue_kqfilter(dev_t dev, struct knote *kn)
596 1.3 jdolecek {
597 1.3 jdolecek switch (kn->kn_filter) {
598 1.3 jdolecek case EVFILT_READ:
599 1.3 jdolecek case EVFILT_WRITE:
600 1.3 jdolecek kn->kn_fop = &seltrue_filtops;
601 1.3 jdolecek break;
602 1.3 jdolecek default:
603 1.3 jdolecek return (1);
604 1.3 jdolecek }
605 1.3 jdolecek
606 1.3 jdolecek /* Nothing more to do */
607 1.3 jdolecek return (0);
608 1.3 jdolecek }
609 1.3 jdolecek
610 1.3 jdolecek /*
611 1.3 jdolecek * kqueue(2) system call.
612 1.3 jdolecek */
613 1.3 jdolecek int
614 1.6 thorpej sys_kqueue(struct lwp *l, void *v, register_t *retval)
615 1.3 jdolecek {
616 1.3 jdolecek struct filedesc *fdp;
617 1.3 jdolecek struct kqueue *kq;
618 1.3 jdolecek struct file *fp;
619 1.6 thorpej struct proc *p;
620 1.3 jdolecek int fd, error;
621 1.3 jdolecek
622 1.6 thorpej p = l->l_proc;
623 1.3 jdolecek fdp = p->p_fd;
624 1.3 jdolecek error = falloc(p, &fp, &fd); /* setup a new file descriptor */
625 1.1 lukem if (error)
626 1.1 lukem return (error);
627 1.1 lukem fp->f_flag = FREAD | FWRITE;
628 1.1 lukem fp->f_type = DTYPE_KQUEUE;
629 1.1 lukem fp->f_ops = &kqueueops;
630 1.3 jdolecek kq = pool_get(&kqueue_pool, PR_WAITOK);
631 1.3 jdolecek memset((char *)kq, 0, sizeof(struct kqueue));
632 1.12 pk simple_lock_init(&kq->kq_lock);
633 1.1 lukem TAILQ_INIT(&kq->kq_head);
634 1.3 jdolecek fp->f_data = (caddr_t)kq; /* store the kqueue with the fp */
635 1.3 jdolecek *retval = fd;
636 1.1 lukem if (fdp->fd_knlistsize < 0)
637 1.3 jdolecek fdp->fd_knlistsize = 0; /* this process has a kq */
638 1.1 lukem kq->kq_fdp = fdp;
639 1.3 jdolecek FILE_SET_MATURE(fp);
640 1.16 fvdl FILE_UNUSE(fp, p); /* falloc() does FILE_USE() */
641 1.1 lukem return (error);
642 1.1 lukem }
643 1.1 lukem
644 1.3 jdolecek /*
645 1.3 jdolecek * kevent(2) system call.
646 1.3 jdolecek */
647 1.1 lukem int
648 1.6 thorpej sys_kevent(struct lwp *l, void *v, register_t *retval)
649 1.1 lukem {
650 1.3 jdolecek struct sys_kevent_args /* {
651 1.3 jdolecek syscallarg(int) fd;
652 1.3 jdolecek syscallarg(const struct kevent *) changelist;
653 1.3 jdolecek syscallarg(size_t) nchanges;
654 1.3 jdolecek syscallarg(struct kevent *) eventlist;
655 1.3 jdolecek syscallarg(size_t) nevents;
656 1.3 jdolecek syscallarg(const struct timespec *) timeout;
657 1.3 jdolecek } */ *uap = v;
658 1.3 jdolecek struct kevent *kevp;
659 1.3 jdolecek struct kqueue *kq;
660 1.3 jdolecek struct file *fp;
661 1.3 jdolecek struct timespec ts;
662 1.6 thorpej struct proc *p;
663 1.3 jdolecek size_t i, n;
664 1.3 jdolecek int nerrors, error;
665 1.3 jdolecek
666 1.6 thorpej p = l->l_proc;
667 1.3 jdolecek /* check that we're dealing with a kq */
668 1.3 jdolecek fp = fd_getfile(p->p_fd, SCARG(uap, fd));
669 1.10 pk if (fp == NULL)
670 1.1 lukem return (EBADF);
671 1.10 pk
672 1.10 pk if (fp->f_type != DTYPE_KQUEUE) {
673 1.10 pk simple_unlock(&fp->f_slock);
674 1.10 pk return (EBADF);
675 1.10 pk }
676 1.1 lukem
677 1.3 jdolecek FILE_USE(fp);
678 1.1 lukem
679 1.3 jdolecek if (SCARG(uap, timeout) != NULL) {
680 1.3 jdolecek error = copyin(SCARG(uap, timeout), &ts, sizeof(ts));
681 1.1 lukem if (error)
682 1.1 lukem goto done;
683 1.3 jdolecek SCARG(uap, timeout) = &ts;
684 1.1 lukem }
685 1.1 lukem
686 1.1 lukem kq = (struct kqueue *)fp->f_data;
687 1.1 lukem nerrors = 0;
688 1.1 lukem
689 1.3 jdolecek /* traverse list of events to register */
690 1.3 jdolecek while (SCARG(uap, nchanges) > 0) {
691 1.3 jdolecek /* copyin a maximum of KQ_EVENTS at each pass */
692 1.3 jdolecek n = MIN(SCARG(uap, nchanges), KQ_NEVENTS);
693 1.3 jdolecek error = copyin(SCARG(uap, changelist), kq->kq_kev,
694 1.1 lukem n * sizeof(struct kevent));
695 1.1 lukem if (error)
696 1.1 lukem goto done;
697 1.1 lukem for (i = 0; i < n; i++) {
698 1.1 lukem kevp = &kq->kq_kev[i];
699 1.1 lukem kevp->flags &= ~EV_SYSFLAGS;
700 1.3 jdolecek /* register each knote */
701 1.16 fvdl error = kqueue_register(kq, kevp, p);
702 1.1 lukem if (error) {
703 1.3 jdolecek if (SCARG(uap, nevents) != 0) {
704 1.1 lukem kevp->flags = EV_ERROR;
705 1.1 lukem kevp->data = error;
706 1.3 jdolecek error = copyout((caddr_t)kevp,
707 1.3 jdolecek (caddr_t)SCARG(uap, eventlist),
708 1.1 lukem sizeof(*kevp));
709 1.3 jdolecek if (error)
710 1.3 jdolecek goto done;
711 1.3 jdolecek SCARG(uap, eventlist)++;
712 1.3 jdolecek SCARG(uap, nevents)--;
713 1.1 lukem nerrors++;
714 1.1 lukem } else {
715 1.1 lukem goto done;
716 1.1 lukem }
717 1.1 lukem }
718 1.1 lukem }
719 1.3 jdolecek SCARG(uap, nchanges) -= n; /* update the results */
720 1.3 jdolecek SCARG(uap, changelist) += n;
721 1.1 lukem }
722 1.1 lukem if (nerrors) {
723 1.3 jdolecek *retval = nerrors;
724 1.1 lukem error = 0;
725 1.1 lukem goto done;
726 1.1 lukem }
727 1.1 lukem
728 1.3 jdolecek /* actually scan through the events */
729 1.3 jdolecek error = kqueue_scan(fp, SCARG(uap, nevents), SCARG(uap, eventlist),
730 1.16 fvdl SCARG(uap, timeout), p, retval);
731 1.3 jdolecek done:
732 1.16 fvdl FILE_UNUSE(fp, p);
733 1.1 lukem return (error);
734 1.1 lukem }
735 1.1 lukem
736 1.3 jdolecek /*
737 1.3 jdolecek * Register a given kevent kev onto the kqueue
738 1.3 jdolecek */
739 1.1 lukem int
740 1.16 fvdl kqueue_register(struct kqueue *kq, struct kevent *kev, struct proc *p)
741 1.1 lukem {
742 1.3 jdolecek const struct kfilter *kfilter;
743 1.3 jdolecek struct filedesc *fdp;
744 1.16 fvdl struct file *fp;
745 1.15 darrenr struct knote *kn;
746 1.3 jdolecek int s, error;
747 1.3 jdolecek
748 1.3 jdolecek fdp = kq->kq_fdp;
749 1.3 jdolecek fp = NULL;
750 1.3 jdolecek kn = NULL;
751 1.3 jdolecek error = 0;
752 1.3 jdolecek kfilter = kfilter_byfilter(kev->filter);
753 1.3 jdolecek if (kfilter == NULL || kfilter->filtops == NULL) {
754 1.3 jdolecek /* filter not found nor implemented */
755 1.1 lukem return (EINVAL);
756 1.1 lukem }
757 1.1 lukem
758 1.3 jdolecek /* search if knote already exists */
759 1.3 jdolecek if (kfilter->filtops->f_isfd) {
760 1.3 jdolecek /* monitoring a file descriptor */
761 1.3 jdolecek if ((fp = fd_getfile(fdp, kev->ident)) == NULL)
762 1.3 jdolecek return (EBADF); /* validate descriptor */
763 1.3 jdolecek FILE_USE(fp);
764 1.1 lukem
765 1.1 lukem if (kev->ident < fdp->fd_knlistsize) {
766 1.1 lukem SLIST_FOREACH(kn, &fdp->fd_knlist[kev->ident], kn_link)
767 1.1 lukem if (kq == kn->kn_kq &&
768 1.1 lukem kev->filter == kn->kn_filter)
769 1.1 lukem break;
770 1.1 lukem }
771 1.1 lukem } else {
772 1.3 jdolecek /*
773 1.3 jdolecek * not monitoring a file descriptor, so
774 1.3 jdolecek * lookup knotes in internal hash table
775 1.3 jdolecek */
776 1.1 lukem if (fdp->fd_knhashmask != 0) {
777 1.1 lukem struct klist *list;
778 1.1 lukem
779 1.1 lukem list = &fdp->fd_knhash[
780 1.1 lukem KN_HASH((u_long)kev->ident, fdp->fd_knhashmask)];
781 1.1 lukem SLIST_FOREACH(kn, list, kn_link)
782 1.1 lukem if (kev->ident == kn->kn_id &&
783 1.1 lukem kq == kn->kn_kq &&
784 1.1 lukem kev->filter == kn->kn_filter)
785 1.1 lukem break;
786 1.1 lukem }
787 1.1 lukem }
788 1.1 lukem
789 1.1 lukem if (kn == NULL && ((kev->flags & EV_ADD) == 0)) {
790 1.3 jdolecek error = ENOENT; /* filter not found */
791 1.1 lukem goto done;
792 1.1 lukem }
793 1.1 lukem
794 1.1 lukem /*
795 1.1 lukem * kn now contains the matching knote, or NULL if no match
796 1.1 lukem */
797 1.1 lukem if (kev->flags & EV_ADD) {
798 1.3 jdolecek /* add knote */
799 1.1 lukem
800 1.1 lukem if (kn == NULL) {
801 1.3 jdolecek /* create new knote */
802 1.3 jdolecek kn = pool_get(&knote_pool, PR_WAITOK);
803 1.1 lukem if (kn == NULL) {
804 1.1 lukem error = ENOMEM;
805 1.1 lukem goto done;
806 1.1 lukem }
807 1.1 lukem kn->kn_fp = fp;
808 1.1 lukem kn->kn_kq = kq;
809 1.3 jdolecek kn->kn_fop = kfilter->filtops;
810 1.1 lukem
811 1.1 lukem /*
812 1.1 lukem * apply reference count to knote structure, and
813 1.1 lukem * do not release it at the end of this routine.
814 1.1 lukem */
815 1.1 lukem fp = NULL;
816 1.1 lukem
817 1.1 lukem kn->kn_sfflags = kev->fflags;
818 1.1 lukem kn->kn_sdata = kev->data;
819 1.1 lukem kev->fflags = 0;
820 1.1 lukem kev->data = 0;
821 1.1 lukem kn->kn_kevent = *kev;
822 1.1 lukem
823 1.1 lukem knote_attach(kn, fdp);
824 1.3 jdolecek if ((error = kfilter->filtops->f_attach(kn)) != 0) {
825 1.16 fvdl knote_drop(kn, p, fdp);
826 1.1 lukem goto done;
827 1.1 lukem }
828 1.1 lukem } else {
829 1.3 jdolecek /* modify existing knote */
830 1.3 jdolecek
831 1.1 lukem /*
832 1.1 lukem * The user may change some filter values after the
833 1.1 lukem * initial EV_ADD, but doing so will not reset any
834 1.1 lukem * filter which have already been triggered.
835 1.1 lukem */
836 1.1 lukem kn->kn_sfflags = kev->fflags;
837 1.1 lukem kn->kn_sdata = kev->data;
838 1.1 lukem kn->kn_kevent.udata = kev->udata;
839 1.1 lukem }
840 1.1 lukem
841 1.11 pk s = splsched();
842 1.1 lukem if (kn->kn_fop->f_event(kn, 0))
843 1.1 lukem KNOTE_ACTIVATE(kn);
844 1.1 lukem splx(s);
845 1.1 lukem
846 1.3 jdolecek } else if (kev->flags & EV_DELETE) { /* delete knote */
847 1.1 lukem kn->kn_fop->f_detach(kn);
848 1.16 fvdl knote_drop(kn, p, fdp);
849 1.1 lukem goto done;
850 1.1 lukem }
851 1.1 lukem
852 1.3 jdolecek /* disable knote */
853 1.1 lukem if ((kev->flags & EV_DISABLE) &&
854 1.1 lukem ((kn->kn_status & KN_DISABLED) == 0)) {
855 1.11 pk s = splsched();
856 1.1 lukem kn->kn_status |= KN_DISABLED;
857 1.1 lukem splx(s);
858 1.1 lukem }
859 1.1 lukem
860 1.3 jdolecek /* enable knote */
861 1.1 lukem if ((kev->flags & EV_ENABLE) && (kn->kn_status & KN_DISABLED)) {
862 1.11 pk s = splsched();
863 1.1 lukem kn->kn_status &= ~KN_DISABLED;
864 1.1 lukem if ((kn->kn_status & KN_ACTIVE) &&
865 1.1 lukem ((kn->kn_status & KN_QUEUED) == 0))
866 1.1 lukem knote_enqueue(kn);
867 1.1 lukem splx(s);
868 1.1 lukem }
869 1.1 lukem
870 1.3 jdolecek done:
871 1.1 lukem if (fp != NULL)
872 1.16 fvdl FILE_UNUSE(fp, p);
873 1.1 lukem return (error);
874 1.1 lukem }
875 1.1 lukem
876 1.3 jdolecek /*
877 1.3 jdolecek * Scan through the list of events on fp (for a maximum of maxevents),
878 1.3 jdolecek * returning the results in to ulistp. Timeout is determined by tsp; if
879 1.3 jdolecek * NULL, wait indefinitely, if 0 valued, perform a poll, otherwise wait
880 1.3 jdolecek * as appropriate.
881 1.3 jdolecek */
882 1.1 lukem static int
883 1.3 jdolecek kqueue_scan(struct file *fp, size_t maxevents, struct kevent *ulistp,
884 1.16 fvdl const struct timespec *tsp, struct proc *p, register_t *retval)
885 1.1 lukem {
886 1.3 jdolecek struct kqueue *kq;
887 1.3 jdolecek struct kevent *kevp;
888 1.3 jdolecek struct timeval atv;
889 1.3 jdolecek struct knote *kn, marker;
890 1.3 jdolecek size_t count, nkev;
891 1.3 jdolecek int s, timeout, error;
892 1.1 lukem
893 1.3 jdolecek kq = (struct kqueue *)fp->f_data;
894 1.1 lukem count = maxevents;
895 1.3 jdolecek nkev = error = 0;
896 1.1 lukem if (count == 0)
897 1.1 lukem goto done;
898 1.1 lukem
899 1.9 jdolecek if (tsp) { /* timeout supplied */
900 1.1 lukem TIMESPEC_TO_TIMEVAL(&atv, tsp);
901 1.1 lukem if (itimerfix(&atv)) {
902 1.1 lukem error = EINVAL;
903 1.1 lukem goto done;
904 1.1 lukem }
905 1.3 jdolecek s = splclock();
906 1.3 jdolecek timeradd(&atv, &time, &atv); /* calc. time to wait until */
907 1.3 jdolecek splx(s);
908 1.9 jdolecek timeout = hzto(&atv);
909 1.9 jdolecek if (timeout <= 0)
910 1.9 jdolecek timeout = -1; /* do poll */
911 1.1 lukem } else {
912 1.9 jdolecek /* no timeout, wait forever */
913 1.1 lukem timeout = 0;
914 1.1 lukem }
915 1.1 lukem goto start;
916 1.1 lukem
917 1.3 jdolecek retry:
918 1.9 jdolecek if (tsp) {
919 1.9 jdolecek /*
920 1.9 jdolecek * We have to recalculate the timeout on every retry.
921 1.9 jdolecek */
922 1.9 jdolecek timeout = hzto(&atv);
923 1.9 jdolecek if (timeout <= 0)
924 1.9 jdolecek goto done;
925 1.1 lukem }
926 1.1 lukem
927 1.3 jdolecek start:
928 1.1 lukem kevp = kq->kq_kev;
929 1.11 pk s = splsched();
930 1.12 pk simple_lock(&kq->kq_lock);
931 1.1 lukem if (kq->kq_count == 0) {
932 1.1 lukem if (timeout < 0) {
933 1.1 lukem error = EWOULDBLOCK;
934 1.17 fvdl simple_unlock(&kq->kq_lock);
935 1.1 lukem } else {
936 1.1 lukem kq->kq_state |= KQ_SLEEP;
937 1.12 pk error = ltsleep(kq, PSOCK | PCATCH | PNORELOCK,
938 1.12 pk "kqread", timeout, &kq->kq_lock);
939 1.1 lukem }
940 1.1 lukem splx(s);
941 1.1 lukem if (error == 0)
942 1.1 lukem goto retry;
943 1.1 lukem /* don't restart after signals... */
944 1.1 lukem if (error == ERESTART)
945 1.1 lukem error = EINTR;
946 1.1 lukem else if (error == EWOULDBLOCK)
947 1.1 lukem error = 0;
948 1.1 lukem goto done;
949 1.1 lukem }
950 1.1 lukem
951 1.3 jdolecek /* mark end of knote list */
952 1.1 lukem TAILQ_INSERT_TAIL(&kq->kq_head, &marker, kn_tqe);
953 1.12 pk simple_unlock(&kq->kq_lock);
954 1.3 jdolecek
955 1.3 jdolecek while (count) { /* while user wants data ... */
956 1.12 pk simple_lock(&kq->kq_lock);
957 1.3 jdolecek kn = TAILQ_FIRST(&kq->kq_head); /* get next knote */
958 1.1 lukem TAILQ_REMOVE(&kq->kq_head, kn, kn_tqe);
959 1.3 jdolecek if (kn == &marker) { /* if it's our marker, stop */
960 1.12 pk /* What if it's some else's marker? */
961 1.12 pk simple_unlock(&kq->kq_lock);
962 1.1 lukem splx(s);
963 1.1 lukem if (count == maxevents)
964 1.1 lukem goto retry;
965 1.1 lukem goto done;
966 1.1 lukem }
967 1.12 pk kq->kq_count--;
968 1.12 pk simple_unlock(&kq->kq_lock);
969 1.12 pk
970 1.1 lukem if (kn->kn_status & KN_DISABLED) {
971 1.3 jdolecek /* don't want disabled events */
972 1.1 lukem kn->kn_status &= ~KN_QUEUED;
973 1.1 lukem continue;
974 1.1 lukem }
975 1.1 lukem if ((kn->kn_flags & EV_ONESHOT) == 0 &&
976 1.1 lukem kn->kn_fop->f_event(kn, 0) == 0) {
977 1.3 jdolecek /*
978 1.3 jdolecek * non-ONESHOT event that hasn't
979 1.3 jdolecek * triggered again, so de-queue.
980 1.3 jdolecek */
981 1.1 lukem kn->kn_status &= ~(KN_QUEUED | KN_ACTIVE);
982 1.1 lukem continue;
983 1.1 lukem }
984 1.1 lukem *kevp = kn->kn_kevent;
985 1.1 lukem kevp++;
986 1.1 lukem nkev++;
987 1.1 lukem if (kn->kn_flags & EV_ONESHOT) {
988 1.3 jdolecek /* delete ONESHOT events after retrieval */
989 1.1 lukem kn->kn_status &= ~KN_QUEUED;
990 1.1 lukem splx(s);
991 1.1 lukem kn->kn_fop->f_detach(kn);
992 1.16 fvdl knote_drop(kn, p, p->p_fd);
993 1.11 pk s = splsched();
994 1.1 lukem } else if (kn->kn_flags & EV_CLEAR) {
995 1.3 jdolecek /* clear state after retrieval */
996 1.1 lukem kn->kn_data = 0;
997 1.1 lukem kn->kn_fflags = 0;
998 1.1 lukem kn->kn_status &= ~(KN_QUEUED | KN_ACTIVE);
999 1.1 lukem } else {
1000 1.3 jdolecek /* add event back on list */
1001 1.12 pk simple_lock(&kq->kq_lock);
1002 1.1 lukem TAILQ_INSERT_TAIL(&kq->kq_head, kn, kn_tqe);
1003 1.12 pk kq->kq_count++;
1004 1.12 pk simple_unlock(&kq->kq_lock);
1005 1.1 lukem }
1006 1.1 lukem count--;
1007 1.1 lukem if (nkev == KQ_NEVENTS) {
1008 1.3 jdolecek /* do copyouts in KQ_NEVENTS chunks */
1009 1.1 lukem splx(s);
1010 1.1 lukem error = copyout((caddr_t)&kq->kq_kev, (caddr_t)ulistp,
1011 1.1 lukem sizeof(struct kevent) * nkev);
1012 1.1 lukem ulistp += nkev;
1013 1.1 lukem nkev = 0;
1014 1.1 lukem kevp = kq->kq_kev;
1015 1.11 pk s = splsched();
1016 1.1 lukem if (error)
1017 1.1 lukem break;
1018 1.1 lukem }
1019 1.1 lukem }
1020 1.3 jdolecek
1021 1.3 jdolecek /* remove marker */
1022 1.12 pk simple_lock(&kq->kq_lock);
1023 1.1 lukem TAILQ_REMOVE(&kq->kq_head, &marker, kn_tqe);
1024 1.12 pk simple_unlock(&kq->kq_lock);
1025 1.1 lukem splx(s);
1026 1.3 jdolecek done:
1027 1.3 jdolecek if (nkev != 0) {
1028 1.3 jdolecek /* copyout remaining events */
1029 1.1 lukem error = copyout((caddr_t)&kq->kq_kev, (caddr_t)ulistp,
1030 1.1 lukem sizeof(struct kevent) * nkev);
1031 1.3 jdolecek }
1032 1.3 jdolecek *retval = maxevents - count;
1033 1.3 jdolecek
1034 1.1 lukem return (error);
1035 1.1 lukem }
1036 1.1 lukem
1037 1.1 lukem /*
1038 1.3 jdolecek * struct fileops read method for a kqueue descriptor.
1039 1.3 jdolecek * Not implemented.
1040 1.3 jdolecek * XXX: This could be expanded to call kqueue_scan, if desired.
1041 1.1 lukem */
1042 1.1 lukem /*ARGSUSED*/
1043 1.1 lukem static int
1044 1.3 jdolecek kqueue_read(struct file *fp, off_t *offset, struct uio *uio,
1045 1.3 jdolecek struct ucred *cred, int flags)
1046 1.1 lukem {
1047 1.3 jdolecek
1048 1.1 lukem return (ENXIO);
1049 1.1 lukem }
1050 1.1 lukem
1051 1.3 jdolecek /*
1052 1.3 jdolecek * struct fileops write method for a kqueue descriptor.
1053 1.3 jdolecek * Not implemented.
1054 1.3 jdolecek */
1055 1.1 lukem /*ARGSUSED*/
1056 1.1 lukem static int
1057 1.3 jdolecek kqueue_write(struct file *fp, off_t *offset, struct uio *uio,
1058 1.3 jdolecek struct ucred *cred, int flags)
1059 1.1 lukem {
1060 1.3 jdolecek
1061 1.1 lukem return (ENXIO);
1062 1.1 lukem }
1063 1.1 lukem
1064 1.3 jdolecek /*
1065 1.3 jdolecek * struct fileops ioctl method for a kqueue descriptor.
1066 1.3 jdolecek *
1067 1.3 jdolecek * Two ioctls are currently supported. They both use struct kfilter_mapping:
1068 1.3 jdolecek * KFILTER_BYNAME find name for filter, and return result in
1069 1.3 jdolecek * name, which is of size len.
1070 1.3 jdolecek * KFILTER_BYFILTER find filter for name. len is ignored.
1071 1.3 jdolecek */
1072 1.1 lukem /*ARGSUSED*/
1073 1.1 lukem static int
1074 1.16 fvdl kqueue_ioctl(struct file *fp, u_long com, void *data, struct proc *p)
1075 1.1 lukem {
1076 1.3 jdolecek struct kfilter_mapping *km;
1077 1.3 jdolecek const struct kfilter *kfilter;
1078 1.3 jdolecek char *name;
1079 1.3 jdolecek int error;
1080 1.3 jdolecek
1081 1.3 jdolecek km = (struct kfilter_mapping *)data;
1082 1.3 jdolecek error = 0;
1083 1.3 jdolecek
1084 1.3 jdolecek switch (com) {
1085 1.3 jdolecek case KFILTER_BYFILTER: /* convert filter -> name */
1086 1.3 jdolecek kfilter = kfilter_byfilter(km->filter);
1087 1.3 jdolecek if (kfilter != NULL)
1088 1.3 jdolecek error = copyoutstr(kfilter->name, km->name, km->len,
1089 1.3 jdolecek NULL);
1090 1.3 jdolecek else
1091 1.3 jdolecek error = ENOENT;
1092 1.3 jdolecek break;
1093 1.3 jdolecek
1094 1.3 jdolecek case KFILTER_BYNAME: /* convert name -> filter */
1095 1.3 jdolecek MALLOC(name, char *, KFILTER_MAXNAME, M_KEVENT, M_WAITOK);
1096 1.3 jdolecek error = copyinstr(km->name, name, KFILTER_MAXNAME, NULL);
1097 1.3 jdolecek if (error) {
1098 1.3 jdolecek FREE(name, M_KEVENT);
1099 1.3 jdolecek break;
1100 1.3 jdolecek }
1101 1.3 jdolecek kfilter = kfilter_byname(name);
1102 1.3 jdolecek if (kfilter != NULL)
1103 1.3 jdolecek km->filter = kfilter->filter;
1104 1.3 jdolecek else
1105 1.3 jdolecek error = ENOENT;
1106 1.3 jdolecek FREE(name, M_KEVENT);
1107 1.3 jdolecek break;
1108 1.3 jdolecek
1109 1.3 jdolecek default:
1110 1.3 jdolecek error = ENOTTY;
1111 1.3 jdolecek
1112 1.3 jdolecek }
1113 1.3 jdolecek return (error);
1114 1.3 jdolecek }
1115 1.3 jdolecek
1116 1.3 jdolecek /*
1117 1.3 jdolecek * struct fileops fcntl method for a kqueue descriptor.
1118 1.3 jdolecek * Not implemented.
1119 1.3 jdolecek */
1120 1.3 jdolecek /*ARGSUSED*/
1121 1.3 jdolecek static int
1122 1.16 fvdl kqueue_fcntl(struct file *fp, u_int com, void *data, struct proc *p)
1123 1.3 jdolecek {
1124 1.3 jdolecek
1125 1.1 lukem return (ENOTTY);
1126 1.1 lukem }
1127 1.1 lukem
1128 1.3 jdolecek /*
1129 1.3 jdolecek * struct fileops poll method for a kqueue descriptor.
1130 1.3 jdolecek * Determine if kqueue has events pending.
1131 1.3 jdolecek */
1132 1.1 lukem static int
1133 1.16 fvdl kqueue_poll(struct file *fp, int events, struct proc *p)
1134 1.1 lukem {
1135 1.3 jdolecek struct kqueue *kq;
1136 1.3 jdolecek int revents;
1137 1.3 jdolecek
1138 1.3 jdolecek kq = (struct kqueue *)fp->f_data;
1139 1.3 jdolecek revents = 0;
1140 1.3 jdolecek if (events & (POLLIN | POLLRDNORM)) {
1141 1.3 jdolecek if (kq->kq_count) {
1142 1.3 jdolecek revents |= events & (POLLIN | POLLRDNORM);
1143 1.1 lukem } else {
1144 1.16 fvdl selrecord(p, &kq->kq_sel);
1145 1.1 lukem }
1146 1.1 lukem }
1147 1.1 lukem return (revents);
1148 1.1 lukem }
1149 1.1 lukem
1150 1.3 jdolecek /*
1151 1.3 jdolecek * struct fileops stat method for a kqueue descriptor.
1152 1.3 jdolecek * Returns dummy info, with st_size being number of events pending.
1153 1.3 jdolecek */
1154 1.1 lukem static int
1155 1.16 fvdl kqueue_stat(struct file *fp, struct stat *st, struct proc *p)
1156 1.1 lukem {
1157 1.3 jdolecek struct kqueue *kq;
1158 1.1 lukem
1159 1.3 jdolecek kq = (struct kqueue *)fp->f_data;
1160 1.3 jdolecek memset((void *)st, 0, sizeof(*st));
1161 1.1 lukem st->st_size = kq->kq_count;
1162 1.1 lukem st->st_blksize = sizeof(struct kevent);
1163 1.1 lukem st->st_mode = S_IFIFO;
1164 1.1 lukem return (0);
1165 1.1 lukem }
1166 1.1 lukem
1167 1.3 jdolecek /*
1168 1.3 jdolecek * struct fileops close method for a kqueue descriptor.
1169 1.3 jdolecek * Cleans up kqueue.
1170 1.3 jdolecek */
1171 1.1 lukem static int
1172 1.16 fvdl kqueue_close(struct file *fp, struct proc *p)
1173 1.1 lukem {
1174 1.3 jdolecek struct kqueue *kq;
1175 1.16 fvdl struct filedesc *fdp;
1176 1.15 darrenr struct knote **knp, *kn, *kn0;
1177 1.3 jdolecek int i;
1178 1.1 lukem
1179 1.3 jdolecek kq = (struct kqueue *)fp->f_data;
1180 1.3 jdolecek fdp = p->p_fd;
1181 1.1 lukem for (i = 0; i < fdp->fd_knlistsize; i++) {
1182 1.1 lukem knp = &SLIST_FIRST(&fdp->fd_knlist[i]);
1183 1.1 lukem kn = *knp;
1184 1.1 lukem while (kn != NULL) {
1185 1.1 lukem kn0 = SLIST_NEXT(kn, kn_link);
1186 1.1 lukem if (kq == kn->kn_kq) {
1187 1.1 lukem kn->kn_fop->f_detach(kn);
1188 1.16 fvdl FILE_UNUSE(kn->kn_fp, p);
1189 1.3 jdolecek pool_put(&knote_pool, kn);
1190 1.1 lukem *knp = kn0;
1191 1.1 lukem } else {
1192 1.1 lukem knp = &SLIST_NEXT(kn, kn_link);
1193 1.1 lukem }
1194 1.1 lukem kn = kn0;
1195 1.1 lukem }
1196 1.1 lukem }
1197 1.1 lukem if (fdp->fd_knhashmask != 0) {
1198 1.1 lukem for (i = 0; i < fdp->fd_knhashmask + 1; i++) {
1199 1.1 lukem knp = &SLIST_FIRST(&fdp->fd_knhash[i]);
1200 1.1 lukem kn = *knp;
1201 1.1 lukem while (kn != NULL) {
1202 1.1 lukem kn0 = SLIST_NEXT(kn, kn_link);
1203 1.1 lukem if (kq == kn->kn_kq) {
1204 1.1 lukem kn->kn_fop->f_detach(kn);
1205 1.3 jdolecek /* XXX non-fd release of kn->kn_ptr */
1206 1.3 jdolecek pool_put(&knote_pool, kn);
1207 1.1 lukem *knp = kn0;
1208 1.1 lukem } else {
1209 1.1 lukem knp = &SLIST_NEXT(kn, kn_link);
1210 1.1 lukem }
1211 1.1 lukem kn = kn0;
1212 1.1 lukem }
1213 1.1 lukem }
1214 1.1 lukem }
1215 1.3 jdolecek pool_put(&kqueue_pool, kq);
1216 1.1 lukem fp->f_data = NULL;
1217 1.1 lukem
1218 1.1 lukem return (0);
1219 1.1 lukem }
1220 1.1 lukem
1221 1.3 jdolecek /*
1222 1.3 jdolecek * wakeup a kqueue
1223 1.3 jdolecek */
1224 1.1 lukem static void
1225 1.1 lukem kqueue_wakeup(struct kqueue *kq)
1226 1.1 lukem {
1227 1.12 pk int s;
1228 1.1 lukem
1229 1.12 pk s = splsched();
1230 1.12 pk simple_lock(&kq->kq_lock);
1231 1.3 jdolecek if (kq->kq_state & KQ_SLEEP) { /* if currently sleeping ... */
1232 1.1 lukem kq->kq_state &= ~KQ_SLEEP;
1233 1.3 jdolecek wakeup(kq); /* ... wakeup */
1234 1.1 lukem }
1235 1.3 jdolecek
1236 1.3 jdolecek /* Notify select/poll and kevent. */
1237 1.3 jdolecek selnotify(&kq->kq_sel, 0);
1238 1.12 pk simple_unlock(&kq->kq_lock);
1239 1.12 pk splx(s);
1240 1.1 lukem }
1241 1.1 lukem
1242 1.1 lukem /*
1243 1.3 jdolecek * struct fileops kqfilter method for a kqueue descriptor.
1244 1.3 jdolecek * Event triggered when monitored kqueue changes.
1245 1.3 jdolecek */
1246 1.3 jdolecek /*ARGSUSED*/
1247 1.3 jdolecek static int
1248 1.3 jdolecek kqueue_kqfilter(struct file *fp, struct knote *kn)
1249 1.3 jdolecek {
1250 1.3 jdolecek struct kqueue *kq;
1251 1.3 jdolecek
1252 1.3 jdolecek KASSERT(fp == kn->kn_fp);
1253 1.3 jdolecek kq = (struct kqueue *)kn->kn_fp->f_data;
1254 1.3 jdolecek if (kn->kn_filter != EVFILT_READ)
1255 1.3 jdolecek return (1);
1256 1.3 jdolecek kn->kn_fop = &kqread_filtops;
1257 1.5 christos SLIST_INSERT_HEAD(&kq->kq_sel.sel_klist, kn, kn_selnext);
1258 1.3 jdolecek return (0);
1259 1.3 jdolecek }
1260 1.3 jdolecek
1261 1.3 jdolecek
1262 1.3 jdolecek /*
1263 1.3 jdolecek * Walk down a list of knotes, activating them if their event has triggered.
1264 1.1 lukem */
1265 1.1 lukem void
1266 1.1 lukem knote(struct klist *list, long hint)
1267 1.1 lukem {
1268 1.1 lukem struct knote *kn;
1269 1.1 lukem
1270 1.1 lukem SLIST_FOREACH(kn, list, kn_selnext)
1271 1.1 lukem if (kn->kn_fop->f_event(kn, hint))
1272 1.1 lukem KNOTE_ACTIVATE(kn);
1273 1.1 lukem }
1274 1.1 lukem
1275 1.1 lukem /*
1276 1.3 jdolecek * Remove all knotes from a specified klist
1277 1.1 lukem */
1278 1.1 lukem void
1279 1.16 fvdl knote_remove(struct proc *p, struct klist *list)
1280 1.1 lukem {
1281 1.1 lukem struct knote *kn;
1282 1.1 lukem
1283 1.1 lukem while ((kn = SLIST_FIRST(list)) != NULL) {
1284 1.1 lukem kn->kn_fop->f_detach(kn);
1285 1.16 fvdl knote_drop(kn, p, p->p_fd);
1286 1.1 lukem }
1287 1.1 lukem }
1288 1.1 lukem
1289 1.1 lukem /*
1290 1.3 jdolecek * Remove all knotes referencing a specified fd
1291 1.1 lukem */
1292 1.1 lukem void
1293 1.16 fvdl knote_fdclose(struct proc *p, int fd)
1294 1.1 lukem {
1295 1.3 jdolecek struct filedesc *fdp;
1296 1.3 jdolecek struct klist *list;
1297 1.1 lukem
1298 1.16 fvdl fdp = p->p_fd;
1299 1.3 jdolecek list = &fdp->fd_knlist[fd];
1300 1.16 fvdl knote_remove(p, list);
1301 1.1 lukem }
1302 1.1 lukem
1303 1.3 jdolecek /*
1304 1.3 jdolecek * Attach a new knote to a file descriptor
1305 1.3 jdolecek */
1306 1.1 lukem static void
1307 1.1 lukem knote_attach(struct knote *kn, struct filedesc *fdp)
1308 1.1 lukem {
1309 1.3 jdolecek struct klist *list;
1310 1.3 jdolecek int size;
1311 1.1 lukem
1312 1.1 lukem if (! kn->kn_fop->f_isfd) {
1313 1.3 jdolecek /* if knote is not on an fd, store on internal hash table */
1314 1.1 lukem if (fdp->fd_knhashmask == 0)
1315 1.3 jdolecek fdp->fd_knhash = hashinit(KN_HASHSIZE, HASH_LIST,
1316 1.3 jdolecek M_KEVENT, M_WAITOK, &fdp->fd_knhashmask);
1317 1.1 lukem list = &fdp->fd_knhash[KN_HASH(kn->kn_id, fdp->fd_knhashmask)];
1318 1.1 lukem goto done;
1319 1.1 lukem }
1320 1.1 lukem
1321 1.3 jdolecek /*
1322 1.3 jdolecek * otherwise, knote is on an fd.
1323 1.3 jdolecek * knotes are stored in fd_knlist indexed by kn->kn_id.
1324 1.3 jdolecek */
1325 1.1 lukem if (fdp->fd_knlistsize <= kn->kn_id) {
1326 1.3 jdolecek /* expand list, it's too small */
1327 1.1 lukem size = fdp->fd_knlistsize;
1328 1.3 jdolecek while (size <= kn->kn_id) {
1329 1.3 jdolecek /* grow in KQ_EXTENT chunks */
1330 1.3 jdolecek size += KQ_EXTENT;
1331 1.3 jdolecek }
1332 1.3 jdolecek list = malloc(size * sizeof(struct klist *), M_KEVENT,M_WAITOK);
1333 1.3 jdolecek if (fdp->fd_knlist) {
1334 1.3 jdolecek /* copy existing knlist */
1335 1.3 jdolecek memcpy((caddr_t)list, (caddr_t)fdp->fd_knlist,
1336 1.3 jdolecek fdp->fd_knlistsize * sizeof(struct klist *));
1337 1.3 jdolecek }
1338 1.3 jdolecek /*
1339 1.3 jdolecek * Zero new memory. Stylistically, SLIST_INIT() should be
1340 1.3 jdolecek * used here, but that does same thing as the memset() anyway.
1341 1.3 jdolecek */
1342 1.3 jdolecek memset(&list[fdp->fd_knlistsize], 0,
1343 1.1 lukem (size - fdp->fd_knlistsize) * sizeof(struct klist *));
1344 1.3 jdolecek
1345 1.3 jdolecek /* switch to new knlist */
1346 1.1 lukem if (fdp->fd_knlist != NULL)
1347 1.3 jdolecek free(fdp->fd_knlist, M_KEVENT);
1348 1.1 lukem fdp->fd_knlistsize = size;
1349 1.1 lukem fdp->fd_knlist = list;
1350 1.1 lukem }
1351 1.3 jdolecek
1352 1.3 jdolecek /* get list head for this fd */
1353 1.1 lukem list = &fdp->fd_knlist[kn->kn_id];
1354 1.3 jdolecek done:
1355 1.3 jdolecek /* add new knote */
1356 1.1 lukem SLIST_INSERT_HEAD(list, kn, kn_link);
1357 1.1 lukem kn->kn_status = 0;
1358 1.1 lukem }
1359 1.1 lukem
1360 1.1 lukem /*
1361 1.3 jdolecek * Drop knote.
1362 1.3 jdolecek * Should be called at spl == 0, since we don't want to hold spl
1363 1.3 jdolecek * while calling FILE_UNUSE and free.
1364 1.1 lukem */
1365 1.1 lukem static void
1366 1.16 fvdl knote_drop(struct knote *kn, struct proc *p, struct filedesc *fdp)
1367 1.1 lukem {
1368 1.3 jdolecek struct klist *list;
1369 1.1 lukem
1370 1.1 lukem if (kn->kn_fop->f_isfd)
1371 1.1 lukem list = &fdp->fd_knlist[kn->kn_id];
1372 1.1 lukem else
1373 1.1 lukem list = &fdp->fd_knhash[KN_HASH(kn->kn_id, fdp->fd_knhashmask)];
1374 1.1 lukem
1375 1.1 lukem SLIST_REMOVE(list, kn, knote, kn_link);
1376 1.1 lukem if (kn->kn_status & KN_QUEUED)
1377 1.1 lukem knote_dequeue(kn);
1378 1.1 lukem if (kn->kn_fop->f_isfd)
1379 1.16 fvdl FILE_UNUSE(kn->kn_fp, p);
1380 1.3 jdolecek pool_put(&knote_pool, kn);
1381 1.1 lukem }
1382 1.1 lukem
1383 1.1 lukem
1384 1.3 jdolecek /*
1385 1.3 jdolecek * Queue new event for knote.
1386 1.3 jdolecek */
1387 1.1 lukem static void
1388 1.1 lukem knote_enqueue(struct knote *kn)
1389 1.1 lukem {
1390 1.3 jdolecek struct kqueue *kq;
1391 1.3 jdolecek int s;
1392 1.1 lukem
1393 1.3 jdolecek kq = kn->kn_kq;
1394 1.3 jdolecek KASSERT((kn->kn_status & KN_QUEUED) == 0);
1395 1.1 lukem
1396 1.12 pk s = splsched();
1397 1.12 pk simple_lock(&kq->kq_lock);
1398 1.1 lukem TAILQ_INSERT_TAIL(&kq->kq_head, kn, kn_tqe);
1399 1.1 lukem kn->kn_status |= KN_QUEUED;
1400 1.1 lukem kq->kq_count++;
1401 1.12 pk simple_unlock(&kq->kq_lock);
1402 1.1 lukem splx(s);
1403 1.1 lukem kqueue_wakeup(kq);
1404 1.1 lukem }
1405 1.1 lukem
1406 1.3 jdolecek /*
1407 1.3 jdolecek * Dequeue event for knote.
1408 1.3 jdolecek */
1409 1.1 lukem static void
1410 1.1 lukem knote_dequeue(struct knote *kn)
1411 1.1 lukem {
1412 1.3 jdolecek struct kqueue *kq;
1413 1.3 jdolecek int s;
1414 1.1 lukem
1415 1.12 pk KASSERT(kn->kn_status & KN_QUEUED);
1416 1.3 jdolecek kq = kn->kn_kq;
1417 1.12 pk
1418 1.11 pk s = splsched();
1419 1.12 pk simple_lock(&kq->kq_lock);
1420 1.1 lukem TAILQ_REMOVE(&kq->kq_head, kn, kn_tqe);
1421 1.1 lukem kn->kn_status &= ~KN_QUEUED;
1422 1.1 lukem kq->kq_count--;
1423 1.12 pk simple_unlock(&kq->kq_lock);
1424 1.1 lukem splx(s);
1425 1.1 lukem }
1426