kern_descrip.c revision 1.265 1 1.265 riastrad /* $NetBSD: kern_descrip.c,v 1.265 2024/12/21 19:02:31 riastradh Exp $ */
2 1.173 ad
3 1.173 ad /*-
4 1.261 ad * Copyright (c) 2008, 2009, 2023 The NetBSD Foundation, Inc.
5 1.173 ad * All rights reserved.
6 1.173 ad *
7 1.190 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.190 ad * by Andrew Doran.
9 1.190 ad *
10 1.173 ad * Redistribution and use in source and binary forms, with or without
11 1.173 ad * modification, are permitted provided that the following conditions
12 1.173 ad * are met:
13 1.173 ad * 1. Redistributions of source code must retain the above copyright
14 1.173 ad * notice, this list of conditions and the following disclaimer.
15 1.173 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.173 ad * notice, this list of conditions and the following disclaimer in the
17 1.173 ad * documentation and/or other materials provided with the distribution.
18 1.173 ad *
19 1.173 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.173 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.173 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.173 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.173 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.173 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.173 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.173 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.173 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.173 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.173 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.173 ad */
31 1.22 cgd
32 1.16 cgd /*
33 1.17 cgd * Copyright (c) 1982, 1986, 1989, 1991, 1993
34 1.17 cgd * The Regents of the University of California. All rights reserved.
35 1.16 cgd * (c) UNIX System Laboratories, Inc.
36 1.16 cgd * All or some portions of this file are derived from material licensed
37 1.16 cgd * to the University of California by American Telephone and Telegraph
38 1.16 cgd * Co. or Unix System Laboratories, Inc. and are reproduced herein with
39 1.16 cgd * the permission of UNIX System Laboratories, Inc.
40 1.16 cgd *
41 1.16 cgd * Redistribution and use in source and binary forms, with or without
42 1.16 cgd * modification, are permitted provided that the following conditions
43 1.16 cgd * are met:
44 1.16 cgd * 1. Redistributions of source code must retain the above copyright
45 1.16 cgd * notice, this list of conditions and the following disclaimer.
46 1.16 cgd * 2. Redistributions in binary form must reproduce the above copyright
47 1.16 cgd * notice, this list of conditions and the following disclaimer in the
48 1.16 cgd * documentation and/or other materials provided with the distribution.
49 1.111 agc * 3. Neither the name of the University nor the names of its contributors
50 1.16 cgd * may be used to endorse or promote products derived from this software
51 1.16 cgd * without specific prior written permission.
52 1.16 cgd *
53 1.16 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
54 1.16 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
55 1.16 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
56 1.16 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
57 1.16 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
58 1.16 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
59 1.16 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
60 1.16 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
61 1.16 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
62 1.16 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
63 1.16 cgd * SUCH DAMAGE.
64 1.16 cgd *
65 1.51 fvdl * @(#)kern_descrip.c 8.8 (Berkeley) 2/14/95
66 1.16 cgd */
67 1.81 lukem
68 1.173 ad /*
69 1.173 ad * File descriptor management.
70 1.173 ad */
71 1.173 ad
72 1.81 lukem #include <sys/cdefs.h>
73 1.265 riastrad __KERNEL_RCSID(0, "$NetBSD: kern_descrip.c,v 1.265 2024/12/21 19:02:31 riastradh Exp $");
74 1.50 mrg
75 1.16 cgd #include <sys/param.h>
76 1.16 cgd #include <sys/systm.h>
77 1.16 cgd #include <sys/filedesc.h>
78 1.16 cgd #include <sys/kernel.h>
79 1.16 cgd #include <sys/proc.h>
80 1.16 cgd #include <sys/file.h>
81 1.16 cgd #include <sys/socket.h>
82 1.16 cgd #include <sys/socketvar.h>
83 1.16 cgd #include <sys/stat.h>
84 1.16 cgd #include <sys/ioctl.h>
85 1.16 cgd #include <sys/fcntl.h>
86 1.55 thorpej #include <sys/pool.h>
87 1.17 cgd #include <sys/unistd.h>
88 1.16 cgd #include <sys/resourcevar.h>
89 1.42 christos #include <sys/conf.h>
90 1.96 jdolecek #include <sys/event.h>
91 1.143 elad #include <sys/kauth.h>
92 1.163 ad #include <sys/atomic.h>
93 1.25 cgd #include <sys/syscallargs.h>
94 1.176 ad #include <sys/cpu.h>
95 1.184 pooka #include <sys/kmem.h>
96 1.184 pooka #include <sys/vnode.h>
97 1.210 pooka #include <sys/sysctl.h>
98 1.210 pooka #include <sys/ktrace.h>
99 1.38 christos
100 1.213 rmind /*
101 1.213 rmind * A list (head) of open files, counter, and lock protecting them.
102 1.213 rmind */
103 1.213 rmind struct filelist filehead __cacheline_aligned;
104 1.213 rmind static u_int nfiles __cacheline_aligned;
105 1.213 rmind kmutex_t filelist_lock __cacheline_aligned;
106 1.213 rmind
107 1.213 rmind static pool_cache_t filedesc_cache __read_mostly;
108 1.213 rmind static pool_cache_t file_cache __read_mostly;
109 1.213 rmind
110 1.167 ad static int file_ctor(void *, void *, int);
111 1.167 ad static void file_dtor(void *, void *);
112 1.261 ad static void fdfile_ctor(fdfile_t *);
113 1.261 ad static void fdfile_dtor(fdfile_t *);
114 1.173 ad static int filedesc_ctor(void *, void *, int);
115 1.173 ad static void filedesc_dtor(void *, void *);
116 1.173 ad static int filedescopen(dev_t, int, int, lwp_t *);
117 1.162 ad
118 1.210 pooka static int sysctl_kern_file(SYSCTLFN_PROTO);
119 1.210 pooka static int sysctl_kern_file2(SYSCTLFN_PROTO);
120 1.241 maxv static void fill_file(struct file *, const struct file *);
121 1.240 maxv static void fill_file2(struct kinfo_file *, const file_t *, const fdfile_t *,
122 1.210 pooka int, pid_t);
123 1.210 pooka
124 1.173 ad const struct cdevsw filedesc_cdevsw = {
125 1.224 dholland .d_open = filedescopen,
126 1.224 dholland .d_close = noclose,
127 1.224 dholland .d_read = noread,
128 1.224 dholland .d_write = nowrite,
129 1.224 dholland .d_ioctl = noioctl,
130 1.224 dholland .d_stop = nostop,
131 1.224 dholland .d_tty = notty,
132 1.224 dholland .d_poll = nopoll,
133 1.224 dholland .d_mmap = nommap,
134 1.224 dholland .d_kqfilter = nokqfilter,
135 1.225 dholland .d_discard = nodiscard,
136 1.224 dholland .d_flag = D_OTHER | D_MPSAFE
137 1.173 ad };
138 1.173 ad
139 1.173 ad /* For ease of reading. */
140 1.173 ad __strong_alias(fd_putvnode,fd_putfile)
141 1.173 ad __strong_alias(fd_putsock,fd_putfile)
142 1.173 ad
143 1.173 ad /*
144 1.173 ad * Initialize the descriptor system.
145 1.173 ad */
146 1.173 ad void
147 1.173 ad fd_sys_init(void)
148 1.173 ad {
149 1.210 pooka static struct sysctllog *clog;
150 1.173 ad
151 1.173 ad mutex_init(&filelist_lock, MUTEX_DEFAULT, IPL_NONE);
152 1.173 ad
153 1.239 maxv LIST_INIT(&filehead);
154 1.239 maxv
155 1.174 ad file_cache = pool_cache_init(sizeof(file_t), coherency_unit, 0,
156 1.173 ad 0, "file", NULL, IPL_NONE, file_ctor, file_dtor, NULL);
157 1.173 ad KASSERT(file_cache != NULL);
158 1.173 ad
159 1.174 ad filedesc_cache = pool_cache_init(sizeof(filedesc_t), coherency_unit,
160 1.173 ad 0, 0, "filedesc", NULL, IPL_NONE, filedesc_ctor, filedesc_dtor,
161 1.173 ad NULL);
162 1.173 ad KASSERT(filedesc_cache != NULL);
163 1.210 pooka
164 1.210 pooka sysctl_createv(&clog, 0, NULL, NULL,
165 1.210 pooka CTLFLAG_PERMANENT,
166 1.210 pooka CTLTYPE_STRUCT, "file",
167 1.210 pooka SYSCTL_DESCR("System open file table"),
168 1.210 pooka sysctl_kern_file, 0, NULL, 0,
169 1.210 pooka CTL_KERN, KERN_FILE, CTL_EOL);
170 1.210 pooka sysctl_createv(&clog, 0, NULL, NULL,
171 1.210 pooka CTLFLAG_PERMANENT,
172 1.210 pooka CTLTYPE_STRUCT, "file2",
173 1.210 pooka SYSCTL_DESCR("System open file table"),
174 1.210 pooka sysctl_kern_file2, 0, NULL, 0,
175 1.210 pooka CTL_KERN, KERN_FILE2, CTL_EOL);
176 1.173 ad }
177 1.72 lukem
178 1.192 ad static bool
179 1.192 ad fd_isused(filedesc_t *fdp, unsigned fd)
180 1.192 ad {
181 1.192 ad u_int off = fd >> NDENTRYSHIFT;
182 1.192 ad
183 1.244 riastrad KASSERT(fd < atomic_load_consume(&fdp->fd_dt)->dt_nfiles);
184 1.192 ad
185 1.233 kamil return (fdp->fd_lomap[off] & (1U << (fd & NDENTRYMASK))) != 0;
186 1.192 ad }
187 1.192 ad
188 1.192 ad /*
189 1.192 ad * Verify that the bitmaps match the descriptor table.
190 1.192 ad */
191 1.192 ad static inline void
192 1.192 ad fd_checkmaps(filedesc_t *fdp)
193 1.192 ad {
194 1.192 ad #ifdef DEBUG
195 1.192 ad fdtab_t *dt;
196 1.192 ad u_int fd;
197 1.192 ad
198 1.244 riastrad KASSERT(fdp->fd_refcnt <= 1 || mutex_owned(&fdp->fd_lock));
199 1.244 riastrad
200 1.192 ad dt = fdp->fd_dt;
201 1.196 yamt if (fdp->fd_refcnt == -1) {
202 1.196 yamt /*
203 1.196 yamt * fd_free tears down the table without maintaining its bitmap.
204 1.196 yamt */
205 1.196 yamt return;
206 1.196 yamt }
207 1.192 ad for (fd = 0; fd < dt->dt_nfiles; fd++) {
208 1.192 ad if (fd < NDFDFILE) {
209 1.192 ad KASSERT(dt->dt_ff[fd] ==
210 1.192 ad (fdfile_t *)fdp->fd_dfdfile[fd]);
211 1.192 ad }
212 1.192 ad if (dt->dt_ff[fd] == NULL) {
213 1.192 ad KASSERT(!fd_isused(fdp, fd));
214 1.192 ad } else if (dt->dt_ff[fd]->ff_file != NULL) {
215 1.192 ad KASSERT(fd_isused(fdp, fd));
216 1.192 ad }
217 1.192 ad }
218 1.213 rmind #endif
219 1.192 ad }
220 1.192 ad
221 1.173 ad static int
222 1.173 ad fd_next_zero(filedesc_t *fdp, uint32_t *bitmap, int want, u_int bits)
223 1.115 provos {
224 1.115 provos int i, off, maxoff;
225 1.115 provos uint32_t sub;
226 1.115 provos
227 1.173 ad KASSERT(mutex_owned(&fdp->fd_lock));
228 1.173 ad
229 1.192 ad fd_checkmaps(fdp);
230 1.192 ad
231 1.115 provos if (want > bits)
232 1.115 provos return -1;
233 1.115 provos
234 1.115 provos off = want >> NDENTRYSHIFT;
235 1.115 provos i = want & NDENTRYMASK;
236 1.115 provos if (i) {
237 1.115 provos sub = bitmap[off] | ((u_int)~0 >> (NDENTRIES - i));
238 1.115 provos if (sub != ~0)
239 1.115 provos goto found;
240 1.115 provos off++;
241 1.115 provos }
242 1.115 provos
243 1.115 provos maxoff = NDLOSLOTS(bits);
244 1.115 provos while (off < maxoff) {
245 1.115 provos if ((sub = bitmap[off]) != ~0)
246 1.115 provos goto found;
247 1.115 provos off++;
248 1.115 provos }
249 1.115 provos
250 1.213 rmind return -1;
251 1.115 provos
252 1.115 provos found:
253 1.115 provos return (off << NDENTRYSHIFT) + ffs(~sub) - 1;
254 1.115 provos }
255 1.115 provos
256 1.134 thorpej static int
257 1.173 ad fd_last_set(filedesc_t *fd, int last)
258 1.115 provos {
259 1.115 provos int off, i;
260 1.192 ad fdfile_t **ff = fd->fd_dt->dt_ff;
261 1.115 provos uint32_t *bitmap = fd->fd_lomap;
262 1.115 provos
263 1.173 ad KASSERT(mutex_owned(&fd->fd_lock));
264 1.173 ad
265 1.192 ad fd_checkmaps(fd);
266 1.192 ad
267 1.115 provos off = (last - 1) >> NDENTRYSHIFT;
268 1.115 provos
269 1.121 provos while (off >= 0 && !bitmap[off])
270 1.115 provos off--;
271 1.115 provos
272 1.115 provos if (off < 0)
273 1.213 rmind return -1;
274 1.131 perry
275 1.115 provos i = ((off + 1) << NDENTRYSHIFT) - 1;
276 1.115 provos if (i >= last)
277 1.115 provos i = last - 1;
278 1.115 provos
279 1.173 ad /* XXX should use bitmap */
280 1.192 ad while (i > 0 && (ff[i] == NULL || !ff[i]->ff_allocated))
281 1.115 provos i--;
282 1.115 provos
283 1.213 rmind return i;
284 1.115 provos }
285 1.115 provos
286 1.192 ad static inline void
287 1.173 ad fd_used(filedesc_t *fdp, unsigned fd)
288 1.27 mycroft {
289 1.115 provos u_int off = fd >> NDENTRYSHIFT;
290 1.173 ad fdfile_t *ff;
291 1.173 ad
292 1.192 ad ff = fdp->fd_dt->dt_ff[fd];
293 1.115 provos
294 1.173 ad KASSERT(mutex_owned(&fdp->fd_lock));
295 1.232 kamil KASSERT((fdp->fd_lomap[off] & (1U << (fd & NDENTRYMASK))) == 0);
296 1.173 ad KASSERT(ff != NULL);
297 1.173 ad KASSERT(ff->ff_file == NULL);
298 1.213 rmind KASSERT(!ff->ff_allocated);
299 1.124 yamt
300 1.217 chs ff->ff_allocated = true;
301 1.232 kamil fdp->fd_lomap[off] |= 1U << (fd & NDENTRYMASK);
302 1.192 ad if (__predict_false(fdp->fd_lomap[off] == ~0)) {
303 1.173 ad KASSERT((fdp->fd_himap[off >> NDENTRYSHIFT] &
304 1.232 kamil (1U << (off & NDENTRYMASK))) == 0);
305 1.232 kamil fdp->fd_himap[off >> NDENTRYSHIFT] |= 1U << (off & NDENTRYMASK);
306 1.124 yamt }
307 1.27 mycroft
308 1.173 ad if ((int)fd > fdp->fd_lastfile) {
309 1.27 mycroft fdp->fd_lastfile = fd;
310 1.173 ad }
311 1.173 ad
312 1.192 ad fd_checkmaps(fdp);
313 1.27 mycroft }
314 1.27 mycroft
315 1.192 ad static inline void
316 1.173 ad fd_unused(filedesc_t *fdp, unsigned fd)
317 1.27 mycroft {
318 1.115 provos u_int off = fd >> NDENTRYSHIFT;
319 1.173 ad fdfile_t *ff;
320 1.27 mycroft
321 1.192 ad ff = fdp->fd_dt->dt_ff[fd];
322 1.173 ad
323 1.244 riastrad KASSERT(mutex_owned(&fdp->fd_lock));
324 1.173 ad KASSERT(ff != NULL);
325 1.173 ad KASSERT(ff->ff_file == NULL);
326 1.213 rmind KASSERT(ff->ff_allocated);
327 1.173 ad
328 1.173 ad if (fd < fdp->fd_freefile) {
329 1.27 mycroft fdp->fd_freefile = fd;
330 1.173 ad }
331 1.115 provos
332 1.124 yamt if (fdp->fd_lomap[off] == ~0) {
333 1.173 ad KASSERT((fdp->fd_himap[off >> NDENTRYSHIFT] &
334 1.235 kamil (1U << (off & NDENTRYMASK))) != 0);
335 1.124 yamt fdp->fd_himap[off >> NDENTRYSHIFT] &=
336 1.235 kamil ~(1U << (off & NDENTRYMASK));
337 1.124 yamt }
338 1.235 kamil KASSERT((fdp->fd_lomap[off] & (1U << (fd & NDENTRYMASK))) != 0);
339 1.235 kamil fdp->fd_lomap[off] &= ~(1U << (fd & NDENTRYMASK));
340 1.217 chs ff->ff_allocated = false;
341 1.115 provos
342 1.173 ad KASSERT(fd <= fdp->fd_lastfile);
343 1.173 ad if (fd == fdp->fd_lastfile) {
344 1.173 ad fdp->fd_lastfile = fd_last_set(fdp, fd);
345 1.173 ad }
346 1.192 ad fd_checkmaps(fdp);
347 1.77 thorpej }
348 1.77 thorpej
349 1.16 cgd /*
350 1.173 ad * Look up the file structure corresponding to a file descriptor
351 1.173 ad * and return the file, holding a reference on the descriptor.
352 1.134 thorpej */
353 1.214 rmind file_t *
354 1.173 ad fd_getfile(unsigned fd)
355 1.134 thorpej {
356 1.173 ad filedesc_t *fdp;
357 1.173 ad fdfile_t *ff;
358 1.173 ad file_t *fp;
359 1.192 ad fdtab_t *dt;
360 1.134 thorpej
361 1.134 thorpej /*
362 1.173 ad * Look up the fdfile structure representing this descriptor.
363 1.192 ad * We are doing this unlocked. See fd_tryexpand().
364 1.134 thorpej */
365 1.192 ad fdp = curlwp->l_fd;
366 1.244 riastrad dt = atomic_load_consume(&fdp->fd_dt);
367 1.192 ad if (__predict_false(fd >= dt->dt_nfiles)) {
368 1.173 ad return NULL;
369 1.173 ad }
370 1.192 ad ff = dt->dt_ff[fd];
371 1.173 ad KASSERT(fd >= NDFDFILE || ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
372 1.173 ad if (__predict_false(ff == NULL)) {
373 1.173 ad return NULL;
374 1.173 ad }
375 1.134 thorpej
376 1.191 ad /* Now get a reference to the descriptor. */
377 1.191 ad if (fdp->fd_refcnt == 1) {
378 1.191 ad /*
379 1.191 ad * Single threaded: don't need to worry about concurrent
380 1.191 ad * access (other than earlier calls to kqueue, which may
381 1.191 ad * hold a reference to the descriptor).
382 1.191 ad */
383 1.191 ad ff->ff_refcnt++;
384 1.191 ad } else {
385 1.191 ad /*
386 1.192 ad * Multi threaded: issue a memory barrier to ensure that we
387 1.192 ad * acquire the file pointer _after_ adding a reference. If
388 1.192 ad * no memory barrier, we could fetch a stale pointer.
389 1.254 riastrad *
390 1.254 riastrad * In particular, we must coordinate the following four
391 1.254 riastrad * memory operations:
392 1.254 riastrad *
393 1.254 riastrad * A. fd_close store ff->ff_file = NULL
394 1.254 riastrad * B. fd_close refcnt = atomic_dec_uint_nv(&ff->ff_refcnt)
395 1.254 riastrad * C. fd_getfile atomic_inc_uint(&ff->ff_refcnt)
396 1.254 riastrad * D. fd_getfile load fp = ff->ff_file
397 1.254 riastrad *
398 1.254 riastrad * If the order is D;A;B;C:
399 1.254 riastrad *
400 1.254 riastrad * 1. D: fp = ff->ff_file
401 1.254 riastrad * 2. A: ff->ff_file = NULL
402 1.254 riastrad * 3. B: refcnt = atomic_dec_uint_nv(&ff->ff_refcnt)
403 1.254 riastrad * 4. C: atomic_inc_uint(&ff->ff_refcnt)
404 1.254 riastrad *
405 1.254 riastrad * then fd_close determines that there are no more
406 1.254 riastrad * references and decides to free fp immediately, at
407 1.254 riastrad * the same that fd_getfile ends up with an fp that's
408 1.254 riastrad * about to be freed. *boom*
409 1.254 riastrad *
410 1.254 riastrad * By making B a release operation in fd_close, and by
411 1.254 riastrad * making C an acquire operation in fd_getfile, since
412 1.254 riastrad * they are atomic operations on the same object, which
413 1.254 riastrad * has a total modification order, we guarantee either:
414 1.254 riastrad *
415 1.254 riastrad * - B happens before C. Then since A is
416 1.254 riastrad * sequenced before B in fd_close, and C is
417 1.254 riastrad * sequenced before D in fd_getfile, we
418 1.254 riastrad * guarantee A happens before D, so fd_getfile
419 1.254 riastrad * reads a null fp and safely fails.
420 1.254 riastrad *
421 1.254 riastrad * - C happens before B. Then fd_getfile may read
422 1.254 riastrad * null or nonnull, but either way, fd_close
423 1.254 riastrad * will safely wait for references to drain.
424 1.191 ad */
425 1.191 ad atomic_inc_uint(&ff->ff_refcnt);
426 1.254 riastrad membar_acquire();
427 1.191 ad }
428 1.134 thorpej
429 1.173 ad /*
430 1.173 ad * If the file is not open or is being closed then put the
431 1.173 ad * reference back.
432 1.173 ad */
433 1.245 riastrad fp = atomic_load_consume(&ff->ff_file);
434 1.173 ad if (__predict_true(fp != NULL)) {
435 1.173 ad return fp;
436 1.134 thorpej }
437 1.173 ad fd_putfile(fd);
438 1.173 ad return NULL;
439 1.134 thorpej }
440 1.134 thorpej
441 1.134 thorpej /*
442 1.173 ad * Release a reference to a file descriptor acquired with fd_getfile().
443 1.161 ad */
444 1.161 ad void
445 1.173 ad fd_putfile(unsigned fd)
446 1.161 ad {
447 1.173 ad filedesc_t *fdp;
448 1.173 ad fdfile_t *ff;
449 1.173 ad u_int u, v;
450 1.173 ad
451 1.173 ad fdp = curlwp->l_fd;
452 1.244 riastrad KASSERT(fd < atomic_load_consume(&fdp->fd_dt)->dt_nfiles);
453 1.244 riastrad ff = atomic_load_consume(&fdp->fd_dt)->dt_ff[fd];
454 1.173 ad
455 1.173 ad KASSERT(ff != NULL);
456 1.173 ad KASSERT((ff->ff_refcnt & FR_MASK) > 0);
457 1.173 ad KASSERT(fd >= NDFDFILE || ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
458 1.161 ad
459 1.191 ad if (fdp->fd_refcnt == 1) {
460 1.191 ad /*
461 1.191 ad * Single threaded: don't need to worry about concurrent
462 1.191 ad * access (other than earlier calls to kqueue, which may
463 1.191 ad * hold a reference to the descriptor).
464 1.191 ad */
465 1.191 ad if (__predict_false((ff->ff_refcnt & FR_CLOSING) != 0)) {
466 1.191 ad fd_close(fd);
467 1.191 ad return;
468 1.191 ad }
469 1.191 ad ff->ff_refcnt--;
470 1.191 ad return;
471 1.191 ad }
472 1.191 ad
473 1.173 ad /*
474 1.173 ad * Ensure that any use of the file is complete and globally
475 1.173 ad * visible before dropping the final reference. If no membar,
476 1.173 ad * the current CPU could still access memory associated with
477 1.173 ad * the file after it has been freed or recycled by another
478 1.173 ad * CPU.
479 1.173 ad */
480 1.252 riastrad membar_release();
481 1.161 ad
482 1.173 ad /*
483 1.173 ad * Be optimistic and start out with the assumption that no other
484 1.173 ad * threads are trying to close the descriptor. If the CAS fails,
485 1.173 ad * we lost a race and/or it's being closed.
486 1.173 ad */
487 1.173 ad for (u = ff->ff_refcnt & FR_MASK;; u = v) {
488 1.173 ad v = atomic_cas_uint(&ff->ff_refcnt, u, u - 1);
489 1.173 ad if (__predict_true(u == v)) {
490 1.173 ad return;
491 1.173 ad }
492 1.173 ad if (__predict_false((v & FR_CLOSING) != 0)) {
493 1.173 ad break;
494 1.173 ad }
495 1.173 ad }
496 1.162 ad
497 1.173 ad /* Another thread is waiting to close the file: join it. */
498 1.173 ad (void)fd_close(fd);
499 1.161 ad }
500 1.161 ad
501 1.161 ad /*
502 1.173 ad * Convenience wrapper around fd_getfile() that returns reference
503 1.173 ad * to a vnode.
504 1.16 cgd */
505 1.38 christos int
506 1.173 ad fd_getvnode(unsigned fd, file_t **fpp)
507 1.36 thorpej {
508 1.173 ad vnode_t *vp;
509 1.173 ad file_t *fp;
510 1.72 lukem
511 1.173 ad fp = fd_getfile(fd);
512 1.173 ad if (__predict_false(fp == NULL)) {
513 1.173 ad return EBADF;
514 1.173 ad }
515 1.173 ad if (__predict_false(fp->f_type != DTYPE_VNODE)) {
516 1.173 ad fd_putfile(fd);
517 1.173 ad return EINVAL;
518 1.173 ad }
519 1.227 matt vp = fp->f_vnode;
520 1.173 ad if (__predict_false(vp->v_type == VBAD)) {
521 1.173 ad /* XXX Is this case really necessary? */
522 1.173 ad fd_putfile(fd);
523 1.173 ad return EBADF;
524 1.59 thorpej }
525 1.173 ad *fpp = fp;
526 1.173 ad return 0;
527 1.16 cgd }
528 1.16 cgd
529 1.16 cgd /*
530 1.173 ad * Convenience wrapper around fd_getfile() that returns reference
531 1.173 ad * to a socket.
532 1.16 cgd */
533 1.38 christos int
534 1.218 christos fd_getsock1(unsigned fd, struct socket **sop, file_t **fp)
535 1.36 thorpej {
536 1.218 christos *fp = fd_getfile(fd);
537 1.218 christos if (__predict_false(*fp == NULL)) {
538 1.173 ad return EBADF;
539 1.103 pk }
540 1.218 christos if (__predict_false((*fp)->f_type != DTYPE_SOCKET)) {
541 1.173 ad fd_putfile(fd);
542 1.173 ad return ENOTSOCK;
543 1.17 cgd }
544 1.227 matt *sop = (*fp)->f_socket;
545 1.173 ad return 0;
546 1.16 cgd }
547 1.16 cgd
548 1.218 christos int
549 1.218 christos fd_getsock(unsigned fd, struct socket **sop)
550 1.218 christos {
551 1.218 christos file_t *fp;
552 1.218 christos return fd_getsock1(fd, sop, &fp);
553 1.218 christos }
554 1.218 christos
555 1.16 cgd /*
556 1.173 ad * Look up the file structure corresponding to a file descriptor
557 1.173 ad * and return it with a reference held on the file, not the
558 1.173 ad * descriptor.
559 1.173 ad *
560 1.173 ad * This is heavyweight and only used when accessing descriptors
561 1.173 ad * from a foreign process. The caller must ensure that `p' does
562 1.173 ad * not exit or fork across this call.
563 1.173 ad *
564 1.173 ad * To release the file (not descriptor) reference, use closef().
565 1.134 thorpej */
566 1.173 ad file_t *
567 1.173 ad fd_getfile2(proc_t *p, unsigned fd)
568 1.134 thorpej {
569 1.173 ad filedesc_t *fdp;
570 1.173 ad fdfile_t *ff;
571 1.173 ad file_t *fp;
572 1.192 ad fdtab_t *dt;
573 1.134 thorpej
574 1.173 ad fdp = p->p_fd;
575 1.173 ad mutex_enter(&fdp->fd_lock);
576 1.192 ad dt = fdp->fd_dt;
577 1.192 ad if (fd >= dt->dt_nfiles) {
578 1.173 ad mutex_exit(&fdp->fd_lock);
579 1.173 ad return NULL;
580 1.173 ad }
581 1.192 ad if ((ff = dt->dt_ff[fd]) == NULL) {
582 1.173 ad mutex_exit(&fdp->fd_lock);
583 1.173 ad return NULL;
584 1.173 ad }
585 1.245 riastrad if ((fp = atomic_load_consume(&ff->ff_file)) == NULL) {
586 1.173 ad mutex_exit(&fdp->fd_lock);
587 1.173 ad return NULL;
588 1.158 dsl }
589 1.173 ad mutex_enter(&fp->f_lock);
590 1.173 ad fp->f_count++;
591 1.173 ad mutex_exit(&fp->f_lock);
592 1.173 ad mutex_exit(&fdp->fd_lock);
593 1.158 dsl
594 1.173 ad return fp;
595 1.158 dsl }
596 1.158 dsl
597 1.134 thorpej /*
598 1.173 ad * Internal form of close. Must be called with a reference to the
599 1.173 ad * descriptor, and will drop the reference. When all descriptor
600 1.173 ad * references are dropped, releases the descriptor slot and a single
601 1.173 ad * reference to the file structure.
602 1.173 ad */
603 1.173 ad int
604 1.173 ad fd_close(unsigned fd)
605 1.173 ad {
606 1.173 ad struct flock lf;
607 1.173 ad filedesc_t *fdp;
608 1.173 ad fdfile_t *ff;
609 1.173 ad file_t *fp;
610 1.173 ad proc_t *p;
611 1.173 ad lwp_t *l;
612 1.192 ad u_int refcnt;
613 1.72 lukem
614 1.173 ad l = curlwp;
615 1.99 thorpej p = l->l_proc;
616 1.173 ad fdp = l->l_fd;
617 1.244 riastrad ff = atomic_load_consume(&fdp->fd_dt)->dt_ff[fd];
618 1.16 cgd
619 1.173 ad KASSERT(fd >= NDFDFILE || ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
620 1.122 christos
621 1.192 ad mutex_enter(&fdp->fd_lock);
622 1.173 ad KASSERT((ff->ff_refcnt & FR_MASK) > 0);
623 1.245 riastrad fp = atomic_load_consume(&ff->ff_file);
624 1.245 riastrad if (__predict_false(fp == NULL)) {
625 1.173 ad /*
626 1.173 ad * Another user of the file is already closing, and is
627 1.173 ad * waiting for other users of the file to drain. Release
628 1.173 ad * our reference, and wake up the closer.
629 1.173 ad */
630 1.252 riastrad membar_release();
631 1.173 ad atomic_dec_uint(&ff->ff_refcnt);
632 1.173 ad cv_broadcast(&ff->ff_closing);
633 1.192 ad mutex_exit(&fdp->fd_lock);
634 1.122 christos
635 1.173 ad /*
636 1.173 ad * An application error, so pretend that the descriptor
637 1.173 ad * was already closed. We can't safely wait for it to
638 1.173 ad * be closed without potentially deadlocking.
639 1.173 ad */
640 1.16 cgd return (EBADF);
641 1.61 wrstuden }
642 1.173 ad KASSERT((ff->ff_refcnt & FR_CLOSING) == 0);
643 1.61 wrstuden
644 1.173 ad /*
645 1.173 ad * There may be multiple users of this file within the process.
646 1.173 ad * Notify existing and new users that the file is closing. This
647 1.173 ad * will prevent them from adding additional uses to this file
648 1.173 ad * while we are closing it.
649 1.173 ad */
650 1.253 riastrad atomic_store_relaxed(&ff->ff_file, NULL);
651 1.182 matt ff->ff_exclose = false;
652 1.17 cgd
653 1.173 ad /*
654 1.173 ad * We expect the caller to hold a descriptor reference - drop it.
655 1.173 ad * The reference count may increase beyond zero at this point due
656 1.173 ad * to an erroneous descriptor reference by an application, but
657 1.173 ad * fd_getfile() will notice that the file is being closed and drop
658 1.173 ad * the reference again.
659 1.173 ad */
660 1.192 ad if (fdp->fd_refcnt == 1) {
661 1.192 ad /* Single threaded. */
662 1.192 ad refcnt = --(ff->ff_refcnt);
663 1.192 ad } else {
664 1.192 ad /* Multi threaded. */
665 1.252 riastrad membar_release();
666 1.192 ad refcnt = atomic_dec_uint_nv(&ff->ff_refcnt);
667 1.252 riastrad membar_acquire();
668 1.192 ad }
669 1.192 ad if (__predict_false(refcnt != 0)) {
670 1.173 ad /*
671 1.173 ad * Wait for other references to drain. This is typically
672 1.173 ad * an application error - the descriptor is being closed
673 1.173 ad * while still in use.
674 1.202 dsl * (Or just a threaded application trying to unblock its
675 1.202 dsl * thread that sleeps in (say) accept()).
676 1.173 ad */
677 1.173 ad atomic_or_uint(&ff->ff_refcnt, FR_CLOSING);
678 1.190 ad
679 1.173 ad /*
680 1.173 ad * Remove any knotes attached to the file. A knote
681 1.173 ad * attached to the descriptor can hold references on it.
682 1.173 ad */
683 1.192 ad mutex_exit(&fdp->fd_lock);
684 1.173 ad if (!SLIST_EMPTY(&ff->ff_knlist)) {
685 1.173 ad knote_fdclose(fd);
686 1.75 thorpej }
687 1.190 ad
688 1.202 dsl /*
689 1.202 dsl * Since the file system code doesn't know which fd
690 1.202 dsl * each request came from (think dup()), we have to
691 1.202 dsl * ask it to return ERESTART for any long-term blocks.
692 1.202 dsl * The re-entry through read/write/etc will detect the
693 1.202 dsl * closed fd and return EBAFD.
694 1.202 dsl * Blocked partial writes may return a short length.
695 1.202 dsl */
696 1.202 dsl (*fp->f_ops->fo_restart)(fp);
697 1.192 ad mutex_enter(&fdp->fd_lock);
698 1.190 ad
699 1.173 ad /*
700 1.173 ad * We need to see the count drop to zero at least once,
701 1.173 ad * in order to ensure that all pre-existing references
702 1.173 ad * have been drained. New references past this point are
703 1.173 ad * of no interest.
704 1.202 dsl * XXX (dsl) this may need to call fo_restart() after a
705 1.202 dsl * timeout to guarantee that all the system calls exit.
706 1.173 ad */
707 1.173 ad while ((ff->ff_refcnt & FR_MASK) != 0) {
708 1.192 ad cv_wait(&ff->ff_closing, &fdp->fd_lock);
709 1.107 dsl }
710 1.173 ad atomic_and_uint(&ff->ff_refcnt, ~FR_CLOSING);
711 1.173 ad } else {
712 1.173 ad /* If no references, there must be no knotes. */
713 1.173 ad KASSERT(SLIST_EMPTY(&ff->ff_knlist));
714 1.16 cgd }
715 1.59 thorpej
716 1.173 ad /*
717 1.173 ad * POSIX record locking dictates that any close releases ALL
718 1.173 ad * locks owned by this process. This is handled by setting
719 1.173 ad * a flag in the unlock to free ONLY locks obeying POSIX
720 1.173 ad * semantics, and not to free BSD-style file locks.
721 1.173 ad * If the descriptor was in a message, POSIX-style locks
722 1.173 ad * aren't passed with the descriptor.
723 1.173 ad */
724 1.256 riastrad if (__predict_false((p->p_flag & PK_ADVLOCK) != 0) &&
725 1.256 riastrad fp->f_ops->fo_advlock != NULL) {
726 1.173 ad lf.l_whence = SEEK_SET;
727 1.173 ad lf.l_start = 0;
728 1.173 ad lf.l_len = 0;
729 1.173 ad lf.l_type = F_UNLCK;
730 1.192 ad mutex_exit(&fdp->fd_lock);
731 1.256 riastrad (void)(*fp->f_ops->fo_advlock)(fp, p, F_UNLCK, &lf, F_POSIX);
732 1.192 ad mutex_enter(&fdp->fd_lock);
733 1.103 pk }
734 1.103 pk
735 1.173 ad /* Free descriptor slot. */
736 1.126 pk fd_unused(fdp, fd);
737 1.173 ad mutex_exit(&fdp->fd_lock);
738 1.126 pk
739 1.173 ad /* Now drop reference to the file itself. */
740 1.173 ad return closef(fp);
741 1.27 mycroft }
742 1.27 mycroft
743 1.17 cgd /*
744 1.173 ad * Duplicate a file descriptor.
745 1.16 cgd */
746 1.38 christos int
747 1.182 matt fd_dup(file_t *fp, int minfd, int *newp, bool exclose)
748 1.36 thorpej {
749 1.213 rmind proc_t *p = curproc;
750 1.173 ad int error;
751 1.16 cgd
752 1.173 ad while ((error = fd_alloc(p, minfd, newp)) != 0) {
753 1.173 ad if (error != ENOSPC) {
754 1.173 ad return error;
755 1.173 ad }
756 1.173 ad fd_tryexpand(p);
757 1.173 ad }
758 1.79 thorpej
759 1.264 kre fd_set_exclose(curlwp, *newp, exclose);
760 1.173 ad fd_affix(p, fp, *newp);
761 1.173 ad return 0;
762 1.16 cgd }
763 1.16 cgd
764 1.17 cgd /*
765 1.173 ad * dup2 operation.
766 1.153 dsl */
767 1.153 dsl int
768 1.226 matt fd_dup2(file_t *fp, unsigned newfd, int flags)
769 1.153 dsl {
770 1.213 rmind filedesc_t *fdp = curlwp->l_fd;
771 1.173 ad fdfile_t *ff;
772 1.192 ad fdtab_t *dt;
773 1.153 dsl
774 1.243 christos if (flags & ~(O_CLOEXEC|O_NONBLOCK|O_NOSIGPIPE))
775 1.216 christos return EINVAL;
776 1.173 ad /*
777 1.173 ad * Ensure there are enough slots in the descriptor table,
778 1.173 ad * and allocate an fdfile_t up front in case we need it.
779 1.173 ad */
780 1.244 riastrad while (newfd >= atomic_load_consume(&fdp->fd_dt)->dt_nfiles) {
781 1.173 ad fd_tryexpand(curproc);
782 1.173 ad }
783 1.261 ad ff = kmem_alloc(sizeof(*ff), KM_SLEEP);
784 1.261 ad fdfile_ctor(ff);
785 1.153 dsl
786 1.173 ad /*
787 1.173 ad * If there is already a file open, close it. If the file is
788 1.173 ad * half open, wait for it to be constructed before closing it.
789 1.173 ad * XXX Potential for deadlock here?
790 1.173 ad */
791 1.173 ad mutex_enter(&fdp->fd_lock);
792 1.226 matt while (fd_isused(fdp, newfd)) {
793 1.173 ad mutex_exit(&fdp->fd_lock);
794 1.226 matt if (fd_getfile(newfd) != NULL) {
795 1.226 matt (void)fd_close(newfd);
796 1.173 ad } else {
797 1.192 ad /*
798 1.192 ad * Crummy, but unlikely to happen.
799 1.192 ad * Can occur if we interrupt another
800 1.192 ad * thread while it is opening a file.
801 1.192 ad */
802 1.173 ad kpause("dup2", false, 1, NULL);
803 1.173 ad }
804 1.173 ad mutex_enter(&fdp->fd_lock);
805 1.173 ad }
806 1.192 ad dt = fdp->fd_dt;
807 1.226 matt if (dt->dt_ff[newfd] == NULL) {
808 1.226 matt KASSERT(newfd >= NDFDFILE);
809 1.226 matt dt->dt_ff[newfd] = ff;
810 1.173 ad ff = NULL;
811 1.213 rmind }
812 1.226 matt fd_used(fdp, newfd);
813 1.173 ad mutex_exit(&fdp->fd_lock);
814 1.173 ad
815 1.264 kre fd_set_exclose(curlwp, newfd, (flags & O_CLOEXEC) != 0);
816 1.243 christos fp->f_flag |= flags & (FNONBLOCK|FNOSIGPIPE);
817 1.173 ad /* Slot is now allocated. Insert copy of the file. */
818 1.226 matt fd_affix(curproc, fp, newfd);
819 1.173 ad if (ff != NULL) {
820 1.261 ad cv_destroy(&ff->ff_closing);
821 1.261 ad kmem_free(ff, sizeof(*ff));
822 1.173 ad }
823 1.173 ad return 0;
824 1.153 dsl }
825 1.153 dsl
826 1.153 dsl /*
827 1.173 ad * Drop reference to a file structure.
828 1.17 cgd */
829 1.38 christos int
830 1.173 ad closef(file_t *fp)
831 1.36 thorpej {
832 1.173 ad struct flock lf;
833 1.173 ad int error;
834 1.16 cgd
835 1.173 ad /*
836 1.173 ad * Drop reference. If referenced elsewhere it's still open
837 1.173 ad * and we have nothing more to do.
838 1.173 ad */
839 1.173 ad mutex_enter(&fp->f_lock);
840 1.173 ad KASSERT(fp->f_count > 0);
841 1.173 ad if (--fp->f_count > 0) {
842 1.173 ad mutex_exit(&fp->f_lock);
843 1.173 ad return 0;
844 1.173 ad }
845 1.173 ad KASSERT(fp->f_count == 0);
846 1.173 ad mutex_exit(&fp->f_lock);
847 1.59 thorpej
848 1.173 ad /* We held the last reference - release locks, close and free. */
849 1.257 riastrad if (fp->f_ops->fo_advlock == NULL) {
850 1.257 riastrad KASSERT((fp->f_flag & FHASLOCK) == 0);
851 1.257 riastrad } else if (fp->f_flag & FHASLOCK) {
852 1.213 rmind lf.l_whence = SEEK_SET;
853 1.173 ad lf.l_start = 0;
854 1.173 ad lf.l_len = 0;
855 1.173 ad lf.l_type = F_UNLCK;
856 1.256 riastrad (void)(*fp->f_ops->fo_advlock)(fp, fp, F_UNLCK, &lf, F_FLOCK);
857 1.173 ad }
858 1.173 ad if (fp->f_ops != NULL) {
859 1.173 ad error = (*fp->f_ops->fo_close)(fp);
860 1.265 riastrad
861 1.265 riastrad /*
862 1.265 riastrad * .fo_close is final, so real errors are frowned on
863 1.265 riastrad * (but allowed and passed on to close(2)), and
864 1.265 riastrad * ERESTART is absolutely forbidden because the file
865 1.265 riastrad * descriptor is gone and there is no chance to retry.
866 1.265 riastrad */
867 1.265 riastrad KASSERTMSG(error != ERESTART,
868 1.265 riastrad "file %p f_ops %p fo_close %p returned ERESTART",
869 1.265 riastrad fp, fp->f_ops, fp->f_ops->fo_close);
870 1.173 ad } else {
871 1.173 ad error = 0;
872 1.17 cgd }
873 1.191 ad KASSERT(fp->f_count == 0);
874 1.191 ad KASSERT(fp->f_cred != NULL);
875 1.191 ad pool_cache_put(file_cache, fp);
876 1.59 thorpej
877 1.173 ad return error;
878 1.16 cgd }
879 1.16 cgd
880 1.16 cgd /*
881 1.16 cgd * Allocate a file descriptor for the process.
882 1.261 ad *
883 1.261 ad * Future idea for experimentation: replace all of this with radixtree.
884 1.16 cgd */
885 1.38 christos int
886 1.173 ad fd_alloc(proc_t *p, int want, int *result)
887 1.72 lukem {
888 1.213 rmind filedesc_t *fdp = p->p_fd;
889 1.226 matt int i, lim, last, error, hi;
890 1.226 matt u_int off;
891 1.192 ad fdtab_t *dt;
892 1.173 ad
893 1.173 ad KASSERT(p == curproc || p == &proc0);
894 1.72 lukem
895 1.16 cgd /*
896 1.16 cgd * Search for a free descriptor starting at the higher
897 1.173 ad * of want or fd_freefile.
898 1.16 cgd */
899 1.173 ad mutex_enter(&fdp->fd_lock);
900 1.192 ad fd_checkmaps(fdp);
901 1.192 ad dt = fdp->fd_dt;
902 1.192 ad KASSERT(dt->dt_ff[0] == (fdfile_t *)fdp->fd_dfdfile[0]);
903 1.236 riastrad lim = uimin((int)p->p_rlimit[RLIMIT_NOFILE].rlim_cur, maxfiles);
904 1.236 riastrad last = uimin(dt->dt_nfiles, lim);
905 1.261 ad
906 1.173 ad for (;;) {
907 1.173 ad if ((i = want) < fdp->fd_freefile)
908 1.173 ad i = fdp->fd_freefile;
909 1.173 ad off = i >> NDENTRYSHIFT;
910 1.226 matt hi = fd_next_zero(fdp, fdp->fd_himap, off,
911 1.173 ad (last + NDENTRIES - 1) >> NDENTRYSHIFT);
912 1.226 matt if (hi == -1)
913 1.173 ad break;
914 1.226 matt i = fd_next_zero(fdp, &fdp->fd_lomap[hi],
915 1.226 matt hi > off ? 0 : i & NDENTRYMASK, NDENTRIES);
916 1.115 provos if (i == -1) {
917 1.131 perry /*
918 1.173 ad * Free file descriptor in this block was
919 1.115 provos * below want, try again with higher want.
920 1.115 provos */
921 1.226 matt want = (hi + 1) << NDENTRYSHIFT;
922 1.173 ad continue;
923 1.115 provos }
924 1.226 matt i += (hi << NDENTRYSHIFT);
925 1.173 ad if (i >= last) {
926 1.173 ad break;
927 1.173 ad }
928 1.192 ad if (dt->dt_ff[i] == NULL) {
929 1.173 ad KASSERT(i >= NDFDFILE);
930 1.261 ad dt->dt_ff[i] = kmem_alloc(sizeof(fdfile_t), KM_SLEEP);
931 1.261 ad fdfile_ctor(dt->dt_ff[i]);
932 1.173 ad }
933 1.192 ad KASSERT(dt->dt_ff[i]->ff_file == NULL);
934 1.173 ad fd_used(fdp, i);
935 1.173 ad if (want <= fdp->fd_freefile) {
936 1.173 ad fdp->fd_freefile = i;
937 1.16 cgd }
938 1.173 ad *result = i;
939 1.192 ad KASSERT(i >= NDFDFILE ||
940 1.192 ad dt->dt_ff[i] == (fdfile_t *)fdp->fd_dfdfile[i]);
941 1.192 ad fd_checkmaps(fdp);
942 1.173 ad mutex_exit(&fdp->fd_lock);
943 1.173 ad return 0;
944 1.90 enami }
945 1.16 cgd
946 1.173 ad /* No space in current array. Let the caller expand and retry. */
947 1.192 ad error = (dt->dt_nfiles >= lim) ? EMFILE : ENOSPC;
948 1.173 ad mutex_exit(&fdp->fd_lock);
949 1.173 ad return error;
950 1.16 cgd }
951 1.16 cgd
952 1.173 ad /*
953 1.192 ad * Allocate memory for a descriptor table.
954 1.185 ad */
955 1.192 ad static fdtab_t *
956 1.192 ad fd_dtab_alloc(int n)
957 1.185 ad {
958 1.192 ad fdtab_t *dt;
959 1.192 ad size_t sz;
960 1.185 ad
961 1.185 ad KASSERT(n > NDFILE);
962 1.185 ad
963 1.192 ad sz = sizeof(*dt) + (n - NDFILE) * sizeof(dt->dt_ff[0]);
964 1.192 ad dt = kmem_alloc(sz, KM_SLEEP);
965 1.192 ad #ifdef DIAGNOSTIC
966 1.192 ad memset(dt, 0xff, sz);
967 1.192 ad #endif
968 1.192 ad dt->dt_nfiles = n;
969 1.192 ad dt->dt_link = NULL;
970 1.192 ad return dt;
971 1.185 ad }
972 1.185 ad
973 1.185 ad /*
974 1.192 ad * Free a descriptor table, and all tables linked for deferred free.
975 1.185 ad */
976 1.185 ad static void
977 1.192 ad fd_dtab_free(fdtab_t *dt)
978 1.185 ad {
979 1.192 ad fdtab_t *next;
980 1.192 ad size_t sz;
981 1.185 ad
982 1.192 ad do {
983 1.192 ad next = dt->dt_link;
984 1.192 ad KASSERT(dt->dt_nfiles > NDFILE);
985 1.192 ad sz = sizeof(*dt) +
986 1.192 ad (dt->dt_nfiles - NDFILE) * sizeof(dt->dt_ff[0]);
987 1.192 ad #ifdef DIAGNOSTIC
988 1.192 ad memset(dt, 0xff, sz);
989 1.192 ad #endif
990 1.192 ad kmem_free(dt, sz);
991 1.192 ad dt = next;
992 1.192 ad } while (dt != NULL);
993 1.185 ad }
994 1.185 ad
995 1.185 ad /*
996 1.185 ad * Allocate descriptor bitmap.
997 1.185 ad */
998 1.185 ad static void
999 1.185 ad fd_map_alloc(int n, uint32_t **lo, uint32_t **hi)
1000 1.185 ad {
1001 1.185 ad uint8_t *ptr;
1002 1.185 ad size_t szlo, szhi;
1003 1.185 ad
1004 1.185 ad KASSERT(n > NDENTRIES);
1005 1.185 ad
1006 1.185 ad szlo = NDLOSLOTS(n) * sizeof(uint32_t);
1007 1.185 ad szhi = NDHISLOTS(n) * sizeof(uint32_t);
1008 1.185 ad ptr = kmem_alloc(szlo + szhi, KM_SLEEP);
1009 1.185 ad *lo = (uint32_t *)ptr;
1010 1.185 ad *hi = (uint32_t *)(ptr + szlo);
1011 1.185 ad }
1012 1.185 ad
1013 1.185 ad /*
1014 1.185 ad * Free descriptor bitmap.
1015 1.185 ad */
1016 1.185 ad static void
1017 1.185 ad fd_map_free(int n, uint32_t *lo, uint32_t *hi)
1018 1.185 ad {
1019 1.185 ad size_t szlo, szhi;
1020 1.185 ad
1021 1.185 ad KASSERT(n > NDENTRIES);
1022 1.185 ad
1023 1.185 ad szlo = NDLOSLOTS(n) * sizeof(uint32_t);
1024 1.185 ad szhi = NDHISLOTS(n) * sizeof(uint32_t);
1025 1.185 ad KASSERT(hi == (uint32_t *)((uint8_t *)lo + szlo));
1026 1.185 ad kmem_free(lo, szlo + szhi);
1027 1.185 ad }
1028 1.185 ad
1029 1.185 ad /*
1030 1.173 ad * Expand a process' descriptor table.
1031 1.173 ad */
1032 1.76 thorpej void
1033 1.173 ad fd_tryexpand(proc_t *p)
1034 1.76 thorpej {
1035 1.173 ad filedesc_t *fdp;
1036 1.173 ad int i, numfiles, oldnfiles;
1037 1.192 ad fdtab_t *newdt, *dt;
1038 1.173 ad uint32_t *newhimap, *newlomap;
1039 1.173 ad
1040 1.173 ad KASSERT(p == curproc || p == &proc0);
1041 1.76 thorpej
1042 1.76 thorpej fdp = p->p_fd;
1043 1.173 ad newhimap = NULL;
1044 1.173 ad newlomap = NULL;
1045 1.244 riastrad oldnfiles = atomic_load_consume(&fdp->fd_dt)->dt_nfiles;
1046 1.126 pk
1047 1.126 pk if (oldnfiles < NDEXTENT)
1048 1.133 christos numfiles = NDEXTENT;
1049 1.76 thorpej else
1050 1.133 christos numfiles = 2 * oldnfiles;
1051 1.126 pk
1052 1.192 ad newdt = fd_dtab_alloc(numfiles);
1053 1.133 christos if (NDHISLOTS(numfiles) > NDHISLOTS(oldnfiles)) {
1054 1.185 ad fd_map_alloc(numfiles, &newlomap, &newhimap);
1055 1.126 pk }
1056 1.126 pk
1057 1.173 ad mutex_enter(&fdp->fd_lock);
1058 1.192 ad dt = fdp->fd_dt;
1059 1.192 ad KASSERT(dt->dt_ff[0] == (fdfile_t *)fdp->fd_dfdfile[0]);
1060 1.192 ad if (dt->dt_nfiles != oldnfiles) {
1061 1.173 ad /* fdp changed; caller must retry */
1062 1.173 ad mutex_exit(&fdp->fd_lock);
1063 1.192 ad fd_dtab_free(newdt);
1064 1.185 ad if (NDHISLOTS(numfiles) > NDHISLOTS(oldnfiles)) {
1065 1.185 ad fd_map_free(numfiles, newlomap, newhimap);
1066 1.185 ad }
1067 1.173 ad return;
1068 1.173 ad }
1069 1.173 ad
1070 1.192 ad /* Copy the existing descriptor table and zero the new portion. */
1071 1.192 ad i = sizeof(fdfile_t *) * oldnfiles;
1072 1.192 ad memcpy(newdt->dt_ff, dt->dt_ff, i);
1073 1.194 yamt memset((uint8_t *)newdt->dt_ff + i, 0,
1074 1.194 yamt numfiles * sizeof(fdfile_t *) - i);
1075 1.173 ad
1076 1.173 ad /*
1077 1.192 ad * Link old descriptor array into list to be discarded. We defer
1078 1.192 ad * freeing until the last reference to the descriptor table goes
1079 1.192 ad * away (usually process exit). This allows us to do lockless
1080 1.192 ad * lookups in fd_getfile().
1081 1.173 ad */
1082 1.173 ad if (oldnfiles > NDFILE) {
1083 1.191 ad if (fdp->fd_refcnt > 1) {
1084 1.192 ad newdt->dt_link = dt;
1085 1.173 ad } else {
1086 1.192 ad fd_dtab_free(dt);
1087 1.173 ad }
1088 1.173 ad }
1089 1.115 provos
1090 1.133 christos if (NDHISLOTS(numfiles) > NDHISLOTS(oldnfiles)) {
1091 1.173 ad i = NDHISLOTS(oldnfiles) * sizeof(uint32_t);
1092 1.173 ad memcpy(newhimap, fdp->fd_himap, i);
1093 1.173 ad memset((uint8_t *)newhimap + i, 0,
1094 1.133 christos NDHISLOTS(numfiles) * sizeof(uint32_t) - i);
1095 1.115 provos
1096 1.173 ad i = NDLOSLOTS(oldnfiles) * sizeof(uint32_t);
1097 1.173 ad memcpy(newlomap, fdp->fd_lomap, i);
1098 1.173 ad memset((uint8_t *)newlomap + i, 0,
1099 1.133 christos NDLOSLOTS(numfiles) * sizeof(uint32_t) - i);
1100 1.115 provos
1101 1.126 pk if (NDHISLOTS(oldnfiles) > NDHISLOTS(NDFILE)) {
1102 1.185 ad fd_map_free(oldnfiles, fdp->fd_lomap, fdp->fd_himap);
1103 1.115 provos }
1104 1.115 provos fdp->fd_himap = newhimap;
1105 1.115 provos fdp->fd_lomap = newlomap;
1106 1.115 provos }
1107 1.115 provos
1108 1.173 ad /*
1109 1.173 ad * All other modifications must become globally visible before
1110 1.192 ad * the change to fd_dt. See fd_getfile().
1111 1.173 ad */
1112 1.244 riastrad atomic_store_release(&fdp->fd_dt, newdt);
1113 1.192 ad KASSERT(newdt->dt_ff[0] == (fdfile_t *)fdp->fd_dfdfile[0]);
1114 1.192 ad fd_checkmaps(fdp);
1115 1.173 ad mutex_exit(&fdp->fd_lock);
1116 1.76 thorpej }
1117 1.76 thorpej
1118 1.16 cgd /*
1119 1.173 ad * Create a new open file structure and allocate a file descriptor
1120 1.173 ad * for the current process.
1121 1.16 cgd */
1122 1.38 christos int
1123 1.173 ad fd_allocfile(file_t **resultfp, int *resultfd)
1124 1.16 cgd {
1125 1.213 rmind proc_t *p = curproc;
1126 1.191 ad kauth_cred_t cred;
1127 1.173 ad file_t *fp;
1128 1.173 ad int error;
1129 1.16 cgd
1130 1.173 ad while ((error = fd_alloc(p, 0, resultfd)) != 0) {
1131 1.173 ad if (error != ENOSPC) {
1132 1.173 ad return error;
1133 1.76 thorpej }
1134 1.173 ad fd_tryexpand(p);
1135 1.75 thorpej }
1136 1.102 pk
1137 1.162 ad fp = pool_cache_get(file_cache, PR_WAITOK);
1138 1.191 ad if (fp == NULL) {
1139 1.217 chs fd_abort(p, NULL, *resultfd);
1140 1.191 ad return ENFILE;
1141 1.191 ad }
1142 1.173 ad KASSERT(fp->f_count == 0);
1143 1.188 mrg KASSERT(fp->f_msgcount == 0);
1144 1.188 mrg KASSERT(fp->f_unpcount == 0);
1145 1.167 ad
1146 1.191 ad /* Replace cached credentials if not what we need. */
1147 1.191 ad cred = curlwp->l_cred;
1148 1.191 ad if (__predict_false(cred != fp->f_cred)) {
1149 1.191 ad kauth_cred_free(fp->f_cred);
1150 1.262 ad fp->f_cred = kauth_cred_hold(cred);
1151 1.16 cgd }
1152 1.167 ad
1153 1.188 mrg /*
1154 1.188 mrg * Don't allow recycled files to be scanned.
1155 1.191 ad * See uipc_usrreq.c.
1156 1.188 mrg */
1157 1.191 ad if (__predict_false((fp->f_flag & FSCAN) != 0)) {
1158 1.188 mrg mutex_enter(&fp->f_lock);
1159 1.188 mrg atomic_and_uint(&fp->f_flag, ~FSCAN);
1160 1.188 mrg mutex_exit(&fp->f_lock);
1161 1.188 mrg }
1162 1.188 mrg
1163 1.167 ad fp->f_advice = 0;
1164 1.167 ad fp->f_offset = 0;
1165 1.173 ad *resultfp = fp;
1166 1.173 ad
1167 1.173 ad return 0;
1168 1.173 ad }
1169 1.173 ad
1170 1.173 ad /*
1171 1.173 ad * Successful creation of a new descriptor: make visible to the process.
1172 1.173 ad */
1173 1.173 ad void
1174 1.173 ad fd_affix(proc_t *p, file_t *fp, unsigned fd)
1175 1.173 ad {
1176 1.173 ad fdfile_t *ff;
1177 1.173 ad filedesc_t *fdp;
1178 1.244 riastrad fdtab_t *dt;
1179 1.173 ad
1180 1.173 ad KASSERT(p == curproc || p == &proc0);
1181 1.173 ad
1182 1.173 ad /* Add a reference to the file structure. */
1183 1.173 ad mutex_enter(&fp->f_lock);
1184 1.173 ad fp->f_count++;
1185 1.173 ad mutex_exit(&fp->f_lock);
1186 1.167 ad
1187 1.16 cgd /*
1188 1.173 ad * Insert the new file into the descriptor slot.
1189 1.16 cgd */
1190 1.173 ad fdp = p->p_fd;
1191 1.244 riastrad dt = atomic_load_consume(&fdp->fd_dt);
1192 1.244 riastrad ff = dt->dt_ff[fd];
1193 1.173 ad
1194 1.173 ad KASSERT(ff != NULL);
1195 1.173 ad KASSERT(ff->ff_file == NULL);
1196 1.173 ad KASSERT(ff->ff_allocated);
1197 1.173 ad KASSERT(fd_isused(fdp, fd));
1198 1.192 ad KASSERT(fd >= NDFDFILE || ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
1199 1.173 ad
1200 1.173 ad /* No need to lock in order to make file initially visible. */
1201 1.253 riastrad atomic_store_release(&ff->ff_file, fp);
1202 1.173 ad }
1203 1.173 ad
1204 1.173 ad /*
1205 1.173 ad * Abort creation of a new descriptor: free descriptor slot and file.
1206 1.173 ad */
1207 1.173 ad void
1208 1.173 ad fd_abort(proc_t *p, file_t *fp, unsigned fd)
1209 1.173 ad {
1210 1.173 ad filedesc_t *fdp;
1211 1.173 ad fdfile_t *ff;
1212 1.173 ad
1213 1.173 ad KASSERT(p == curproc || p == &proc0);
1214 1.173 ad
1215 1.173 ad fdp = p->p_fd;
1216 1.244 riastrad ff = atomic_load_consume(&fdp->fd_dt)->dt_ff[fd];
1217 1.220 pooka ff->ff_exclose = false;
1218 1.173 ad
1219 1.192 ad KASSERT(fd >= NDFDFILE || ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
1220 1.173 ad
1221 1.173 ad mutex_enter(&fdp->fd_lock);
1222 1.173 ad KASSERT(fd_isused(fdp, fd));
1223 1.173 ad fd_unused(fdp, fd);
1224 1.173 ad mutex_exit(&fdp->fd_lock);
1225 1.167 ad
1226 1.173 ad if (fp != NULL) {
1227 1.191 ad KASSERT(fp->f_count == 0);
1228 1.191 ad KASSERT(fp->f_cred != NULL);
1229 1.191 ad pool_cache_put(file_cache, fp);
1230 1.59 thorpej }
1231 1.16 cgd }
1232 1.16 cgd
1233 1.167 ad static int
1234 1.167 ad file_ctor(void *arg, void *obj, int flags)
1235 1.167 ad {
1236 1.258 ad /*
1237 1.258 ad * It's easy to exhaust the open file limit on a system with many
1238 1.258 ad * CPUs due to caching. Allow a bit of leeway to reduce the element
1239 1.258 ad * of surprise.
1240 1.258 ad */
1241 1.258 ad u_int slop = PCG_NOBJECTS_NORMAL * (ncpu - 1);
1242 1.173 ad file_t *fp = obj;
1243 1.167 ad
1244 1.167 ad memset(fp, 0, sizeof(*fp));
1245 1.167 ad
1246 1.167 ad mutex_enter(&filelist_lock);
1247 1.258 ad if (__predict_false(nfiles >= slop + maxfiles)) {
1248 1.191 ad mutex_exit(&filelist_lock);
1249 1.191 ad tablefull("file", "increase kern.maxfiles or MAXFILES");
1250 1.191 ad return ENFILE;
1251 1.191 ad }
1252 1.191 ad nfiles++;
1253 1.167 ad LIST_INSERT_HEAD(&filehead, fp, f_list);
1254 1.191 ad mutex_init(&fp->f_lock, MUTEX_DEFAULT, IPL_NONE);
1255 1.262 ad fp->f_cred = kauth_cred_hold(curlwp->l_cred);
1256 1.167 ad mutex_exit(&filelist_lock);
1257 1.167 ad
1258 1.167 ad return 0;
1259 1.167 ad }
1260 1.167 ad
1261 1.167 ad static void
1262 1.167 ad file_dtor(void *arg, void *obj)
1263 1.167 ad {
1264 1.173 ad file_t *fp = obj;
1265 1.167 ad
1266 1.167 ad mutex_enter(&filelist_lock);
1267 1.191 ad nfiles--;
1268 1.167 ad LIST_REMOVE(fp, f_list);
1269 1.167 ad mutex_exit(&filelist_lock);
1270 1.167 ad
1271 1.242 maxv KASSERT(fp->f_count == 0);
1272 1.191 ad kauth_cred_free(fp->f_cred);
1273 1.167 ad mutex_destroy(&fp->f_lock);
1274 1.167 ad }
1275 1.167 ad
1276 1.261 ad static void
1277 1.261 ad fdfile_ctor(fdfile_t *ff)
1278 1.173 ad {
1279 1.173 ad
1280 1.173 ad memset(ff, 0, sizeof(*ff));
1281 1.173 ad cv_init(&ff->ff_closing, "fdclose");
1282 1.173 ad }
1283 1.173 ad
1284 1.173 ad static void
1285 1.261 ad fdfile_dtor(fdfile_t *ff)
1286 1.173 ad {
1287 1.173 ad
1288 1.173 ad cv_destroy(&ff->ff_closing);
1289 1.173 ad }
1290 1.173 ad
1291 1.173 ad file_t *
1292 1.169 ad fgetdummy(void)
1293 1.169 ad {
1294 1.173 ad file_t *fp;
1295 1.169 ad
1296 1.213 rmind fp = kmem_zalloc(sizeof(*fp), KM_SLEEP);
1297 1.231 chs mutex_init(&fp->f_lock, MUTEX_DEFAULT, IPL_NONE);
1298 1.169 ad return fp;
1299 1.169 ad }
1300 1.169 ad
1301 1.169 ad void
1302 1.173 ad fputdummy(file_t *fp)
1303 1.58 thorpej {
1304 1.58 thorpej
1305 1.173 ad mutex_destroy(&fp->f_lock);
1306 1.173 ad kmem_free(fp, sizeof(*fp));
1307 1.58 thorpej }
1308 1.58 thorpej
1309 1.58 thorpej /*
1310 1.173 ad * Create an initial filedesc structure.
1311 1.48 thorpej */
1312 1.173 ad filedesc_t *
1313 1.173 ad fd_init(filedesc_t *fdp)
1314 1.48 thorpej {
1315 1.192 ad #ifdef DIAGNOSTIC
1316 1.173 ad unsigned fd;
1317 1.192 ad #endif
1318 1.173 ad
1319 1.192 ad if (__predict_true(fdp == NULL)) {
1320 1.173 ad fdp = pool_cache_get(filedesc_cache, PR_WAITOK);
1321 1.173 ad } else {
1322 1.206 pooka KASSERT(fdp == &filedesc0);
1323 1.173 ad filedesc_ctor(NULL, fdp, PR_WAITOK);
1324 1.173 ad }
1325 1.48 thorpej
1326 1.192 ad #ifdef DIAGNOSTIC
1327 1.173 ad KASSERT(fdp->fd_lastfile == -1);
1328 1.173 ad KASSERT(fdp->fd_lastkqfile == -1);
1329 1.173 ad KASSERT(fdp->fd_knhash == NULL);
1330 1.192 ad KASSERT(fdp->fd_freefile == 0);
1331 1.192 ad KASSERT(fdp->fd_exclose == false);
1332 1.192 ad KASSERT(fdp->fd_dt == &fdp->fd_dtbuiltin);
1333 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_nfiles == NDFILE);
1334 1.173 ad for (fd = 0; fd < NDFDFILE; fd++) {
1335 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_ff[fd] ==
1336 1.192 ad (fdfile_t *)fdp->fd_dfdfile[fd]);
1337 1.192 ad }
1338 1.192 ad for (fd = NDFDFILE; fd < NDFILE; fd++) {
1339 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_ff[fd] == NULL);
1340 1.173 ad }
1341 1.195 yamt KASSERT(fdp->fd_himap == fdp->fd_dhimap);
1342 1.195 yamt KASSERT(fdp->fd_lomap == fdp->fd_dlomap);
1343 1.192 ad #endif /* DIAGNOSTIC */
1344 1.192 ad
1345 1.192 ad fdp->fd_refcnt = 1;
1346 1.199 yamt fd_checkmaps(fdp);
1347 1.48 thorpej
1348 1.173 ad return fdp;
1349 1.48 thorpej }
1350 1.48 thorpej
1351 1.48 thorpej /*
1352 1.48 thorpej * Initialize a file descriptor table.
1353 1.48 thorpej */
1354 1.173 ad static int
1355 1.173 ad filedesc_ctor(void *arg, void *obj, int flag)
1356 1.48 thorpej {
1357 1.173 ad filedesc_t *fdp = obj;
1358 1.192 ad fdfile_t **ffp;
1359 1.173 ad int i;
1360 1.48 thorpej
1361 1.173 ad memset(fdp, 0, sizeof(*fdp));
1362 1.173 ad mutex_init(&fdp->fd_lock, MUTEX_DEFAULT, IPL_NONE);
1363 1.173 ad fdp->fd_lastfile = -1;
1364 1.173 ad fdp->fd_lastkqfile = -1;
1365 1.192 ad fdp->fd_dt = &fdp->fd_dtbuiltin;
1366 1.192 ad fdp->fd_dtbuiltin.dt_nfiles = NDFILE;
1367 1.195 yamt fdp->fd_himap = fdp->fd_dhimap;
1368 1.195 yamt fdp->fd_lomap = fdp->fd_dlomap;
1369 1.173 ad
1370 1.181 matt CTASSERT(sizeof(fdp->fd_dfdfile[0]) >= sizeof(fdfile_t));
1371 1.192 ad for (i = 0, ffp = fdp->fd_dt->dt_ff; i < NDFDFILE; i++, ffp++) {
1372 1.261 ad fdfile_ctor(*ffp = (fdfile_t *)fdp->fd_dfdfile[i]);
1373 1.173 ad }
1374 1.48 thorpej
1375 1.173 ad return 0;
1376 1.48 thorpej }
1377 1.48 thorpej
1378 1.173 ad static void
1379 1.173 ad filedesc_dtor(void *arg, void *obj)
1380 1.48 thorpej {
1381 1.173 ad filedesc_t *fdp = obj;
1382 1.173 ad int i;
1383 1.48 thorpej
1384 1.173 ad for (i = 0; i < NDFDFILE; i++) {
1385 1.261 ad fdfile_dtor((fdfile_t *)fdp->fd_dfdfile[i]);
1386 1.173 ad }
1387 1.48 thorpej
1388 1.173 ad mutex_destroy(&fdp->fd_lock);
1389 1.48 thorpej }
1390 1.48 thorpej
1391 1.48 thorpej /*
1392 1.209 pooka * Make p share curproc's filedesc structure.
1393 1.48 thorpej */
1394 1.48 thorpej void
1395 1.209 pooka fd_share(struct proc *p)
1396 1.48 thorpej {
1397 1.173 ad filedesc_t *fdp;
1398 1.48 thorpej
1399 1.173 ad fdp = curlwp->l_fd;
1400 1.209 pooka p->p_fd = fdp;
1401 1.173 ad atomic_inc_uint(&fdp->fd_refcnt);
1402 1.16 cgd }
1403 1.16 cgd
1404 1.16 cgd /*
1405 1.191 ad * Acquire a hold on a filedesc structure.
1406 1.191 ad */
1407 1.191 ad void
1408 1.200 rmind fd_hold(lwp_t *l)
1409 1.191 ad {
1410 1.200 rmind filedesc_t *fdp = l->l_fd;
1411 1.191 ad
1412 1.200 rmind atomic_inc_uint(&fdp->fd_refcnt);
1413 1.191 ad }
1414 1.191 ad
1415 1.191 ad /*
1416 1.16 cgd * Copy a filedesc structure.
1417 1.16 cgd */
1418 1.173 ad filedesc_t *
1419 1.173 ad fd_copy(void)
1420 1.16 cgd {
1421 1.173 ad filedesc_t *newfdp, *fdp;
1422 1.192 ad fdfile_t *ff, **ffp, **nffp, *ff2;
1423 1.192 ad int i, j, numfiles, lastfile, newlast;
1424 1.173 ad file_t *fp;
1425 1.192 ad fdtab_t *newdt;
1426 1.16 cgd
1427 1.173 ad fdp = curproc->p_fd;
1428 1.173 ad newfdp = pool_cache_get(filedesc_cache, PR_WAITOK);
1429 1.16 cgd newfdp->fd_refcnt = 1;
1430 1.126 pk
1431 1.192 ad #ifdef DIAGNOSTIC
1432 1.192 ad KASSERT(newfdp->fd_lastfile == -1);
1433 1.192 ad KASSERT(newfdp->fd_lastkqfile == -1);
1434 1.173 ad KASSERT(newfdp->fd_knhash == NULL);
1435 1.192 ad KASSERT(newfdp->fd_freefile == 0);
1436 1.192 ad KASSERT(newfdp->fd_exclose == false);
1437 1.192 ad KASSERT(newfdp->fd_dt == &newfdp->fd_dtbuiltin);
1438 1.192 ad KASSERT(newfdp->fd_dtbuiltin.dt_nfiles == NDFILE);
1439 1.192 ad for (i = 0; i < NDFDFILE; i++) {
1440 1.192 ad KASSERT(newfdp->fd_dtbuiltin.dt_ff[i] ==
1441 1.192 ad (fdfile_t *)&newfdp->fd_dfdfile[i]);
1442 1.192 ad }
1443 1.192 ad for (i = NDFDFILE; i < NDFILE; i++) {
1444 1.192 ad KASSERT(newfdp->fd_dtbuiltin.dt_ff[i] == NULL);
1445 1.192 ad }
1446 1.192 ad #endif /* DIAGNOSTIC */
1447 1.173 ad
1448 1.192 ad mutex_enter(&fdp->fd_lock);
1449 1.192 ad fd_checkmaps(fdp);
1450 1.192 ad numfiles = fdp->fd_dt->dt_nfiles;
1451 1.192 ad lastfile = fdp->fd_lastfile;
1452 1.173 ad
1453 1.192 ad /*
1454 1.192 ad * If the number of open files fits in the internal arrays
1455 1.192 ad * of the open file structure, use them, otherwise allocate
1456 1.192 ad * additional memory for the number of descriptors currently
1457 1.192 ad * in use.
1458 1.192 ad */
1459 1.192 ad if (lastfile < NDFILE) {
1460 1.192 ad i = NDFILE;
1461 1.192 ad newdt = newfdp->fd_dt;
1462 1.192 ad KASSERT(newfdp->fd_dt == &newfdp->fd_dtbuiltin);
1463 1.192 ad } else {
1464 1.173 ad /*
1465 1.192 ad * Compute the smallest multiple of NDEXTENT needed
1466 1.192 ad * for the file descriptors currently in use,
1467 1.192 ad * allowing the table to shrink.
1468 1.173 ad */
1469 1.192 ad i = numfiles;
1470 1.192 ad while (i >= 2 * NDEXTENT && i > lastfile * 2) {
1471 1.192 ad i /= 2;
1472 1.192 ad }
1473 1.192 ad KASSERT(i > NDFILE);
1474 1.192 ad newdt = fd_dtab_alloc(i);
1475 1.192 ad newfdp->fd_dt = newdt;
1476 1.192 ad memcpy(newdt->dt_ff, newfdp->fd_dtbuiltin.dt_ff,
1477 1.192 ad NDFDFILE * sizeof(fdfile_t **));
1478 1.192 ad memset(newdt->dt_ff + NDFDFILE, 0,
1479 1.192 ad (i - NDFDFILE) * sizeof(fdfile_t **));
1480 1.192 ad }
1481 1.192 ad if (NDHISLOTS(i) <= NDHISLOTS(NDFILE)) {
1482 1.192 ad newfdp->fd_himap = newfdp->fd_dhimap;
1483 1.192 ad newfdp->fd_lomap = newfdp->fd_dlomap;
1484 1.192 ad } else {
1485 1.192 ad fd_map_alloc(i, &newfdp->fd_lomap, &newfdp->fd_himap);
1486 1.192 ad KASSERT(i >= NDENTRIES * NDENTRIES);
1487 1.192 ad memset(newfdp->fd_himap, 0, NDHISLOTS(i)*sizeof(uint32_t));
1488 1.192 ad memset(newfdp->fd_lomap, 0, NDLOSLOTS(i)*sizeof(uint32_t));
1489 1.115 provos }
1490 1.126 pk newfdp->fd_freefile = fdp->fd_freefile;
1491 1.173 ad newfdp->fd_exclose = fdp->fd_exclose;
1492 1.126 pk
1493 1.192 ad ffp = fdp->fd_dt->dt_ff;
1494 1.192 ad nffp = newdt->dt_ff;
1495 1.173 ad newlast = -1;
1496 1.228 christos for (i = 0; i <= lastfile; i++, ffp++, nffp++) {
1497 1.192 ad KASSERT(i >= NDFDFILE ||
1498 1.192 ad *nffp == (fdfile_t *)newfdp->fd_dfdfile[i]);
1499 1.173 ad ff = *ffp;
1500 1.245 riastrad if (ff == NULL ||
1501 1.245 riastrad (fp = atomic_load_consume(&ff->ff_file)) == NULL) {
1502 1.192 ad /* Descriptor unused, or descriptor half open. */
1503 1.192 ad KASSERT(!fd_isused(newfdp, i));
1504 1.173 ad continue;
1505 1.173 ad }
1506 1.192 ad if (__predict_false(fp->f_type == DTYPE_KQUEUE)) {
1507 1.173 ad /* kqueue descriptors cannot be copied. */
1508 1.213 rmind if (i < newfdp->fd_freefile) {
1509 1.213 rmind newfdp->fd_freefile = i;
1510 1.213 rmind }
1511 1.126 pk continue;
1512 1.173 ad }
1513 1.173 ad /* It's active: add a reference to the file. */
1514 1.173 ad mutex_enter(&fp->f_lock);
1515 1.173 ad fp->f_count++;
1516 1.173 ad mutex_exit(&fp->f_lock);
1517 1.192 ad
1518 1.192 ad /* Allocate an fdfile_t to represent it. */
1519 1.173 ad if (i >= NDFDFILE) {
1520 1.261 ad ff2 = kmem_alloc(sizeof(*ff2), KM_SLEEP);
1521 1.261 ad fdfile_ctor(ff2);
1522 1.192 ad *nffp = ff2;
1523 1.192 ad } else {
1524 1.192 ad ff2 = newdt->dt_ff[i];
1525 1.173 ad }
1526 1.173 ad ff2->ff_file = fp;
1527 1.173 ad ff2->ff_exclose = ff->ff_exclose;
1528 1.182 matt ff2->ff_allocated = true;
1529 1.192 ad
1530 1.192 ad /* Fix up bitmaps. */
1531 1.192 ad j = i >> NDENTRYSHIFT;
1532 1.234 kamil KASSERT((newfdp->fd_lomap[j] & (1U << (i & NDENTRYMASK))) == 0);
1533 1.234 kamil newfdp->fd_lomap[j] |= 1U << (i & NDENTRYMASK);
1534 1.192 ad if (__predict_false(newfdp->fd_lomap[j] == ~0)) {
1535 1.192 ad KASSERT((newfdp->fd_himap[j >> NDENTRYSHIFT] &
1536 1.234 kamil (1U << (j & NDENTRYMASK))) == 0);
1537 1.192 ad newfdp->fd_himap[j >> NDENTRYSHIFT] |=
1538 1.234 kamil 1U << (j & NDENTRYMASK);
1539 1.173 ad }
1540 1.192 ad newlast = i;
1541 1.173 ad }
1542 1.192 ad KASSERT(newdt->dt_ff[0] == (fdfile_t *)newfdp->fd_dfdfile[0]);
1543 1.192 ad newfdp->fd_lastfile = newlast;
1544 1.192 ad fd_checkmaps(newfdp);
1545 1.173 ad mutex_exit(&fdp->fd_lock);
1546 1.213 rmind
1547 1.213 rmind return newfdp;
1548 1.16 cgd }
1549 1.16 cgd
1550 1.16 cgd /*
1551 1.16 cgd * Release a filedesc structure.
1552 1.16 cgd */
1553 1.16 cgd void
1554 1.173 ad fd_free(void)
1555 1.16 cgd {
1556 1.173 ad fdfile_t *ff;
1557 1.173 ad file_t *fp;
1558 1.192 ad int fd, nf;
1559 1.192 ad fdtab_t *dt;
1560 1.197 yamt lwp_t * const l = curlwp;
1561 1.197 yamt filedesc_t * const fdp = l->l_fd;
1562 1.197 yamt const bool noadvlock = (l->l_proc->p_flag & PK_ADVLOCK) == 0;
1563 1.173 ad
1564 1.244 riastrad KASSERT(atomic_load_consume(&fdp->fd_dt)->dt_ff[0] ==
1565 1.244 riastrad (fdfile_t *)fdp->fd_dfdfile[0]);
1566 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_nfiles == NDFILE);
1567 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_link == NULL);
1568 1.16 cgd
1569 1.252 riastrad membar_release();
1570 1.164 ad if (atomic_dec_uint_nv(&fdp->fd_refcnt) > 0)
1571 1.16 cgd return;
1572 1.252 riastrad membar_acquire();
1573 1.126 pk
1574 1.16 cgd /*
1575 1.173 ad * Close any files that the process holds open.
1576 1.16 cgd */
1577 1.192 ad dt = fdp->fd_dt;
1578 1.192 ad fd_checkmaps(fdp);
1579 1.196 yamt #ifdef DEBUG
1580 1.196 yamt fdp->fd_refcnt = -1; /* see fd_checkmaps */
1581 1.196 yamt #endif
1582 1.192 ad for (fd = 0, nf = dt->dt_nfiles; fd < nf; fd++) {
1583 1.192 ad ff = dt->dt_ff[fd];
1584 1.173 ad KASSERT(fd >= NDFDFILE ||
1585 1.173 ad ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
1586 1.192 ad if (ff == NULL)
1587 1.173 ad continue;
1588 1.245 riastrad if ((fp = atomic_load_consume(&ff->ff_file)) != NULL) {
1589 1.173 ad /*
1590 1.192 ad * Must use fd_close() here if there is
1591 1.197 yamt * a reference from kqueue or we might have posix
1592 1.197 yamt * advisory locks.
1593 1.173 ad */
1594 1.197 yamt if (__predict_true(ff->ff_refcnt == 0) &&
1595 1.197 yamt (noadvlock || fp->f_type != DTYPE_VNODE)) {
1596 1.192 ad ff->ff_file = NULL;
1597 1.192 ad ff->ff_exclose = false;
1598 1.192 ad ff->ff_allocated = false;
1599 1.192 ad closef(fp);
1600 1.192 ad } else {
1601 1.192 ad ff->ff_refcnt++;
1602 1.192 ad fd_close(fd);
1603 1.192 ad }
1604 1.173 ad }
1605 1.173 ad KASSERT(ff->ff_refcnt == 0);
1606 1.173 ad KASSERT(ff->ff_file == NULL);
1607 1.173 ad KASSERT(!ff->ff_exclose);
1608 1.173 ad KASSERT(!ff->ff_allocated);
1609 1.173 ad if (fd >= NDFDFILE) {
1610 1.261 ad cv_destroy(&ff->ff_closing);
1611 1.261 ad kmem_free(ff, sizeof(*ff));
1612 1.192 ad dt->dt_ff[fd] = NULL;
1613 1.173 ad }
1614 1.16 cgd }
1615 1.59 thorpej
1616 1.59 thorpej /*
1617 1.173 ad * Clean out the descriptor table for the next user and return
1618 1.173 ad * to the cache.
1619 1.59 thorpej */
1620 1.192 ad if (__predict_false(dt != &fdp->fd_dtbuiltin)) {
1621 1.192 ad fd_dtab_free(fdp->fd_dt);
1622 1.192 ad /* Otherwise, done above. */
1623 1.192 ad memset(&fdp->fd_dtbuiltin.dt_ff[NDFDFILE], 0,
1624 1.192 ad (NDFILE - NDFDFILE) * sizeof(fdp->fd_dtbuiltin.dt_ff[0]));
1625 1.192 ad fdp->fd_dt = &fdp->fd_dtbuiltin;
1626 1.59 thorpej }
1627 1.192 ad if (__predict_false(NDHISLOTS(nf) > NDHISLOTS(NDFILE))) {
1628 1.173 ad KASSERT(fdp->fd_himap != fdp->fd_dhimap);
1629 1.173 ad KASSERT(fdp->fd_lomap != fdp->fd_dlomap);
1630 1.192 ad fd_map_free(nf, fdp->fd_lomap, fdp->fd_himap);
1631 1.16 cgd }
1632 1.192 ad if (__predict_false(fdp->fd_knhash != NULL)) {
1633 1.179 ad hashdone(fdp->fd_knhash, HASH_LIST, fdp->fd_knhashmask);
1634 1.173 ad fdp->fd_knhash = NULL;
1635 1.173 ad fdp->fd_knhashmask = 0;
1636 1.173 ad } else {
1637 1.173 ad KASSERT(fdp->fd_knhashmask == 0);
1638 1.137 yamt }
1639 1.192 ad fdp->fd_dt = &fdp->fd_dtbuiltin;
1640 1.173 ad fdp->fd_lastkqfile = -1;
1641 1.192 ad fdp->fd_lastfile = -1;
1642 1.192 ad fdp->fd_freefile = 0;
1643 1.192 ad fdp->fd_exclose = false;
1644 1.192 ad memset(&fdp->fd_startzero, 0, sizeof(*fdp) -
1645 1.192 ad offsetof(filedesc_t, fd_startzero));
1646 1.195 yamt fdp->fd_himap = fdp->fd_dhimap;
1647 1.195 yamt fdp->fd_lomap = fdp->fd_dlomap;
1648 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_nfiles == NDFILE);
1649 1.192 ad KASSERT(fdp->fd_dtbuiltin.dt_link == NULL);
1650 1.192 ad KASSERT(fdp->fd_dt == &fdp->fd_dtbuiltin);
1651 1.196 yamt #ifdef DEBUG
1652 1.196 yamt fdp->fd_refcnt = 0; /* see fd_checkmaps */
1653 1.196 yamt #endif
1654 1.192 ad fd_checkmaps(fdp);
1655 1.173 ad pool_cache_put(filedesc_cache, fdp);
1656 1.170 martin }
1657 1.170 martin
1658 1.16 cgd /*
1659 1.16 cgd * File Descriptor pseudo-device driver (/dev/fd/).
1660 1.16 cgd *
1661 1.16 cgd * Opening minor device N dup()s the file (if any) connected to file
1662 1.16 cgd * descriptor N belonging to the calling process. Note that this driver
1663 1.16 cgd * consists of only the ``open()'' routine, because all subsequent
1664 1.16 cgd * references to this file will be direct to the other driver.
1665 1.16 cgd */
1666 1.134 thorpej static int
1667 1.173 ad filedescopen(dev_t dev, int mode, int type, lwp_t *l)
1668 1.16 cgd {
1669 1.16 cgd
1670 1.28 mycroft /*
1671 1.112 jdolecek * XXX Kludge: set dupfd to contain the value of the
1672 1.89 enami * the file descriptor being sought for duplication. The error
1673 1.28 mycroft * return ensures that the vnode for this device will be released
1674 1.28 mycroft * by vn_open. Open will detect this special error and take the
1675 1.208 yamt * actions in fd_dupopen below. Other callers of vn_open or VOP_OPEN
1676 1.28 mycroft * will simply report the error.
1677 1.28 mycroft */
1678 1.138 christos l->l_dupfd = minor(dev); /* XXX */
1679 1.127 christos return EDUPFD;
1680 1.27 mycroft }
1681 1.27 mycroft
1682 1.28 mycroft /*
1683 1.28 mycroft * Duplicate the specified descriptor to a free descriptor.
1684 1.251 dholland *
1685 1.251 dholland * old is the original fd.
1686 1.251 dholland * moveit is true if we should move rather than duplicate.
1687 1.251 dholland * flags are the open flags (converted from O_* to F*).
1688 1.251 dholland * newp returns the new fd on success.
1689 1.251 dholland *
1690 1.251 dholland * These two cases are produced by the EDUPFD and EMOVEFD magic
1691 1.251 dholland * errnos, but in the interest of removing that regrettable interface,
1692 1.251 dholland * vn_open has been changed to intercept them. Now vn_open returns
1693 1.251 dholland * either a vnode or a filehandle, and the filehandle is accompanied
1694 1.251 dholland * by a boolean that says whether we should dup (moveit == false) or
1695 1.251 dholland * move (moveit == true) the fd.
1696 1.251 dholland *
1697 1.251 dholland * The dup case is used by /dev/stderr, /proc/self/fd, and such. The
1698 1.251 dholland * move case is used by cloner devices that allocate a fd of their
1699 1.251 dholland * own (a layering violation that should go away eventually) that
1700 1.251 dholland * then needs to be put in the place open() expects it.
1701 1.28 mycroft */
1702 1.27 mycroft int
1703 1.251 dholland fd_dupopen(int old, bool moveit, int flags, int *newp)
1704 1.72 lukem {
1705 1.173 ad filedesc_t *fdp;
1706 1.173 ad fdfile_t *ff;
1707 1.173 ad file_t *fp;
1708 1.192 ad fdtab_t *dt;
1709 1.251 dholland int error;
1710 1.27 mycroft
1711 1.173 ad if ((fp = fd_getfile(old)) == NULL) {
1712 1.173 ad return EBADF;
1713 1.173 ad }
1714 1.173 ad fdp = curlwp->l_fd;
1715 1.244 riastrad dt = atomic_load_consume(&fdp->fd_dt);
1716 1.192 ad ff = dt->dt_ff[old];
1717 1.59 thorpej
1718 1.27 mycroft /*
1719 1.28 mycroft * There are two cases of interest here.
1720 1.28 mycroft *
1721 1.251 dholland * 1. moveit == false (used to be the EDUPFD magic errno):
1722 1.251 dholland * simply dup (old) to file descriptor (new) and return.
1723 1.28 mycroft *
1724 1.251 dholland * 2. moveit == true (used to be the EMOVEFD magic errno):
1725 1.251 dholland * steal away the file structure from (old) and store it in
1726 1.251 dholland * (new). (old) is effectively closed by this operation.
1727 1.27 mycroft */
1728 1.251 dholland if (moveit == false) {
1729 1.28 mycroft /*
1730 1.28 mycroft * Check that the mode the file is being opened for is a
1731 1.28 mycroft * subset of the mode of the existing descriptor.
1732 1.28 mycroft */
1733 1.251 dholland if (((flags & (FREAD|FWRITE)) | fp->f_flag) != fp->f_flag) {
1734 1.173 ad error = EACCES;
1735 1.251 dholland goto out;
1736 1.173 ad }
1737 1.173 ad
1738 1.173 ad /* Copy it. */
1739 1.226 matt error = fd_dup(fp, 0, newp, ff->ff_exclose);
1740 1.251 dholland } else {
1741 1.173 ad /* Copy it. */
1742 1.226 matt error = fd_dup(fp, 0, newp, ff->ff_exclose);
1743 1.173 ad if (error != 0) {
1744 1.251 dholland goto out;
1745 1.173 ad }
1746 1.16 cgd
1747 1.173 ad /* Steal away the file pointer from 'old'. */
1748 1.173 ad (void)fd_close(old);
1749 1.173 ad return 0;
1750 1.28 mycroft }
1751 1.173 ad
1752 1.251 dholland out:
1753 1.173 ad fd_putfile(old);
1754 1.173 ad return error;
1755 1.61 wrstuden }
1756 1.61 wrstuden
1757 1.61 wrstuden /*
1758 1.211 pooka * Close open files on exec.
1759 1.211 pooka */
1760 1.211 pooka void
1761 1.211 pooka fd_closeexec(void)
1762 1.211 pooka {
1763 1.211 pooka proc_t *p;
1764 1.211 pooka filedesc_t *fdp;
1765 1.211 pooka fdfile_t *ff;
1766 1.211 pooka lwp_t *l;
1767 1.211 pooka fdtab_t *dt;
1768 1.211 pooka int fd;
1769 1.211 pooka
1770 1.211 pooka l = curlwp;
1771 1.211 pooka p = l->l_proc;
1772 1.211 pooka fdp = p->p_fd;
1773 1.211 pooka
1774 1.211 pooka if (fdp->fd_refcnt > 1) {
1775 1.211 pooka fdp = fd_copy();
1776 1.211 pooka fd_free();
1777 1.211 pooka p->p_fd = fdp;
1778 1.211 pooka l->l_fd = fdp;
1779 1.211 pooka }
1780 1.211 pooka if (!fdp->fd_exclose) {
1781 1.211 pooka return;
1782 1.211 pooka }
1783 1.211 pooka fdp->fd_exclose = false;
1784 1.244 riastrad dt = atomic_load_consume(&fdp->fd_dt);
1785 1.211 pooka
1786 1.211 pooka for (fd = 0; fd <= fdp->fd_lastfile; fd++) {
1787 1.211 pooka if ((ff = dt->dt_ff[fd]) == NULL) {
1788 1.211 pooka KASSERT(fd >= NDFDFILE);
1789 1.211 pooka continue;
1790 1.211 pooka }
1791 1.211 pooka KASSERT(fd >= NDFDFILE ||
1792 1.211 pooka ff == (fdfile_t *)fdp->fd_dfdfile[fd]);
1793 1.211 pooka if (ff->ff_file == NULL)
1794 1.211 pooka continue;
1795 1.211 pooka if (ff->ff_exclose) {
1796 1.211 pooka /*
1797 1.211 pooka * We need a reference to close the file.
1798 1.211 pooka * No other threads can see the fdfile_t at
1799 1.211 pooka * this point, so don't bother locking.
1800 1.211 pooka */
1801 1.211 pooka KASSERT((ff->ff_refcnt & FR_CLOSING) == 0);
1802 1.211 pooka ff->ff_refcnt++;
1803 1.211 pooka fd_close(fd);
1804 1.211 pooka }
1805 1.211 pooka }
1806 1.211 pooka }
1807 1.211 pooka
1808 1.211 pooka /*
1809 1.113 jdolecek * Sets descriptor owner. If the owner is a process, 'pgid'
1810 1.113 jdolecek * is set to positive value, process ID. If the owner is process group,
1811 1.113 jdolecek * 'pgid' is set to -pg_id.
1812 1.113 jdolecek */
1813 1.113 jdolecek int
1814 1.180 gmcgarry fsetown(pid_t *pgid, u_long cmd, const void *data)
1815 1.113 jdolecek {
1816 1.203 rmind pid_t id = *(const pid_t *)data;
1817 1.113 jdolecek int error;
1818 1.113 jdolecek
1819 1.263 kre if (id <= INT_MIN)
1820 1.250 nia return EINVAL;
1821 1.250 nia
1822 1.113 jdolecek switch (cmd) {
1823 1.113 jdolecek case TIOCSPGRP:
1824 1.113 jdolecek if (id < 0)
1825 1.203 rmind return EINVAL;
1826 1.113 jdolecek id = -id;
1827 1.113 jdolecek break;
1828 1.113 jdolecek default:
1829 1.113 jdolecek break;
1830 1.113 jdolecek }
1831 1.203 rmind if (id > 0) {
1832 1.246 ad mutex_enter(&proc_lock);
1833 1.203 rmind error = proc_find(id) ? 0 : ESRCH;
1834 1.246 ad mutex_exit(&proc_lock);
1835 1.203 rmind } else if (id < 0) {
1836 1.203 rmind error = pgid_in_session(curproc, -id);
1837 1.203 rmind } else {
1838 1.203 rmind error = 0;
1839 1.203 rmind }
1840 1.203 rmind if (!error) {
1841 1.203 rmind *pgid = id;
1842 1.203 rmind }
1843 1.203 rmind return error;
1844 1.113 jdolecek }
1845 1.113 jdolecek
1846 1.212 christos void
1847 1.212 christos fd_set_exclose(struct lwp *l, int fd, bool exclose)
1848 1.212 christos {
1849 1.212 christos filedesc_t *fdp = l->l_fd;
1850 1.244 riastrad fdfile_t *ff = atomic_load_consume(&fdp->fd_dt)->dt_ff[fd];
1851 1.213 rmind
1852 1.212 christos ff->ff_exclose = exclose;
1853 1.212 christos if (exclose)
1854 1.212 christos fdp->fd_exclose = true;
1855 1.212 christos }
1856 1.212 christos
1857 1.113 jdolecek /*
1858 1.113 jdolecek * Return descriptor owner information. If the value is positive,
1859 1.113 jdolecek * it's process ID. If it's negative, it's process group ID and
1860 1.113 jdolecek * needs the sign removed before use.
1861 1.113 jdolecek */
1862 1.113 jdolecek int
1863 1.180 gmcgarry fgetown(pid_t pgid, u_long cmd, void *data)
1864 1.113 jdolecek {
1865 1.173 ad
1866 1.113 jdolecek switch (cmd) {
1867 1.113 jdolecek case TIOCGPGRP:
1868 1.263 kre KASSERT(pgid > INT_MIN);
1869 1.113 jdolecek *(int *)data = -pgid;
1870 1.113 jdolecek break;
1871 1.113 jdolecek default:
1872 1.113 jdolecek *(int *)data = pgid;
1873 1.113 jdolecek break;
1874 1.113 jdolecek }
1875 1.213 rmind return 0;
1876 1.113 jdolecek }
1877 1.113 jdolecek
1878 1.113 jdolecek /*
1879 1.113 jdolecek * Send signal to descriptor owner, either process or process group.
1880 1.113 jdolecek */
1881 1.113 jdolecek void
1882 1.114 christos fownsignal(pid_t pgid, int signo, int code, int band, void *fdescdata)
1883 1.113 jdolecek {
1884 1.131 perry ksiginfo_t ksi;
1885 1.113 jdolecek
1886 1.176 ad KASSERT(!cpu_intr_p());
1887 1.176 ad
1888 1.189 rmind if (pgid == 0) {
1889 1.189 rmind return;
1890 1.189 rmind }
1891 1.189 rmind
1892 1.148 yamt KSI_INIT(&ksi);
1893 1.114 christos ksi.ksi_signo = signo;
1894 1.113 jdolecek ksi.ksi_code = code;
1895 1.113 jdolecek ksi.ksi_band = band;
1896 1.113 jdolecek
1897 1.246 ad mutex_enter(&proc_lock);
1898 1.189 rmind if (pgid > 0) {
1899 1.189 rmind struct proc *p1;
1900 1.189 rmind
1901 1.203 rmind p1 = proc_find(pgid);
1902 1.189 rmind if (p1 != NULL) {
1903 1.189 rmind kpsignal(p1, &ksi, fdescdata);
1904 1.189 rmind }
1905 1.189 rmind } else {
1906 1.189 rmind struct pgrp *pgrp;
1907 1.189 rmind
1908 1.263 kre KASSERT(pgid < 0 && pgid > INT_MIN);
1909 1.203 rmind pgrp = pgrp_find(-pgid);
1910 1.189 rmind if (pgrp != NULL) {
1911 1.189 rmind kpgsignal(pgrp, &ksi, fdescdata, 0);
1912 1.189 rmind }
1913 1.189 rmind }
1914 1.246 ad mutex_exit(&proc_lock);
1915 1.113 jdolecek }
1916 1.127 christos
1917 1.127 christos int
1918 1.173 ad fd_clone(file_t *fp, unsigned fd, int flag, const struct fileops *fops,
1919 1.173 ad void *data)
1920 1.127 christos {
1921 1.173 ad
1922 1.230 nat fp->f_flag = flag & FMASK;
1923 1.264 kre fd_set_exclose(curlwp, fd, (flag & O_CLOEXEC) != 0);
1924 1.127 christos fp->f_type = DTYPE_MISC;
1925 1.127 christos fp->f_ops = fops;
1926 1.127 christos fp->f_data = data;
1927 1.173 ad curlwp->l_dupfd = fd;
1928 1.173 ad fd_affix(curproc, fp, fd);
1929 1.127 christos
1930 1.127 christos return EMOVEFD;
1931 1.127 christos }
1932 1.127 christos
1933 1.127 christos int
1934 1.173 ad fnullop_fcntl(file_t *fp, u_int cmd, void *data)
1935 1.127 christos {
1936 1.147 yamt
1937 1.127 christos if (cmd == F_SETFL)
1938 1.127 christos return 0;
1939 1.127 christos
1940 1.127 christos return EOPNOTSUPP;
1941 1.127 christos }
1942 1.127 christos
1943 1.127 christos int
1944 1.173 ad fnullop_poll(file_t *fp, int which)
1945 1.127 christos {
1946 1.147 yamt
1947 1.127 christos return 0;
1948 1.127 christos }
1949 1.127 christos
1950 1.127 christos int
1951 1.173 ad fnullop_kqfilter(file_t *fp, struct knote *kn)
1952 1.127 christos {
1953 1.127 christos
1954 1.219 christos return EOPNOTSUPP;
1955 1.127 christos }
1956 1.127 christos
1957 1.190 ad void
1958 1.202 dsl fnullop_restart(file_t *fp)
1959 1.190 ad {
1960 1.190 ad
1961 1.190 ad }
1962 1.190 ad
1963 1.127 christos int
1964 1.173 ad fbadop_read(file_t *fp, off_t *offset, struct uio *uio,
1965 1.173 ad kauth_cred_t cred, int flags)
1966 1.160 rmind {
1967 1.160 rmind
1968 1.160 rmind return EOPNOTSUPP;
1969 1.160 rmind }
1970 1.160 rmind
1971 1.160 rmind int
1972 1.173 ad fbadop_write(file_t *fp, off_t *offset, struct uio *uio,
1973 1.173 ad kauth_cred_t cred, int flags)
1974 1.160 rmind {
1975 1.160 rmind
1976 1.160 rmind return EOPNOTSUPP;
1977 1.160 rmind }
1978 1.160 rmind
1979 1.160 rmind int
1980 1.173 ad fbadop_ioctl(file_t *fp, u_long com, void *data)
1981 1.160 rmind {
1982 1.160 rmind
1983 1.160 rmind return EOPNOTSUPP;
1984 1.160 rmind }
1985 1.160 rmind
1986 1.160 rmind int
1987 1.173 ad fbadop_stat(file_t *fp, struct stat *sb)
1988 1.127 christos {
1989 1.147 yamt
1990 1.127 christos return EOPNOTSUPP;
1991 1.127 christos }
1992 1.160 rmind
1993 1.160 rmind int
1994 1.173 ad fbadop_close(file_t *fp)
1995 1.160 rmind {
1996 1.160 rmind
1997 1.160 rmind return EOPNOTSUPP;
1998 1.160 rmind }
1999 1.210 pooka
2000 1.210 pooka /*
2001 1.210 pooka * sysctl routines pertaining to file descriptors
2002 1.210 pooka */
2003 1.210 pooka
2004 1.210 pooka /* Initialized in sysctl_init() for now... */
2005 1.210 pooka extern kmutex_t sysctl_file_marker_lock;
2006 1.210 pooka static u_int sysctl_file_marker = 1;
2007 1.210 pooka
2008 1.210 pooka /*
2009 1.210 pooka * Expects to be called with proc_lock and sysctl_file_marker_lock locked.
2010 1.210 pooka */
2011 1.210 pooka static void
2012 1.210 pooka sysctl_file_marker_reset(void)
2013 1.210 pooka {
2014 1.210 pooka struct proc *p;
2015 1.210 pooka
2016 1.210 pooka PROCLIST_FOREACH(p, &allproc) {
2017 1.210 pooka struct filedesc *fd = p->p_fd;
2018 1.210 pooka fdtab_t *dt;
2019 1.210 pooka u_int i;
2020 1.210 pooka
2021 1.210 pooka mutex_enter(&fd->fd_lock);
2022 1.210 pooka dt = fd->fd_dt;
2023 1.210 pooka for (i = 0; i < dt->dt_nfiles; i++) {
2024 1.210 pooka struct file *fp;
2025 1.210 pooka fdfile_t *ff;
2026 1.210 pooka
2027 1.210 pooka if ((ff = dt->dt_ff[i]) == NULL) {
2028 1.210 pooka continue;
2029 1.210 pooka }
2030 1.245 riastrad if ((fp = atomic_load_consume(&ff->ff_file)) == NULL) {
2031 1.210 pooka continue;
2032 1.210 pooka }
2033 1.210 pooka fp->f_marker = 0;
2034 1.210 pooka }
2035 1.210 pooka mutex_exit(&fd->fd_lock);
2036 1.210 pooka }
2037 1.210 pooka }
2038 1.210 pooka
2039 1.210 pooka /*
2040 1.210 pooka * sysctl helper routine for kern.file pseudo-subtree.
2041 1.210 pooka */
2042 1.210 pooka static int
2043 1.210 pooka sysctl_kern_file(SYSCTLFN_ARGS)
2044 1.210 pooka {
2045 1.241 maxv const bool allowaddr = get_expose_address(curproc);
2046 1.241 maxv struct filelist flist;
2047 1.210 pooka int error;
2048 1.210 pooka size_t buflen;
2049 1.210 pooka struct file *fp, fbuf;
2050 1.210 pooka char *start, *where;
2051 1.210 pooka struct proc *p;
2052 1.210 pooka
2053 1.210 pooka start = where = oldp;
2054 1.210 pooka buflen = *oldlenp;
2055 1.210 pooka
2056 1.210 pooka if (where == NULL) {
2057 1.210 pooka /*
2058 1.210 pooka * overestimate by 10 files
2059 1.210 pooka */
2060 1.210 pooka *oldlenp = sizeof(filehead) + (nfiles + 10) *
2061 1.210 pooka sizeof(struct file);
2062 1.213 rmind return 0;
2063 1.210 pooka }
2064 1.210 pooka
2065 1.210 pooka /*
2066 1.210 pooka * first sysctl_copyout filehead
2067 1.210 pooka */
2068 1.210 pooka if (buflen < sizeof(filehead)) {
2069 1.210 pooka *oldlenp = 0;
2070 1.213 rmind return 0;
2071 1.210 pooka }
2072 1.210 pooka sysctl_unlock();
2073 1.241 maxv if (allowaddr) {
2074 1.241 maxv memcpy(&flist, &filehead, sizeof(flist));
2075 1.241 maxv } else {
2076 1.241 maxv memset(&flist, 0, sizeof(flist));
2077 1.241 maxv }
2078 1.241 maxv error = sysctl_copyout(l, &flist, where, sizeof(flist));
2079 1.210 pooka if (error) {
2080 1.213 rmind sysctl_relock();
2081 1.210 pooka return error;
2082 1.210 pooka }
2083 1.241 maxv buflen -= sizeof(flist);
2084 1.241 maxv where += sizeof(flist);
2085 1.210 pooka
2086 1.210 pooka /*
2087 1.210 pooka * followed by an array of file structures
2088 1.210 pooka */
2089 1.210 pooka mutex_enter(&sysctl_file_marker_lock);
2090 1.246 ad mutex_enter(&proc_lock);
2091 1.210 pooka PROCLIST_FOREACH(p, &allproc) {
2092 1.210 pooka struct filedesc *fd;
2093 1.210 pooka fdtab_t *dt;
2094 1.210 pooka u_int i;
2095 1.210 pooka
2096 1.210 pooka if (p->p_stat == SIDL) {
2097 1.210 pooka /* skip embryonic processes */
2098 1.210 pooka continue;
2099 1.210 pooka }
2100 1.210 pooka mutex_enter(p->p_lock);
2101 1.210 pooka error = kauth_authorize_process(l->l_cred,
2102 1.210 pooka KAUTH_PROCESS_CANSEE, p,
2103 1.210 pooka KAUTH_ARG(KAUTH_REQ_PROCESS_CANSEE_OPENFILES),
2104 1.210 pooka NULL, NULL);
2105 1.210 pooka mutex_exit(p->p_lock);
2106 1.210 pooka if (error != 0) {
2107 1.210 pooka /*
2108 1.210 pooka * Don't leak kauth retval if we're silently
2109 1.210 pooka * skipping this entry.
2110 1.210 pooka */
2111 1.210 pooka error = 0;
2112 1.210 pooka continue;
2113 1.210 pooka }
2114 1.210 pooka
2115 1.210 pooka /*
2116 1.210 pooka * Grab a hold on the process.
2117 1.210 pooka */
2118 1.210 pooka if (!rw_tryenter(&p->p_reflock, RW_READER)) {
2119 1.210 pooka continue;
2120 1.210 pooka }
2121 1.246 ad mutex_exit(&proc_lock);
2122 1.210 pooka
2123 1.210 pooka fd = p->p_fd;
2124 1.210 pooka mutex_enter(&fd->fd_lock);
2125 1.210 pooka dt = fd->fd_dt;
2126 1.210 pooka for (i = 0; i < dt->dt_nfiles; i++) {
2127 1.210 pooka fdfile_t *ff;
2128 1.210 pooka
2129 1.210 pooka if ((ff = dt->dt_ff[i]) == NULL) {
2130 1.210 pooka continue;
2131 1.210 pooka }
2132 1.245 riastrad if ((fp = atomic_load_consume(&ff->ff_file)) == NULL) {
2133 1.210 pooka continue;
2134 1.210 pooka }
2135 1.210 pooka
2136 1.210 pooka mutex_enter(&fp->f_lock);
2137 1.210 pooka
2138 1.210 pooka if ((fp->f_count == 0) ||
2139 1.210 pooka (fp->f_marker == sysctl_file_marker)) {
2140 1.210 pooka mutex_exit(&fp->f_lock);
2141 1.210 pooka continue;
2142 1.210 pooka }
2143 1.210 pooka
2144 1.210 pooka /* Check that we have enough space. */
2145 1.210 pooka if (buflen < sizeof(struct file)) {
2146 1.210 pooka *oldlenp = where - start;
2147 1.213 rmind mutex_exit(&fp->f_lock);
2148 1.210 pooka error = ENOMEM;
2149 1.210 pooka break;
2150 1.210 pooka }
2151 1.210 pooka
2152 1.241 maxv fill_file(&fbuf, fp);
2153 1.210 pooka mutex_exit(&fp->f_lock);
2154 1.210 pooka error = sysctl_copyout(l, &fbuf, where, sizeof(fbuf));
2155 1.210 pooka if (error) {
2156 1.210 pooka break;
2157 1.210 pooka }
2158 1.210 pooka buflen -= sizeof(struct file);
2159 1.210 pooka where += sizeof(struct file);
2160 1.210 pooka
2161 1.210 pooka fp->f_marker = sysctl_file_marker;
2162 1.210 pooka }
2163 1.210 pooka mutex_exit(&fd->fd_lock);
2164 1.210 pooka
2165 1.210 pooka /*
2166 1.210 pooka * Release reference to process.
2167 1.210 pooka */
2168 1.246 ad mutex_enter(&proc_lock);
2169 1.210 pooka rw_exit(&p->p_reflock);
2170 1.210 pooka
2171 1.210 pooka if (error)
2172 1.210 pooka break;
2173 1.210 pooka }
2174 1.210 pooka
2175 1.210 pooka sysctl_file_marker++;
2176 1.210 pooka /* Reset all markers if wrapped. */
2177 1.210 pooka if (sysctl_file_marker == 0) {
2178 1.210 pooka sysctl_file_marker_reset();
2179 1.210 pooka sysctl_file_marker++;
2180 1.210 pooka }
2181 1.210 pooka
2182 1.246 ad mutex_exit(&proc_lock);
2183 1.210 pooka mutex_exit(&sysctl_file_marker_lock);
2184 1.210 pooka
2185 1.210 pooka *oldlenp = where - start;
2186 1.213 rmind sysctl_relock();
2187 1.213 rmind return error;
2188 1.210 pooka }
2189 1.210 pooka
2190 1.210 pooka /*
2191 1.210 pooka * sysctl helper function for kern.file2
2192 1.210 pooka */
2193 1.210 pooka static int
2194 1.210 pooka sysctl_kern_file2(SYSCTLFN_ARGS)
2195 1.210 pooka {
2196 1.210 pooka struct proc *p;
2197 1.210 pooka struct file *fp;
2198 1.210 pooka struct filedesc *fd;
2199 1.210 pooka struct kinfo_file kf;
2200 1.210 pooka char *dp;
2201 1.210 pooka u_int i, op;
2202 1.210 pooka size_t len, needed, elem_size, out_size;
2203 1.210 pooka int error, arg, elem_count;
2204 1.210 pooka fdfile_t *ff;
2205 1.210 pooka fdtab_t *dt;
2206 1.210 pooka
2207 1.210 pooka if (namelen == 1 && name[0] == CTL_QUERY)
2208 1.213 rmind return sysctl_query(SYSCTLFN_CALL(rnode));
2209 1.210 pooka
2210 1.210 pooka if (namelen != 4)
2211 1.213 rmind return EINVAL;
2212 1.210 pooka
2213 1.210 pooka error = 0;
2214 1.210 pooka dp = oldp;
2215 1.210 pooka len = (oldp != NULL) ? *oldlenp : 0;
2216 1.210 pooka op = name[0];
2217 1.210 pooka arg = name[1];
2218 1.210 pooka elem_size = name[2];
2219 1.210 pooka elem_count = name[3];
2220 1.210 pooka out_size = MIN(sizeof(kf), elem_size);
2221 1.210 pooka needed = 0;
2222 1.210 pooka
2223 1.210 pooka if (elem_size < 1 || elem_count < 0)
2224 1.213 rmind return EINVAL;
2225 1.210 pooka
2226 1.210 pooka switch (op) {
2227 1.210 pooka case KERN_FILE_BYFILE:
2228 1.210 pooka case KERN_FILE_BYPID:
2229 1.210 pooka /*
2230 1.210 pooka * We're traversing the process list in both cases; the BYFILE
2231 1.210 pooka * case does additional work of keeping track of files already
2232 1.210 pooka * looked at.
2233 1.210 pooka */
2234 1.210 pooka
2235 1.210 pooka /* doesn't use arg so it must be zero */
2236 1.210 pooka if ((op == KERN_FILE_BYFILE) && (arg != 0))
2237 1.210 pooka return EINVAL;
2238 1.210 pooka
2239 1.210 pooka if ((op == KERN_FILE_BYPID) && (arg < -1))
2240 1.210 pooka /* -1 means all processes */
2241 1.213 rmind return EINVAL;
2242 1.210 pooka
2243 1.210 pooka sysctl_unlock();
2244 1.210 pooka if (op == KERN_FILE_BYFILE)
2245 1.210 pooka mutex_enter(&sysctl_file_marker_lock);
2246 1.246 ad mutex_enter(&proc_lock);
2247 1.210 pooka PROCLIST_FOREACH(p, &allproc) {
2248 1.210 pooka if (p->p_stat == SIDL) {
2249 1.210 pooka /* skip embryonic processes */
2250 1.210 pooka continue;
2251 1.210 pooka }
2252 1.210 pooka if (arg > 0 && p->p_pid != arg) {
2253 1.210 pooka /* pick only the one we want */
2254 1.210 pooka /* XXX want 0 to mean "kernel files" */
2255 1.210 pooka continue;
2256 1.210 pooka }
2257 1.210 pooka mutex_enter(p->p_lock);
2258 1.210 pooka error = kauth_authorize_process(l->l_cred,
2259 1.210 pooka KAUTH_PROCESS_CANSEE, p,
2260 1.210 pooka KAUTH_ARG(KAUTH_REQ_PROCESS_CANSEE_OPENFILES),
2261 1.210 pooka NULL, NULL);
2262 1.210 pooka mutex_exit(p->p_lock);
2263 1.210 pooka if (error != 0) {
2264 1.210 pooka /*
2265 1.210 pooka * Don't leak kauth retval if we're silently
2266 1.210 pooka * skipping this entry.
2267 1.210 pooka */
2268 1.210 pooka error = 0;
2269 1.210 pooka continue;
2270 1.210 pooka }
2271 1.210 pooka
2272 1.210 pooka /*
2273 1.210 pooka * Grab a hold on the process.
2274 1.210 pooka */
2275 1.210 pooka if (!rw_tryenter(&p->p_reflock, RW_READER)) {
2276 1.210 pooka continue;
2277 1.210 pooka }
2278 1.246 ad mutex_exit(&proc_lock);
2279 1.210 pooka
2280 1.210 pooka fd = p->p_fd;
2281 1.210 pooka mutex_enter(&fd->fd_lock);
2282 1.210 pooka dt = fd->fd_dt;
2283 1.210 pooka for (i = 0; i < dt->dt_nfiles; i++) {
2284 1.210 pooka if ((ff = dt->dt_ff[i]) == NULL) {
2285 1.210 pooka continue;
2286 1.210 pooka }
2287 1.245 riastrad if ((fp = atomic_load_consume(&ff->ff_file)) ==
2288 1.245 riastrad NULL) {
2289 1.210 pooka continue;
2290 1.210 pooka }
2291 1.210 pooka
2292 1.210 pooka if ((op == KERN_FILE_BYFILE) &&
2293 1.210 pooka (fp->f_marker == sysctl_file_marker)) {
2294 1.210 pooka continue;
2295 1.210 pooka }
2296 1.210 pooka if (len >= elem_size && elem_count > 0) {
2297 1.210 pooka mutex_enter(&fp->f_lock);
2298 1.240 maxv fill_file2(&kf, fp, ff, i, p->p_pid);
2299 1.210 pooka mutex_exit(&fp->f_lock);
2300 1.210 pooka mutex_exit(&fd->fd_lock);
2301 1.210 pooka error = sysctl_copyout(l,
2302 1.210 pooka &kf, dp, out_size);
2303 1.210 pooka mutex_enter(&fd->fd_lock);
2304 1.210 pooka if (error)
2305 1.210 pooka break;
2306 1.210 pooka dp += elem_size;
2307 1.210 pooka len -= elem_size;
2308 1.210 pooka }
2309 1.210 pooka if (op == KERN_FILE_BYFILE)
2310 1.210 pooka fp->f_marker = sysctl_file_marker;
2311 1.210 pooka needed += elem_size;
2312 1.210 pooka if (elem_count > 0 && elem_count != INT_MAX)
2313 1.210 pooka elem_count--;
2314 1.210 pooka }
2315 1.210 pooka mutex_exit(&fd->fd_lock);
2316 1.210 pooka
2317 1.210 pooka /*
2318 1.210 pooka * Release reference to process.
2319 1.210 pooka */
2320 1.246 ad mutex_enter(&proc_lock);
2321 1.210 pooka rw_exit(&p->p_reflock);
2322 1.210 pooka }
2323 1.210 pooka if (op == KERN_FILE_BYFILE) {
2324 1.210 pooka sysctl_file_marker++;
2325 1.210 pooka
2326 1.210 pooka /* Reset all markers if wrapped. */
2327 1.210 pooka if (sysctl_file_marker == 0) {
2328 1.210 pooka sysctl_file_marker_reset();
2329 1.210 pooka sysctl_file_marker++;
2330 1.210 pooka }
2331 1.210 pooka }
2332 1.246 ad mutex_exit(&proc_lock);
2333 1.210 pooka if (op == KERN_FILE_BYFILE)
2334 1.210 pooka mutex_exit(&sysctl_file_marker_lock);
2335 1.210 pooka sysctl_relock();
2336 1.210 pooka break;
2337 1.210 pooka default:
2338 1.213 rmind return EINVAL;
2339 1.210 pooka }
2340 1.210 pooka
2341 1.210 pooka if (oldp == NULL)
2342 1.210 pooka needed += KERN_FILESLOP * elem_size;
2343 1.210 pooka *oldlenp = needed;
2344 1.210 pooka
2345 1.213 rmind return error;
2346 1.210 pooka }
2347 1.210 pooka
2348 1.210 pooka static void
2349 1.241 maxv fill_file(struct file *fp, const struct file *fpsrc)
2350 1.241 maxv {
2351 1.241 maxv const bool allowaddr = get_expose_address(curproc);
2352 1.241 maxv
2353 1.241 maxv memset(fp, 0, sizeof(*fp));
2354 1.241 maxv
2355 1.241 maxv fp->f_offset = fpsrc->f_offset;
2356 1.247 christos COND_SET_PTR(fp->f_cred, fpsrc->f_cred, allowaddr);
2357 1.247 christos COND_SET_CPTR(fp->f_ops, fpsrc->f_ops, allowaddr);
2358 1.247 christos COND_SET_STRUCT(fp->f_undata, fpsrc->f_undata, allowaddr);
2359 1.247 christos COND_SET_STRUCT(fp->f_list, fpsrc->f_list, allowaddr);
2360 1.241 maxv fp->f_flag = fpsrc->f_flag;
2361 1.241 maxv fp->f_marker = fpsrc->f_marker;
2362 1.241 maxv fp->f_type = fpsrc->f_type;
2363 1.241 maxv fp->f_advice = fpsrc->f_advice;
2364 1.241 maxv fp->f_count = fpsrc->f_count;
2365 1.241 maxv fp->f_msgcount = fpsrc->f_msgcount;
2366 1.241 maxv fp->f_unpcount = fpsrc->f_unpcount;
2367 1.247 christos COND_SET_STRUCT(fp->f_unplist, fpsrc->f_unplist, allowaddr);
2368 1.241 maxv }
2369 1.241 maxv
2370 1.241 maxv static void
2371 1.240 maxv fill_file2(struct kinfo_file *kp, const file_t *fp, const fdfile_t *ff,
2372 1.210 pooka int i, pid_t pid)
2373 1.210 pooka {
2374 1.238 christos const bool allowaddr = get_expose_address(curproc);
2375 1.210 pooka
2376 1.210 pooka memset(kp, 0, sizeof(*kp));
2377 1.210 pooka
2378 1.238 christos COND_SET_VALUE(kp->ki_fileaddr, PTRTOUINT64(fp), allowaddr);
2379 1.210 pooka kp->ki_flag = fp->f_flag;
2380 1.210 pooka kp->ki_iflags = 0;
2381 1.210 pooka kp->ki_ftype = fp->f_type;
2382 1.210 pooka kp->ki_count = fp->f_count;
2383 1.210 pooka kp->ki_msgcount = fp->f_msgcount;
2384 1.238 christos COND_SET_VALUE(kp->ki_fucred, PTRTOUINT64(fp->f_cred), allowaddr);
2385 1.210 pooka kp->ki_fuid = kauth_cred_geteuid(fp->f_cred);
2386 1.210 pooka kp->ki_fgid = kauth_cred_getegid(fp->f_cred);
2387 1.238 christos COND_SET_VALUE(kp->ki_fops, PTRTOUINT64(fp->f_ops), allowaddr);
2388 1.210 pooka kp->ki_foffset = fp->f_offset;
2389 1.238 christos COND_SET_VALUE(kp->ki_fdata, PTRTOUINT64(fp->f_data), allowaddr);
2390 1.210 pooka
2391 1.210 pooka /* vnode information to glue this file to something */
2392 1.210 pooka if (fp->f_type == DTYPE_VNODE) {
2393 1.227 matt struct vnode *vp = fp->f_vnode;
2394 1.210 pooka
2395 1.238 christos COND_SET_VALUE(kp->ki_vun, PTRTOUINT64(vp->v_un.vu_socket),
2396 1.237 maxv allowaddr);
2397 1.210 pooka kp->ki_vsize = vp->v_size;
2398 1.210 pooka kp->ki_vtype = vp->v_type;
2399 1.210 pooka kp->ki_vtag = vp->v_tag;
2400 1.238 christos COND_SET_VALUE(kp->ki_vdata, PTRTOUINT64(vp->v_data),
2401 1.237 maxv allowaddr);
2402 1.210 pooka }
2403 1.210 pooka
2404 1.210 pooka /* process information when retrieved via KERN_FILE_BYPID */
2405 1.210 pooka if (ff != NULL) {
2406 1.210 pooka kp->ki_pid = pid;
2407 1.210 pooka kp->ki_fd = i;
2408 1.210 pooka kp->ki_ofileflags = ff->ff_exclose;
2409 1.210 pooka kp->ki_usecount = ff->ff_refcnt;
2410 1.210 pooka }
2411 1.210 pooka }
2412