xref: /freebsd/sys/fs/fuse/fuse_ipc.c (revision 9e4c35f867aca020df8d01fb7371bf5ae1cc8a2d)
1 /*-
2  * SPDX-License-Identifier: BSD-3-Clause
3  *
4  * Copyright (c) 2007-2009 Google Inc. and Amit Singh
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions are
9  * met:
10  *
11  * * Redistributions of source code must retain the above copyright
12  *   notice, this list of conditions and the following disclaimer.
13  * * Redistributions in binary form must reproduce the above
14  *   copyright notice, this list of conditions and the following disclaimer
15  *   in the documentation and/or other materials provided with the
16  *   distribution.
17  * * Neither the name of Google Inc. nor the names of its
18  *   contributors may be used to endorse or promote products derived from
19  *   this software without specific prior written permission.
20  *
21  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
24  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
25  * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27  * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
31  * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32  *
33  * Copyright (C) 2005 Csaba Henk.
34  * All rights reserved.
35  *
36  * Copyright (c) 2019 The FreeBSD Foundation
37  *
38  * Portions of this software were developed by BFF Storage Systems, LLC under
39  * sponsorship from the FreeBSD Foundation.
40  *
41  * Redistribution and use in source and binary forms, with or without
42  * modification, are permitted provided that the following conditions
43  * are met:
44  * 1. Redistributions of source code must retain the above copyright
45  *    notice, this list of conditions and the following disclaimer.
46  * 2. Redistributions in binary form must reproduce the above copyright
47  *    notice, this list of conditions and the following disclaimer in the
48  *    documentation and/or other materials provided with the distribution.
49  *
50  * THIS SOFTWARE IS PROVIDED BY AUTHOR AND CONTRIBUTORS ``AS IS'' AND
51  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
52  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
53  * ARE DISCLAIMED.  IN NO EVENT SHALL AUTHOR OR CONTRIBUTORS BE LIABLE
54  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
55  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
56  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
57  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
58  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
59  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
60  * SUCH DAMAGE.
61  */
62 
63 #include <sys/cdefs.h>
64 __FBSDID("$FreeBSD$");
65 
66 #include <sys/param.h>
67 #include <sys/module.h>
68 #include <sys/systm.h>
69 #include <sys/counter.h>
70 #include <sys/errno.h>
71 #include <sys/kernel.h>
72 #include <sys/conf.h>
73 #include <sys/uio.h>
74 #include <sys/malloc.h>
75 #include <sys/queue.h>
76 #include <sys/lock.h>
77 #include <sys/sx.h>
78 #include <sys/mutex.h>
79 #include <sys/proc.h>
80 #include <sys/mount.h>
81 #include <sys/sdt.h>
82 #include <sys/vnode.h>
83 #include <sys/signalvar.h>
84 #include <sys/syscallsubr.h>
85 #include <sys/sysctl.h>
86 #include <vm/uma.h>
87 
88 #include "fuse.h"
89 #include "fuse_node.h"
90 #include "fuse_ipc.h"
91 #include "fuse_internal.h"
92 
93 SDT_PROVIDER_DECLARE(fusefs);
94 /*
95  * Fuse trace probe:
96  * arg0: verbosity.  Higher numbers give more verbose messages
97  * arg1: Textual message
98  */
99 SDT_PROBE_DEFINE2(fusefs, , ipc, trace, "int", "char*");
100 
101 static void fdisp_make_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op,
102     struct fuse_data *data, uint64_t nid, pid_t pid, struct ucred *cred);
103 static void fuse_interrupt_send(struct fuse_ticket *otick, int err);
104 static struct fuse_ticket *fticket_alloc(struct fuse_data *data);
105 static void fticket_refresh(struct fuse_ticket *ftick);
106 static void fticket_destroy(struct fuse_ticket *ftick);
107 static int fticket_wait_answer(struct fuse_ticket *ftick);
108 static inline int
109 fticket_aw_pull_uio(struct fuse_ticket *ftick,
110     struct uio *uio);
111 
112 static int fuse_body_audit(struct fuse_ticket *ftick, size_t blen);
113 
114 static fuse_handler_t fuse_standard_handler;
115 
116 static counter_u64_t fuse_ticket_count;
117 SYSCTL_COUNTER_U64(_vfs_fusefs_stats, OID_AUTO, ticket_count, CTLFLAG_RD,
118     &fuse_ticket_count, "Number of allocated tickets");
119 
120 static long fuse_iov_permanent_bufsize = 1 << 19;
121 
122 SYSCTL_LONG(_vfs_fusefs, OID_AUTO, iov_permanent_bufsize, CTLFLAG_RW,
123     &fuse_iov_permanent_bufsize, 0,
124     "limit for permanently stored buffer size for fuse_iovs");
125 static int fuse_iov_credit = 16;
126 
127 SYSCTL_INT(_vfs_fusefs, OID_AUTO, iov_credit, CTLFLAG_RW,
128     &fuse_iov_credit, 0,
129     "how many times is an oversized fuse_iov tolerated");
130 
131 MALLOC_DEFINE(M_FUSEMSG, "fuse_msgbuf", "fuse message buffer");
132 static uma_zone_t ticket_zone;
133 
134 /*
135  * TODO: figure out how to timeout INTERRUPT requests, because the daemon may
136  * leagally never respond
137  */
138 static int
139 fuse_interrupt_callback(struct fuse_ticket *tick, struct uio *uio)
140 {
141 	struct fuse_ticket *otick, *x_tick;
142 	struct fuse_interrupt_in *fii;
143 	struct fuse_data *data = tick->tk_data;
144 	bool found = false;
145 
146 	fii = (struct fuse_interrupt_in*)((char*)tick->tk_ms_fiov.base +
147 		sizeof(struct fuse_in_header));
148 
149 	fuse_lck_mtx_lock(data->aw_mtx);
150 	TAILQ_FOREACH_SAFE(otick, &data->aw_head, tk_aw_link, x_tick) {
151 		if (otick->tk_unique == fii->unique) {
152 			found = true;
153 			break;
154 		}
155 	}
156 	fuse_lck_mtx_unlock(data->aw_mtx);
157 
158 	if (!found) {
159 		/* Original is already complete.  Just return */
160 		return 0;
161 	}
162 
163 	/* Clear the original ticket's interrupt association */
164 	otick->irq_unique = 0;
165 
166 	if (tick->tk_aw_ohead.error == ENOSYS) {
167 		fsess_set_notimpl(data->mp, FUSE_INTERRUPT);
168 		return 0;
169 	} else if (tick->tk_aw_ohead.error == EAGAIN) {
170 		/*
171 		 * There are two reasons we might get this:
172 		 * 1) the daemon received the INTERRUPT request before the
173 		 *    original, or
174 		 * 2) the daemon received the INTERRUPT request after it
175 		 *    completed the original request.
176 		 * In the first case we should re-send the INTERRUPT.  In the
177 		 * second, we should ignore it.
178 		 */
179 		/* Resend */
180 		fuse_interrupt_send(otick, EINTR);
181 		return 0;
182 	} else {
183 		/* Illegal FUSE_INTERRUPT response */
184 		return EINVAL;
185 	}
186 }
187 
188 /* Interrupt the operation otick.  Return err as its error code */
189 void
190 fuse_interrupt_send(struct fuse_ticket *otick, int err)
191 {
192 	struct fuse_dispatcher fdi;
193 	struct fuse_interrupt_in *fii;
194 	struct fuse_in_header *ftick_hdr;
195 	struct fuse_data *data = otick->tk_data;
196 	struct fuse_ticket *tick, *xtick;
197 	struct ucred reused_creds;
198 	gid_t reused_groups[1];
199 
200 	if (otick->irq_unique == 0) {
201 		/*
202 		 * If the daemon hasn't yet received otick, then we can answer
203 		 * it ourselves and return.
204 		 */
205 		fuse_lck_mtx_lock(data->ms_mtx);
206 		STAILQ_FOREACH_SAFE(tick, &otick->tk_data->ms_head, tk_ms_link,
207 			xtick) {
208 			if (tick == otick) {
209 				STAILQ_REMOVE(&otick->tk_data->ms_head, tick,
210 					fuse_ticket, tk_ms_link);
211 				otick->tk_data->ms_count--;
212 				otick->tk_ms_link.stqe_next = NULL;
213 				fuse_lck_mtx_unlock(data->ms_mtx);
214 
215 				fuse_lck_mtx_lock(otick->tk_aw_mtx);
216 				if (!fticket_answered(otick)) {
217 					fticket_set_answered(otick);
218 					otick->tk_aw_errno = err;
219 					wakeup(otick);
220 				}
221 				fuse_lck_mtx_unlock(otick->tk_aw_mtx);
222 
223 				fuse_ticket_drop(tick);
224 				return;
225 			}
226 		}
227 		fuse_lck_mtx_unlock(data->ms_mtx);
228 
229 		/*
230 		 * If the fuse daemon doesn't support interrupts, then there's
231 		 * nothing more that we can do
232 		 */
233 		if (!fsess_isimpl(data->mp, FUSE_INTERRUPT))
234 			return;
235 
236 		/*
237 		 * If the fuse daemon has already received otick, then we must
238 		 * send FUSE_INTERRUPT.
239 		 */
240 		ftick_hdr = fticket_in_header(otick);
241 		reused_creds.cr_uid = ftick_hdr->uid;
242 		reused_groups[0] = ftick_hdr->gid;
243 		reused_creds.cr_groups = reused_groups;
244 		fdisp_init(&fdi, sizeof(*fii));
245 		fdisp_make_pid(&fdi, FUSE_INTERRUPT, data, ftick_hdr->nodeid,
246 			ftick_hdr->pid, &reused_creds);
247 
248 		fii = fdi.indata;
249 		fii->unique = otick->tk_unique;
250 		fuse_insert_callback(fdi.tick, fuse_interrupt_callback);
251 
252 		otick->irq_unique = fdi.tick->tk_unique;
253 		/* Interrupt ops should be delivered ASAP */
254 		fuse_insert_message(fdi.tick, true);
255 		fdisp_destroy(&fdi);
256 	} else {
257 		/* This ticket has already been interrupted */
258 	}
259 }
260 
261 void
262 fiov_init(struct fuse_iov *fiov, size_t size)
263 {
264 	uint32_t msize = FU_AT_LEAST(size);
265 
266 	fiov->len = 0;
267 
268 	fiov->base = malloc(msize, M_FUSEMSG, M_WAITOK | M_ZERO);
269 
270 	fiov->allocated_size = msize;
271 	fiov->credit = fuse_iov_credit;
272 }
273 
274 void
275 fiov_teardown(struct fuse_iov *fiov)
276 {
277 	MPASS(fiov->base != NULL);
278 	free(fiov->base, M_FUSEMSG);
279 }
280 
281 void
282 fiov_adjust(struct fuse_iov *fiov, size_t size)
283 {
284 	if (fiov->allocated_size < size ||
285 	    (fuse_iov_permanent_bufsize >= 0 &&
286 	    fiov->allocated_size - size > fuse_iov_permanent_bufsize &&
287 	    --fiov->credit < 0)) {
288 		fiov->base = realloc(fiov->base, FU_AT_LEAST(size), M_FUSEMSG,
289 		    M_WAITOK | M_ZERO);
290 		if (!fiov->base) {
291 			panic("FUSE: realloc failed");
292 		}
293 		fiov->allocated_size = FU_AT_LEAST(size);
294 		fiov->credit = fuse_iov_credit;
295 		/* Clear data buffer after reallocation */
296 		bzero(fiov->base, size);
297 	} else if (size > fiov->len) {
298 		/* Clear newly extended portion of data buffer */
299 		bzero((char*)fiov->base + fiov->len, size - fiov->len);
300 	}
301 	fiov->len = size;
302 }
303 
304 /* Resize the fiov if needed, and clear it's buffer */
305 void
306 fiov_refresh(struct fuse_iov *fiov)
307 {
308 	fiov_adjust(fiov, 0);
309 }
310 
311 static int
312 fticket_ctor(void *mem, int size, void *arg, int flags)
313 {
314 	struct fuse_ticket *ftick = mem;
315 	struct fuse_data *data = arg;
316 
317 	FUSE_ASSERT_MS_DONE(ftick);
318 	FUSE_ASSERT_AW_DONE(ftick);
319 
320 	ftick->tk_data = data;
321 
322 	if (ftick->tk_unique != 0)
323 		fticket_refresh(ftick);
324 
325 	/* May be truncated to 32 bits */
326 	ftick->tk_unique = atomic_fetchadd_long(&data->ticketer, 1);
327 	if (ftick->tk_unique == 0)
328 		ftick->tk_unique = atomic_fetchadd_long(&data->ticketer, 1);
329 
330 	ftick->irq_unique = 0;
331 
332 	refcount_init(&ftick->tk_refcount, 1);
333 	counter_u64_add(fuse_ticket_count, 1);
334 
335 	return 0;
336 }
337 
338 static void
339 fticket_dtor(void *mem, int size, void *arg)
340 {
341 #ifdef INVARIANTS
342 	struct fuse_ticket *ftick = mem;
343 #endif
344 
345 	FUSE_ASSERT_MS_DONE(ftick);
346 	FUSE_ASSERT_AW_DONE(ftick);
347 
348 	counter_u64_add(fuse_ticket_count, -1);
349 }
350 
351 static int
352 fticket_init(void *mem, int size, int flags)
353 {
354 	struct fuse_ticket *ftick = mem;
355 
356 	bzero(ftick, sizeof(struct fuse_ticket));
357 
358 	fiov_init(&ftick->tk_ms_fiov, sizeof(struct fuse_in_header));
359 	ftick->tk_ms_type = FT_M_FIOV;
360 
361 	mtx_init(&ftick->tk_aw_mtx, "fuse answer delivery mutex", NULL, MTX_DEF);
362 	fiov_init(&ftick->tk_aw_fiov, 0);
363 	ftick->tk_aw_type = FT_A_FIOV;
364 
365 	return 0;
366 }
367 
368 static void
369 fticket_fini(void *mem, int size)
370 {
371 	struct fuse_ticket *ftick = mem;
372 
373 	fiov_teardown(&ftick->tk_ms_fiov);
374 	fiov_teardown(&ftick->tk_aw_fiov);
375 	mtx_destroy(&ftick->tk_aw_mtx);
376 }
377 
378 static inline struct fuse_ticket *
379 fticket_alloc(struct fuse_data *data)
380 {
381 	return uma_zalloc_arg(ticket_zone, data, M_WAITOK);
382 }
383 
384 static inline void
385 fticket_destroy(struct fuse_ticket *ftick)
386 {
387 	return uma_zfree(ticket_zone, ftick);
388 }
389 
390 static inline
391 void
392 fticket_refresh(struct fuse_ticket *ftick)
393 {
394 	FUSE_ASSERT_MS_DONE(ftick);
395 	FUSE_ASSERT_AW_DONE(ftick);
396 
397 	fiov_refresh(&ftick->tk_ms_fiov);
398 	ftick->tk_ms_bufdata = NULL;
399 	ftick->tk_ms_bufsize = 0;
400 	ftick->tk_ms_type = FT_M_FIOV;
401 
402 	bzero(&ftick->tk_aw_ohead, sizeof(struct fuse_out_header));
403 
404 	fiov_refresh(&ftick->tk_aw_fiov);
405 	ftick->tk_aw_errno = 0;
406 	ftick->tk_aw_bufdata = NULL;
407 	ftick->tk_aw_bufsize = 0;
408 	ftick->tk_aw_type = FT_A_FIOV;
409 
410 	ftick->tk_flag = 0;
411 }
412 
413 /* Prepar the ticket to be reused, but don't clear its data buffers */
414 static inline void
415 fticket_reset(struct fuse_ticket *ftick)
416 {
417 	FUSE_ASSERT_MS_DONE(ftick);
418 	FUSE_ASSERT_AW_DONE(ftick);
419 
420 	ftick->tk_ms_bufdata = NULL;
421 	ftick->tk_ms_bufsize = 0;
422 	ftick->tk_ms_type = FT_M_FIOV;
423 
424 	bzero(&ftick->tk_aw_ohead, sizeof(struct fuse_out_header));
425 
426 	ftick->tk_aw_errno = 0;
427 	ftick->tk_aw_bufdata = NULL;
428 	ftick->tk_aw_bufsize = 0;
429 	ftick->tk_aw_type = FT_A_FIOV;
430 
431 	ftick->tk_flag = 0;
432 }
433 
434 static int
435 fticket_wait_answer(struct fuse_ticket *ftick)
436 {
437 	struct thread *td = curthread;
438 	sigset_t blockedset, oldset;
439 	int err = 0, stops_deferred;
440 	struct fuse_data *data = ftick->tk_data;
441 	bool interrupted = false;
442 
443 	if (fsess_isimpl(ftick->tk_data->mp, FUSE_INTERRUPT) &&
444 	    data->dataflags & FSESS_INTR) {
445 		SIGEMPTYSET(blockedset);
446 	} else {
447 		/* Block all signals except (implicitly) SIGKILL */
448 		SIGFILLSET(blockedset);
449 	}
450 	stops_deferred = sigdeferstop(SIGDEFERSTOP_SILENT);
451 	kern_sigprocmask(td, SIG_BLOCK, NULL, &oldset, 0);
452 
453 	fuse_lck_mtx_lock(ftick->tk_aw_mtx);
454 
455 retry:
456 	if (fticket_answered(ftick)) {
457 		goto out;
458 	}
459 
460 	if (fdata_get_dead(data)) {
461 		err = ENOTCONN;
462 		fticket_set_answered(ftick);
463 		goto out;
464 	}
465 	kern_sigprocmask(td, SIG_BLOCK, &blockedset, NULL, 0);
466 	err = msleep(ftick, &ftick->tk_aw_mtx, PCATCH, "fu_ans",
467 	    data->daemon_timeout * hz);
468 	kern_sigprocmask(td, SIG_SETMASK, &oldset, NULL, 0);
469 	if (err == EWOULDBLOCK) {
470 		SDT_PROBE2(fusefs, , ipc, trace, 3,
471 			"fticket_wait_answer: EWOULDBLOCK");
472 #ifdef XXXIP				/* die conditionally */
473 		if (!fdata_get_dead(data)) {
474 			fdata_set_dead(data);
475 		}
476 #endif
477 		err = ETIMEDOUT;
478 		fticket_set_answered(ftick);
479 	} else if ((err == EINTR || err == ERESTART)) {
480 		/*
481 		 * Whether we get EINTR or ERESTART depends on whether
482 		 * SA_RESTART was set by sigaction(2).
483 		 *
484 		 * Try to interrupt the operation and wait for an EINTR response
485 		 * to the original operation.  If the file system does not
486 		 * support FUSE_INTERRUPT, then we'll just wait for it to
487 		 * complete like normal.  If it does support FUSE_INTERRUPT,
488 		 * then it will either respond EINTR to the original operation,
489 		 * or EAGAIN to the interrupt.
490 		 */
491 		sigset_t tmpset;
492 
493 		SDT_PROBE2(fusefs, , ipc, trace, 4,
494 			"fticket_wait_answer: interrupt");
495 		fuse_lck_mtx_unlock(ftick->tk_aw_mtx);
496 		fuse_interrupt_send(ftick, err);
497 
498 		PROC_LOCK(td->td_proc);
499 		mtx_lock(&td->td_proc->p_sigacts->ps_mtx);
500 		tmpset = td->td_proc->p_siglist;
501 		SIGSETOR(tmpset, td->td_siglist);
502 		mtx_unlock(&td->td_proc->p_sigacts->ps_mtx);
503 		PROC_UNLOCK(td->td_proc);
504 
505 		fuse_lck_mtx_lock(ftick->tk_aw_mtx);
506 		if (!interrupted && !SIGISMEMBER(tmpset, SIGKILL)) {
507 			/*
508 			 * Block all signals while we wait for an interrupt
509 			 * response.  The protocol doesn't discriminate between
510 			 * different signals.
511 			 */
512 			SIGFILLSET(blockedset);
513 			interrupted = true;
514 			goto retry;
515 		} else {
516 			/*
517 			 * Return immediately for fatal signals, or if this is
518 			 * the second interruption.  We should only be
519 			 * interrupted twice if the thread is stopped, for
520 			 * example during sigexit.
521 			 */
522 		}
523 	} else if (err) {
524 		SDT_PROBE2(fusefs, , ipc, trace, 6,
525 			"fticket_wait_answer: other error");
526 	} else {
527 		SDT_PROBE2(fusefs, , ipc, trace, 7, "fticket_wait_answer: OK");
528 	}
529 out:
530 	if (!(err || fticket_answered(ftick))) {
531 		SDT_PROBE2(fusefs, , ipc, trace, 1,
532 			"FUSE: requester was woken up but still no answer");
533 		err = ENXIO;
534 	}
535 	fuse_lck_mtx_unlock(ftick->tk_aw_mtx);
536 	sigallowstop(stops_deferred);
537 
538 	return err;
539 }
540 
541 static	inline
542 int
543 fticket_aw_pull_uio(struct fuse_ticket *ftick, struct uio *uio)
544 {
545 	int err = 0;
546 	size_t len = uio_resid(uio);
547 
548 	if (len) {
549 		switch (ftick->tk_aw_type) {
550 		case FT_A_FIOV:
551 			fiov_adjust(fticket_resp(ftick), len);
552 			err = uiomove(fticket_resp(ftick)->base, len, uio);
553 			break;
554 
555 		case FT_A_BUF:
556 			ftick->tk_aw_bufsize = len;
557 			err = uiomove(ftick->tk_aw_bufdata, len, uio);
558 			break;
559 
560 		default:
561 			panic("FUSE: unknown answer type for ticket %p", ftick);
562 		}
563 	}
564 	return err;
565 }
566 
567 int
568 fticket_pull(struct fuse_ticket *ftick, struct uio *uio)
569 {
570 	int err = 0;
571 
572 	if (ftick->tk_aw_ohead.error) {
573 		return 0;
574 	}
575 	err = fuse_body_audit(ftick, uio_resid(uio));
576 	if (!err) {
577 		err = fticket_aw_pull_uio(ftick, uio);
578 	}
579 	return err;
580 }
581 
582 struct fuse_data *
583 fdata_alloc(struct cdev *fdev, struct ucred *cred)
584 {
585 	struct fuse_data *data;
586 
587 	data = malloc(sizeof(struct fuse_data), M_FUSEMSG, M_WAITOK | M_ZERO);
588 
589 	data->fdev = fdev;
590 	mtx_init(&data->ms_mtx, "fuse message list mutex", NULL, MTX_DEF);
591 	STAILQ_INIT(&data->ms_head);
592 	data->ms_count = 0;
593 	knlist_init_mtx(&data->ks_rsel.si_note, &data->ms_mtx);
594 	mtx_init(&data->aw_mtx, "fuse answer list mutex", NULL, MTX_DEF);
595 	TAILQ_INIT(&data->aw_head);
596 	data->daemoncred = crhold(cred);
597 	data->daemon_timeout = FUSE_DEFAULT_DAEMON_TIMEOUT;
598 	sx_init(&data->rename_lock, "fuse rename lock");
599 	data->ref = 1;
600 
601 	return data;
602 }
603 
604 void
605 fdata_trydestroy(struct fuse_data *data)
606 {
607 	data->ref--;
608 	MPASS(data->ref >= 0);
609 	if (data->ref != 0)
610 		return;
611 
612 	/* Driving off stage all that stuff thrown at device... */
613 	sx_destroy(&data->rename_lock);
614 	crfree(data->daemoncred);
615 	mtx_destroy(&data->aw_mtx);
616 	knlist_delete(&data->ks_rsel.si_note, curthread, 0);
617 	knlist_destroy(&data->ks_rsel.si_note);
618 	mtx_destroy(&data->ms_mtx);
619 
620 	free(data, M_FUSEMSG);
621 }
622 
623 void
624 fdata_set_dead(struct fuse_data *data)
625 {
626 	FUSE_LOCK();
627 	if (fdata_get_dead(data)) {
628 		FUSE_UNLOCK();
629 		return;
630 	}
631 	fuse_lck_mtx_lock(data->ms_mtx);
632 	data->dataflags |= FSESS_DEAD;
633 	wakeup_one(data);
634 	selwakeuppri(&data->ks_rsel, PZERO + 1);
635 	wakeup(&data->ticketer);
636 	fuse_lck_mtx_unlock(data->ms_mtx);
637 	FUSE_UNLOCK();
638 }
639 
640 struct fuse_ticket *
641 fuse_ticket_fetch(struct fuse_data *data)
642 {
643 	int err = 0;
644 	struct fuse_ticket *ftick;
645 
646 	ftick = fticket_alloc(data);
647 
648 	if (!(data->dataflags & FSESS_INITED)) {
649 		/* Sleep until get answer for INIT messsage */
650 		FUSE_LOCK();
651 		if (!(data->dataflags & FSESS_INITED) && data->ticketer > 2) {
652 			err = msleep(&data->ticketer, &fuse_mtx, PCATCH | PDROP,
653 			    "fu_ini", 0);
654 			if (err)
655 				fdata_set_dead(data);
656 		} else
657 			FUSE_UNLOCK();
658 	}
659 	return ftick;
660 }
661 
662 int
663 fuse_ticket_drop(struct fuse_ticket *ftick)
664 {
665 	int die;
666 
667 	die = refcount_release(&ftick->tk_refcount);
668 	if (die)
669 		fticket_destroy(ftick);
670 
671 	return die;
672 }
673 
674 void
675 fuse_insert_callback(struct fuse_ticket *ftick, fuse_handler_t * handler)
676 {
677 	if (fdata_get_dead(ftick->tk_data)) {
678 		return;
679 	}
680 	ftick->tk_aw_handler = handler;
681 
682 	fuse_lck_mtx_lock(ftick->tk_data->aw_mtx);
683 	fuse_aw_push(ftick);
684 	fuse_lck_mtx_unlock(ftick->tk_data->aw_mtx);
685 }
686 
687 /*
688  * Insert a new upgoing ticket into the message queue
689  *
690  * If urgent is true, insert at the front of the queue.  Otherwise, insert in
691  * FIFO order.
692  */
693 void
694 fuse_insert_message(struct fuse_ticket *ftick, bool urgent)
695 {
696 	if (ftick->tk_flag & FT_DIRTY) {
697 		panic("FUSE: ticket reused without being refreshed");
698 	}
699 	ftick->tk_flag |= FT_DIRTY;
700 
701 	if (fdata_get_dead(ftick->tk_data)) {
702 		return;
703 	}
704 	fuse_lck_mtx_lock(ftick->tk_data->ms_mtx);
705 	if (urgent)
706 		fuse_ms_push_head(ftick);
707 	else
708 		fuse_ms_push(ftick);
709 	wakeup_one(ftick->tk_data);
710 	selwakeuppri(&ftick->tk_data->ks_rsel, PZERO + 1);
711 	KNOTE_LOCKED(&ftick->tk_data->ks_rsel.si_note, 0);
712 	fuse_lck_mtx_unlock(ftick->tk_data->ms_mtx);
713 }
714 
715 static int
716 fuse_body_audit(struct fuse_ticket *ftick, size_t blen)
717 {
718 	int err = 0;
719 	enum fuse_opcode opcode;
720 
721 	opcode = fticket_opcode(ftick);
722 
723 	switch (opcode) {
724 	case FUSE_BMAP:
725 		err = (blen == sizeof(struct fuse_bmap_out)) ? 0 : EINVAL;
726 		break;
727 
728 	case FUSE_LINK:
729 	case FUSE_LOOKUP:
730 	case FUSE_MKDIR:
731 	case FUSE_MKNOD:
732 	case FUSE_SYMLINK:
733 		if (fuse_libabi_geq(ftick->tk_data, 7, 9)) {
734 			err = (blen == sizeof(struct fuse_entry_out)) ?
735 				0 : EINVAL;
736 		} else {
737 			err = (blen == FUSE_COMPAT_ENTRY_OUT_SIZE) ? 0 : EINVAL;
738 		}
739 		break;
740 
741 	case FUSE_FORGET:
742 		panic("FUSE: a handler has been intalled for FUSE_FORGET");
743 		break;
744 
745 	case FUSE_GETATTR:
746 	case FUSE_SETATTR:
747 		if (fuse_libabi_geq(ftick->tk_data, 7, 9)) {
748 			err = (blen == sizeof(struct fuse_attr_out)) ?
749 			  0 : EINVAL;
750 		} else {
751 			err = (blen == FUSE_COMPAT_ATTR_OUT_SIZE) ? 0 : EINVAL;
752 		}
753 		break;
754 
755 	case FUSE_READLINK:
756 		err = (PAGE_SIZE >= blen) ? 0 : EINVAL;
757 		break;
758 
759 	case FUSE_UNLINK:
760 		err = (blen == 0) ? 0 : EINVAL;
761 		break;
762 
763 	case FUSE_RMDIR:
764 		err = (blen == 0) ? 0 : EINVAL;
765 		break;
766 
767 	case FUSE_RENAME:
768 		err = (blen == 0) ? 0 : EINVAL;
769 		break;
770 
771 	case FUSE_OPEN:
772 		err = (blen == sizeof(struct fuse_open_out)) ? 0 : EINVAL;
773 		break;
774 
775 	case FUSE_READ:
776 		err = (((struct fuse_read_in *)(
777 		    (char *)ftick->tk_ms_fiov.base +
778 		    sizeof(struct fuse_in_header)
779 		    ))->size >= blen) ? 0 : EINVAL;
780 		break;
781 
782 	case FUSE_WRITE:
783 		err = (blen == sizeof(struct fuse_write_out)) ? 0 : EINVAL;
784 		break;
785 
786 	case FUSE_STATFS:
787 		if (fuse_libabi_geq(ftick->tk_data, 7, 4)) {
788 			err = (blen == sizeof(struct fuse_statfs_out)) ?
789 			  0 : EINVAL;
790 		} else {
791 			err = (blen == FUSE_COMPAT_STATFS_SIZE) ? 0 : EINVAL;
792 		}
793 		break;
794 
795 	case FUSE_RELEASE:
796 		err = (blen == 0) ? 0 : EINVAL;
797 		break;
798 
799 	case FUSE_FSYNC:
800 		err = (blen == 0) ? 0 : EINVAL;
801 		break;
802 
803 	case FUSE_SETXATTR:
804 		err = (blen == 0) ? 0 : EINVAL;
805 		break;
806 
807 	case FUSE_GETXATTR:
808 	case FUSE_LISTXATTR:
809 		/*
810 		 * These can have varying response lengths, and 0 length
811 		 * isn't necessarily invalid.
812 		 */
813 		err = 0;
814 		break;
815 
816 	case FUSE_REMOVEXATTR:
817 		err = (blen == 0) ? 0 : EINVAL;
818 		break;
819 
820 	case FUSE_FLUSH:
821 		err = (blen == 0) ? 0 : EINVAL;
822 		break;
823 
824 	case FUSE_INIT:
825 		if (blen == sizeof(struct fuse_init_out) ||
826 		    blen == FUSE_COMPAT_INIT_OUT_SIZE ||
827 		    blen == FUSE_COMPAT_22_INIT_OUT_SIZE) {
828 			err = 0;
829 		} else {
830 			err = EINVAL;
831 		}
832 		break;
833 
834 	case FUSE_OPENDIR:
835 		err = (blen == sizeof(struct fuse_open_out)) ? 0 : EINVAL;
836 		break;
837 
838 	case FUSE_READDIR:
839 		err = (((struct fuse_read_in *)(
840 		    (char *)ftick->tk_ms_fiov.base +
841 		    sizeof(struct fuse_in_header)
842 		    ))->size >= blen) ? 0 : EINVAL;
843 		break;
844 
845 	case FUSE_RELEASEDIR:
846 		err = (blen == 0) ? 0 : EINVAL;
847 		break;
848 
849 	case FUSE_FSYNCDIR:
850 		err = (blen == 0) ? 0 : EINVAL;
851 		break;
852 
853 	case FUSE_GETLK:
854 		err = (blen == sizeof(struct fuse_lk_out)) ? 0 : EINVAL;
855 		break;
856 
857 	case FUSE_SETLK:
858 		err = (blen == 0) ? 0 : EINVAL;
859 		break;
860 
861 	case FUSE_SETLKW:
862 		err = (blen == 0) ? 0 : EINVAL;
863 		break;
864 
865 	case FUSE_ACCESS:
866 		err = (blen == 0) ? 0 : EINVAL;
867 		break;
868 
869 	case FUSE_CREATE:
870 		if (fuse_libabi_geq(ftick->tk_data, 7, 9)) {
871 			err = (blen == sizeof(struct fuse_entry_out) +
872 			    sizeof(struct fuse_open_out)) ? 0 : EINVAL;
873 		} else {
874 			err = (blen == FUSE_COMPAT_ENTRY_OUT_SIZE +
875 			    sizeof(struct fuse_open_out)) ? 0 : EINVAL;
876 		}
877 		break;
878 
879 	case FUSE_DESTROY:
880 		err = (blen == 0) ? 0 : EINVAL;
881 		break;
882 
883 	default:
884 		panic("FUSE: opcodes out of sync (%d)\n", opcode);
885 	}
886 
887 	return err;
888 }
889 
890 static inline void
891 fuse_setup_ihead(struct fuse_in_header *ihead, struct fuse_ticket *ftick,
892     uint64_t nid, enum fuse_opcode op, size_t blen, pid_t pid,
893     struct ucred *cred)
894 {
895 	ihead->len = sizeof(*ihead) + blen;
896 	ihead->unique = ftick->tk_unique;
897 	ihead->nodeid = nid;
898 	ihead->opcode = op;
899 
900 	ihead->pid = pid;
901 	ihead->uid = cred->cr_uid;
902 	ihead->gid = cred->cr_groups[0];
903 }
904 
905 /*
906  * fuse_standard_handler just pulls indata and wakes up pretender.
907  * Doesn't try to interpret data, that's left for the pretender.
908  * Though might do a basic size verification before the pull-in takes place
909  */
910 
911 static int
912 fuse_standard_handler(struct fuse_ticket *ftick, struct uio *uio)
913 {
914 	int err = 0;
915 
916 	err = fticket_pull(ftick, uio);
917 
918 	fuse_lck_mtx_lock(ftick->tk_aw_mtx);
919 
920 	if (!fticket_answered(ftick)) {
921 		fticket_set_answered(ftick);
922 		ftick->tk_aw_errno = err;
923 		wakeup(ftick);
924 	}
925 	fuse_lck_mtx_unlock(ftick->tk_aw_mtx);
926 
927 	return err;
928 }
929 
930 /*
931  * Reinitialize a dispatcher from a pid and node id, without resizing or
932  * clearing its data buffers
933  */
934 static void
935 fdisp_refresh_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op,
936     struct mount *mp, uint64_t nid, pid_t pid, struct ucred *cred)
937 {
938 	MPASS(fdip->tick);
939 	MPASS2(sizeof(fdip->finh) + fdip->iosize <= fdip->tick->tk_ms_fiov.len,
940 		"Must use fdisp_make_pid to increase the size of the fiov");
941 	fticket_reset(fdip->tick);
942 
943 	FUSE_DIMALLOC(&fdip->tick->tk_ms_fiov, fdip->finh,
944 	    fdip->indata, fdip->iosize);
945 
946 	fuse_setup_ihead(fdip->finh, fdip->tick, nid, op, fdip->iosize, pid,
947 		cred);
948 }
949 
950 /* Initialize a dispatcher from a pid and node id */
951 static void
952 fdisp_make_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op,
953     struct fuse_data *data, uint64_t nid, pid_t pid, struct ucred *cred)
954 {
955 	if (fdip->tick) {
956 		fticket_refresh(fdip->tick);
957 	} else {
958 		fdip->tick = fuse_ticket_fetch(data);
959 	}
960 
961 	/* FUSE_DIMALLOC will bzero the fiovs when it enlarges them */
962 	FUSE_DIMALLOC(&fdip->tick->tk_ms_fiov, fdip->finh,
963 	    fdip->indata, fdip->iosize);
964 
965 	fuse_setup_ihead(fdip->finh, fdip->tick, nid, op, fdip->iosize, pid, cred);
966 }
967 
968 void
969 fdisp_make(struct fuse_dispatcher *fdip, enum fuse_opcode op, struct mount *mp,
970     uint64_t nid, struct thread *td, struct ucred *cred)
971 {
972 	struct fuse_data *data = fuse_get_mpdata(mp);
973 	RECTIFY_TDCR(td, cred);
974 
975 	return fdisp_make_pid(fdip, op, data, nid, td->td_proc->p_pid, cred);
976 }
977 
978 void
979 fdisp_make_vp(struct fuse_dispatcher *fdip, enum fuse_opcode op,
980     struct vnode *vp, struct thread *td, struct ucred *cred)
981 {
982 	struct mount *mp = vnode_mount(vp);
983 	struct fuse_data *data = fuse_get_mpdata(mp);
984 
985 	RECTIFY_TDCR(td, cred);
986 	return fdisp_make_pid(fdip, op, data, VTOI(vp),
987 	    td->td_proc->p_pid, cred);
988 }
989 
990 /* Refresh a fuse_dispatcher so it can be reused, but don't zero its data */
991 void
992 fdisp_refresh_vp(struct fuse_dispatcher *fdip, enum fuse_opcode op,
993     struct vnode *vp, struct thread *td, struct ucred *cred)
994 {
995 	RECTIFY_TDCR(td, cred);
996 	return fdisp_refresh_pid(fdip, op, vnode_mount(vp), VTOI(vp),
997 	    td->td_proc->p_pid, cred);
998 }
999 
1000 void
1001 fdisp_refresh(struct fuse_dispatcher *fdip)
1002 {
1003 	fticket_refresh(fdip->tick);
1004 }
1005 
1006 SDT_PROBE_DEFINE2(fusefs, , ipc, fdisp_wait_answ_error, "char*", "int");
1007 
1008 int
1009 fdisp_wait_answ(struct fuse_dispatcher *fdip)
1010 {
1011 	int err = 0;
1012 
1013 	fdip->answ_stat = 0;
1014 	fuse_insert_callback(fdip->tick, fuse_standard_handler);
1015 	fuse_insert_message(fdip->tick, false);
1016 
1017 	if ((err = fticket_wait_answer(fdip->tick))) {
1018 		fuse_lck_mtx_lock(fdip->tick->tk_aw_mtx);
1019 
1020 		if (fticket_answered(fdip->tick)) {
1021 			/*
1022 	                 * Just between noticing the interrupt and getting here,
1023 	                 * the standard handler has completed his job.
1024 	                 * So we drop the ticket and exit as usual.
1025 	                 */
1026 			SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error,
1027 				"IPC: interrupted, already answered", err);
1028 			fuse_lck_mtx_unlock(fdip->tick->tk_aw_mtx);
1029 			goto out;
1030 		} else {
1031 			/*
1032 	                 * So we were faster than the standard handler.
1033 	                 * Then by setting the answered flag we get *him*
1034 	                 * to drop the ticket.
1035 	                 */
1036 			SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error,
1037 				"IPC: interrupted, setting to answered", err);
1038 			fticket_set_answered(fdip->tick);
1039 			fuse_lck_mtx_unlock(fdip->tick->tk_aw_mtx);
1040 			return err;
1041 		}
1042 	}
1043 
1044 	if (fdip->tick->tk_aw_errno == ENOTCONN) {
1045 		/* The daemon died while we were waiting for a response */
1046 		err = ENOTCONN;
1047 		goto out;
1048 	} else if (fdip->tick->tk_aw_errno) {
1049 		/*
1050 		 * There was some sort of communication error with the daemon
1051 		 * that the client wouldn't understand.
1052 		 */
1053 		SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error,
1054 			"IPC: explicit EIO-ing", fdip->tick->tk_aw_errno);
1055 		err = EIO;
1056 		goto out;
1057 	}
1058 	if ((err = fdip->tick->tk_aw_ohead.error)) {
1059 		SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error,
1060 			"IPC: setting status", fdip->tick->tk_aw_ohead.error);
1061 		/*
1062 	         * This means a "proper" fuse syscall error.
1063 	         * We record this value so the caller will
1064 	         * be able to know it's not a boring messaging
1065 	         * failure, if she wishes so (and if not, she can
1066 	         * just simply propagate the return value of this routine).
1067 	         * [XXX Maybe a bitflag would do the job too,
1068 	         * if other flags needed, this will be converted thusly.]
1069 	         */
1070 		fdip->answ_stat = err;
1071 		goto out;
1072 	}
1073 	fdip->answ = fticket_resp(fdip->tick)->base;
1074 	fdip->iosize = fticket_resp(fdip->tick)->len;
1075 
1076 	return 0;
1077 
1078 out:
1079 	return err;
1080 }
1081 
1082 void
1083 fuse_ipc_init(void)
1084 {
1085 	ticket_zone = uma_zcreate("fuse_ticket", sizeof(struct fuse_ticket),
1086 	    fticket_ctor, fticket_dtor, fticket_init, fticket_fini,
1087 	    UMA_ALIGN_PTR, 0);
1088 	fuse_ticket_count = counter_u64_alloc(M_WAITOK);
1089 }
1090 
1091 void
1092 fuse_ipc_destroy(void)
1093 {
1094 	counter_u64_free(fuse_ticket_count);
1095 	uma_zdestroy(ticket_zone);
1096 }
1097