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puffs_msgif.c revision 1.101.10.2
      1 /*	$NetBSD: puffs_msgif.c,v 1.101.10.2 2018/03/24 10:46:13 pgoyette Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2005, 2006, 2007  Antti Kantee.  All Rights Reserved.
      5  *
      6  * Development of this software was supported by the
      7  * Google Summer of Code program and the Ulla Tuominen Foundation.
      8  * The Google SoC project was mentored by Bill Studenmund.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     20  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     21  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     22  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     23  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     25  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29  * SUCH DAMAGE.
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 __KERNEL_RCSID(0, "$NetBSD: puffs_msgif.c,v 1.101.10.2 2018/03/24 10:46:13 pgoyette Exp $");
     34 
     35 #include <sys/param.h>
     36 #include <sys/kernel.h>
     37 #include <sys/atomic.h>
     38 #include <sys/kmem.h>
     39 #include <sys/kthread.h>
     40 #include <sys/lock.h>
     41 #include <sys/mount.h>
     42 #include <sys/namei.h>
     43 #include <sys/proc.h>
     44 #include <sys/vnode.h>
     45 #include <sys/atomic.h>
     46 #include <sys/compat_stub.h>
     47 
     48 #include <uvm/uvm.h>
     49 
     50 #include <dev/putter/putter_sys.h>
     51 
     52 #include <fs/puffs/puffs_msgif.h>
     53 #include <fs/puffs/puffs_sys.h>
     54 
     55 /*
     56  * waitq data structures
     57  */
     58 
     59 /*
     60  * While a request is going to userspace, park the caller within the
     61  * kernel.  This is the kernel counterpart of "struct puffs_req".
     62  */
     63 struct puffs_msgpark {
     64 	struct puffs_req	*park_preq;	/* req followed by buf	*/
     65 
     66 	size_t			park_copylen;	/* userspace copylength	*/
     67 	size_t			park_maxlen;	/* max size in comeback */
     68 
     69 	struct puffs_req	*park_creq;	/* non-compat preq	*/
     70 	size_t			park_creqlen;	/* non-compat preq len	*/
     71 
     72 	parkdone_fn		park_done;	/* "biodone" a'la puffs	*/
     73 	void			*park_donearg;
     74 
     75 	int			park_flags;
     76 	int			park_refcount;
     77 
     78 	kcondvar_t		park_cv;
     79 	kmutex_t		park_mtx;
     80 
     81 	TAILQ_ENTRY(puffs_msgpark) park_entries;
     82 };
     83 #define PARKFLAG_WAITERGONE	0x01
     84 #define PARKFLAG_DONE		0x02
     85 #define PARKFLAG_ONQUEUE1	0x04
     86 #define PARKFLAG_ONQUEUE2	0x08
     87 #define PARKFLAG_CALL		0x10
     88 #define PARKFLAG_WANTREPLY	0x20
     89 #define	PARKFLAG_HASERROR	0x40
     90 
     91 static pool_cache_t parkpc;
     92 #ifdef PUFFSDEBUG
     93 static int totalpark;
     94 #endif
     95 
     96 int puffs_sopreq_expire_timeout = PUFFS_SOPREQ_EXPIRE_TIMEOUT;
     97 
     98 static int
     99 makepark(void *arg, void *obj, int flags)
    100 {
    101 	struct puffs_msgpark *park = obj;
    102 
    103 	mutex_init(&park->park_mtx, MUTEX_DEFAULT, IPL_NONE);
    104 	cv_init(&park->park_cv, "puffsrpl");
    105 
    106 	return 0;
    107 }
    108 
    109 static void
    110 nukepark(void *arg, void *obj)
    111 {
    112 	struct puffs_msgpark *park = obj;
    113 
    114 	cv_destroy(&park->park_cv);
    115 	mutex_destroy(&park->park_mtx);
    116 }
    117 
    118 void
    119 puffs_msgif_init(void)
    120 {
    121 
    122 	parkpc = pool_cache_init(sizeof(struct puffs_msgpark), 0, 0, 0,
    123 	    "puffprkl", NULL, IPL_NONE, makepark, nukepark, NULL);
    124 }
    125 
    126 void
    127 puffs_msgif_destroy(void)
    128 {
    129 
    130 	pool_cache_destroy(parkpc);
    131 }
    132 
    133 static struct puffs_msgpark *
    134 puffs_msgpark_alloc(int waitok)
    135 {
    136 	struct puffs_msgpark *park;
    137 
    138 	KASSERT(curlwp != uvm.pagedaemon_lwp || !waitok);
    139 
    140 	park = pool_cache_get(parkpc, waitok ? PR_WAITOK : PR_NOWAIT);
    141 	if (park == NULL)
    142 		return park;
    143 
    144 	park->park_refcount = 1;
    145 	park->park_preq = park->park_creq = NULL;
    146 	park->park_flags = PARKFLAG_WANTREPLY;
    147 
    148 #ifdef PUFFSDEBUG
    149 	totalpark++;
    150 #endif
    151 
    152 	return park;
    153 }
    154 
    155 static void
    156 puffs_msgpark_reference(struct puffs_msgpark *park)
    157 {
    158 
    159 	KASSERT(mutex_owned(&park->park_mtx));
    160 	park->park_refcount++;
    161 }
    162 
    163 /*
    164  * Release reference to park structure.
    165  */
    166 static void
    167 puffs_msgpark_release1(struct puffs_msgpark *park, int howmany)
    168 {
    169 	struct puffs_req *preq = park->park_preq;
    170 	struct puffs_req *creq = park->park_creq;
    171 	int refcnt;
    172 
    173 	KASSERT(mutex_owned(&park->park_mtx));
    174 	refcnt = park->park_refcount -= howmany;
    175 	mutex_exit(&park->park_mtx);
    176 
    177 	KASSERT(refcnt >= 0);
    178 
    179 	if (refcnt == 0) {
    180 		if (preq)
    181 			kmem_free(preq, park->park_maxlen);
    182 #if 1
    183 		if (creq)
    184 			kmem_free(creq, park->park_creqlen);
    185 #endif
    186 		pool_cache_put(parkpc, park);
    187 
    188 #ifdef PUFFSDEBUG
    189 		totalpark--;
    190 #endif
    191 	}
    192 }
    193 #define puffs_msgpark_release(a) puffs_msgpark_release1(a, 1)
    194 
    195 #ifdef PUFFSDEBUG
    196 static void
    197 parkdump(struct puffs_msgpark *park)
    198 {
    199 
    200 	DPRINTF(("park %p, preq %p, id %" PRIu64 "\n"
    201 	    "\tcopy %zu, max %zu - done: %p/%p\n"
    202 	    "\tflags 0x%08x, refcount %d, cv/mtx: %p/%p\n",
    203 	    park, park->park_preq, park->park_preq->preq_id,
    204 	    park->park_copylen, park->park_maxlen,
    205 	    park->park_done, park->park_donearg,
    206 	    park->park_flags, park->park_refcount,
    207 	    &park->park_cv, &park->park_mtx));
    208 }
    209 
    210 static void
    211 parkqdump(struct puffs_wq *q, int dumpall)
    212 {
    213 	struct puffs_msgpark *park;
    214 	int total = 0;
    215 
    216 	TAILQ_FOREACH(park, q, park_entries) {
    217 		if (dumpall)
    218 			parkdump(park);
    219 		total++;
    220 	}
    221 	DPRINTF(("puffs waitqueue at %p dumped, %d total\n", q, total));
    222 
    223 }
    224 #endif /* PUFFSDEBUG */
    225 
    226 /*
    227  * A word about locking in the park structures: the lock protects the
    228  * fields of the *park* structure (not preq) and acts as an interlock
    229  * in cv operations.  The lock is always internal to this module and
    230  * callers do not need to worry about it.
    231  */
    232 
    233 int
    234 puffs_msgmem_alloc(size_t len, struct puffs_msgpark **ppark, void **mem,
    235 	int cansleep)
    236 {
    237 	struct puffs_msgpark *park;
    238 	void *m;
    239 
    240 	KASSERT(curlwp != uvm.pagedaemon_lwp || !cansleep);
    241 	m = kmem_zalloc(len, cansleep ? KM_SLEEP : KM_NOSLEEP);
    242 	if (m == NULL) {
    243 		KASSERT(cansleep == 0);
    244 		return ENOMEM;
    245 	}
    246 
    247 	park = puffs_msgpark_alloc(cansleep);
    248 	if (park == NULL) {
    249 		KASSERT(cansleep == 0);
    250 		kmem_free(m, len);
    251 		return ENOMEM;
    252 	}
    253 
    254 	park->park_preq = m;
    255 	park->park_maxlen = park->park_copylen = len;
    256 
    257 	*ppark = park;
    258 	*mem = m;
    259 
    260 	return 0;
    261 }
    262 
    263 void
    264 puffs_msgmem_release(struct puffs_msgpark *park)
    265 {
    266 
    267 	if (park == NULL)
    268 		return;
    269 
    270 	mutex_enter(&park->park_mtx);
    271 	puffs_msgpark_release(park);
    272 }
    273 
    274 void
    275 puffs_msg_setfaf(struct puffs_msgpark *park)
    276 {
    277 
    278 	KASSERT((park->park_flags & PARKFLAG_CALL) == 0);
    279 	park->park_flags &= ~PARKFLAG_WANTREPLY;
    280 }
    281 
    282 void
    283 puffs_msg_setdelta(struct puffs_msgpark *park, size_t delta)
    284 {
    285 
    286 	KASSERT(delta < park->park_maxlen); /* "<=" wouldn't make sense */
    287 	park->park_copylen = park->park_maxlen - delta;
    288 }
    289 
    290 void
    291 puffs_msg_setinfo(struct puffs_msgpark *park, int opclass, int type,
    292 	puffs_cookie_t ck)
    293 {
    294 
    295 	park->park_preq->preq_opclass = PUFFSOP_OPCLASS(opclass);
    296 	park->park_preq->preq_optype = type;
    297 	park->park_preq->preq_cookie = ck;
    298 }
    299 
    300 void
    301 puffs_msg_setcall(struct puffs_msgpark *park, parkdone_fn donefn, void *donearg)
    302 {
    303 
    304 	KASSERT(park->park_flags & PARKFLAG_WANTREPLY);
    305 	park->park_done = donefn;
    306 	park->park_donearg = donearg;
    307 	park->park_flags |= PARKFLAG_CALL;
    308 }
    309 
    310 /*
    311  * kernel-user-kernel waitqueues
    312  */
    313 
    314 static uint64_t
    315 puffs_getmsgid(struct puffs_mount *pmp)
    316 {
    317 	uint64_t rv;
    318 
    319 	mutex_enter(&pmp->pmp_lock);
    320 	rv = pmp->pmp_nextmsgid++;
    321 	mutex_exit(&pmp->pmp_lock);
    322 
    323 	return rv;
    324 }
    325 
    326 /*
    327  * A word about reference counting of parks.  A reference must be taken
    328  * when accessing a park and additionally when it is on a queue.  So
    329  * when taking it off a queue and releasing the access reference, the
    330  * reference count is generally decremented by 2.
    331  */
    332 
    333 void
    334 puffs_msg_enqueue(struct puffs_mount *pmp, struct puffs_msgpark *park)
    335 {
    336 	struct lwp *l = curlwp;
    337 	struct puffs_req *preq, *creq;
    338 	ssize_t delta;
    339 
    340 	/*
    341 	 * Some clients reuse a park, so reset some flags.  We might
    342 	 * want to provide a caller-side interface for this and add
    343 	 * a few more invariant checks here, but this will do for now.
    344 	 */
    345 	park->park_flags &= ~(PARKFLAG_DONE | PARKFLAG_HASERROR);
    346 	KASSERT((park->park_flags & PARKFLAG_WAITERGONE) == 0);
    347 
    348 	preq = park->park_preq;
    349 
    350 #if 1
    351 	/* check if we do compat adjustments */
    352 	if (pmp->pmp_docompat &&
    353 	    (*puffs50_compat_outgoing)(preq, &creq, &delta) == 0) {
    354 		park->park_creq = park->park_preq;
    355 		park->park_creqlen = park->park_maxlen;
    356 
    357 		park->park_maxlen += delta;
    358 		park->park_copylen += delta;
    359 		park->park_preq = preq = creq;
    360 	}
    361 #endif
    362 
    363 	preq->preq_buflen = park->park_maxlen;
    364 	KASSERT(preq->preq_id == 0
    365 	    || (preq->preq_opclass & PUFFSOPFLAG_ISRESPONSE));
    366 
    367 	if ((park->park_flags & PARKFLAG_WANTREPLY) == 0)
    368 		preq->preq_opclass |= PUFFSOPFLAG_FAF;
    369 	else
    370 		preq->preq_id = puffs_getmsgid(pmp);
    371 
    372 	/* fill in caller information */
    373 	preq->preq_pid = l->l_proc->p_pid;
    374 	preq->preq_lid = l->l_lid;
    375 
    376 	/*
    377 	 * To support cv_sig, yet another movie: check if there are signals
    378 	 * pending and we are issueing a non-FAF.  If so, return an error
    379 	 * directly UNLESS we are issueing INACTIVE/RECLAIM.  In that case,
    380 	 * convert it to a FAF, fire off to the file server and return
    381 	 * an error.  Yes, this is bordering disgusting.  Barfbags are on me.
    382 	 */
    383 	if (__predict_false((park->park_flags & PARKFLAG_WANTREPLY)
    384 	   && (park->park_flags & PARKFLAG_CALL) == 0
    385 	   && (l->l_flag & LW_PENDSIG) != 0 && sigispending(l, 0))) {
    386 		sigset_t ss;
    387 
    388 		/*
    389 		 * see the comment about signals in puffs_msg_wait.
    390 		 */
    391 		sigpending1(l, &ss);
    392 		if (sigismember(&ss, SIGINT) ||
    393 		    sigismember(&ss, SIGTERM) ||
    394 		    sigismember(&ss, SIGKILL) ||
    395 		    sigismember(&ss, SIGHUP) ||
    396 		    sigismember(&ss, SIGQUIT)) {
    397 			park->park_flags |= PARKFLAG_HASERROR;
    398 			preq->preq_rv = EINTR;
    399 			if (PUFFSOP_OPCLASS(preq->preq_opclass) == PUFFSOP_VN
    400 			    && (preq->preq_optype == PUFFS_VN_INACTIVE
    401 			     || preq->preq_optype == PUFFS_VN_RECLAIM)) {
    402 				park->park_preq->preq_opclass |=
    403 				    PUFFSOPFLAG_FAF;
    404 				park->park_flags &= ~PARKFLAG_WANTREPLY;
    405 				DPRINTF(("puffs_msg_enqueue: "
    406 				    "converted to FAF %p\n", park));
    407 			} else {
    408 				return;
    409 			}
    410 		}
    411 	}
    412 
    413 	mutex_enter(&pmp->pmp_lock);
    414 	if (pmp->pmp_status != PUFFSTAT_RUNNING) {
    415 		mutex_exit(&pmp->pmp_lock);
    416 		park->park_flags |= PARKFLAG_HASERROR;
    417 		preq->preq_rv = ENXIO;
    418 		return;
    419 	}
    420 
    421 #ifdef PUFFSDEBUG
    422 	parkqdump(&pmp->pmp_msg_touser, puffsdebug > 1);
    423 	parkqdump(&pmp->pmp_msg_replywait, puffsdebug > 1);
    424 #endif
    425 
    426 	/*
    427 	 * Note: we don't need to lock park since we have the only
    428 	 * reference to it at this point.
    429 	 */
    430 	TAILQ_INSERT_TAIL(&pmp->pmp_msg_touser, park, park_entries);
    431 	park->park_flags |= PARKFLAG_ONQUEUE1;
    432 	pmp->pmp_msg_touser_count++;
    433 	park->park_refcount++;
    434 
    435 	cv_broadcast(&pmp->pmp_msg_waiter_cv);
    436 	mutex_exit(&pmp->pmp_lock);
    437 	putter_notify(pmp->pmp_pi);
    438 
    439 	DPRINTF(("touser: req %" PRIu64 ", preq: %p, park: %p, "
    440 	    "c/t: 0x%x/0x%x, f: 0x%x\n", preq->preq_id, preq, park,
    441 	    preq->preq_opclass, preq->preq_optype, park->park_flags));
    442 }
    443 
    444 int
    445 puffs_msg_wait(struct puffs_mount *pmp, struct puffs_msgpark *park)
    446 {
    447 	lwp_t *l = curlwp;
    448 	proc_t *p = l->l_proc;
    449 	struct puffs_req *preq = park->park_preq; /* XXX: hmmm */
    450 	sigset_t ss;
    451 	sigset_t oss;
    452 	int error = 0;
    453 	int rv;
    454 
    455 	/*
    456 	 * block unimportant signals.
    457 	 *
    458 	 * The set of "important" signals here was chosen to be same as
    459 	 * nfs interruptible mount.
    460 	 */
    461 	sigfillset(&ss);
    462 	sigdelset(&ss, SIGINT);
    463 	sigdelset(&ss, SIGTERM);
    464 	sigdelset(&ss, SIGKILL);
    465 	sigdelset(&ss, SIGHUP);
    466 	sigdelset(&ss, SIGQUIT);
    467 	mutex_enter(p->p_lock);
    468 	sigprocmask1(l, SIG_BLOCK, &ss, &oss);
    469 	mutex_exit(p->p_lock);
    470 
    471 	mutex_enter(&pmp->pmp_lock);
    472 	puffs_mp_reference(pmp);
    473 	mutex_exit(&pmp->pmp_lock);
    474 
    475 	mutex_enter(&park->park_mtx);
    476 	/* did the response beat us to the wait? */
    477 	if (__predict_false((park->park_flags & PARKFLAG_DONE)
    478 	    || (park->park_flags & PARKFLAG_HASERROR))) {
    479 		rv = park->park_preq->preq_rv;
    480 		mutex_exit(&park->park_mtx);
    481 		goto skipwait;
    482 	}
    483 
    484 	if ((park->park_flags & PARKFLAG_WANTREPLY) == 0
    485 	    || (park->park_flags & PARKFLAG_CALL)) {
    486 		mutex_exit(&park->park_mtx);
    487 		rv = 0;
    488 		goto skipwait;
    489 	}
    490 
    491 	error = cv_wait_sig(&park->park_cv, &park->park_mtx);
    492 	DPRINTF(("puffs_touser: waiter for %p woke up with %d\n",
    493 	    park, error));
    494 	if (error) {
    495 		park->park_flags |= PARKFLAG_WAITERGONE;
    496 		if (park->park_flags & PARKFLAG_DONE) {
    497 			rv = preq->preq_rv;
    498 			mutex_exit(&park->park_mtx);
    499 		} else {
    500 			/*
    501 			 * ok, we marked it as going away, but
    502 			 * still need to do queue ops.  take locks
    503 			 * in correct order.
    504 			 *
    505 			 * We don't want to release our reference
    506 			 * if it's on replywait queue to avoid error
    507 			 * to file server.  putop() code will DTRT.
    508 			 */
    509 			mutex_exit(&park->park_mtx);
    510 			mutex_enter(&pmp->pmp_lock);
    511 			mutex_enter(&park->park_mtx);
    512 
    513 			/*
    514 			 * Still on queue1?  We can safely remove it
    515 			 * without any consequences since the file
    516 			 * server hasn't seen it.  "else" we need to
    517 			 * wait for the response and just ignore it
    518 			 * to avoid signalling an incorrect error to
    519 			 * the file server.
    520 			 */
    521 			if (park->park_flags & PARKFLAG_ONQUEUE1) {
    522 				TAILQ_REMOVE(&pmp->pmp_msg_touser,
    523 				    park, park_entries);
    524 				puffs_msgpark_release(park);
    525 				pmp->pmp_msg_touser_count--;
    526 				park->park_flags &= ~PARKFLAG_ONQUEUE1;
    527 			} else {
    528 				mutex_exit(&park->park_mtx);
    529 			}
    530 			mutex_exit(&pmp->pmp_lock);
    531 
    532 			rv = EINTR;
    533 		}
    534 	} else {
    535 		rv = preq->preq_rv;
    536 		mutex_exit(&park->park_mtx);
    537 	}
    538 
    539  skipwait:
    540 	mutex_enter(&pmp->pmp_lock);
    541 	puffs_mp_release(pmp);
    542 	mutex_exit(&pmp->pmp_lock);
    543 
    544 	mutex_enter(p->p_lock);
    545 	sigprocmask1(l, SIG_SETMASK, &oss, NULL);
    546 	mutex_exit(p->p_lock);
    547 
    548 	return rv;
    549 }
    550 
    551 /*
    552  * XXX: this suuuucks.  Hopefully I'll get rid of this lossage once
    553  * the whole setback-nonsense gets fixed.
    554  */
    555 int
    556 puffs_msg_wait2(struct puffs_mount *pmp, struct puffs_msgpark *park,
    557 	struct puffs_node *pn1, struct puffs_node *pn2)
    558 {
    559 	struct puffs_req *preq;
    560 	int rv;
    561 
    562 	rv = puffs_msg_wait(pmp, park);
    563 
    564 	preq = park->park_preq;
    565 	if (pn1 && preq->preq_setbacks & PUFFS_SETBACK_INACT_N1)
    566 		pn1->pn_stat |= PNODE_DOINACT;
    567 	if (pn2 && preq->preq_setbacks & PUFFS_SETBACK_INACT_N2)
    568 		pn2->pn_stat |= PNODE_DOINACT;
    569 
    570 	if (pn1 && preq->preq_setbacks & PUFFS_SETBACK_NOREF_N1)
    571 		pn1->pn_stat |= PNODE_NOREFS;
    572 	if (pn2 && preq->preq_setbacks & PUFFS_SETBACK_NOREF_N2)
    573 		pn2->pn_stat |= PNODE_NOREFS;
    574 
    575 	return rv;
    576 
    577 }
    578 
    579 /*
    580  * XXX: lazy bum.  please, for the love of foie gras, fix me.
    581  * This should *NOT* depend on setfaf.  Also "memcpy" could
    582  * be done more nicely.
    583  */
    584 void
    585 puffs_msg_sendresp(struct puffs_mount *pmp, struct puffs_req *origpreq, int rv)
    586 {
    587 	struct puffs_msgpark *park;
    588 	struct puffs_req *preq;
    589 
    590 	puffs_msgmem_alloc(sizeof(struct puffs_req), &park, (void *)&preq, 1);
    591 	puffs_msg_setfaf(park); /* XXXXXX: avoids reqid override */
    592 
    593 	memcpy(preq, origpreq, sizeof(struct puffs_req));
    594 	preq->preq_rv = rv;
    595 	preq->preq_opclass |= PUFFSOPFLAG_ISRESPONSE;
    596 
    597 	puffs_msg_enqueue(pmp, park);
    598 	puffs_msgmem_release(park);
    599 }
    600 
    601 /*
    602  * Get next request in the outgoing queue.  "maxsize" controls the
    603  * size the caller can accommodate and "nonblock" signals if this
    604  * should block while waiting for input.  Handles all locking internally.
    605  */
    606 int
    607 puffs_msgif_getout(void *ctx, size_t maxsize, int nonblock,
    608 	uint8_t **data, size_t *dlen, void **parkptr)
    609 {
    610 	struct puffs_mount *pmp = ctx;
    611 	struct puffs_msgpark *park = NULL;
    612 	struct puffs_req *preq = NULL;
    613 	int error;
    614 
    615 	error = 0;
    616 	mutex_enter(&pmp->pmp_lock);
    617 	puffs_mp_reference(pmp);
    618 	for (;;) {
    619 		/* RIP? */
    620 		if (pmp->pmp_status != PUFFSTAT_RUNNING) {
    621 			error = ENXIO;
    622 			break;
    623 		}
    624 
    625 		/* need platinum yendorian express card? */
    626 		if (TAILQ_EMPTY(&pmp->pmp_msg_touser)) {
    627 			DPRINTF(("puffs_getout: no outgoing op, "));
    628 			if (nonblock) {
    629 				DPRINTF(("returning EWOULDBLOCK\n"));
    630 				error = EWOULDBLOCK;
    631 				break;
    632 			}
    633 			DPRINTF(("waiting ...\n"));
    634 
    635 			error = cv_wait_sig(&pmp->pmp_msg_waiter_cv,
    636 			    &pmp->pmp_lock);
    637 			if (error)
    638 				break;
    639 			else
    640 				continue;
    641 		}
    642 
    643 		park = TAILQ_FIRST(&pmp->pmp_msg_touser);
    644 		if (park == NULL)
    645 			continue;
    646 
    647 		mutex_enter(&park->park_mtx);
    648 		puffs_msgpark_reference(park);
    649 
    650 		DPRINTF(("puffs_getout: found park at %p, ", park));
    651 
    652 		/* If it's a goner, don't process any furher */
    653 		if (park->park_flags & PARKFLAG_WAITERGONE) {
    654 			DPRINTF(("waitergone!\n"));
    655 			puffs_msgpark_release(park);
    656 			continue;
    657 		}
    658 		preq = park->park_preq;
    659 
    660 #if 0
    661 		/* check size */
    662 		/*
    663 		 * XXX: this check is not valid for now, we don't know
    664 		 * the size of the caller's input buffer.  i.e. this
    665 		 * will most likely go away
    666 		 */
    667 		if (maxsize < preq->preq_frhdr.pfr_len) {
    668 			DPRINTF(("buffer too small\n"));
    669 			puffs_msgpark_release(park);
    670 			error = E2BIG;
    671 			break;
    672 		}
    673 #endif
    674 
    675 		DPRINTF(("returning\n"));
    676 
    677 		/*
    678 		 * Ok, we found what we came for.  Release it from the
    679 		 * outgoing queue but do not unlock.  We will unlock
    680 		 * only after we "releaseout" it to avoid complications:
    681 		 * otherwise it is (theoretically) possible for userland
    682 		 * to race us into "put" before we have a change to put
    683 		 * this baby on the receiving queue.
    684 		 */
    685 		TAILQ_REMOVE(&pmp->pmp_msg_touser, park, park_entries);
    686 		KASSERT(park->park_flags & PARKFLAG_ONQUEUE1);
    687 		park->park_flags &= ~PARKFLAG_ONQUEUE1;
    688 		mutex_exit(&park->park_mtx);
    689 
    690 		pmp->pmp_msg_touser_count--;
    691 		KASSERT(pmp->pmp_msg_touser_count >= 0);
    692 
    693 		break;
    694 	}
    695 	puffs_mp_release(pmp);
    696 	mutex_exit(&pmp->pmp_lock);
    697 
    698 	if (error == 0) {
    699 		*data = (uint8_t *)preq;
    700 		preq->preq_pth.pth_framelen = park->park_copylen;
    701 		*dlen = preq->preq_pth.pth_framelen;
    702 		*parkptr = park;
    703 	}
    704 
    705 	return error;
    706 }
    707 
    708 /*
    709  * Release outgoing structure.  Now, depending on the success of the
    710  * outgoing send, it is either going onto the result waiting queue
    711  * or the death chamber.
    712  */
    713 void
    714 puffs_msgif_releaseout(void *ctx, void *parkptr, int status)
    715 {
    716 	struct puffs_mount *pmp = ctx;
    717 	struct puffs_msgpark *park = parkptr;
    718 
    719 	DPRINTF(("puffs_releaseout: returning park %p, errno %d: " ,
    720 	    park, status));
    721 	mutex_enter(&pmp->pmp_lock);
    722 	mutex_enter(&park->park_mtx);
    723 	if (park->park_flags & PARKFLAG_WANTREPLY) {
    724 		if (status == 0) {
    725 			DPRINTF(("enqueue replywait\n"));
    726 			TAILQ_INSERT_TAIL(&pmp->pmp_msg_replywait, park,
    727 			    park_entries);
    728 			park->park_flags |= PARKFLAG_ONQUEUE2;
    729 		} else {
    730 			DPRINTF(("error path!\n"));
    731 			park->park_preq->preq_rv = status;
    732 			park->park_flags |= PARKFLAG_DONE;
    733 			cv_signal(&park->park_cv);
    734 		}
    735 		puffs_msgpark_release(park);
    736 	} else {
    737 		DPRINTF(("release\n"));
    738 		puffs_msgpark_release1(park, 2);
    739 	}
    740 	mutex_exit(&pmp->pmp_lock);
    741 }
    742 
    743 size_t
    744 puffs_msgif_waitcount(void *ctx)
    745 {
    746 	struct puffs_mount *pmp = ctx;
    747 	size_t rv;
    748 
    749 	mutex_enter(&pmp->pmp_lock);
    750 	rv = pmp->pmp_msg_touser_count;
    751 	mutex_exit(&pmp->pmp_lock);
    752 
    753 	return rv;
    754 }
    755 
    756 /*
    757  * XXX: locking with this one?
    758  */
    759 static void
    760 puffsop_msg(void *ctx, struct puffs_req *preq)
    761 {
    762 	struct puffs_mount *pmp = ctx;
    763 	struct putter_hdr *pth = &preq->preq_pth;
    764 	struct puffs_msgpark *park;
    765 	int wgone;
    766 
    767 	mutex_enter(&pmp->pmp_lock);
    768 
    769 	/* Locate waiter */
    770 	TAILQ_FOREACH(park, &pmp->pmp_msg_replywait, park_entries) {
    771 		if (park->park_preq->preq_id == preq->preq_id)
    772 			break;
    773 	}
    774 	if (park == NULL) {
    775 		DPRINTF(("puffsop_msg: no request: %" PRIu64 "\n",
    776 		    preq->preq_id));
    777 		mutex_exit(&pmp->pmp_lock);
    778 		return; /* XXX send error */
    779 	}
    780 
    781 	mutex_enter(&park->park_mtx);
    782 	puffs_msgpark_reference(park);
    783 	if (pth->pth_framelen > park->park_maxlen) {
    784 		DPRINTF(("puffsop_msg: invalid buffer length: "
    785 		    "%" PRIu64 " (req %" PRIu64 ", \n", pth->pth_framelen,
    786 		    preq->preq_id));
    787 		park->park_preq->preq_rv = EPROTO;
    788 		cv_signal(&park->park_cv);
    789 		puffs_msgpark_release1(park, 2);
    790 		mutex_exit(&pmp->pmp_lock);
    791 		return; /* XXX: error */
    792 	}
    793 	wgone = park->park_flags & PARKFLAG_WAITERGONE;
    794 
    795 	KASSERT(park->park_flags & PARKFLAG_ONQUEUE2);
    796 	TAILQ_REMOVE(&pmp->pmp_msg_replywait, park, park_entries);
    797 	park->park_flags &= ~PARKFLAG_ONQUEUE2;
    798 	mutex_exit(&pmp->pmp_lock);
    799 
    800 	if (wgone) {
    801 		DPRINTF(("puffsop_msg: bad service - waiter gone for "
    802 		    "park %p\n", park));
    803 	} else {
    804 #if 1
    805 		if (park->park_creq) {
    806 			struct puffs_req *creq;
    807 			size_t csize;
    808 
    809 			KASSERT(pmp->pmp_docompat);
    810 			(*puffs50_compat_incoming)(preq, park->park_creq);
    811 			creq = park->park_creq;
    812 			csize = park->park_creqlen;
    813 			park->park_creq = park->park_preq;
    814 			park->park_creqlen = park->park_maxlen;
    815 
    816 			park->park_preq = creq;
    817 			park->park_maxlen = csize;
    818 
    819 			memcpy(park->park_creq, preq, pth->pth_framelen);
    820 		} else {
    821 #endif
    822 			memcpy(park->park_preq, preq, pth->pth_framelen);
    823 		}
    824 
    825 		if (park->park_flags & PARKFLAG_CALL) {
    826 			DPRINTF(("puffsop_msg: call for %p, arg %p\n",
    827 			    park->park_preq, park->park_donearg));
    828 			park->park_done(pmp, preq, park->park_donearg);
    829 		}
    830 	}
    831 
    832 	if (!wgone) {
    833 		DPRINTF(("puffs_putop: flagging done for "
    834 		    "park %p\n", park));
    835 		cv_signal(&park->park_cv);
    836 	}
    837 
    838 	park->park_flags |= PARKFLAG_DONE;
    839 	puffs_msgpark_release1(park, 2);
    840 }
    841 
    842 /*
    843  * Node expiry. We come here after an inactive on an unexpired node.
    844  * The expiry has been queued and is done in sop thread.
    845  */
    846 static void
    847 puffsop_expire(struct puffs_mount *pmp, puffs_cookie_t cookie)
    848 {
    849 	struct vnode *vp;
    850 
    851 	KASSERT(PUFFS_USE_FS_TTL(pmp));
    852 
    853 	/*
    854 	 * If it still exists and has no reference,
    855 	 * vrele should cause it to be reclaimed.
    856 	 * Otherwise, we have nothing to do.
    857 	 */
    858 	if (puffs_cookie2vnode(pmp, cookie, &vp) == 0) {
    859 		VPTOPP(vp)->pn_stat &= ~PNODE_SOPEXP;
    860 		vrele(vp);
    861 	}
    862 
    863 	return;
    864 }
    865 
    866 static void
    867 puffsop_flush(struct puffs_mount *pmp, struct puffs_flush *pf)
    868 {
    869 	struct vnode *vp;
    870 	voff_t offlo, offhi;
    871 	int rv, flags = 0;
    872 
    873 	KASSERT(pf->pf_req.preq_pth.pth_framelen == sizeof(struct puffs_flush));
    874 
    875 	/* XXX: slurry */
    876 	if (pf->pf_op == PUFFS_INVAL_NAMECACHE_ALL) {
    877 		cache_purgevfs(PMPTOMP(pmp));
    878 		rv = 0;
    879 		goto out;
    880 	}
    881 
    882 	/*
    883 	 * Get vnode, don't lock it.  Namecache is protected by its own lock
    884 	 * and we have a reference to protect against premature harvesting.
    885 	 *
    886 	 * The node we want here might be locked and the op is in
    887 	 * userspace waiting for us to complete ==> deadlock.  Another
    888 	 * reason we need to eventually bump locking to userspace, as we
    889 	 * will need to lock the node if we wish to do flushes.
    890 	 */
    891 	rv = puffs_cookie2vnode(pmp, pf->pf_cookie, &vp);
    892 	if (rv) {
    893 		if (rv == PUFFS_NOSUCHCOOKIE)
    894 			rv = ENOENT;
    895 		goto out;
    896 	}
    897 
    898 	switch (pf->pf_op) {
    899 #if 0
    900 	/* not quite ready, yet */
    901 	case PUFFS_INVAL_NAMECACHE_NODE:
    902 	struct componentname *pf_cn;
    903 	char *name;
    904 		/* get comfortab^Wcomponentname */
    905 		pf_cn = kmem_alloc(componentname);
    906 		memset(pf_cn, 0, sizeof(struct componentname));
    907 		break;
    908 
    909 #endif
    910 	case PUFFS_INVAL_NAMECACHE_DIR:
    911 		if (vp->v_type != VDIR) {
    912 			rv = EINVAL;
    913 			break;
    914 		}
    915 		cache_purge1(vp, NULL, 0, PURGE_CHILDREN);
    916 		break;
    917 
    918 	case PUFFS_INVAL_PAGECACHE_NODE_RANGE:
    919 		flags = PGO_FREE;
    920 		/*FALLTHROUGH*/
    921 	case PUFFS_FLUSH_PAGECACHE_NODE_RANGE:
    922 		if (flags == 0)
    923 			flags = PGO_CLEANIT;
    924 
    925 		if (pf->pf_end > vp->v_size || vp->v_type != VREG) {
    926 			rv = EINVAL;
    927 			break;
    928 		}
    929 
    930 		offlo = trunc_page(pf->pf_start);
    931 		offhi = round_page(pf->pf_end);
    932 		if (offhi != 0 && offlo >= offhi) {
    933 			rv = EINVAL;
    934 			break;
    935 		}
    936 
    937 		mutex_enter(vp->v_uobj.vmobjlock);
    938 		rv = VOP_PUTPAGES(vp, offlo, offhi, flags);
    939 		break;
    940 
    941 	default:
    942 		rv = EINVAL;
    943 	}
    944 
    945 	vrele(vp);
    946 
    947  out:
    948 	puffs_msg_sendresp(pmp, &pf->pf_req, rv);
    949 }
    950 
    951 int
    952 puffs_msgif_dispatch(void *ctx, struct putter_hdr *pth)
    953 {
    954 	struct puffs_mount *pmp = ctx;
    955 	struct puffs_req *preq = (struct puffs_req *)pth;
    956 	struct puffs_sopreq *psopr;
    957 
    958 	if (pth->pth_framelen < sizeof(struct puffs_req)) {
    959 		puffs_msg_sendresp(pmp, preq, EINVAL); /* E2SMALL */
    960 		return 0;
    961 	}
    962 
    963 	switch (PUFFSOP_OPCLASS(preq->preq_opclass)) {
    964 	case PUFFSOP_VN:
    965 	case PUFFSOP_VFS:
    966 		DPRINTF(("dispatch: vn/vfs message 0x%x\n", preq->preq_optype));
    967 		puffsop_msg(pmp, preq);
    968 		break;
    969 
    970 	case PUFFSOP_FLUSH: /* process in sop thread */
    971 	{
    972 		struct puffs_flush *pf;
    973 
    974 		DPRINTF(("dispatch: flush 0x%x\n", preq->preq_optype));
    975 
    976 		if (preq->preq_pth.pth_framelen != sizeof(struct puffs_flush)) {
    977 			puffs_msg_sendresp(pmp, preq, EINVAL); /* E2SMALL */
    978 			break;
    979 		}
    980 		pf = (struct puffs_flush *)preq;
    981 
    982 		KASSERT(curlwp != uvm.pagedaemon_lwp);
    983 		psopr = kmem_alloc(sizeof(*psopr), KM_SLEEP);
    984 		memcpy(&psopr->psopr_pf, pf, sizeof(*pf));
    985 		psopr->psopr_sopreq = PUFFS_SOPREQ_FLUSH;
    986 
    987 		mutex_enter(&pmp->pmp_sopmtx);
    988 		if (pmp->pmp_sopthrcount == 0) {
    989 			mutex_exit(&pmp->pmp_sopmtx);
    990 			kmem_free(psopr, sizeof(*psopr));
    991 			puffs_msg_sendresp(pmp, preq, ENXIO);
    992 		} else {
    993 			TAILQ_INSERT_TAIL(&pmp->pmp_sopfastreqs,
    994 			    psopr, psopr_entries);
    995 			cv_signal(&pmp->pmp_sopcv);
    996 			mutex_exit(&pmp->pmp_sopmtx);
    997 		}
    998 		break;
    999 	}
   1000 
   1001 	case PUFFSOP_UNMOUNT: /* process in sop thread */
   1002 	{
   1003 
   1004 		DPRINTF(("dispatch: unmount 0x%x\n", preq->preq_optype));
   1005 
   1006 		KASSERT(curlwp != uvm.pagedaemon_lwp);
   1007 		psopr = kmem_alloc(sizeof(*psopr), KM_SLEEP);
   1008 		psopr->psopr_preq = *preq;
   1009 		psopr->psopr_sopreq = PUFFS_SOPREQ_UNMOUNT;
   1010 
   1011 		mutex_enter(&pmp->pmp_sopmtx);
   1012 		if (pmp->pmp_sopthrcount == 0) {
   1013 			mutex_exit(&pmp->pmp_sopmtx);
   1014 			kmem_free(psopr, sizeof(*psopr));
   1015 			puffs_msg_sendresp(pmp, preq, ENXIO);
   1016 		} else {
   1017 			TAILQ_INSERT_TAIL(&pmp->pmp_sopfastreqs,
   1018 			    psopr, psopr_entries);
   1019 			cv_signal(&pmp->pmp_sopcv);
   1020 			mutex_exit(&pmp->pmp_sopmtx);
   1021 		}
   1022 		break;
   1023 	}
   1024 
   1025 	default:
   1026 		DPRINTF(("dispatch: invalid opclass 0x%x\n", preq->preq_opclass));
   1027 		puffs_msg_sendresp(pmp, preq, EOPNOTSUPP);
   1028 		break;
   1029 	}
   1030 
   1031 	return 0;
   1032 }
   1033 
   1034 /*
   1035  * Work loop for thread processing all ops from server which
   1036  * cannot safely be handled in caller context.  This includes
   1037  * everything which might need a lock currently "held" by the file
   1038  * server, i.e. a long-term kernel lock which will be released only
   1039  * once the file server acknowledges a request
   1040  */
   1041 #define TIMED_OUT(expire) \
   1042     ((int)((unsigned int)hardclock_ticks - (unsigned int)expire) > 0)
   1043 void
   1044 puffs_sop_thread(void *arg)
   1045 {
   1046 	struct puffs_mount *pmp = arg;
   1047 	struct mount *mp = PMPTOMP(pmp);
   1048 	struct puffs_sopreq *psopr;
   1049 	bool keeprunning;
   1050 	bool unmountme = false;
   1051 	int timeo;
   1052 
   1053 	timeo = PUFFS_USE_FS_TTL(pmp) ? puffs_sopreq_expire_timeout : 0;
   1054 
   1055 	mutex_enter(&pmp->pmp_sopmtx);
   1056 	for (keeprunning = true; keeprunning; ) {
   1057 		/*
   1058 		 * We have a fast queue for flush and umount, and a node
   1059 		 * queue for delayes node reclaims. Requests on node queue 			 * are not honoured before clock reaches psopr_at. This
   1060 		 * code assumes that requests are ordered by psopr_at.
   1061 		 */
   1062 		do {
   1063 			psopr = TAILQ_FIRST(&pmp->pmp_sopfastreqs);
   1064 			if (psopr != NULL) {
   1065 				TAILQ_REMOVE(&pmp->pmp_sopfastreqs,
   1066 					     psopr, psopr_entries);
   1067 				break;
   1068 			}
   1069 
   1070 			psopr = TAILQ_FIRST(&pmp->pmp_sopnodereqs);
   1071 			if ((psopr != NULL) && TIMED_OUT(psopr->psopr_at)) {
   1072 				TAILQ_REMOVE(&pmp->pmp_sopnodereqs,
   1073 					     psopr, psopr_entries);
   1074 				break;
   1075 			}
   1076 
   1077 			cv_timedwait(&pmp->pmp_sopcv, &pmp->pmp_sopmtx, timeo);
   1078 		} while (1 /* CONSTCOND */);
   1079 
   1080 		mutex_exit(&pmp->pmp_sopmtx);
   1081 
   1082 		switch (psopr->psopr_sopreq) {
   1083 		case PUFFS_SOPREQSYS_EXIT:
   1084 			keeprunning = false;
   1085 			break;
   1086 		case PUFFS_SOPREQ_FLUSH:
   1087 			puffsop_flush(pmp, &psopr->psopr_pf);
   1088 			break;
   1089 		case PUFFS_SOPREQ_EXPIRE:
   1090 			puffsop_expire(pmp, psopr->psopr_ck);
   1091 			break;
   1092 		case PUFFS_SOPREQ_UNMOUNT:
   1093 			puffs_msg_sendresp(pmp, &psopr->psopr_preq, 0);
   1094 
   1095 			unmountme = true;
   1096 			keeprunning = false;
   1097 
   1098 			/*
   1099 			 * We know the mountpoint is still alive because
   1100 			 * the thread that is us (poetic?) is still alive.
   1101 			 */
   1102 			vfs_ref(mp);
   1103 			break;
   1104 		}
   1105 
   1106 		kmem_free(psopr, sizeof(*psopr));
   1107 		mutex_enter(&pmp->pmp_sopmtx);
   1108 	}
   1109 
   1110 	/*
   1111 	 * Purge remaining ops.
   1112 	 */
   1113 	while ((psopr = TAILQ_FIRST(&pmp->pmp_sopfastreqs)) != NULL) {
   1114 		TAILQ_REMOVE(&pmp->pmp_sopfastreqs, psopr, psopr_entries);
   1115 		mutex_exit(&pmp->pmp_sopmtx);
   1116 		puffs_msg_sendresp(pmp, &psopr->psopr_preq, ENXIO);
   1117 		kmem_free(psopr, sizeof(*psopr));
   1118 		mutex_enter(&pmp->pmp_sopmtx);
   1119 	}
   1120 
   1121 	while ((psopr = TAILQ_FIRST(&pmp->pmp_sopnodereqs)) != NULL) {
   1122 		TAILQ_REMOVE(&pmp->pmp_sopnodereqs, psopr, psopr_entries);
   1123 		mutex_exit(&pmp->pmp_sopmtx);
   1124 		KASSERT(psopr->psopr_sopreq == PUFFS_SOPREQ_EXPIRE);
   1125 		kmem_free(psopr, sizeof(*psopr));
   1126 		mutex_enter(&pmp->pmp_sopmtx);
   1127 	}
   1128 
   1129 	pmp->pmp_sopthrcount--;
   1130 	cv_broadcast(&pmp->pmp_sopcv);
   1131 	mutex_exit(&pmp->pmp_sopmtx); /* not allowed to access fs after this */
   1132 
   1133 	/*
   1134 	 * If unmount was requested, we can now safely do it here, since
   1135 	 * our context is dead from the point-of-view of puffs_unmount()
   1136 	 * and we are just another thread.  dounmount() makes internally
   1137 	 * sure that VFS_UNMOUNT() isn't called reentrantly and that it
   1138 	 * is eventually completed.
   1139 	 */
   1140 	if (unmountme) {
   1141 		(void)dounmount(mp, MNT_FORCE, curlwp);
   1142 		vfs_rele(mp);
   1143 	}
   1144 
   1145 	kthread_exit(0);
   1146 }
   1147 
   1148 int
   1149 puffs_msgif_close(void *ctx)
   1150 {
   1151 	struct puffs_mount *pmp = ctx;
   1152 	struct mount *mp = PMPTOMP(pmp);
   1153 
   1154 	mutex_enter(&pmp->pmp_lock);
   1155 	puffs_mp_reference(pmp);
   1156 
   1157 	/*
   1158 	 * Free the waiting callers before proceeding any further.
   1159 	 * The syncer might be jogging around in this file system
   1160 	 * currently.  If we allow it to go to the userspace of no
   1161 	 * return while trying to get the syncer lock, well ...
   1162 	 */
   1163 	puffs_userdead(pmp);
   1164 
   1165 	/*
   1166 	 * Make sure someone from puffs_unmount() isn't currently in
   1167 	 * userspace.  If we don't take this precautionary step,
   1168 	 * they might notice that the mountpoint has disappeared
   1169 	 * from under them once they return.  Especially note that we
   1170 	 * cannot simply test for an unmounter before calling
   1171 	 * dounmount(), since it might be possible that that particular
   1172 	 * invocation of unmount was called without MNT_FORCE.  Here we
   1173 	 * *must* make sure unmount succeeds.  Also, restart is necessary
   1174 	 * since pmp isn't locked.  We might end up with PUTTER_DEAD after
   1175 	 * restart and exit from there.
   1176 	 */
   1177 	if (pmp->pmp_unmounting) {
   1178 		cv_wait(&pmp->pmp_unmounting_cv, &pmp->pmp_lock);
   1179 		puffs_mp_release(pmp);
   1180 		mutex_exit(&pmp->pmp_lock);
   1181 		DPRINTF(("puffs_fop_close: unmount was in progress for pmp %p, "
   1182 		    "restart\n", pmp));
   1183 		return ERESTART;
   1184 	}
   1185 
   1186 	/* Won't access pmp from here anymore */
   1187 	vfs_ref(mp);
   1188 	puffs_mp_release(pmp);
   1189 	mutex_exit(&pmp->pmp_lock);
   1190 
   1191 	/* Detach from VFS. */
   1192 	(void)dounmount(mp, MNT_FORCE, curlwp);
   1193 	vfs_rele(mp);
   1194 
   1195 	return 0;
   1196 }
   1197 
   1198 /*
   1199  * We're dead, kaput, RIP, slightly more than merely pining for the
   1200  * fjords, belly-up, fallen, lifeless, finished, expired, gone to meet
   1201  * our maker, ceased to be, etcetc.  YASD.  It's a dead FS!
   1202  *
   1203  * Caller must hold puffs mutex.
   1204  */
   1205 void
   1206 puffs_userdead(struct puffs_mount *pmp)
   1207 {
   1208 	struct puffs_msgpark *park, *park_next;
   1209 
   1210 	/*
   1211 	 * Mark filesystem status as dying so that operations don't
   1212 	 * attempt to march to userspace any longer.
   1213 	 */
   1214 	pmp->pmp_status = PUFFSTAT_DYING;
   1215 
   1216 	/* signal waiters on REQUEST TO file server queue */
   1217 	for (park = TAILQ_FIRST(&pmp->pmp_msg_touser); park; park = park_next) {
   1218 
   1219 		mutex_enter(&park->park_mtx);
   1220 		puffs_msgpark_reference(park);
   1221 		park_next = TAILQ_NEXT(park, park_entries);
   1222 
   1223 		KASSERT(park->park_flags & PARKFLAG_ONQUEUE1);
   1224 		TAILQ_REMOVE(&pmp->pmp_msg_touser, park, park_entries);
   1225 		park->park_flags &= ~PARKFLAG_ONQUEUE1;
   1226 		pmp->pmp_msg_touser_count--;
   1227 
   1228 		/*
   1229 		 * Even though waiters on QUEUE1 are removed in touser()
   1230 		 * in case of WAITERGONE, it is still possible for us to
   1231 		 * get raced here due to having to retake locks in said
   1232 		 * touser().  In the race case simply "ignore" the item
   1233 		 * on the queue and move on to the next one.
   1234 		 */
   1235 		if (park->park_flags & PARKFLAG_WAITERGONE) {
   1236 			KASSERT((park->park_flags & PARKFLAG_CALL) == 0);
   1237 			KASSERT(park->park_flags & PARKFLAG_WANTREPLY);
   1238 			puffs_msgpark_release(park);
   1239 
   1240 		} else {
   1241 			park->park_preq->preq_rv = ENXIO;
   1242 
   1243 			if (park->park_flags & PARKFLAG_CALL) {
   1244 				park->park_done(pmp, park->park_preq,
   1245 				    park->park_donearg);
   1246 				puffs_msgpark_release1(park, 2);
   1247 			} else if ((park->park_flags & PARKFLAG_WANTREPLY)==0) {
   1248 				puffs_msgpark_release1(park, 2);
   1249 			} else {
   1250 				park->park_preq->preq_rv = ENXIO;
   1251 				cv_signal(&park->park_cv);
   1252 				puffs_msgpark_release(park);
   1253 			}
   1254 		}
   1255 	}
   1256 
   1257 	/* signal waiters on RESPONSE FROM file server queue */
   1258 	for (park=TAILQ_FIRST(&pmp->pmp_msg_replywait); park; park=park_next) {
   1259 		mutex_enter(&park->park_mtx);
   1260 		puffs_msgpark_reference(park);
   1261 		park_next = TAILQ_NEXT(park, park_entries);
   1262 
   1263 		KASSERT(park->park_flags & PARKFLAG_ONQUEUE2);
   1264 		KASSERT(park->park_flags & PARKFLAG_WANTREPLY);
   1265 
   1266 		TAILQ_REMOVE(&pmp->pmp_msg_replywait, park, park_entries);
   1267 		park->park_flags &= ~PARKFLAG_ONQUEUE2;
   1268 
   1269 		if (park->park_flags & PARKFLAG_WAITERGONE) {
   1270 			KASSERT((park->park_flags & PARKFLAG_CALL) == 0);
   1271 			puffs_msgpark_release(park);
   1272 		} else {
   1273 			park->park_preq->preq_rv = ENXIO;
   1274 			if (park->park_flags & PARKFLAG_CALL) {
   1275 				park->park_done(pmp, park->park_preq,
   1276 				    park->park_donearg);
   1277 				puffs_msgpark_release1(park, 2);
   1278 			} else {
   1279 				cv_signal(&park->park_cv);
   1280 				puffs_msgpark_release(park);
   1281 			}
   1282 		}
   1283 	}
   1284 
   1285 	cv_broadcast(&pmp->pmp_msg_waiter_cv);
   1286 }
   1287