xref: /netbsd-src/lib/librumpuser/rumpuser_sp.c (revision bdc22b2e01993381dcefeff2bc9b56ca75a4235c)
1 /*      $NetBSD: rumpuser_sp.c,v 1.72 2016/09/06 07:45:41 martin Exp $	*/
2 
3 /*
4  * Copyright (c) 2010, 2011 Antti Kantee.  All Rights Reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
16  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25  * SUCH DAMAGE.
26  */
27 
28 /*
29  * Sysproxy routines.  This provides system RPC support over host sockets.
30  * The most notable limitation is that the client and server must share
31  * the same ABI.  This does not mean that they have to be the same
32  * machine or that they need to run the same version of the host OS,
33  * just that they must agree on the data structures.  This even *might*
34  * work correctly from one hardware architecture to another.
35  */
36 
37 #include "rumpuser_port.h"
38 
39 #if !defined(lint)
40 __RCSID("$NetBSD: rumpuser_sp.c,v 1.72 2016/09/06 07:45:41 martin Exp $");
41 #endif /* !lint */
42 
43 #include <sys/types.h>
44 #include <sys/mman.h>
45 #include <sys/socket.h>
46 
47 #include <arpa/inet.h>
48 #include <netinet/in.h>
49 #include <netinet/tcp.h>
50 
51 #include <assert.h>
52 #include <errno.h>
53 #include <fcntl.h>
54 #include <poll.h>
55 #include <pthread.h>
56 #include <stdarg.h>
57 #include <stdio.h>
58 #include <stdlib.h>
59 #include <string.h>
60 #include <unistd.h>
61 
62 #include <rump/rump.h> /* XXX: for rfork flags */
63 #include <rump/rumpuser.h>
64 
65 #include "rumpuser_int.h"
66 
67 #include "sp_common.c"
68 
69 #ifndef MAXCLI
70 #define MAXCLI 256
71 #endif
72 #ifndef MAXWORKER
73 #define MAXWORKER 128
74 #endif
75 #ifndef IDLEWORKER
76 #define IDLEWORKER 16
77 #endif
78 int rumpsp_maxworker = MAXWORKER;
79 int rumpsp_idleworker = IDLEWORKER;
80 
81 static struct pollfd pfdlist[MAXCLI];
82 static struct spclient spclist[MAXCLI];
83 static unsigned int disco;
84 static volatile int spfini;
85 
86 static char banner[MAXBANNER];
87 
88 #define PROTOMAJOR 0
89 #define PROTOMINOR 4
90 
91 
92 /* either no atomic ops, or we haven't figured out how to use them */
93 #if defined(__linux__) || defined(__APPLE__) || defined(__CYGWIN__) || defined(__OpenBSD__) || defined(__GNU__) || defined(__GLIBC__)
94 static pthread_mutex_t discomtx = PTHREAD_MUTEX_INITIALIZER;
95 
96 static void
97 signaldisco(void)
98 {
99 
100 	pthread_mutex_lock(&discomtx);
101 	disco++;
102 	pthread_mutex_unlock(&discomtx);
103 }
104 
105 static unsigned int
106 getdisco(void)
107 {
108 	unsigned int discocnt;
109 
110 	pthread_mutex_lock(&discomtx);
111 	discocnt = disco;
112 	disco = 0;
113 	pthread_mutex_unlock(&discomtx);
114 
115 	return discocnt;
116 }
117 
118 #elif defined(__FreeBSD__) || defined(__DragonFly__)
119 
120 #include <machine/atomic.h>
121 #define signaldisco()	atomic_add_int(&disco, 1)
122 #define getdisco()	atomic_readandclear_int(&disco)
123 
124 #else /* NetBSD */
125 
126 #include <sys/atomic.h>
127 #define signaldisco() atomic_inc_uint(&disco)
128 #define getdisco() atomic_swap_uint(&disco, 0)
129 
130 #endif
131 
132 
133 struct prefork {
134 	uint32_t pf_auth[AUTHLEN];
135 	struct lwp *pf_lwp;
136 
137 	LIST_ENTRY(prefork) pf_entries;		/* global list */
138 	LIST_ENTRY(prefork) pf_spcentries;	/* linked from forking spc */
139 };
140 static LIST_HEAD(, prefork) preforks = LIST_HEAD_INITIALIZER(preforks);
141 static pthread_mutex_t pfmtx;
142 
143 /*
144  * This version is for the server.  It's optimized for multiple threads
145  * and is *NOT* reentrant wrt to signals.
146  */
147 static int
148 waitresp(struct spclient *spc, struct respwait *rw)
149 {
150 	int spcstate;
151 	int rv = 0;
152 
153 	pthread_mutex_lock(&spc->spc_mtx);
154 	sendunlockl(spc);
155 	while (!rw->rw_done && spc->spc_state != SPCSTATE_DYING) {
156 		pthread_cond_wait(&rw->rw_cv, &spc->spc_mtx);
157 	}
158 	TAILQ_REMOVE(&spc->spc_respwait, rw, rw_entries);
159 	spcstate = spc->spc_state;
160 	pthread_mutex_unlock(&spc->spc_mtx);
161 
162 	pthread_cond_destroy(&rw->rw_cv);
163 
164 	if (rv)
165 		return rv;
166 	if (spcstate == SPCSTATE_DYING)
167 		return ENOTCONN;
168 	return rw->rw_error;
169 }
170 
171 /*
172  * Manual wrappers, since librump does not have access to the
173  * user namespace wrapped interfaces.
174  */
175 
176 static void
177 lwproc_switch(struct lwp *l)
178 {
179 
180 	rumpuser__hyp.hyp_schedule();
181 	rumpuser__hyp.hyp_lwproc_switch(l);
182 	rumpuser__hyp.hyp_unschedule();
183 }
184 
185 static void
186 lwproc_release(void)
187 {
188 
189 	rumpuser__hyp.hyp_schedule();
190 	rumpuser__hyp.hyp_lwproc_release();
191 	rumpuser__hyp.hyp_unschedule();
192 }
193 
194 static int
195 lwproc_rfork(struct spclient *spc, int flags, const char *comm)
196 {
197 	int rv;
198 
199 	rumpuser__hyp.hyp_schedule();
200 	rv = rumpuser__hyp.hyp_lwproc_rfork(spc, flags, comm);
201 	rumpuser__hyp.hyp_unschedule();
202 
203 	return rv;
204 }
205 
206 static int
207 lwproc_newlwp(pid_t pid)
208 {
209 	int rv;
210 
211 	rumpuser__hyp.hyp_schedule();
212 	rv = rumpuser__hyp.hyp_lwproc_newlwp(pid);
213 	rumpuser__hyp.hyp_unschedule();
214 
215 	return rv;
216 }
217 
218 static struct lwp *
219 lwproc_curlwp(void)
220 {
221 	struct lwp *l;
222 
223 	rumpuser__hyp.hyp_schedule();
224 	l = rumpuser__hyp.hyp_lwproc_curlwp();
225 	rumpuser__hyp.hyp_unschedule();
226 
227 	return l;
228 }
229 
230 static pid_t
231 lwproc_getpid(void)
232 {
233 	pid_t p;
234 
235 	rumpuser__hyp.hyp_schedule();
236 	p = rumpuser__hyp.hyp_getpid();
237 	rumpuser__hyp.hyp_unschedule();
238 
239 	return p;
240 }
241 
242 static void
243 lwproc_execnotify(const char *comm)
244 {
245 
246 	rumpuser__hyp.hyp_schedule();
247 	rumpuser__hyp.hyp_execnotify(comm);
248 	rumpuser__hyp.hyp_unschedule();
249 }
250 
251 static void
252 lwproc_lwpexit(void)
253 {
254 
255 	rumpuser__hyp.hyp_schedule();
256 	rumpuser__hyp.hyp_lwpexit();
257 	rumpuser__hyp.hyp_unschedule();
258 }
259 
260 static int
261 rumpsyscall(int sysnum, void *data, register_t *regrv)
262 {
263 	long retval[2] = {0, 0};
264 	int rv;
265 
266 	rumpuser__hyp.hyp_schedule();
267 	rv = rumpuser__hyp.hyp_syscall(sysnum, data, retval);
268 	rumpuser__hyp.hyp_unschedule();
269 
270 	regrv[0] = retval[0];
271 	regrv[1] = retval[1];
272 	return rv;
273 }
274 
275 static uint64_t
276 nextreq(struct spclient *spc)
277 {
278 	uint64_t nw;
279 
280 	pthread_mutex_lock(&spc->spc_mtx);
281 	nw = spc->spc_nextreq++;
282 	pthread_mutex_unlock(&spc->spc_mtx);
283 
284 	return nw;
285 }
286 
287 /*
288  * XXX: we send responses with "blocking" I/O.  This is not
289  * ok for the main thread.  XXXFIXME
290  */
291 
292 static void
293 send_error_resp(struct spclient *spc, uint64_t reqno, enum rumpsp_err error)
294 {
295 	struct rsp_hdr rhdr;
296 	struct iovec iov[1];
297 
298 	rhdr.rsp_len = sizeof(rhdr);
299 	rhdr.rsp_reqno = reqno;
300 	rhdr.rsp_class = RUMPSP_ERROR;
301 	rhdr.rsp_type = 0;
302 	rhdr.rsp_error = error;
303 
304 	IOVPUT(iov[0], rhdr);
305 
306 	sendlock(spc);
307 	(void)SENDIOV(spc, iov);
308 	sendunlock(spc);
309 }
310 
311 static int
312 send_handshake_resp(struct spclient *spc, uint64_t reqno, int error)
313 {
314 	struct rsp_hdr rhdr;
315 	struct iovec iov[2];
316 	int rv;
317 
318 	rhdr.rsp_len = sizeof(rhdr) + sizeof(error);
319 	rhdr.rsp_reqno = reqno;
320 	rhdr.rsp_class = RUMPSP_RESP;
321 	rhdr.rsp_type = RUMPSP_HANDSHAKE;
322 	rhdr.rsp_error = 0;
323 
324 	IOVPUT(iov[0], rhdr);
325 	IOVPUT(iov[1], error);
326 
327 	sendlock(spc);
328 	rv = SENDIOV(spc, iov);
329 	sendunlock(spc);
330 
331 	return rv;
332 }
333 
334 static int
335 send_syscall_resp(struct spclient *spc, uint64_t reqno, int error,
336 	register_t *retval)
337 {
338 	struct rsp_hdr rhdr;
339 	struct rsp_sysresp sysresp;
340 	struct iovec iov[2];
341 	int rv;
342 
343 	rhdr.rsp_len = sizeof(rhdr) + sizeof(sysresp);
344 	rhdr.rsp_reqno = reqno;
345 	rhdr.rsp_class = RUMPSP_RESP;
346 	rhdr.rsp_type = RUMPSP_SYSCALL;
347 	rhdr.rsp_sysnum = 0;
348 
349 	sysresp.rsys_error = error;
350 	memcpy(sysresp.rsys_retval, retval, sizeof(sysresp.rsys_retval));
351 
352 	IOVPUT(iov[0], rhdr);
353 	IOVPUT(iov[1], sysresp);
354 
355 	sendlock(spc);
356 	rv = SENDIOV(spc, iov);
357 	sendunlock(spc);
358 
359 	return rv;
360 }
361 
362 static int
363 send_prefork_resp(struct spclient *spc, uint64_t reqno, uint32_t *auth)
364 {
365 	struct rsp_hdr rhdr;
366 	struct iovec iov[2];
367 	int rv;
368 
369 	rhdr.rsp_len = sizeof(rhdr) + AUTHLEN*sizeof(*auth);
370 	rhdr.rsp_reqno = reqno;
371 	rhdr.rsp_class = RUMPSP_RESP;
372 	rhdr.rsp_type = RUMPSP_PREFORK;
373 	rhdr.rsp_sysnum = 0;
374 
375 	IOVPUT(iov[0], rhdr);
376 	IOVPUT_WITHSIZE(iov[1], auth, AUTHLEN*sizeof(*auth));
377 
378 	sendlock(spc);
379 	rv = SENDIOV(spc, iov);
380 	sendunlock(spc);
381 
382 	return rv;
383 }
384 
385 static int
386 copyin_req(struct spclient *spc, const void *remaddr, size_t *dlen,
387 	int wantstr, void **resp)
388 {
389 	struct rsp_hdr rhdr;
390 	struct rsp_copydata copydata;
391 	struct respwait rw;
392 	struct iovec iov[2];
393 	int rv;
394 
395 	DPRINTF(("copyin_req: %zu bytes from %p\n", *dlen, remaddr));
396 
397 	rhdr.rsp_len = sizeof(rhdr) + sizeof(copydata);
398 	rhdr.rsp_class = RUMPSP_REQ;
399 	if (wantstr)
400 		rhdr.rsp_type = RUMPSP_COPYINSTR;
401 	else
402 		rhdr.rsp_type = RUMPSP_COPYIN;
403 	rhdr.rsp_sysnum = 0;
404 
405 	copydata.rcp_addr = __UNCONST(remaddr);
406 	copydata.rcp_len = *dlen;
407 
408 	IOVPUT(iov[0], rhdr);
409 	IOVPUT(iov[1], copydata);
410 
411 	putwait(spc, &rw, &rhdr);
412 	rv = SENDIOV(spc, iov);
413 	if (rv) {
414 		unputwait(spc, &rw);
415 		return rv;
416 	}
417 
418 	rv = waitresp(spc, &rw);
419 
420 	DPRINTF(("copyin: response %d\n", rv));
421 
422 	*resp = rw.rw_data;
423 	if (wantstr)
424 		*dlen = rw.rw_dlen;
425 
426 	return rv;
427 
428 }
429 
430 static int
431 send_copyout_req(struct spclient *spc, const void *remaddr,
432 	const void *data, size_t dlen)
433 {
434 	struct rsp_hdr rhdr;
435 	struct rsp_copydata copydata;
436 	struct iovec iov[3];
437 	int rv;
438 
439 	DPRINTF(("copyout_req (async): %zu bytes to %p\n", dlen, remaddr));
440 
441 	rhdr.rsp_len = sizeof(rhdr) + sizeof(copydata) + dlen;
442 	rhdr.rsp_reqno = nextreq(spc);
443 	rhdr.rsp_class = RUMPSP_REQ;
444 	rhdr.rsp_type = RUMPSP_COPYOUT;
445 	rhdr.rsp_sysnum = 0;
446 
447 	copydata.rcp_addr = __UNCONST(remaddr);
448 	copydata.rcp_len = dlen;
449 
450 	IOVPUT(iov[0], rhdr);
451 	IOVPUT(iov[1], copydata);
452 	IOVPUT_WITHSIZE(iov[2], __UNCONST(data), dlen);
453 
454 	sendlock(spc);
455 	rv = SENDIOV(spc, iov);
456 	sendunlock(spc);
457 
458 	return rv;
459 }
460 
461 static int
462 anonmmap_req(struct spclient *spc, size_t howmuch, void **resp)
463 {
464 	struct rsp_hdr rhdr;
465 	struct respwait rw;
466 	struct iovec iov[2];
467 	int rv;
468 
469 	DPRINTF(("anonmmap_req: %zu bytes\n", howmuch));
470 
471 	rhdr.rsp_len = sizeof(rhdr) + sizeof(howmuch);
472 	rhdr.rsp_class = RUMPSP_REQ;
473 	rhdr.rsp_type = RUMPSP_ANONMMAP;
474 	rhdr.rsp_sysnum = 0;
475 
476 	IOVPUT(iov[0], rhdr);
477 	IOVPUT(iov[1], howmuch);
478 
479 	putwait(spc, &rw, &rhdr);
480 	rv = SENDIOV(spc, iov);
481 	if (rv) {
482 		unputwait(spc, &rw);
483 		return rv;
484 	}
485 
486 	rv = waitresp(spc, &rw);
487 
488 	*resp = rw.rw_data;
489 
490 	DPRINTF(("anonmmap: mapped at %p\n", **(void ***)resp));
491 
492 	return rv;
493 }
494 
495 static int
496 send_raise_req(struct spclient *spc, int signo)
497 {
498 	struct rsp_hdr rhdr;
499 	struct iovec iov[1];
500 	int rv;
501 
502 	rhdr.rsp_len = sizeof(rhdr);
503 	rhdr.rsp_class = RUMPSP_REQ;
504 	rhdr.rsp_type = RUMPSP_RAISE;
505 	rhdr.rsp_signo = signo;
506 
507 	IOVPUT(iov[0], rhdr);
508 
509 	sendlock(spc);
510 	rv = SENDIOV(spc, iov);
511 	sendunlock(spc);
512 
513 	return rv;
514 }
515 
516 static void
517 spcref(struct spclient *spc)
518 {
519 
520 	pthread_mutex_lock(&spc->spc_mtx);
521 	spc->spc_refcnt++;
522 	pthread_mutex_unlock(&spc->spc_mtx);
523 }
524 
525 static void
526 spcrelease(struct spclient *spc)
527 {
528 	int ref;
529 
530 	pthread_mutex_lock(&spc->spc_mtx);
531 	ref = --spc->spc_refcnt;
532 	if (__predict_false(spc->spc_inexec && ref <= 2))
533 		pthread_cond_broadcast(&spc->spc_cv);
534 	pthread_mutex_unlock(&spc->spc_mtx);
535 
536 	if (ref > 0)
537 		return;
538 
539 	DPRINTF(("rump_sp: spcrelease: spc %p fd %d\n", spc, spc->spc_fd));
540 
541 	_DIAGASSERT(TAILQ_EMPTY(&spc->spc_respwait));
542 	_DIAGASSERT(spc->spc_buf == NULL);
543 
544 	if (spc->spc_mainlwp) {
545 		lwproc_switch(spc->spc_mainlwp);
546 		lwproc_release();
547 	}
548 	spc->spc_mainlwp = NULL;
549 
550 	close(spc->spc_fd);
551 	spc->spc_fd = -1;
552 	spc->spc_state = SPCSTATE_NEW;
553 
554 	signaldisco();
555 }
556 
557 static void
558 serv_handledisco(unsigned int idx)
559 {
560 	struct spclient *spc = &spclist[idx];
561 	int dolwpexit;
562 
563 	DPRINTF(("rump_sp: disconnecting [%u]\n", idx));
564 
565 	pfdlist[idx].fd = -1;
566 	pfdlist[idx].revents = 0;
567 	pthread_mutex_lock(&spc->spc_mtx);
568 	spc->spc_state = SPCSTATE_DYING;
569 	kickall(spc);
570 	sendunlockl(spc);
571 	/* exec uses mainlwp in another thread, but also nuked all lwps */
572 	dolwpexit = !spc->spc_inexec;
573 	pthread_mutex_unlock(&spc->spc_mtx);
574 
575 	if (dolwpexit && spc->spc_mainlwp) {
576 		lwproc_switch(spc->spc_mainlwp);
577 		lwproc_lwpexit();
578 		lwproc_switch(NULL);
579 	}
580 
581 	/*
582 	 * Nobody's going to attempt to send/receive anymore,
583 	 * so reinit info relevant to that.
584 	 */
585 	/*LINTED:pointer casts may be ok*/
586 	memset((char *)spc + SPC_ZEROFF, 0, sizeof(*spc) - SPC_ZEROFF);
587 
588 	spcrelease(spc);
589 }
590 
591 static void
592 serv_shutdown(void)
593 {
594 	struct spclient *spc;
595 	unsigned int i;
596 
597 	for (i = 1; i < MAXCLI; i++) {
598 		spc = &spclist[i];
599 		if (spc->spc_fd == -1)
600 			continue;
601 
602 		shutdown(spc->spc_fd, SHUT_RDWR);
603 		serv_handledisco(i);
604 
605 		spcrelease(spc);
606 	}
607 }
608 
609 static unsigned
610 serv_handleconn(int fd, connecthook_fn connhook, int busy)
611 {
612 	struct sockaddr_storage ss;
613 	socklen_t sl = sizeof(ss);
614 	int newfd, flags;
615 	unsigned i;
616 
617 	/*LINTED: cast ok */
618 	newfd = accept(fd, (struct sockaddr *)&ss, &sl);
619 	if (newfd == -1)
620 		return 0;
621 
622 	if (busy) {
623 		close(newfd); /* EBUSY */
624 		return 0;
625 	}
626 
627 	flags = fcntl(newfd, F_GETFL, 0);
628 	if (fcntl(newfd, F_SETFL, flags | O_NONBLOCK) == -1) {
629 		close(newfd);
630 		return 0;
631 	}
632 
633 	if (connhook(newfd) != 0) {
634 		close(newfd);
635 		return 0;
636 	}
637 
638 	/* write out a banner for the client */
639 	if (send(newfd, banner, strlen(banner), MSG_NOSIGNAL)
640 	    != (ssize_t)strlen(banner)) {
641 		close(newfd);
642 		return 0;
643 	}
644 
645 	/* find empty slot the simple way */
646 	for (i = 0; i < MAXCLI; i++) {
647 		if (pfdlist[i].fd == -1 && spclist[i].spc_state == SPCSTATE_NEW)
648 			break;
649 	}
650 
651 	/*
652 	 * Although not finding a slot is impossible (cf. how this routine
653 	 * is called), the compiler can still think that i == MAXCLI
654 	 * if this code is either compiled with NDEBUG or the platform
655 	 * does not use __dead for assert().  Therefore, add an explicit
656 	 * check to avoid an array-bounds error.
657 	 */
658 	/* assert(i < MAXCLI); */
659 	if (i == MAXCLI)
660 		abort();
661 
662 	pfdlist[i].fd = newfd;
663 	spclist[i].spc_fd = newfd;
664 	spclist[i].spc_istatus = SPCSTATUS_BUSY; /* dedicated receiver */
665 	spclist[i].spc_refcnt = 1;
666 
667 	TAILQ_INIT(&spclist[i].spc_respwait);
668 
669 	DPRINTF(("rump_sp: added new connection fd %d at idx %u\n", newfd, i));
670 
671 	return i;
672 }
673 
674 static void
675 serv_handlesyscall(struct spclient *spc, struct rsp_hdr *rhdr, uint8_t *data)
676 {
677 	register_t retval[2] = {0, 0};
678 	int rv, sysnum;
679 
680 	sysnum = (int)rhdr->rsp_sysnum;
681 	DPRINTF(("rump_sp: handling syscall %d from client %d\n",
682 	    sysnum, spc->spc_pid));
683 
684 	if (__predict_false((rv = lwproc_newlwp(spc->spc_pid)) != 0)) {
685 		retval[0] = -1;
686 		send_syscall_resp(spc, rhdr->rsp_reqno, rv, retval);
687 		return;
688 	}
689 	spc->spc_syscallreq = rhdr->rsp_reqno;
690 	rv = rumpsyscall(sysnum, data, retval);
691 	spc->spc_syscallreq = 0;
692 	lwproc_release();
693 
694 	DPRINTF(("rump_sp: got return value %d & %"PRIxREGISTER
695 	    "/%"PRIxREGISTER"\n",
696 	    rv, retval[0], retval[1]));
697 
698 	send_syscall_resp(spc, rhdr->rsp_reqno, rv, retval);
699 }
700 
701 static void
702 serv_handleexec(struct spclient *spc, struct rsp_hdr *rhdr, char *comm)
703 {
704 	size_t commlen = rhdr->rsp_len - HDRSZ;
705 
706 	pthread_mutex_lock(&spc->spc_mtx);
707 	/* one for the connection and one for us */
708 	while (spc->spc_refcnt > 2)
709 		pthread_cond_wait(&spc->spc_cv, &spc->spc_mtx);
710 	pthread_mutex_unlock(&spc->spc_mtx);
711 
712 	/*
713 	 * ok, all the threads are dead (or one is still alive and
714 	 * the connection is dead, in which case this doesn't matter
715 	 * very much).  proceed with exec.
716 	 */
717 
718 	/* ensure comm is 0-terminated */
719 	/* TODO: make sure it contains sensible chars? */
720 	comm[commlen] = '\0';
721 
722 	lwproc_switch(spc->spc_mainlwp);
723 	lwproc_execnotify(comm);
724 	lwproc_switch(NULL);
725 
726 	pthread_mutex_lock(&spc->spc_mtx);
727 	spc->spc_inexec = 0;
728 	pthread_mutex_unlock(&spc->spc_mtx);
729 	send_handshake_resp(spc, rhdr->rsp_reqno, 0);
730 }
731 
732 enum sbatype { SBA_SYSCALL, SBA_EXEC };
733 
734 struct servbouncearg {
735 	struct spclient *sba_spc;
736 	struct rsp_hdr sba_hdr;
737 	enum sbatype sba_type;
738 	uint8_t *sba_data;
739 
740 	TAILQ_ENTRY(servbouncearg) sba_entries;
741 };
742 static pthread_mutex_t sbamtx;
743 static pthread_cond_t sbacv;
744 static int nworker, idleworker, nwork;
745 static TAILQ_HEAD(, servbouncearg) wrklist = TAILQ_HEAD_INITIALIZER(wrklist);
746 
747 /*ARGSUSED*/
748 static void *
749 serv_workbouncer(void *arg)
750 {
751 	struct servbouncearg *sba;
752 
753 	for (;;) {
754 		pthread_mutex_lock(&sbamtx);
755 		if (__predict_false(idleworker - nwork >= rumpsp_idleworker)) {
756 			nworker--;
757 			pthread_mutex_unlock(&sbamtx);
758 			break;
759 		}
760 		idleworker++;
761 		while (TAILQ_EMPTY(&wrklist)) {
762 			_DIAGASSERT(nwork == 0);
763 			pthread_cond_wait(&sbacv, &sbamtx);
764 		}
765 		idleworker--;
766 
767 		sba = TAILQ_FIRST(&wrklist);
768 		TAILQ_REMOVE(&wrklist, sba, sba_entries);
769 		nwork--;
770 		pthread_mutex_unlock(&sbamtx);
771 
772 		if (__predict_true(sba->sba_type == SBA_SYSCALL)) {
773 			serv_handlesyscall(sba->sba_spc,
774 			    &sba->sba_hdr, sba->sba_data);
775 		} else {
776 			_DIAGASSERT(sba->sba_type == SBA_EXEC);
777 			serv_handleexec(sba->sba_spc, &sba->sba_hdr,
778 			    (char *)sba->sba_data);
779 		}
780 		spcrelease(sba->sba_spc);
781 		free(sba->sba_data);
782 		free(sba);
783 	}
784 
785 	return NULL;
786 }
787 
788 static int
789 sp_copyin(void *arg, const void *raddr, void *laddr, size_t *len, int wantstr)
790 {
791 	struct spclient *spc = arg;
792 	void *rdata = NULL; /* XXXuninit */
793 	int rv, nlocks;
794 
795 	rumpkern_unsched(&nlocks, NULL);
796 
797 	rv = copyin_req(spc, raddr, len, wantstr, &rdata);
798 	if (rv)
799 		goto out;
800 
801 	memcpy(laddr, rdata, *len);
802 	free(rdata);
803 
804  out:
805 	rumpkern_sched(nlocks, NULL);
806 	if (rv)
807 		rv = EFAULT;
808 	ET(rv);
809 }
810 
811 int
812 rumpuser_sp_copyin(void *arg, const void *raddr, void *laddr, size_t len)
813 {
814 	int rv;
815 
816 	rv = sp_copyin(arg, raddr, laddr, &len, 0);
817 	ET(rv);
818 }
819 
820 int
821 rumpuser_sp_copyinstr(void *arg, const void *raddr, void *laddr, size_t *len)
822 {
823 	int rv;
824 
825 	rv = sp_copyin(arg, raddr, laddr, len, 1);
826 	ET(rv);
827 }
828 
829 static int
830 sp_copyout(void *arg, const void *laddr, void *raddr, size_t dlen)
831 {
832 	struct spclient *spc = arg;
833 	int nlocks, rv;
834 
835 	rumpkern_unsched(&nlocks, NULL);
836 	rv = send_copyout_req(spc, raddr, laddr, dlen);
837 	rumpkern_sched(nlocks, NULL);
838 
839 	if (rv)
840 		rv = EFAULT;
841 	ET(rv);
842 }
843 
844 int
845 rumpuser_sp_copyout(void *arg, const void *laddr, void *raddr, size_t dlen)
846 {
847 	int rv;
848 
849 	rv = sp_copyout(arg, laddr, raddr, dlen);
850 	ET(rv);
851 }
852 
853 int
854 rumpuser_sp_copyoutstr(void *arg, const void *laddr, void *raddr, size_t *dlen)
855 {
856 	int rv;
857 
858 	rv = sp_copyout(arg, laddr, raddr, *dlen);
859 	ET(rv);
860 }
861 
862 int
863 rumpuser_sp_anonmmap(void *arg, size_t howmuch, void **addr)
864 {
865 	struct spclient *spc = arg;
866 	void *resp, *rdata = NULL; /* XXXuninit */
867 	int nlocks, rv;
868 
869 	rumpkern_unsched(&nlocks, NULL);
870 
871 	rv = anonmmap_req(spc, howmuch, &rdata);
872 	if (rv) {
873 		rv = EFAULT;
874 		goto out;
875 	}
876 
877 	resp = *(void **)rdata;
878 	free(rdata);
879 
880 	if (resp == NULL) {
881 		rv = ENOMEM;
882 	}
883 
884 	*addr = resp;
885 
886  out:
887 	rumpkern_sched(nlocks, NULL);
888 	ET(rv);
889 }
890 
891 int
892 rumpuser_sp_raise(void *arg, int signo)
893 {
894 	struct spclient *spc = arg;
895 	int rv, nlocks;
896 
897 	rumpkern_unsched(&nlocks, NULL);
898 	rv = send_raise_req(spc, signo);
899 	rumpkern_sched(nlocks, NULL);
900 
901 	return rv;
902 }
903 
904 static pthread_attr_t pattr_detached;
905 static void
906 schedulework(struct spclient *spc, enum sbatype sba_type)
907 {
908 	struct servbouncearg *sba;
909 	pthread_t pt;
910 	uint64_t reqno;
911 	int retries = 0;
912 
913 	reqno = spc->spc_hdr.rsp_reqno;
914 	while ((sba = malloc(sizeof(*sba))) == NULL) {
915 		if (nworker == 0 || retries > 10) {
916 			send_error_resp(spc, reqno, RUMPSP_ERR_TRYAGAIN);
917 			spcfreebuf(spc);
918 			return;
919 		}
920 		/* slim chance of more memory? */
921 		usleep(10000);
922 	}
923 
924 	sba->sba_spc = spc;
925 	sba->sba_type = sba_type;
926 	sba->sba_hdr = spc->spc_hdr;
927 	sba->sba_data = spc->spc_buf;
928 	spcresetbuf(spc);
929 
930 	spcref(spc);
931 
932 	pthread_mutex_lock(&sbamtx);
933 	TAILQ_INSERT_TAIL(&wrklist, sba, sba_entries);
934 	nwork++;
935 	if (nwork <= idleworker) {
936 		/* do we have a daemon's tool (i.e. idle threads)? */
937 		pthread_cond_signal(&sbacv);
938 	} else if (nworker < rumpsp_maxworker) {
939 		/*
940 		 * Else, need to create one
941 		 * (if we can, otherwise just expect another
942 		 * worker to pick up the syscall)
943 		 */
944 		if (pthread_create(&pt, &pattr_detached,
945 		    serv_workbouncer, NULL) == 0) {
946 			nworker++;
947 		}
948 	}
949 	pthread_mutex_unlock(&sbamtx);
950 }
951 
952 /*
953  *
954  * Startup routines and mainloop for server.
955  *
956  */
957 
958 struct spservarg {
959 	int sps_sock;
960 	connecthook_fn sps_connhook;
961 };
962 
963 static void
964 handlereq(struct spclient *spc)
965 {
966 	uint64_t reqno;
967 	int error;
968 
969 	reqno = spc->spc_hdr.rsp_reqno;
970 	if (__predict_false(spc->spc_state == SPCSTATE_NEW)) {
971 		if (spc->spc_hdr.rsp_type != RUMPSP_HANDSHAKE) {
972 			send_error_resp(spc, reqno, RUMPSP_ERR_AUTH);
973 			shutdown(spc->spc_fd, SHUT_RDWR);
974 			spcfreebuf(spc);
975 			return;
976 		}
977 
978 		if (spc->spc_hdr.rsp_handshake == HANDSHAKE_GUEST) {
979 			char *comm = (char *)spc->spc_buf;
980 			size_t commlen = spc->spc_hdr.rsp_len - HDRSZ;
981 
982 			/* ensure it's 0-terminated */
983 			/* XXX make sure it contains sensible chars? */
984 			comm[commlen] = '\0';
985 
986 			/* make sure we fork off of proc1 */
987 			_DIAGASSERT(lwproc_curlwp() == NULL);
988 
989 			if ((error = lwproc_rfork(spc,
990 			    RUMP_RFFD_CLEAR, comm)) != 0) {
991 				shutdown(spc->spc_fd, SHUT_RDWR);
992 			}
993 
994 			spcfreebuf(spc);
995 			if (error)
996 				return;
997 
998 			spc->spc_mainlwp = lwproc_curlwp();
999 
1000 			send_handshake_resp(spc, reqno, 0);
1001 		} else if (spc->spc_hdr.rsp_handshake == HANDSHAKE_FORK) {
1002 			struct lwp *tmpmain;
1003 			struct prefork *pf;
1004 			struct handshake_fork *rfp;
1005 			int cancel;
1006 
1007 			if (spc->spc_off-HDRSZ != sizeof(*rfp)) {
1008 				send_error_resp(spc, reqno,
1009 				    RUMPSP_ERR_MALFORMED_REQUEST);
1010 				shutdown(spc->spc_fd, SHUT_RDWR);
1011 				spcfreebuf(spc);
1012 				return;
1013 			}
1014 
1015 			/*LINTED*/
1016 			rfp = (void *)spc->spc_buf;
1017 			cancel = rfp->rf_cancel;
1018 
1019 			pthread_mutex_lock(&pfmtx);
1020 			LIST_FOREACH(pf, &preforks, pf_entries) {
1021 				if (memcmp(rfp->rf_auth, pf->pf_auth,
1022 				    sizeof(rfp->rf_auth)) == 0) {
1023 					LIST_REMOVE(pf, pf_entries);
1024 					LIST_REMOVE(pf, pf_spcentries);
1025 					break;
1026 				}
1027 			}
1028 			pthread_mutex_unlock(&pfmtx);
1029 			spcfreebuf(spc);
1030 
1031 			if (!pf) {
1032 				send_error_resp(spc, reqno,
1033 				    RUMPSP_ERR_INVALID_PREFORK);
1034 				shutdown(spc->spc_fd, SHUT_RDWR);
1035 				return;
1036 			}
1037 
1038 			tmpmain = pf->pf_lwp;
1039 			free(pf);
1040 			lwproc_switch(tmpmain);
1041 			if (cancel) {
1042 				lwproc_release();
1043 				shutdown(spc->spc_fd, SHUT_RDWR);
1044 				return;
1045 			}
1046 
1047 			/*
1048 			 * So, we forked already during "prefork" to save
1049 			 * the file descriptors from a parent exit
1050 			 * race condition.  But now we need to fork
1051 			 * a second time since the initial fork has
1052 			 * the wrong spc pointer.  (yea, optimize
1053 			 * interfaces some day if anyone cares)
1054 			 */
1055 			if ((error = lwproc_rfork(spc,
1056 			    RUMP_RFFD_SHARE, NULL)) != 0) {
1057 				send_error_resp(spc, reqno,
1058 				    RUMPSP_ERR_RFORK_FAILED);
1059 				shutdown(spc->spc_fd, SHUT_RDWR);
1060 				lwproc_release();
1061 				return;
1062 			}
1063 			spc->spc_mainlwp = lwproc_curlwp();
1064 			lwproc_switch(tmpmain);
1065 			lwproc_release();
1066 			lwproc_switch(spc->spc_mainlwp);
1067 
1068 			send_handshake_resp(spc, reqno, 0);
1069 		} else {
1070 			send_error_resp(spc, reqno, RUMPSP_ERR_AUTH);
1071 			shutdown(spc->spc_fd, SHUT_RDWR);
1072 			spcfreebuf(spc);
1073 			return;
1074 		}
1075 
1076 		spc->spc_pid = lwproc_getpid();
1077 
1078 		DPRINTF(("rump_sp: handshake for client %p complete, pid %d\n",
1079 		    spc, spc->spc_pid));
1080 
1081 		lwproc_switch(NULL);
1082 		spc->spc_state = SPCSTATE_RUNNING;
1083 		return;
1084 	}
1085 
1086 	if (__predict_false(spc->spc_hdr.rsp_type == RUMPSP_PREFORK)) {
1087 		struct prefork *pf;
1088 		uint32_t auth[AUTHLEN];
1089 		size_t randlen;
1090 		int inexec;
1091 
1092 		DPRINTF(("rump_sp: prefork handler executing for %p\n", spc));
1093 		spcfreebuf(spc);
1094 
1095 		pthread_mutex_lock(&spc->spc_mtx);
1096 		inexec = spc->spc_inexec;
1097 		pthread_mutex_unlock(&spc->spc_mtx);
1098 		if (inexec) {
1099 			send_error_resp(spc, reqno, RUMPSP_ERR_INEXEC);
1100 			shutdown(spc->spc_fd, SHUT_RDWR);
1101 			return;
1102 		}
1103 
1104 		pf = malloc(sizeof(*pf));
1105 		if (pf == NULL) {
1106 			send_error_resp(spc, reqno, RUMPSP_ERR_NOMEM);
1107 			return;
1108 		}
1109 
1110 		/*
1111 		 * Use client main lwp to fork.  this is never used by
1112 		 * worker threads (except in exec, but we checked for that
1113 		 * above) so we can safely use it here.
1114 		 */
1115 		lwproc_switch(spc->spc_mainlwp);
1116 		if ((error = lwproc_rfork(spc, RUMP_RFFD_COPY, NULL)) != 0) {
1117 			DPRINTF(("rump_sp: fork failed: %d (%p)\n",error, spc));
1118 			send_error_resp(spc, reqno, RUMPSP_ERR_RFORK_FAILED);
1119 			lwproc_switch(NULL);
1120 			free(pf);
1121 			return;
1122 		}
1123 
1124 		/* Ok, we have a new process context and a new curlwp */
1125 		rumpuser_getrandom(auth, sizeof(auth), 0, &randlen);
1126 		memcpy(pf->pf_auth, auth, sizeof(pf->pf_auth));
1127 		pf->pf_lwp = lwproc_curlwp();
1128 		lwproc_switch(NULL);
1129 
1130 		pthread_mutex_lock(&pfmtx);
1131 		LIST_INSERT_HEAD(&preforks, pf, pf_entries);
1132 		LIST_INSERT_HEAD(&spc->spc_pflist, pf, pf_spcentries);
1133 		pthread_mutex_unlock(&pfmtx);
1134 
1135 		DPRINTF(("rump_sp: prefork handler success %p\n", spc));
1136 
1137 		send_prefork_resp(spc, reqno, auth);
1138 		return;
1139 	}
1140 
1141 	if (__predict_false(spc->spc_hdr.rsp_type == RUMPSP_HANDSHAKE)) {
1142 		int inexec;
1143 
1144 		if (spc->spc_hdr.rsp_handshake != HANDSHAKE_EXEC) {
1145 			send_error_resp(spc, reqno,
1146 			    RUMPSP_ERR_MALFORMED_REQUEST);
1147 			shutdown(spc->spc_fd, SHUT_RDWR);
1148 			spcfreebuf(spc);
1149 			return;
1150 		}
1151 
1152 		pthread_mutex_lock(&spc->spc_mtx);
1153 		inexec = spc->spc_inexec;
1154 		pthread_mutex_unlock(&spc->spc_mtx);
1155 		if (inexec) {
1156 			send_error_resp(spc, reqno, RUMPSP_ERR_INEXEC);
1157 			shutdown(spc->spc_fd, SHUT_RDWR);
1158 			spcfreebuf(spc);
1159 			return;
1160 		}
1161 
1162 		pthread_mutex_lock(&spc->spc_mtx);
1163 		spc->spc_inexec = 1;
1164 		pthread_mutex_unlock(&spc->spc_mtx);
1165 
1166 		/*
1167 		 * start to drain lwps.  we will wait for it to finish
1168 		 * in another thread
1169 		 */
1170 		lwproc_switch(spc->spc_mainlwp);
1171 		lwproc_lwpexit();
1172 		lwproc_switch(NULL);
1173 
1174 		/*
1175 		 * exec has to wait for lwps to drain, so finish it off
1176 		 * in another thread
1177 		 */
1178 		schedulework(spc, SBA_EXEC);
1179 		return;
1180 	}
1181 
1182 	if (__predict_false(spc->spc_hdr.rsp_type != RUMPSP_SYSCALL)) {
1183 		send_error_resp(spc, reqno, RUMPSP_ERR_MALFORMED_REQUEST);
1184 		spcfreebuf(spc);
1185 		return;
1186 	}
1187 
1188 	schedulework(spc, SBA_SYSCALL);
1189 }
1190 
1191 static void *
1192 spserver(void *arg)
1193 {
1194 	struct spservarg *sarg = arg;
1195 	struct spclient *spc;
1196 	unsigned idx;
1197 	int seen;
1198 	int rv;
1199 	unsigned int nfds, maxidx;
1200 
1201 	for (idx = 0; idx < MAXCLI; idx++) {
1202 		pfdlist[idx].fd = -1;
1203 		pfdlist[idx].events = POLLIN;
1204 
1205 		spc = &spclist[idx];
1206 		pthread_mutex_init(&spc->spc_mtx, NULL);
1207 		pthread_cond_init(&spc->spc_cv, NULL);
1208 		spc->spc_fd = -1;
1209 	}
1210 	pfdlist[0].fd = spclist[0].spc_fd = sarg->sps_sock;
1211 	pfdlist[0].events = POLLIN;
1212 	nfds = 1;
1213 	maxidx = 0;
1214 
1215 	pthread_attr_init(&pattr_detached);
1216 	pthread_attr_setdetachstate(&pattr_detached, PTHREAD_CREATE_DETACHED);
1217 #if NOTYET
1218 	pthread_attr_setstacksize(&pattr_detached, 32*1024);
1219 #endif
1220 
1221 	pthread_mutex_init(&sbamtx, NULL);
1222 	pthread_cond_init(&sbacv, NULL);
1223 
1224 	DPRINTF(("rump_sp: server mainloop\n"));
1225 
1226 	for (;;) {
1227 		int discoed;
1228 
1229 		/* g/c hangarounds (eventually) */
1230 		discoed = getdisco();
1231 		while (discoed--) {
1232 			nfds--;
1233 			idx = maxidx;
1234 			while (idx) {
1235 				if (pfdlist[idx].fd != -1) {
1236 					maxidx = idx;
1237 					break;
1238 				}
1239 				idx--;
1240 			}
1241 			DPRINTF(("rump_sp: set maxidx to [%u]\n",
1242 			    maxidx));
1243 		}
1244 
1245 		DPRINTF(("rump_sp: loop nfd %d\n", maxidx+1));
1246 		seen = 0;
1247 		rv = poll(pfdlist, maxidx+1, INFTIM);
1248 		assert(maxidx+1 <= MAXCLI);
1249 		assert(rv != 0);
1250 		if (rv == -1) {
1251 			if (errno == EINTR)
1252 				continue;
1253 			fprintf(stderr, "rump_spserver: poll returned %d\n",
1254 			    errno);
1255 			break;
1256 		}
1257 
1258 		for (idx = 0; seen < rv && idx < MAXCLI; idx++) {
1259 			if ((pfdlist[idx].revents & POLLIN) == 0)
1260 				continue;
1261 
1262 			seen++;
1263 			DPRINTF(("rump_sp: activity at [%u] %d/%d\n",
1264 			    idx, seen, rv));
1265 			if (idx > 0) {
1266 				spc = &spclist[idx];
1267 				DPRINTF(("rump_sp: mainloop read [%u]\n", idx));
1268 				switch (readframe(spc)) {
1269 				case 0:
1270 					break;
1271 				case -1:
1272 					serv_handledisco(idx);
1273 					break;
1274 				default:
1275 					switch (spc->spc_hdr.rsp_class) {
1276 					case RUMPSP_RESP:
1277 						kickwaiter(spc);
1278 						break;
1279 					case RUMPSP_REQ:
1280 						handlereq(spc);
1281 						break;
1282 					default:
1283 						send_error_resp(spc,
1284 						  spc->spc_hdr.rsp_reqno,
1285 						  RUMPSP_ERR_MALFORMED_REQUEST);
1286 						spcfreebuf(spc);
1287 						break;
1288 					}
1289 					break;
1290 				}
1291 
1292 			} else {
1293 				DPRINTF(("rump_sp: mainloop new connection\n"));
1294 
1295 				if (__predict_false(spfini)) {
1296 					close(spclist[0].spc_fd);
1297 					serv_shutdown();
1298 					goto out;
1299 				}
1300 
1301 				idx = serv_handleconn(pfdlist[0].fd,
1302 				    sarg->sps_connhook, nfds == MAXCLI);
1303 				if (idx)
1304 					nfds++;
1305 				if (idx > maxidx)
1306 					maxidx = idx;
1307 				DPRINTF(("rump_sp: maxid now %d\n", maxidx));
1308 			}
1309 		}
1310 	}
1311 
1312  out:
1313 	return NULL;
1314 }
1315 
1316 static unsigned cleanupidx;
1317 static struct sockaddr *cleanupsa;
1318 int
1319 rumpuser_sp_init(const char *url,
1320 	const char *ostype, const char *osrelease, const char *machine)
1321 {
1322 	pthread_t pt;
1323 	struct spservarg *sarg;
1324 	struct sockaddr *sap;
1325 	char *p;
1326 	unsigned idx = 0; /* XXXgcc */
1327 	int error, s;
1328 
1329 	p = strdup(url);
1330 	if (p == NULL) {
1331 		error = ENOMEM;
1332 		goto out;
1333 	}
1334 	error = parseurl(p, &sap, &idx, 1);
1335 	free(p);
1336 	if (error)
1337 		goto out;
1338 
1339 	snprintf(banner, sizeof(banner), "RUMPSP-%d.%d-%s-%s/%s\n",
1340 	    PROTOMAJOR, PROTOMINOR, ostype, osrelease, machine);
1341 
1342 	s = socket(parsetab[idx].domain, SOCK_STREAM, 0);
1343 	if (s == -1) {
1344 		error = errno;
1345 		goto out;
1346 	}
1347 
1348 	sarg = malloc(sizeof(*sarg));
1349 	if (sarg == NULL) {
1350 		close(s);
1351 		error = ENOMEM;
1352 		goto out;
1353 	}
1354 
1355 	sarg->sps_sock = s;
1356 	sarg->sps_connhook = parsetab[idx].connhook;
1357 
1358 	cleanupidx = idx;
1359 	cleanupsa = sap;
1360 
1361 	/* sloppy error recovery */
1362 
1363 	/*LINTED*/
1364 	if (bind(s, sap, parsetab[idx].slen) == -1) {
1365 		error = errno;
1366 		fprintf(stderr, "rump_sp: failed to bind to URL %s\n", url);
1367 		goto out;
1368 	}
1369 	if (listen(s, MAXCLI) == -1) {
1370 		error = errno;
1371 		fprintf(stderr, "rump_sp: server listen failed\n");
1372 		goto out;
1373 	}
1374 
1375 	if ((error = pthread_create(&pt, NULL, spserver, sarg)) != 0) {
1376 		fprintf(stderr, "rump_sp: cannot create wrkr thread\n");
1377 		goto out;
1378 	}
1379 	pthread_detach(pt);
1380 
1381  out:
1382 	ET(error);
1383 }
1384 
1385 void
1386 rumpuser_sp_fini(void *arg)
1387 {
1388 	struct spclient *spc = arg;
1389 	register_t retval[2] = {0, 0};
1390 
1391 	if (spclist[0].spc_fd) {
1392 		parsetab[cleanupidx].cleanup(cleanupsa);
1393 	}
1394 
1395 	/*
1396 	 * stuff response into the socket, since the rump kernel container
1397 	 * is just about to exit
1398 	 */
1399 	if (spc && spc->spc_syscallreq)
1400 		send_syscall_resp(spc, spc->spc_syscallreq, 0, retval);
1401 
1402 	if (spclist[0].spc_fd) {
1403 		shutdown(spclist[0].spc_fd, SHUT_RDWR);
1404 		spfini = 1;
1405 	}
1406 
1407 	/*
1408 	 * could release thread, but don't bother, since the container
1409 	 * will be stone dead in a moment.
1410 	 */
1411 }
1412