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rumpclient.c revision 1.61
      1 /*      $NetBSD: rumpclient.c,v 1.61 2014/04/03 17:11:35 pooka 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  * Client side routines for rump syscall proxy.
     30  */
     31 
     32 #include <rump/rumpuser_port.h>
     33 
     34 /*
     35  * We use kqueue on NetBSD, poll elsewhere.  Theoretically we could
     36  * use kqueue on other BSD's too, but I haven't tested those.  We
     37  * want to use kqueue because it will give us the ability to get signal
     38  * notifications but defer their handling to a stage where we do not
     39  * hold the communication lock.  Taking a signal while holding on to
     40  * that lock may cause a deadlock.  Therefore, block signals throughout
     41  * the RPC when using poll.  On Linux, we use signalfd in the same role
     42  * as kqueue on NetBSD to be able to take signals while waiting for a
     43  * response from the server.
     44  */
     45 
     46 #ifdef __NetBSD__
     47 #define USE_KQUEUE
     48 #endif
     49 #if defined(__linux__) && !defined(__ANDROID__)
     50 #define USE_SIGNALFD
     51 #endif
     52 
     53 __RCSID("$NetBSD: rumpclient.c,v 1.61 2014/04/03 17:11:35 pooka Exp $");
     54 
     55 #include <sys/param.h>
     56 #include <sys/mman.h>
     57 #include <sys/socket.h>
     58 #include <sys/time.h>
     59 
     60 #ifdef USE_KQUEUE
     61 #include <sys/event.h>
     62 #endif
     63 
     64 #include <arpa/inet.h>
     65 #include <netinet/in.h>
     66 #include <netinet/tcp.h>
     67 
     68 #include <assert.h>
     69 #include <dlfcn.h>
     70 #include <errno.h>
     71 #include <fcntl.h>
     72 #include <poll.h>
     73 #include <pthread.h>
     74 #include <signal.h>
     75 #include <stdarg.h>
     76 #include <stdbool.h>
     77 #include <stdio.h>
     78 #include <stdlib.h>
     79 #include <string.h>
     80 #include <unistd.h>
     81 
     82 #include <rump/rumpclient.h>
     83 
     84 #define HOSTOPS
     85 int	(*host_socket)(int, int, int);
     86 int	(*host_close)(int);
     87 int	(*host_connect)(int, const struct sockaddr *, socklen_t);
     88 int	(*host_fcntl)(int, int, ...);
     89 #ifdef __ANDROID__
     90 int	(*host_poll)(struct pollfd *, nfds_t, long);
     91 #else
     92 int	(*host_poll)(struct pollfd *, nfds_t, int);
     93 #endif
     94 ssize_t	(*host_read)(int, void *, size_t);
     95 #ifdef __ANDROID__
     96 int	(*host_sendmsg)(int, const struct msghdr *, unsigned int);
     97 #else
     98 ssize_t (*host_sendmsg)(int, const struct msghdr *, int);
     99 #endif
    100 int	(*host_setsockopt)(int, int, int, const void *, socklen_t);
    101 int	(*host_dup)(int);
    102 
    103 #ifdef USE_KQUEUE
    104 int	(*host_kqueue)(void);
    105 int	(*host_kevent)(int, const struct kevent *, size_t,
    106 		       struct kevent *, size_t, const struct timespec *);
    107 #endif
    108 
    109 #ifdef USE_SIGNALFD
    110 #include <sys/signalfd.h>
    111 
    112 int	(*host_signalfd)(int, const sigset_t *, int);
    113 #endif
    114 
    115 int	(*host_execve)(const char *, char *const[], char *const[]);
    116 
    117 #include "sp_common.c"
    118 #include "rumpuser_sigtrans.c"
    119 
    120 static struct spclient clispc = {
    121 	.spc_fd = -1,
    122 };
    123 
    124 static int holyfd = -1;
    125 static sigset_t fullset;
    126 
    127 static int doconnect(void);
    128 static int handshake_req(struct spclient *, int, void *, int, bool);
    129 
    130 /*
    131  * Default: don't retry.  Most clients can't handle it
    132  * (consider e.g. fds suddenly going missing).
    133  */
    134 static time_t retrytimo = 0;
    135 
    136 /* always defined to nothingness for now */
    137 #define ERRLOG(a)
    138 
    139 static int
    140 send_with_recon(struct spclient *spc, struct iovec *iov, size_t iovlen)
    141 {
    142 	struct timeval starttime, curtime;
    143 	time_t prevreconmsg;
    144 	unsigned reconretries;
    145 	int rv;
    146 
    147 	for (prevreconmsg = 0, reconretries = 0;;) {
    148 		rv = dosend(spc, iov, iovlen);
    149 		if (__predict_false(rv == ENOTCONN || rv == EBADF)) {
    150 			/* no persistent connections */
    151 			if (retrytimo == 0) {
    152 				rv = ENOTCONN;
    153 				break;
    154 			}
    155 			if (retrytimo == RUMPCLIENT_RETRYCONN_DIE)
    156 				_exit(1);
    157 
    158 			if (!prevreconmsg) {
    159 				prevreconmsg = time(NULL);
    160 				gettimeofday(&starttime, NULL);
    161 			}
    162 			if (reconretries == 1) {
    163 				if (retrytimo == RUMPCLIENT_RETRYCONN_ONCE) {
    164 					rv = ENOTCONN;
    165 					break;
    166 				}
    167 				fprintf(stderr, "rump_sp: connection to "
    168 				    "kernel lost, trying to reconnect ...\n");
    169 			} else if (time(NULL) - prevreconmsg > 120) {
    170 				fprintf(stderr, "rump_sp: still trying to "
    171 				    "reconnect ...\n");
    172 				prevreconmsg = time(NULL);
    173 			}
    174 
    175 			/* check that we aren't over the limit */
    176 			if (retrytimo > 0) {
    177 				time_t tdiff;
    178 
    179 				gettimeofday(&curtime, NULL);
    180 				tdiff = curtime.tv_sec - starttime.tv_sec;
    181 				if (starttime.tv_usec > curtime.tv_usec)
    182 					tdiff--;
    183 				if (tdiff >= retrytimo) {
    184 					fprintf(stderr, "rump_sp: reconnect "
    185 					    "failed, %lld second timeout\n",
    186 					    (long long)retrytimo);
    187 					return ENOTCONN;
    188 				}
    189 			}
    190 
    191 			/* adhoc backoff timer */
    192 			if (reconretries < 10) {
    193 				usleep(100000 * reconretries);
    194 			} else {
    195 				sleep(MIN(10, reconretries-9));
    196 			}
    197 			reconretries++;
    198 
    199 			if ((rv = doconnect()) != 0)
    200 				continue;
    201 			if ((rv = handshake_req(&clispc, HANDSHAKE_GUEST,
    202 			    NULL, 0, true)) != 0)
    203 				continue;
    204 
    205 			/*
    206 			 * ok, reconnect succesful.  we need to return to
    207 			 * the upper layer to get the entire PDU resent.
    208 			 */
    209 			if (reconretries != 1)
    210 				fprintf(stderr, "rump_sp: reconnected!\n");
    211 			rv = EAGAIN;
    212 			break;
    213 		} else {
    214 			_DIAGASSERT(errno != EAGAIN);
    215 			break;
    216 		}
    217 	}
    218 
    219 	return rv;
    220 }
    221 
    222 static int
    223 cliwaitresp(struct spclient *spc, struct respwait *rw, sigset_t *mask,
    224 	bool keeplock)
    225 {
    226 	uint64_t mygen;
    227 	bool imalive = true;
    228 
    229 	pthread_mutex_lock(&spc->spc_mtx);
    230 	if (!keeplock)
    231 		sendunlockl(spc);
    232 	mygen = spc->spc_generation;
    233 
    234 	rw->rw_error = 0;
    235 	while (!rw->rw_done && rw->rw_error == 0) {
    236 		if (__predict_false(spc->spc_generation != mygen || !imalive))
    237 			break;
    238 
    239 		/* are we free to receive? */
    240 		if (spc->spc_istatus == SPCSTATUS_FREE) {
    241 			int gotresp, dosig, rv;
    242 
    243 			spc->spc_istatus = SPCSTATUS_BUSY;
    244 			pthread_mutex_unlock(&spc->spc_mtx);
    245 
    246 			dosig = 0;
    247 			for (gotresp = 0; !gotresp; ) {
    248 #ifdef USE_KQUEUE
    249 				struct kevent kev[8];
    250 				int i;
    251 
    252 				/*
    253 				 * typically we don't have a frame waiting
    254 				 * when we come in here, so call kevent now
    255 				 */
    256 				rv = host_kevent(holyfd, NULL, 0,
    257 				    kev, __arraycount(kev), NULL);
    258 
    259 				if (__predict_false(rv == -1)) {
    260 					goto activity;
    261 				}
    262 
    263 				/*
    264 				 * XXX: don't know how this can happen
    265 				 * (timeout cannot expire since there
    266 				 * isn't one), but it does happen.
    267 				 * treat it as an expectional condition
    268 				 * and go through tryread to determine
    269 				 * alive status.
    270 				 */
    271 				if (__predict_false(rv == 0))
    272 					goto activity;
    273 
    274 				for (i = 0; i < rv; i++) {
    275 					if (kev[i].filter == EVFILT_SIGNAL)
    276 						dosig++;
    277 				}
    278 				if (dosig)
    279 					goto cleanup;
    280 
    281 				/*
    282 				 * ok, activity.  try to read a frame to
    283 				 * determine what happens next.
    284 				 */
    285  activity:
    286 #else /* !USE_KQUEUE */
    287 				struct pollfd pfd[2];
    288 
    289 				pfd[0].fd = clispc.spc_fd;
    290 				pfd[0].events = POLLIN;
    291 				pfd[1].fd = holyfd;
    292 				pfd[1].events = POLLIN;
    293 
    294 				rv = host_poll(pfd, 2, -1);
    295 				if (pfd[1].revents & POLLIN) {
    296 					dosig = 1;
    297 					goto cleanup;
    298 				}
    299 #endif /* !USE_KQUEUE */
    300 
    301 				switch (readframe(spc)) {
    302 				case 0:
    303 					continue;
    304 				case -1:
    305 					imalive = false;
    306 					goto cleanup;
    307 				default:
    308 					/* case 1 */
    309 					break;
    310 				}
    311 
    312 				switch (spc->spc_hdr.rsp_class) {
    313 				case RUMPSP_RESP:
    314 				case RUMPSP_ERROR:
    315 					kickwaiter(spc);
    316 					gotresp = spc->spc_hdr.rsp_reqno ==
    317 					    rw->rw_reqno;
    318 					break;
    319 				case RUMPSP_REQ:
    320 					handlereq(spc);
    321 					break;
    322 				default:
    323 					/* panic */
    324 					break;
    325 				}
    326 			}
    327 
    328  cleanup:
    329 			pthread_mutex_lock(&spc->spc_mtx);
    330 			if (spc->spc_istatus == SPCSTATUS_WANTED)
    331 				kickall(spc);
    332 			spc->spc_istatus = SPCSTATUS_FREE;
    333 
    334 			/* take one for the team */
    335 			if (dosig) {
    336 				pthread_mutex_unlock(&spc->spc_mtx);
    337 				pthread_sigmask(SIG_SETMASK, mask, NULL);
    338 				pthread_sigmask(SIG_SETMASK, &fullset, NULL);
    339 				pthread_mutex_lock(&spc->spc_mtx);
    340 			}
    341 		} else {
    342 			spc->spc_istatus = SPCSTATUS_WANTED;
    343 			pthread_cond_wait(&rw->rw_cv, &spc->spc_mtx);
    344 		}
    345 	}
    346 	TAILQ_REMOVE(&spc->spc_respwait, rw, rw_entries);
    347 	pthread_mutex_unlock(&spc->spc_mtx);
    348 	pthread_cond_destroy(&rw->rw_cv);
    349 
    350 	if (spc->spc_generation != mygen || !imalive) {
    351 		return ENOTCONN;
    352 	}
    353 	return rw->rw_error;
    354 }
    355 
    356 static int
    357 syscall_req(struct spclient *spc, sigset_t *omask, int sysnum,
    358 	const void *data, size_t dlen, void **resp)
    359 {
    360 	struct rsp_hdr rhdr;
    361 	struct respwait rw;
    362 	struct iovec iov[2];
    363 	int rv;
    364 
    365 	rhdr.rsp_len = sizeof(rhdr) + dlen;
    366 	rhdr.rsp_class = RUMPSP_REQ;
    367 	rhdr.rsp_type = RUMPSP_SYSCALL;
    368 	rhdr.rsp_sysnum = sysnum;
    369 
    370 	IOVPUT(iov[0], rhdr);
    371 	IOVPUT_WITHSIZE(iov[1], __UNCONST(data), dlen);
    372 
    373 	do {
    374 		putwait(spc, &rw, &rhdr);
    375 		if ((rv = send_with_recon(spc, iov, __arraycount(iov))) != 0) {
    376 			unputwait(spc, &rw);
    377 			continue;
    378 		}
    379 
    380 		rv = cliwaitresp(spc, &rw, omask, false);
    381 		if (rv == ENOTCONN)
    382 			rv = EAGAIN;
    383 	} while (rv == EAGAIN);
    384 
    385 	*resp = rw.rw_data;
    386 	return rv;
    387 }
    388 
    389 static int
    390 handshake_req(struct spclient *spc, int type, void *data,
    391 	int cancel, bool haslock)
    392 {
    393 	struct handshake_fork rf;
    394 	const char *myprogname = NULL; /* XXXgcc */
    395 	struct rsp_hdr rhdr;
    396 	struct respwait rw;
    397 	sigset_t omask;
    398 	size_t bonus;
    399 	struct iovec iov[2];
    400 	int rv;
    401 
    402 	if (type == HANDSHAKE_FORK) {
    403 		bonus = sizeof(rf);
    404 	} else {
    405 #ifdef __NetBSD__
    406 		/* would procfs work on NetBSD too? */
    407 		myprogname = getprogname();
    408 #else
    409 		int fd = open("/proc/self/comm", O_RDONLY);
    410 		if (fd == -1) {
    411 			myprogname = "???";
    412 		} else {
    413 			static char commname[128];
    414 
    415 			memset(commname, 0, sizeof(commname));
    416 			if (read(fd, commname, sizeof(commname)) > 0) {
    417 				char *n;
    418 
    419 				n = strrchr(commname, '\n');
    420 				if (n)
    421 					*n = '\0';
    422 				myprogname = commname;
    423 			} else {
    424 				myprogname = "???";
    425 			}
    426 			close(fd);
    427 		}
    428 #endif
    429 		bonus = strlen(myprogname)+1;
    430 	}
    431 
    432 	/* performs server handshake */
    433 	rhdr.rsp_len = sizeof(rhdr) + bonus;
    434 	rhdr.rsp_class = RUMPSP_REQ;
    435 	rhdr.rsp_type = RUMPSP_HANDSHAKE;
    436 	rhdr.rsp_handshake = type;
    437 
    438 	IOVPUT(iov[0], rhdr);
    439 
    440 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
    441 	if (haslock)
    442 		putwait_locked(spc, &rw, &rhdr);
    443 	else
    444 		putwait(spc, &rw, &rhdr);
    445 	if (type == HANDSHAKE_FORK) {
    446 		memcpy(rf.rf_auth, data, sizeof(rf.rf_auth)); /* uh, why? */
    447 		rf.rf_cancel = cancel;
    448 		IOVPUT(iov[1], rf);
    449 	} else {
    450 		IOVPUT_WITHSIZE(iov[1], __UNCONST(myprogname), bonus);
    451 	}
    452 	rv = send_with_recon(spc, iov, __arraycount(iov));
    453 	if (rv || cancel) {
    454 		if (haslock)
    455 			unputwait_locked(spc, &rw);
    456 		else
    457 			unputwait(spc, &rw);
    458 		if (cancel) {
    459 			goto out;
    460 		}
    461 	} else {
    462 		rv = cliwaitresp(spc, &rw, &omask, haslock);
    463 	}
    464 	if (rv)
    465 		goto out;
    466 
    467 	rv = *(int *)rw.rw_data;
    468 	free(rw.rw_data);
    469 
    470  out:
    471 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
    472 	return rv;
    473 }
    474 
    475 static int
    476 prefork_req(struct spclient *spc, sigset_t *omask, void **resp)
    477 {
    478 	struct rsp_hdr rhdr;
    479 	struct respwait rw;
    480 	struct iovec iov[1];
    481 	int rv;
    482 
    483 	rhdr.rsp_len = sizeof(rhdr);
    484 	rhdr.rsp_class = RUMPSP_REQ;
    485 	rhdr.rsp_type = RUMPSP_PREFORK;
    486 	rhdr.rsp_error = 0;
    487 
    488 	IOVPUT(iov[0], rhdr);
    489 
    490 	do {
    491 		putwait(spc, &rw, &rhdr);
    492 		rv = send_with_recon(spc, iov, __arraycount(iov));
    493 		if (rv != 0) {
    494 			unputwait(spc, &rw);
    495 			continue;
    496 		}
    497 
    498 		rv = cliwaitresp(spc, &rw, omask, false);
    499 		if (rv == ENOTCONN)
    500 			rv = EAGAIN;
    501 	} while (rv == EAGAIN);
    502 
    503 	*resp = rw.rw_data;
    504 	return rv;
    505 }
    506 
    507 /*
    508  * prevent response code from deadlocking with reconnect code
    509  */
    510 static int
    511 resp_sendlock(struct spclient *spc)
    512 {
    513 	int rv = 0;
    514 
    515 	pthread_mutex_lock(&spc->spc_mtx);
    516 	while (spc->spc_ostatus != SPCSTATUS_FREE) {
    517 		if (__predict_false(spc->spc_reconnecting)) {
    518 			rv = EBUSY;
    519 			goto out;
    520 		}
    521 		spc->spc_ostatus = SPCSTATUS_WANTED;
    522 		pthread_cond_wait(&spc->spc_cv, &spc->spc_mtx);
    523 	}
    524 	spc->spc_ostatus = SPCSTATUS_BUSY;
    525 
    526  out:
    527 	pthread_mutex_unlock(&spc->spc_mtx);
    528 	return rv;
    529 }
    530 
    531 static void
    532 send_copyin_resp(struct spclient *spc, uint64_t reqno, void *data, size_t dlen,
    533 	int wantstr)
    534 {
    535 	struct rsp_hdr rhdr;
    536 	struct iovec iov[2];
    537 
    538 	if (wantstr)
    539 		dlen = MIN(dlen, strlen(data)+1);
    540 
    541 	rhdr.rsp_len = sizeof(rhdr) + dlen;
    542 	rhdr.rsp_reqno = reqno;
    543 	rhdr.rsp_class = RUMPSP_RESP;
    544 	rhdr.rsp_type = RUMPSP_COPYIN;
    545 	rhdr.rsp_sysnum = 0;
    546 
    547 	IOVPUT(iov[0], rhdr);
    548 	IOVPUT_WITHSIZE(iov[1], data, dlen);
    549 
    550 	if (resp_sendlock(spc) != 0)
    551 		return;
    552 	(void)SENDIOV(spc, iov);
    553 	sendunlock(spc);
    554 }
    555 
    556 static void
    557 send_anonmmap_resp(struct spclient *spc, uint64_t reqno, void *addr)
    558 {
    559 	struct rsp_hdr rhdr;
    560 	struct iovec iov[2];
    561 
    562 	rhdr.rsp_len = sizeof(rhdr) + sizeof(addr);
    563 	rhdr.rsp_reqno = reqno;
    564 	rhdr.rsp_class = RUMPSP_RESP;
    565 	rhdr.rsp_type = RUMPSP_ANONMMAP;
    566 	rhdr.rsp_sysnum = 0;
    567 
    568 	IOVPUT(iov[0], rhdr);
    569 	IOVPUT(iov[1], addr);
    570 
    571 	if (resp_sendlock(spc) != 0)
    572 		return;
    573 	(void)SENDIOV(spc, iov);
    574 	sendunlock(spc);
    575 }
    576 
    577 int
    578 rumpclient_syscall(int sysnum, const void *data, size_t dlen,
    579 	register_t *retval)
    580 {
    581 	struct rsp_sysresp *resp;
    582 	sigset_t omask;
    583 	void *rdata;
    584 	int rv;
    585 
    586 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
    587 
    588 	DPRINTF(("rumpsp syscall_req: syscall %d with %p/%zu\n",
    589 	    sysnum, data, dlen));
    590 
    591 	rv = syscall_req(&clispc, &omask, sysnum, data, dlen, &rdata);
    592 	if (rv)
    593 		goto out;
    594 
    595 	resp = rdata;
    596 	DPRINTF(("rumpsp syscall_resp: syscall %d error %d, rv: %d/%d\n",
    597 	    sysnum, rv, resp->rsys_retval[0], resp->rsys_retval[1]));
    598 
    599 	memcpy(retval, &resp->rsys_retval, sizeof(resp->rsys_retval));
    600 	rv = resp->rsys_error;
    601 	free(rdata);
    602 
    603  out:
    604 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
    605 	return rv;
    606 }
    607 
    608 static void
    609 handlereq(struct spclient *spc)
    610 {
    611 	struct rsp_copydata *copydata;
    612 	struct rsp_hdr *rhdr = &spc->spc_hdr;
    613 	void *mapaddr;
    614 	size_t maplen;
    615 	int reqtype = spc->spc_hdr.rsp_type;
    616 	int sig;
    617 
    618 	switch (reqtype) {
    619 	case RUMPSP_COPYIN:
    620 	case RUMPSP_COPYINSTR:
    621 		/*LINTED*/
    622 		copydata = (struct rsp_copydata *)spc->spc_buf;
    623 		DPRINTF(("rump_sp handlereq: copyin request: %p/%zu\n",
    624 		    copydata->rcp_addr, copydata->rcp_len));
    625 		send_copyin_resp(spc, spc->spc_hdr.rsp_reqno,
    626 		    copydata->rcp_addr, copydata->rcp_len,
    627 		    reqtype == RUMPSP_COPYINSTR);
    628 		break;
    629 	case RUMPSP_COPYOUT:
    630 	case RUMPSP_COPYOUTSTR:
    631 		/*LINTED*/
    632 		copydata = (struct rsp_copydata *)spc->spc_buf;
    633 		DPRINTF(("rump_sp handlereq: copyout request: %p/%zu\n",
    634 		    copydata->rcp_addr, copydata->rcp_len));
    635 		/*LINTED*/
    636 		memcpy(copydata->rcp_addr, copydata->rcp_data,
    637 		    copydata->rcp_len);
    638 		break;
    639 	case RUMPSP_ANONMMAP:
    640 		/*LINTED*/
    641 		maplen = *(size_t *)spc->spc_buf;
    642 		mapaddr = mmap(NULL, maplen, PROT_READ|PROT_WRITE,
    643 		    MAP_ANON|MAP_PRIVATE, -1, 0);
    644 		if (mapaddr == MAP_FAILED)
    645 			mapaddr = NULL;
    646 		DPRINTF(("rump_sp handlereq: anonmmap: %p\n", mapaddr));
    647 		send_anonmmap_resp(spc, spc->spc_hdr.rsp_reqno, mapaddr);
    648 		break;
    649 	case RUMPSP_RAISE:
    650 		sig = rumpuser__sig_rump2host(rhdr->rsp_signo);
    651 		DPRINTF(("rump_sp handlereq: raise sig %d\n", sig));
    652 		raise(sig);
    653 		/*
    654 		 * We most likely have signals blocked, but the signal
    655 		 * will be handled soon enough when we return.
    656 		 */
    657 		break;
    658 	default:
    659 		printf("PANIC: INVALID TYPE %d\n", reqtype);
    660 		abort();
    661 		break;
    662 	}
    663 
    664 	spcfreebuf(spc);
    665 }
    666 
    667 static unsigned ptab_idx;
    668 static struct sockaddr *serv_sa;
    669 
    670 /* dup until we get a "good" fd which does not collide with stdio */
    671 static int
    672 dupgood(int myfd, int mustchange)
    673 {
    674 	int ofds[4];
    675 	int sverrno;
    676 	unsigned int i;
    677 
    678 	for (i = 0; (myfd <= 2 || mustchange) && myfd != -1; i++) {
    679 		assert(i < __arraycount(ofds));
    680 		ofds[i] = myfd;
    681 		myfd = host_dup(myfd);
    682 		if (mustchange) {
    683 			i--; /* prevent closing old fd */
    684 			mustchange = 0;
    685 		}
    686 	}
    687 
    688 	sverrno = 0;
    689 	if (myfd == -1 && i > 0)
    690 		sverrno = errno;
    691 
    692 	while (i-- > 0) {
    693 		host_close(ofds[i]);
    694 	}
    695 
    696 	if (sverrno)
    697 		errno = sverrno;
    698 
    699 	return myfd;
    700 }
    701 
    702 #if defined(USE_KQUEUE)
    703 
    704 static int
    705 makeholyfd(void)
    706 {
    707 	struct kevent kev[NSIG+1];
    708 	int i, fd;
    709 
    710 	/* setup kqueue, we want all signals and the fd */
    711 	if ((fd = dupgood(host_kqueue(), 0)) == -1) {
    712 		ERRLOG(("rump_sp: cannot setup kqueue"));
    713 		return -1;
    714 	}
    715 
    716 	for (i = 0; i < NSIG; i++) {
    717 		EV_SET(&kev[i], i+1, EVFILT_SIGNAL, EV_ADD|EV_ENABLE, 0, 0, 0);
    718 	}
    719 	EV_SET(&kev[NSIG], clispc.spc_fd,
    720 	    EVFILT_READ, EV_ADD|EV_ENABLE, 0, 0, 0);
    721 	if (host_kevent(fd, kev, NSIG+1, NULL, 0, NULL) == -1) {
    722 		ERRLOG(("rump_sp: kevent() failed"));
    723 		host_close(fd);
    724 		return -1;
    725 	}
    726 
    727 	return fd;
    728 }
    729 
    730 #elif defined(USE_SIGNALFD) /* !USE_KQUEUE */
    731 
    732 static int
    733 makeholyfd(void)
    734 {
    735 
    736 	return host_signalfd(-1, &fullset, 0);
    737 }
    738 
    739 #else /* !USE_KQUEUE && !USE_SIGNALFD */
    740 
    741 static int
    742 makeholyfd(void)
    743 {
    744 
    745 	return -1;
    746 }
    747 
    748 #endif
    749 
    750 static int
    751 doconnect(void)
    752 {
    753 	struct respwait rw;
    754 	struct rsp_hdr rhdr;
    755 	char banner[MAXBANNER];
    756 	int s, error, flags;
    757 	ssize_t n;
    758 
    759 	if (holyfd != -1)
    760 		host_close(holyfd);
    761 	holyfd = -1;
    762 	s = -1;
    763 
    764 	if (clispc.spc_fd != -1)
    765 		host_close(clispc.spc_fd);
    766 	clispc.spc_fd = -1;
    767 
    768 	/*
    769 	 * for reconnect, gate everyone out of the receiver code
    770 	 */
    771 	putwait_locked(&clispc, &rw, &rhdr);
    772 
    773 	pthread_mutex_lock(&clispc.spc_mtx);
    774 	clispc.spc_reconnecting = 1;
    775 	pthread_cond_broadcast(&clispc.spc_cv);
    776 	clispc.spc_generation++;
    777 	while (clispc.spc_istatus != SPCSTATUS_FREE) {
    778 		clispc.spc_istatus = SPCSTATUS_WANTED;
    779 		pthread_cond_wait(&rw.rw_cv, &clispc.spc_mtx);
    780 	}
    781 	kickall(&clispc);
    782 
    783 	/*
    784 	 * we can release it already since we hold the
    785 	 * send lock during reconnect
    786 	 * XXX: assert it
    787 	 */
    788 	clispc.spc_istatus = SPCSTATUS_FREE;
    789 	pthread_mutex_unlock(&clispc.spc_mtx);
    790 	unputwait_locked(&clispc, &rw);
    791 
    792 	free(clispc.spc_buf);
    793 	clispc.spc_off = 0;
    794 
    795 	s = dupgood(host_socket(parsetab[ptab_idx].domain, SOCK_STREAM, 0), 0);
    796 	if (s == -1)
    797 		return -1;
    798 
    799 	while (host_connect(s, serv_sa, parsetab[ptab_idx].slen) == -1) {
    800 		if (errno == EINTR)
    801 			continue;
    802 		ERRLOG(("rump_sp: client connect failed: %s\n",
    803 		    strerror(errno)));
    804 		return -1;
    805 	}
    806 
    807 	if ((error = parsetab[ptab_idx].connhook(s)) != 0) {
    808 		ERRLOG(("rump_sp: connect hook failed\n"));
    809 		return -1;
    810 	}
    811 
    812 	if ((n = host_read(s, banner, sizeof(banner)-1)) <= 0) {
    813 		ERRLOG(("rump_sp: failed to read banner\n"));
    814 		return -1;
    815 	}
    816 
    817 	if (banner[n-1] != '\n') {
    818 		ERRLOG(("rump_sp: invalid banner\n"));
    819 		return -1;
    820 	}
    821 	banner[n] = '\0';
    822 	/* XXX parse the banner some day */
    823 
    824 	flags = host_fcntl(s, F_GETFL, 0);
    825 	if (host_fcntl(s, F_SETFL, flags | O_NONBLOCK) == -1) {
    826 		ERRLOG(("rump_sp: socket fd NONBLOCK: %s\n", strerror(errno)));
    827 		return -1;
    828 	}
    829 	clispc.spc_fd = s;
    830 	clispc.spc_state = SPCSTATE_RUNNING;
    831 	clispc.spc_reconnecting = 0;
    832 	holyfd = makeholyfd();
    833 
    834 	return 0;
    835 }
    836 
    837 static int
    838 doinit(void)
    839 {
    840 
    841 	TAILQ_INIT(&clispc.spc_respwait);
    842 	pthread_mutex_init(&clispc.spc_mtx, NULL);
    843 	pthread_cond_init(&clispc.spc_cv, NULL);
    844 
    845 	return 0;
    846 }
    847 
    848 #ifdef RTLD_NEXT
    849 void *rumpclient__dlsym(void *, const char *);
    850 void *
    851 rumpclient__dlsym(void *handle, const char *symbol)
    852 {
    853 
    854 	return dlsym(handle, symbol);
    855 }
    856 void *rumphijack_dlsym(void *, const char *)
    857     __attribute__((__weak__, alias("rumpclient__dlsym")));
    858 #endif
    859 
    860 static pid_t init_done = 0;
    861 
    862 int
    863 rumpclient_init(void)
    864 {
    865 	char *p;
    866 	int error;
    867 	int rv = -1;
    868 	int hstype;
    869 	pid_t mypid;
    870 
    871 	/*
    872 	 * Make sure we're not riding the context of a previous
    873 	 * host fork.  Note: it's *possible* that after n>1 forks
    874 	 * we have the same pid as one of our exited parents, but
    875 	 * I'm pretty sure there are 0 practical implications, since
    876 	 * it means generations would have to skip rumpclient init.
    877 	 */
    878 	if (init_done == (mypid = getpid()))
    879 		return 0;
    880 
    881 #ifdef USE_KQUEUE
    882 	/* kq does not traverse fork() */
    883 	holyfd = -1;
    884 #endif
    885 	init_done = mypid;
    886 
    887 	sigfillset(&fullset);
    888 
    889 	/*
    890 	 * sag mir, wo die symbols sind.  zogen fort, der krieg beginnt.
    891 	 * wann wird man je verstehen?  wann wird man je verstehen?
    892 	 */
    893 #ifdef RTLD_NEXT
    894 #define FINDSYM2(_name_,_syscall_)					\
    895 	if ((host_##_name_ = rumphijack_dlsym(RTLD_NEXT,		\
    896 	    #_syscall_)) == NULL) {					\
    897 		if (rumphijack_dlsym == rumpclient__dlsym)		\
    898 			host_##_name_ = _name_; /* static fallback */	\
    899 		if (host_##_name_ == NULL) {				\
    900 			fprintf(stderr,"cannot find %s: %s", #_syscall_,\
    901 			    dlerror());					\
    902 			exit(1);					\
    903 		}							\
    904 	}
    905 #else
    906 #define FINDSYM2(_name_,_syscall)					\
    907 	host_##_name_ = _name_;
    908 #endif
    909 #define FINDSYM(_name_) FINDSYM2(_name_,_name_)
    910 #ifdef __NetBSD__
    911 	FINDSYM2(socket,__socket30)
    912 #else
    913 	FINDSYM(socket)
    914 #endif
    915 
    916 	FINDSYM(close)
    917 	FINDSYM(connect)
    918 	FINDSYM(fcntl)
    919 	FINDSYM(poll)
    920 	FINDSYM(read)
    921 	FINDSYM(sendmsg)
    922 	FINDSYM(setsockopt)
    923 	FINDSYM(dup)
    924 	FINDSYM(execve)
    925 
    926 #ifdef USE_KQUEUE
    927 	FINDSYM(kqueue)
    928 #if !__NetBSD_Prereq__(5,99,7)
    929 	FINDSYM(kevent)
    930 #else
    931 	FINDSYM2(kevent,_sys___kevent50)
    932 #endif
    933 #endif /* USE_KQUEUE */
    934 
    935 #ifdef USE_SIGNALFD
    936 	FINDSYM(signalfd)
    937 #endif
    938 
    939 #undef	FINDSYM
    940 #undef	FINDSY2
    941 
    942 	if ((p = getenv("RUMP__PARSEDSERVER")) == NULL) {
    943 		if ((p = getenv("RUMP_SERVER")) == NULL) {
    944 			fprintf(stderr, "error: RUMP_SERVER not set\n");
    945 			errno = ENOENT;
    946 			goto out;
    947 		}
    948 	}
    949 
    950 	if ((error = parseurl(p, &serv_sa, &ptab_idx, 0)) != 0) {
    951 		errno = error;
    952 		goto out;
    953 	}
    954 
    955 	if (doinit() == -1)
    956 		goto out;
    957 
    958 	if ((p = getenv("RUMPCLIENT__EXECFD")) != NULL) {
    959 		sscanf(p, "%d,%d", &clispc.spc_fd, &holyfd);
    960 		unsetenv("RUMPCLIENT__EXECFD");
    961 		hstype = HANDSHAKE_EXEC;
    962 	} else {
    963 		if (doconnect() == -1)
    964 			goto out;
    965 		hstype = HANDSHAKE_GUEST;
    966 	}
    967 
    968 	error = handshake_req(&clispc, hstype, NULL, 0, false);
    969 	if (error) {
    970 		pthread_mutex_destroy(&clispc.spc_mtx);
    971 		pthread_cond_destroy(&clispc.spc_cv);
    972 		if (clispc.spc_fd != -1)
    973 			host_close(clispc.spc_fd);
    974 		errno = error;
    975 		goto out;
    976 	}
    977 	rv = 0;
    978 
    979  out:
    980 	if (rv == -1)
    981 		init_done = 0;
    982 	return rv;
    983 }
    984 
    985 struct rumpclient_fork {
    986 	uint32_t fork_auth[AUTHLEN];
    987 	struct spclient fork_spc;
    988 	int fork_holyfd;
    989 };
    990 
    991 struct rumpclient_fork *
    992 rumpclient_prefork(void)
    993 {
    994 	struct rumpclient_fork *rpf;
    995 	sigset_t omask;
    996 	void *resp;
    997 	int rv;
    998 
    999 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
   1000 	rpf = malloc(sizeof(*rpf));
   1001 	if (rpf == NULL)
   1002 		goto out;
   1003 
   1004 	if ((rv = prefork_req(&clispc, &omask, &resp)) != 0) {
   1005 		free(rpf);
   1006 		errno = rv;
   1007 		rpf = NULL;
   1008 		goto out;
   1009 	}
   1010 
   1011 	memcpy(rpf->fork_auth, resp, sizeof(rpf->fork_auth));
   1012 	free(resp);
   1013 
   1014 	rpf->fork_spc = clispc;
   1015 	rpf->fork_holyfd = holyfd;
   1016 
   1017  out:
   1018 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
   1019 	return rpf;
   1020 }
   1021 
   1022 int
   1023 rumpclient_fork_init(struct rumpclient_fork *rpf)
   1024 {
   1025 	int error;
   1026 	int osock;
   1027 
   1028 	osock = clispc.spc_fd;
   1029 	memset(&clispc, 0, sizeof(clispc));
   1030 	clispc.spc_fd = osock;
   1031 
   1032 #ifdef USE_KQUEUE
   1033 	holyfd = -1; /* kqueue descriptor is not copied over fork() */
   1034 #else
   1035 	if (holyfd != -1) {
   1036 		host_close(holyfd);
   1037 		holyfd = -1;
   1038 	}
   1039 #endif
   1040 
   1041 	if (doinit() == -1)
   1042 		return -1;
   1043 	if (doconnect() == -1)
   1044 		return -1;
   1045 
   1046 	error = handshake_req(&clispc, HANDSHAKE_FORK, rpf->fork_auth,
   1047 	    0, false);
   1048 	if (error) {
   1049 		pthread_mutex_destroy(&clispc.spc_mtx);
   1050 		pthread_cond_destroy(&clispc.spc_cv);
   1051 		errno = error;
   1052 		return -1;
   1053 	}
   1054 
   1055 	return 0;
   1056 }
   1057 
   1058 /*ARGSUSED*/
   1059 void
   1060 rumpclient_fork_cancel(struct rumpclient_fork *rpf)
   1061 {
   1062 
   1063 	/* EUNIMPL */
   1064 }
   1065 
   1066 void
   1067 rumpclient_fork_vparent(struct rumpclient_fork *rpf)
   1068 {
   1069 
   1070 	clispc = rpf->fork_spc;
   1071 	holyfd = rpf->fork_holyfd;
   1072 }
   1073 
   1074 void
   1075 rumpclient_setconnretry(time_t timeout)
   1076 {
   1077 
   1078 	if (timeout < RUMPCLIENT_RETRYCONN_DIE)
   1079 		return; /* gigo */
   1080 
   1081 	retrytimo = timeout;
   1082 }
   1083 
   1084 int
   1085 rumpclient__closenotify(int *fdp, enum rumpclient_closevariant variant)
   1086 {
   1087 	int fd = *fdp;
   1088 	int untilfd, rv;
   1089 	int newfd;
   1090 
   1091 	switch (variant) {
   1092 	case RUMPCLIENT_CLOSE_FCLOSEM:
   1093 		untilfd = MAX(clispc.spc_fd, holyfd);
   1094 		for (; fd <= untilfd; fd++) {
   1095 			if (fd == clispc.spc_fd || fd == holyfd)
   1096 				continue;
   1097 			rv = host_close(fd);
   1098 			if (rv == -1)
   1099 				return -1;
   1100 		}
   1101 		*fdp = fd;
   1102 		break;
   1103 
   1104 	case RUMPCLIENT_CLOSE_CLOSE:
   1105 	case RUMPCLIENT_CLOSE_DUP2:
   1106 		if (fd == clispc.spc_fd) {
   1107 			newfd = dupgood(clispc.spc_fd, 1);
   1108 			if (newfd == -1)
   1109 				return -1;
   1110 
   1111 #ifdef USE_KQUEUE
   1112 			{
   1113 			struct kevent kev[2];
   1114 
   1115 			/*
   1116 			 * now, we have a new socket number, so change
   1117 			 * the file descriptor that kqueue is
   1118 			 * monitoring.  remove old and add new.
   1119 			 */
   1120 			EV_SET(&kev[0], clispc.spc_fd,
   1121 			    EVFILT_READ, EV_DELETE, 0, 0, 0);
   1122 			EV_SET(&kev[1], newfd,
   1123 			    EVFILT_READ, EV_ADD|EV_ENABLE, 0, 0, 0);
   1124 			if (host_kevent(holyfd, kev, 2, NULL, 0, NULL) == -1) {
   1125 				int sverrno = errno;
   1126 				host_close(newfd);
   1127 				errno = sverrno;
   1128 				return -1;
   1129 			}}
   1130 #endif /* !USE_KQUEUE */
   1131 			clispc.spc_fd = newfd;
   1132 		}
   1133 		if (holyfd != -1 && fd == holyfd) {
   1134 			newfd = dupgood(holyfd, 1);
   1135 			if (newfd == -1)
   1136 				return -1;
   1137 			holyfd = newfd;
   1138 		}
   1139 		break;
   1140 	}
   1141 
   1142 	return 0;
   1143 }
   1144 
   1145 pid_t
   1146 rumpclient_fork(void)
   1147 {
   1148 
   1149 	return rumpclient__dofork(fork);
   1150 }
   1151 
   1152 /*
   1153  * Process is about to exec.  Save info about our existing connection
   1154  * in the env.  rumpclient will check for this info in init().
   1155  * This is mostly for the benefit of rumphijack, but regular applications
   1156  * may use it as well.
   1157  */
   1158 int
   1159 rumpclient_exec(const char *path, char *const argv[], char *const envp[])
   1160 {
   1161 	char buf[4096];
   1162 	char **newenv;
   1163 	char *envstr, *envstr2;
   1164 	size_t nelem;
   1165 	int rv, sverrno;
   1166 
   1167 	snprintf(buf, sizeof(buf), "RUMPCLIENT__EXECFD=%d,%d",
   1168 	    clispc.spc_fd, holyfd);
   1169 	envstr = malloc(strlen(buf)+1);
   1170 	if (envstr == NULL) {
   1171 		return ENOMEM;
   1172 	}
   1173 	strcpy(envstr, buf);
   1174 
   1175 	/* do we have a fully parsed url we want to forward in the env? */
   1176 	if (*parsedurl != '\0') {
   1177 		snprintf(buf, sizeof(buf),
   1178 		    "RUMP__PARSEDSERVER=%s", parsedurl);
   1179 		envstr2 = malloc(strlen(buf)+1);
   1180 		if (envstr2 == NULL) {
   1181 			free(envstr);
   1182 			return ENOMEM;
   1183 		}
   1184 		strcpy(envstr2, buf);
   1185 	} else {
   1186 		envstr2 = NULL;
   1187 	}
   1188 
   1189 	for (nelem = 0; envp && envp[nelem]; nelem++)
   1190 		continue;
   1191 
   1192 	newenv = malloc(sizeof(*newenv) * (nelem+3));
   1193 	if (newenv == NULL) {
   1194 		free(envstr2);
   1195 		free(envstr);
   1196 		return ENOMEM;
   1197 	}
   1198 	memcpy(&newenv[0], envp, nelem*sizeof(*envp));
   1199 
   1200 	newenv[nelem] = envstr;
   1201 	newenv[nelem+1] = envstr2;
   1202 	newenv[nelem+2] = NULL;
   1203 
   1204 	rv = host_execve(path, argv, newenv);
   1205 
   1206 	_DIAGASSERT(rv != 0);
   1207 	sverrno = errno;
   1208 	free(envstr2);
   1209 	free(envstr);
   1210 	free(newenv);
   1211 	errno = sverrno;
   1212 	return rv;
   1213 }
   1214 
   1215 /*
   1216  * daemon() is handwritten for the benefit of platforms which
   1217  * do not support daemon().
   1218  */
   1219 int
   1220 rumpclient_daemon(int nochdir, int noclose)
   1221 {
   1222 	struct rumpclient_fork *rf;
   1223 	int sverrno;
   1224 
   1225 	if ((rf = rumpclient_prefork()) == NULL)
   1226 		return -1;
   1227 
   1228 	switch (fork()) {
   1229 	case 0:
   1230 		break;
   1231 	case -1:
   1232 		goto daemonerr;
   1233 	default:
   1234 		_exit(0);
   1235 	}
   1236 
   1237 	if (setsid() == -1)
   1238 		goto daemonerr;
   1239 	if (!nochdir && chdir("/") == -1)
   1240 		goto daemonerr;
   1241 	if (!noclose) {
   1242 		int fd = open("/dev/null", O_RDWR);
   1243 		dup2(fd, 0);
   1244 		dup2(fd, 1);
   1245 		dup2(fd, 2);
   1246 		if (fd > 2)
   1247 			close(fd);
   1248 	}
   1249 
   1250 	/* note: fork is either completed or cancelled by the call */
   1251 	if (rumpclient_fork_init(rf) == -1)
   1252 		return -1;
   1253 
   1254 	return 0;
   1255 
   1256  daemonerr:
   1257 	sverrno = errno;
   1258 	rumpclient_fork_cancel(rf);
   1259 	errno = sverrno;
   1260 	return -1;
   1261 }
   1262