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rumpclient.c revision 1.48
      1  1.48   matt /*      $NetBSD: rumpclient.c,v 1.48 2012/03/21 10:10:37 matt Exp $	*/
      2   1.1  pooka 
      3   1.1  pooka /*
      4  1.11  pooka  * Copyright (c) 2010, 2011 Antti Kantee.  All Rights Reserved.
      5   1.1  pooka  *
      6   1.1  pooka  * Redistribution and use in source and binary forms, with or without
      7   1.1  pooka  * modification, are permitted provided that the following conditions
      8   1.1  pooka  * are met:
      9   1.1  pooka  * 1. Redistributions of source code must retain the above copyright
     10   1.1  pooka  *    notice, this list of conditions and the following disclaimer.
     11   1.1  pooka  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.1  pooka  *    notice, this list of conditions and the following disclaimer in the
     13   1.1  pooka  *    documentation and/or other materials provided with the distribution.
     14   1.1  pooka  *
     15   1.1  pooka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     16   1.1  pooka  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     17   1.1  pooka  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     18   1.1  pooka  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     19   1.1  pooka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     20   1.1  pooka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     21   1.1  pooka  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     22   1.1  pooka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     23   1.1  pooka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24   1.1  pooka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25   1.1  pooka  * SUCH DAMAGE.
     26   1.1  pooka  */
     27   1.1  pooka 
     28   1.1  pooka /*
     29   1.1  pooka  * Client side routines for rump syscall proxy.
     30   1.1  pooka  */
     31   1.1  pooka 
     32   1.1  pooka #include <sys/cdefs.h>
     33  1.48   matt __RCSID("$NetBSD: rumpclient.c,v 1.48 2012/03/21 10:10:37 matt Exp $");
     34   1.1  pooka 
     35   1.5  pooka #include <sys/param.h>
     36  1.15  pooka #include <sys/event.h>
     37   1.1  pooka #include <sys/mman.h>
     38   1.1  pooka #include <sys/socket.h>
     39   1.1  pooka 
     40   1.1  pooka #include <arpa/inet.h>
     41   1.1  pooka #include <netinet/in.h>
     42   1.1  pooka #include <netinet/tcp.h>
     43   1.1  pooka 
     44   1.1  pooka #include <assert.h>
     45  1.13  pooka #include <dlfcn.h>
     46  1.34  pooka #include <err.h>
     47   1.1  pooka #include <errno.h>
     48   1.1  pooka #include <fcntl.h>
     49  1.13  pooka #include <link.h>
     50   1.1  pooka #include <poll.h>
     51   1.1  pooka #include <pthread.h>
     52  1.11  pooka #include <signal.h>
     53   1.1  pooka #include <stdarg.h>
     54  1.18  pooka #include <stdbool.h>
     55   1.1  pooka #include <stdio.h>
     56   1.1  pooka #include <stdlib.h>
     57   1.1  pooka #include <string.h>
     58   1.1  pooka #include <unistd.h>
     59   1.1  pooka 
     60   1.1  pooka #include <rump/rumpclient.h>
     61   1.1  pooka 
     62  1.13  pooka #define HOSTOPS
     63  1.13  pooka int	(*host_socket)(int, int, int);
     64  1.13  pooka int	(*host_close)(int);
     65  1.13  pooka int	(*host_connect)(int, const struct sockaddr *, socklen_t);
     66  1.15  pooka int	(*host_fcntl)(int, int, ...);
     67  1.13  pooka int	(*host_poll)(struct pollfd *, nfds_t, int);
     68  1.13  pooka ssize_t	(*host_read)(int, void *, size_t);
     69  1.39  pooka ssize_t (*host_sendmsg)(int, const struct msghdr *, int);
     70  1.13  pooka int	(*host_setsockopt)(int, int, int, const void *, socklen_t);
     71  1.27  pooka int	(*host_dup)(int);
     72  1.13  pooka 
     73  1.17  pooka int	(*host_kqueue)(void);
     74  1.17  pooka int	(*host_kevent)(int, const struct kevent *, size_t,
     75  1.17  pooka 		       struct kevent *, size_t, const struct timespec *);
     76  1.17  pooka 
     77  1.30  pooka int	(*host_execve)(const char *, char *const[], char *const[]);
     78  1.30  pooka 
     79   1.1  pooka #include "sp_common.c"
     80   1.1  pooka 
     81  1.11  pooka static struct spclient clispc = {
     82  1.11  pooka 	.spc_fd = -1,
     83  1.11  pooka };
     84   1.1  pooka 
     85  1.18  pooka static int kq = -1;
     86  1.15  pooka static sigset_t fullset;
     87  1.12  pooka 
     88  1.44  pooka static int doconnect(void);
     89  1.29  pooka static int handshake_req(struct spclient *, int, void *, int, bool);
     90  1.18  pooka 
     91  1.32  pooka /*
     92  1.32  pooka  * Default: don't retry.  Most clients can't handle it
     93  1.32  pooka  * (consider e.g. fds suddenly going missing).
     94  1.32  pooka  */
     95  1.32  pooka static time_t retrytimo = 0;
     96  1.18  pooka 
     97  1.44  pooka /* always defined to nothingness for now */
     98  1.44  pooka #define ERRLOG(a)
     99  1.44  pooka 
    100  1.18  pooka static int
    101  1.39  pooka send_with_recon(struct spclient *spc, struct iovec *iov, size_t iovlen)
    102  1.18  pooka {
    103  1.20  pooka 	struct timeval starttime, curtime;
    104  1.20  pooka 	time_t prevreconmsg;
    105  1.20  pooka 	unsigned reconretries;
    106  1.18  pooka 	int rv;
    107  1.18  pooka 
    108  1.20  pooka 	for (prevreconmsg = 0, reconretries = 0;;) {
    109  1.39  pooka 		rv = dosend(spc, iov, iovlen);
    110  1.18  pooka 		if (__predict_false(rv == ENOTCONN || rv == EBADF)) {
    111  1.20  pooka 			/* no persistent connections */
    112  1.32  pooka 			if (retrytimo == 0) {
    113  1.32  pooka 				rv = ENOTCONN;
    114  1.20  pooka 				break;
    115  1.32  pooka 			}
    116  1.24  pooka 			if (retrytimo == RUMPCLIENT_RETRYCONN_DIE)
    117  1.43  pooka 				_exit(1);
    118  1.20  pooka 
    119  1.20  pooka 			if (!prevreconmsg) {
    120  1.20  pooka 				prevreconmsg = time(NULL);
    121  1.20  pooka 				gettimeofday(&starttime, NULL);
    122  1.20  pooka 			}
    123  1.20  pooka 			if (reconretries == 1) {
    124  1.20  pooka 				if (retrytimo == RUMPCLIENT_RETRYCONN_ONCE) {
    125  1.20  pooka 					rv = ENOTCONN;
    126  1.20  pooka 					break;
    127  1.20  pooka 				}
    128  1.20  pooka 				fprintf(stderr, "rump_sp: connection to "
    129  1.20  pooka 				    "kernel lost, trying to reconnect ...\n");
    130  1.20  pooka 			} else if (time(NULL) - prevreconmsg > 120) {
    131  1.20  pooka 				fprintf(stderr, "rump_sp: still trying to "
    132  1.20  pooka 				    "reconnect ...\n");
    133  1.20  pooka 				prevreconmsg = time(NULL);
    134  1.20  pooka 			}
    135  1.20  pooka 
    136  1.20  pooka 			/* check that we aren't over the limit */
    137  1.20  pooka 			if (retrytimo > 0) {
    138  1.20  pooka 				struct timeval tmp;
    139  1.20  pooka 
    140  1.20  pooka 				gettimeofday(&curtime, NULL);
    141  1.20  pooka 				timersub(&curtime, &starttime, &tmp);
    142  1.20  pooka 				if (tmp.tv_sec >= retrytimo) {
    143  1.20  pooka 					fprintf(stderr, "rump_sp: reconnect "
    144  1.20  pooka 					    "failed, %lld second timeout\n",
    145  1.20  pooka 					    (long long)retrytimo);
    146  1.20  pooka 					return ENOTCONN;
    147  1.20  pooka 				}
    148  1.20  pooka 			}
    149  1.20  pooka 
    150  1.20  pooka 			/* adhoc backoff timer */
    151  1.20  pooka 			if (reconretries < 10) {
    152  1.20  pooka 				usleep(100000 * reconretries);
    153  1.20  pooka 			} else {
    154  1.20  pooka 				sleep(MIN(10, reconretries-9));
    155  1.20  pooka 			}
    156  1.20  pooka 			reconretries++;
    157  1.20  pooka 
    158  1.44  pooka 			if ((rv = doconnect()) != 0)
    159  1.18  pooka 				continue;
    160  1.29  pooka 			if ((rv = handshake_req(&clispc, HANDSHAKE_GUEST,
    161  1.29  pooka 			    NULL, 0, true)) != 0)
    162  1.18  pooka 				continue;
    163  1.20  pooka 
    164  1.20  pooka 			/*
    165  1.20  pooka 			 * ok, reconnect succesful.  we need to return to
    166  1.20  pooka 			 * the upper layer to get the entire PDU resent.
    167  1.20  pooka 			 */
    168  1.20  pooka 			if (reconretries != 1)
    169  1.20  pooka 				fprintf(stderr, "rump_sp: reconnected!\n");
    170  1.20  pooka 			rv = EAGAIN;
    171  1.20  pooka 			break;
    172  1.20  pooka 		} else {
    173  1.20  pooka 			_DIAGASSERT(errno != EAGAIN);
    174  1.18  pooka 			break;
    175  1.18  pooka 		}
    176  1.20  pooka 	}
    177  1.18  pooka 
    178  1.18  pooka 	return rv;
    179  1.18  pooka }
    180  1.18  pooka 
    181  1.12  pooka static int
    182  1.18  pooka cliwaitresp(struct spclient *spc, struct respwait *rw, sigset_t *mask,
    183  1.18  pooka 	bool keeplock)
    184  1.12  pooka {
    185  1.18  pooka 	uint64_t mygen;
    186  1.18  pooka 	bool imalive = true;
    187  1.12  pooka 
    188  1.15  pooka 	pthread_mutex_lock(&spc->spc_mtx);
    189  1.18  pooka 	if (!keeplock)
    190  1.18  pooka 		sendunlockl(spc);
    191  1.18  pooka 	mygen = spc->spc_generation;
    192  1.12  pooka 
    193  1.12  pooka 	rw->rw_error = 0;
    194  1.18  pooka 	while (!rw->rw_done && rw->rw_error == 0) {
    195  1.18  pooka 		if (__predict_false(spc->spc_generation != mygen || !imalive))
    196  1.18  pooka 			break;
    197  1.18  pooka 
    198  1.12  pooka 		/* are we free to receive? */
    199  1.12  pooka 		if (spc->spc_istatus == SPCSTATUS_FREE) {
    200  1.15  pooka 			struct kevent kev[8];
    201  1.15  pooka 			int gotresp, dosig, rv, i;
    202  1.15  pooka 
    203  1.12  pooka 			spc->spc_istatus = SPCSTATUS_BUSY;
    204  1.12  pooka 			pthread_mutex_unlock(&spc->spc_mtx);
    205  1.12  pooka 
    206  1.15  pooka 			dosig = 0;
    207  1.15  pooka 			for (gotresp = 0; !gotresp; ) {
    208  1.40  pooka 				/*
    209  1.40  pooka 				 * typically we don't have a frame waiting
    210  1.40  pooka 				 * when we come in here, so call kevent now
    211  1.40  pooka 				 */
    212  1.40  pooka 				rv = host_kevent(kq, NULL, 0,
    213  1.40  pooka 				    kev, __arraycount(kev), NULL);
    214  1.40  pooka 
    215  1.40  pooka 				if (__predict_false(rv == -1)) {
    216  1.40  pooka 					goto activity;
    217  1.40  pooka 				}
    218  1.40  pooka 
    219  1.40  pooka 				/*
    220  1.40  pooka 				 * XXX: don't know how this can happen
    221  1.40  pooka 				 * (timeout cannot expire since there
    222  1.40  pooka 				 * isn't one), but it does happen.
    223  1.40  pooka 				 * treat it as an expectional condition
    224  1.40  pooka 				 * and go through tryread to determine
    225  1.40  pooka 				 * alive status.
    226  1.40  pooka 				 */
    227  1.40  pooka 				if (__predict_false(rv == 0))
    228  1.40  pooka 					goto activity;
    229  1.40  pooka 
    230  1.40  pooka 				for (i = 0; i < rv; i++) {
    231  1.40  pooka 					if (kev[i].filter == EVFILT_SIGNAL)
    232  1.40  pooka 						dosig++;
    233  1.40  pooka 				}
    234  1.40  pooka 				if (dosig)
    235  1.40  pooka 					goto cleanup;
    236  1.40  pooka 
    237  1.40  pooka 				/*
    238  1.40  pooka 				 * ok, activity.  try to read a frame to
    239  1.40  pooka 				 * determine what happens next.
    240  1.40  pooka 				 */
    241  1.40  pooka  activity:
    242  1.15  pooka 				switch (readframe(spc)) {
    243  1.15  pooka 				case 0:
    244  1.15  pooka 					continue;
    245  1.15  pooka 				case -1:
    246  1.18  pooka 					imalive = false;
    247  1.15  pooka 					goto cleanup;
    248  1.15  pooka 				default:
    249  1.40  pooka 					/* case 1 */
    250  1.15  pooka 					break;
    251  1.15  pooka 				}
    252  1.12  pooka 
    253  1.15  pooka 				switch (spc->spc_hdr.rsp_class) {
    254  1.12  pooka 				case RUMPSP_RESP:
    255  1.12  pooka 				case RUMPSP_ERROR:
    256  1.12  pooka 					kickwaiter(spc);
    257  1.15  pooka 					gotresp = spc->spc_hdr.rsp_reqno ==
    258  1.15  pooka 					    rw->rw_reqno;
    259  1.12  pooka 					break;
    260  1.12  pooka 				case RUMPSP_REQ:
    261  1.12  pooka 					handlereq(spc);
    262  1.12  pooka 					break;
    263  1.12  pooka 				default:
    264  1.12  pooka 					/* panic */
    265  1.12  pooka 					break;
    266  1.15  pooka 				}
    267  1.12  pooka 			}
    268  1.12  pooka 
    269  1.15  pooka  cleanup:
    270  1.15  pooka 			pthread_mutex_lock(&spc->spc_mtx);
    271  1.15  pooka 			if (spc->spc_istatus == SPCSTATUS_WANTED)
    272  1.15  pooka 				kickall(spc);
    273  1.15  pooka 			spc->spc_istatus = SPCSTATUS_FREE;
    274  1.15  pooka 
    275  1.15  pooka 			/* take one for the team */
    276  1.15  pooka 			if (dosig) {
    277  1.15  pooka 				pthread_mutex_unlock(&spc->spc_mtx);
    278  1.15  pooka 				pthread_sigmask(SIG_SETMASK, mask, NULL);
    279  1.15  pooka 				pthread_sigmask(SIG_SETMASK, &fullset, NULL);
    280  1.15  pooka 				pthread_mutex_lock(&spc->spc_mtx);
    281  1.15  pooka 			}
    282  1.12  pooka 		} else {
    283  1.12  pooka 			spc->spc_istatus = SPCSTATUS_WANTED;
    284  1.12  pooka 			pthread_cond_wait(&rw->rw_cv, &spc->spc_mtx);
    285  1.12  pooka 		}
    286  1.12  pooka 	}
    287  1.12  pooka 	TAILQ_REMOVE(&spc->spc_respwait, rw, rw_entries);
    288  1.12  pooka 	pthread_mutex_unlock(&spc->spc_mtx);
    289  1.12  pooka 	pthread_cond_destroy(&rw->rw_cv);
    290  1.12  pooka 
    291  1.18  pooka 	if (spc->spc_generation != mygen || !imalive) {
    292  1.12  pooka 		return ENOTCONN;
    293  1.18  pooka 	}
    294  1.12  pooka 	return rw->rw_error;
    295  1.12  pooka }
    296  1.12  pooka 
    297   1.1  pooka static int
    298  1.26  pooka syscall_req(struct spclient *spc, sigset_t *omask, int sysnum,
    299   1.3  pooka 	const void *data, size_t dlen, void **resp)
    300   1.1  pooka {
    301   1.1  pooka 	struct rsp_hdr rhdr;
    302   1.3  pooka 	struct respwait rw;
    303  1.39  pooka 	struct iovec iov[2];
    304   1.3  pooka 	int rv;
    305   1.1  pooka 
    306   1.1  pooka 	rhdr.rsp_len = sizeof(rhdr) + dlen;
    307   1.3  pooka 	rhdr.rsp_class = RUMPSP_REQ;
    308   1.3  pooka 	rhdr.rsp_type = RUMPSP_SYSCALL;
    309   1.1  pooka 	rhdr.rsp_sysnum = sysnum;
    310   1.1  pooka 
    311  1.39  pooka 	IOVPUT(iov[0], rhdr);
    312  1.39  pooka 	IOVPUT_WITHSIZE(iov[1], __UNCONST(data), dlen);
    313  1.39  pooka 
    314   1.6  pooka 	do {
    315   1.6  pooka 		putwait(spc, &rw, &rhdr);
    316  1.39  pooka 		if ((rv = send_with_recon(spc, iov, __arraycount(iov))) != 0) {
    317   1.6  pooka 			unputwait(spc, &rw);
    318  1.18  pooka 			continue;
    319   1.6  pooka 		}
    320   1.6  pooka 
    321  1.26  pooka 		rv = cliwaitresp(spc, &rw, omask, false);
    322  1.20  pooka 		if (rv == ENOTCONN)
    323  1.20  pooka 			rv = EAGAIN;
    324  1.20  pooka 	} while (rv == EAGAIN);
    325   1.3  pooka 
    326   1.3  pooka 	*resp = rw.rw_data;
    327   1.3  pooka 	return rv;
    328   1.1  pooka }
    329   1.1  pooka 
    330   1.1  pooka static int
    331  1.29  pooka handshake_req(struct spclient *spc, int type, void *data,
    332  1.29  pooka 	int cancel, bool haslock)
    333  1.10  pooka {
    334  1.11  pooka 	struct handshake_fork rf;
    335  1.43  pooka 	const char *myprogname = NULL; /* XXXgcc */
    336  1.10  pooka 	struct rsp_hdr rhdr;
    337  1.10  pooka 	struct respwait rw;
    338  1.12  pooka 	sigset_t omask;
    339  1.21  pooka 	size_t bonus;
    340  1.39  pooka 	struct iovec iov[2];
    341  1.10  pooka 	int rv;
    342  1.10  pooka 
    343  1.29  pooka 	if (type == HANDSHAKE_FORK) {
    344  1.21  pooka 		bonus = sizeof(rf);
    345  1.21  pooka 	} else {
    346  1.39  pooka 		myprogname = getprogname();
    347  1.39  pooka 		bonus = strlen(myprogname)+1;
    348  1.21  pooka 	}
    349  1.21  pooka 
    350  1.10  pooka 	/* performs server handshake */
    351  1.21  pooka 	rhdr.rsp_len = sizeof(rhdr) + bonus;
    352  1.10  pooka 	rhdr.rsp_class = RUMPSP_REQ;
    353  1.10  pooka 	rhdr.rsp_type = RUMPSP_HANDSHAKE;
    354  1.29  pooka 	rhdr.rsp_handshake = type;
    355  1.10  pooka 
    356  1.39  pooka 	IOVPUT(iov[0], rhdr);
    357  1.39  pooka 
    358  1.12  pooka 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
    359  1.18  pooka 	if (haslock)
    360  1.18  pooka 		putwait_locked(spc, &rw, &rhdr);
    361  1.18  pooka 	else
    362  1.18  pooka 		putwait(spc, &rw, &rhdr);
    363  1.29  pooka 	if (type == HANDSHAKE_FORK) {
    364  1.29  pooka 		memcpy(rf.rf_auth, data, sizeof(rf.rf_auth)); /* uh, why? */
    365  1.11  pooka 		rf.rf_cancel = cancel;
    366  1.39  pooka 		IOVPUT(iov[1], rf);
    367  1.21  pooka 	} else {
    368  1.43  pooka 		IOVPUT_WITHSIZE(iov[1], __UNCONST(myprogname), bonus);
    369  1.11  pooka 	}
    370  1.39  pooka 	rv = send_with_recon(spc, iov, __arraycount(iov));
    371  1.18  pooka 	if (rv || cancel) {
    372  1.18  pooka 		if (haslock)
    373  1.18  pooka 			unputwait_locked(spc, &rw);
    374  1.18  pooka 		else
    375  1.18  pooka 			unputwait(spc, &rw);
    376  1.18  pooka 		if (cancel) {
    377  1.26  pooka 			goto out;
    378  1.18  pooka 		}
    379  1.18  pooka 	} else {
    380  1.18  pooka 		rv = cliwaitresp(spc, &rw, &omask, haslock);
    381  1.10  pooka 	}
    382  1.10  pooka 	if (rv)
    383  1.26  pooka 		goto out;
    384  1.10  pooka 
    385  1.10  pooka 	rv = *(int *)rw.rw_data;
    386  1.10  pooka 	free(rw.rw_data);
    387  1.10  pooka 
    388  1.26  pooka  out:
    389  1.26  pooka 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
    390  1.10  pooka 	return rv;
    391  1.10  pooka }
    392  1.10  pooka 
    393  1.10  pooka static int
    394  1.26  pooka prefork_req(struct spclient *spc, sigset_t *omask, void **resp)
    395  1.11  pooka {
    396  1.11  pooka 	struct rsp_hdr rhdr;
    397  1.11  pooka 	struct respwait rw;
    398  1.39  pooka 	struct iovec iov[1];
    399  1.11  pooka 	int rv;
    400  1.11  pooka 
    401  1.11  pooka 	rhdr.rsp_len = sizeof(rhdr);
    402  1.11  pooka 	rhdr.rsp_class = RUMPSP_REQ;
    403  1.11  pooka 	rhdr.rsp_type = RUMPSP_PREFORK;
    404  1.11  pooka 	rhdr.rsp_error = 0;
    405  1.11  pooka 
    406  1.39  pooka 	IOVPUT(iov[0], rhdr);
    407  1.39  pooka 
    408  1.18  pooka 	do {
    409  1.18  pooka 		putwait(spc, &rw, &rhdr);
    410  1.39  pooka 		rv = send_with_recon(spc, iov, __arraycount(iov));
    411  1.18  pooka 		if (rv != 0) {
    412  1.18  pooka 			unputwait(spc, &rw);
    413  1.18  pooka 			continue;
    414  1.18  pooka 		}
    415  1.11  pooka 
    416  1.26  pooka 		rv = cliwaitresp(spc, &rw, omask, false);
    417  1.20  pooka 		if (rv == ENOTCONN)
    418  1.20  pooka 			rv = EAGAIN;
    419  1.20  pooka 	} while (rv == EAGAIN);
    420  1.18  pooka 
    421  1.11  pooka 	*resp = rw.rw_data;
    422  1.11  pooka 	return rv;
    423  1.11  pooka }
    424  1.11  pooka 
    425  1.18  pooka /*
    426  1.18  pooka  * prevent response code from deadlocking with reconnect code
    427  1.18  pooka  */
    428  1.11  pooka static int
    429  1.18  pooka resp_sendlock(struct spclient *spc)
    430  1.18  pooka {
    431  1.18  pooka 	int rv = 0;
    432  1.18  pooka 
    433  1.18  pooka 	pthread_mutex_lock(&spc->spc_mtx);
    434  1.18  pooka 	while (spc->spc_ostatus != SPCSTATUS_FREE) {
    435  1.18  pooka 		if (__predict_false(spc->spc_reconnecting)) {
    436  1.18  pooka 			rv = EBUSY;
    437  1.18  pooka 			goto out;
    438  1.18  pooka 		}
    439  1.18  pooka 		spc->spc_ostatus = SPCSTATUS_WANTED;
    440  1.18  pooka 		pthread_cond_wait(&spc->spc_cv, &spc->spc_mtx);
    441  1.18  pooka 	}
    442  1.18  pooka 	spc->spc_ostatus = SPCSTATUS_BUSY;
    443  1.18  pooka 
    444  1.18  pooka  out:
    445  1.18  pooka 	pthread_mutex_unlock(&spc->spc_mtx);
    446  1.18  pooka 	return rv;
    447  1.18  pooka }
    448  1.18  pooka 
    449  1.18  pooka static void
    450   1.5  pooka send_copyin_resp(struct spclient *spc, uint64_t reqno, void *data, size_t dlen,
    451   1.5  pooka 	int wantstr)
    452   1.1  pooka {
    453   1.1  pooka 	struct rsp_hdr rhdr;
    454  1.39  pooka 	struct iovec iov[2];
    455   1.1  pooka 
    456   1.5  pooka 	if (wantstr)
    457   1.5  pooka 		dlen = MIN(dlen, strlen(data)+1);
    458   1.5  pooka 
    459   1.1  pooka 	rhdr.rsp_len = sizeof(rhdr) + dlen;
    460   1.1  pooka 	rhdr.rsp_reqno = reqno;
    461   1.3  pooka 	rhdr.rsp_class = RUMPSP_RESP;
    462   1.3  pooka 	rhdr.rsp_type = RUMPSP_COPYIN;
    463   1.1  pooka 	rhdr.rsp_sysnum = 0;
    464   1.1  pooka 
    465  1.39  pooka 	IOVPUT(iov[0], rhdr);
    466  1.39  pooka 	IOVPUT_WITHSIZE(iov[1], data, dlen);
    467  1.39  pooka 
    468  1.18  pooka 	if (resp_sendlock(spc) != 0)
    469  1.18  pooka 		return;
    470  1.39  pooka 	(void)SENDIOV(spc, iov);
    471   1.3  pooka 	sendunlock(spc);
    472   1.1  pooka }
    473   1.1  pooka 
    474  1.18  pooka static void
    475   1.1  pooka send_anonmmap_resp(struct spclient *spc, uint64_t reqno, void *addr)
    476   1.1  pooka {
    477   1.1  pooka 	struct rsp_hdr rhdr;
    478  1.39  pooka 	struct iovec iov[2];
    479   1.1  pooka 
    480   1.1  pooka 	rhdr.rsp_len = sizeof(rhdr) + sizeof(addr);
    481   1.1  pooka 	rhdr.rsp_reqno = reqno;
    482   1.3  pooka 	rhdr.rsp_class = RUMPSP_RESP;
    483   1.3  pooka 	rhdr.rsp_type = RUMPSP_ANONMMAP;
    484   1.1  pooka 	rhdr.rsp_sysnum = 0;
    485   1.1  pooka 
    486  1.39  pooka 	IOVPUT(iov[0], rhdr);
    487  1.39  pooka 	IOVPUT(iov[1], addr);
    488  1.39  pooka 
    489  1.18  pooka 	if (resp_sendlock(spc) != 0)
    490  1.18  pooka 		return;
    491  1.39  pooka 	(void)SENDIOV(spc, iov);
    492   1.3  pooka 	sendunlock(spc);
    493   1.1  pooka }
    494   1.1  pooka 
    495   1.1  pooka int
    496   1.1  pooka rumpclient_syscall(int sysnum, const void *data, size_t dlen,
    497   1.1  pooka 	register_t *retval)
    498   1.1  pooka {
    499   1.1  pooka 	struct rsp_sysresp *resp;
    500  1.26  pooka 	sigset_t omask;
    501   1.3  pooka 	void *rdata;
    502   1.3  pooka 	int rv;
    503   1.3  pooka 
    504  1.26  pooka 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
    505  1.26  pooka 
    506   1.3  pooka 	DPRINTF(("rumpsp syscall_req: syscall %d with %p/%zu\n",
    507   1.3  pooka 	    sysnum, data, dlen));
    508   1.3  pooka 
    509  1.26  pooka 	rv = syscall_req(&clispc, &omask, sysnum, data, dlen, &rdata);
    510   1.3  pooka 	if (rv)
    511  1.26  pooka 		goto out;
    512   1.3  pooka 
    513   1.3  pooka 	resp = rdata;
    514   1.3  pooka 	DPRINTF(("rumpsp syscall_resp: syscall %d error %d, rv: %d/%d\n",
    515   1.3  pooka 	    sysnum, rv, resp->rsys_retval[0], resp->rsys_retval[1]));
    516   1.1  pooka 
    517   1.3  pooka 	memcpy(retval, &resp->rsys_retval, sizeof(resp->rsys_retval));
    518   1.3  pooka 	rv = resp->rsys_error;
    519   1.3  pooka 	free(rdata);
    520   1.1  pooka 
    521  1.26  pooka  out:
    522  1.26  pooka 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
    523   1.3  pooka 	return rv;
    524   1.3  pooka }
    525   1.1  pooka 
    526   1.3  pooka static void
    527   1.3  pooka handlereq(struct spclient *spc)
    528   1.3  pooka {
    529   1.3  pooka 	struct rsp_copydata *copydata;
    530  1.16  pooka 	struct rsp_hdr *rhdr = &spc->spc_hdr;
    531   1.3  pooka 	void *mapaddr;
    532   1.3  pooka 	size_t maplen;
    533   1.5  pooka 	int reqtype = spc->spc_hdr.rsp_type;
    534   1.1  pooka 
    535   1.5  pooka 	switch (reqtype) {
    536   1.3  pooka 	case RUMPSP_COPYIN:
    537   1.5  pooka 	case RUMPSP_COPYINSTR:
    538   1.3  pooka 		/*LINTED*/
    539   1.3  pooka 		copydata = (struct rsp_copydata *)spc->spc_buf;
    540   1.3  pooka 		DPRINTF(("rump_sp handlereq: copyin request: %p/%zu\n",
    541   1.3  pooka 		    copydata->rcp_addr, copydata->rcp_len));
    542   1.3  pooka 		send_copyin_resp(spc, spc->spc_hdr.rsp_reqno,
    543   1.5  pooka 		    copydata->rcp_addr, copydata->rcp_len,
    544   1.5  pooka 		    reqtype == RUMPSP_COPYINSTR);
    545   1.3  pooka 		break;
    546   1.3  pooka 	case RUMPSP_COPYOUT:
    547   1.5  pooka 	case RUMPSP_COPYOUTSTR:
    548   1.3  pooka 		/*LINTED*/
    549   1.3  pooka 		copydata = (struct rsp_copydata *)spc->spc_buf;
    550   1.3  pooka 		DPRINTF(("rump_sp handlereq: copyout request: %p/%zu\n",
    551   1.3  pooka 		    copydata->rcp_addr, copydata->rcp_len));
    552   1.3  pooka 		/*LINTED*/
    553   1.3  pooka 		memcpy(copydata->rcp_addr, copydata->rcp_data,
    554   1.3  pooka 		    copydata->rcp_len);
    555   1.3  pooka 		break;
    556   1.3  pooka 	case RUMPSP_ANONMMAP:
    557   1.3  pooka 		/*LINTED*/
    558   1.3  pooka 		maplen = *(size_t *)spc->spc_buf;
    559   1.3  pooka 		mapaddr = mmap(NULL, maplen, PROT_READ|PROT_WRITE,
    560   1.3  pooka 		    MAP_ANON, -1, 0);
    561   1.3  pooka 		if (mapaddr == MAP_FAILED)
    562   1.3  pooka 			mapaddr = NULL;
    563   1.3  pooka 		DPRINTF(("rump_sp handlereq: anonmmap: %p\n", mapaddr));
    564   1.3  pooka 		send_anonmmap_resp(spc, spc->spc_hdr.rsp_reqno, mapaddr);
    565   1.3  pooka 		break;
    566  1.16  pooka 	case RUMPSP_RAISE:
    567  1.16  pooka 		DPRINTF(("rump_sp handlereq: raise sig %d\n", rhdr->rsp_signo));
    568  1.18  pooka 		raise((int)rhdr->rsp_signo);
    569  1.16  pooka 		/*
    570  1.16  pooka 		 * We most likely have signals blocked, but the signal
    571  1.16  pooka 		 * will be handled soon enough when we return.
    572  1.16  pooka 		 */
    573  1.16  pooka 		break;
    574   1.3  pooka 	default:
    575  1.12  pooka 		printf("PANIC: INVALID TYPE %d\n", reqtype);
    576   1.3  pooka 		abort();
    577   1.3  pooka 		break;
    578   1.1  pooka 	}
    579   1.1  pooka 
    580   1.6  pooka 	spcfreebuf(spc);
    581   1.1  pooka }
    582   1.1  pooka 
    583  1.11  pooka static unsigned ptab_idx;
    584  1.11  pooka static struct sockaddr *serv_sa;
    585  1.11  pooka 
    586  1.27  pooka /* dup until we get a "good" fd which does not collide with stdio */
    587  1.27  pooka static int
    588  1.28  pooka dupgood(int myfd, int mustchange)
    589  1.27  pooka {
    590  1.28  pooka 	int ofds[4];
    591  1.45  alnsn 	int sverrno;
    592  1.48   matt 	unsigned int i;
    593  1.27  pooka 
    594  1.28  pooka 	for (i = 0; (myfd <= 2 || mustchange) && myfd != -1; i++) {
    595  1.27  pooka 		assert(i < __arraycount(ofds));
    596  1.27  pooka 		ofds[i] = myfd;
    597  1.27  pooka 		myfd = host_dup(myfd);
    598  1.28  pooka 		if (mustchange) {
    599  1.28  pooka 			i--; /* prevent closing old fd */
    600  1.28  pooka 			mustchange = 0;
    601  1.28  pooka 		}
    602  1.27  pooka 	}
    603  1.27  pooka 
    604  1.45  alnsn 	sverrno = 0;
    605  1.45  alnsn 	if (myfd == -1 && i > 0)
    606  1.45  alnsn 		sverrno = errno;
    607  1.45  alnsn 
    608  1.48   matt 	while (i-- > 0) {
    609  1.27  pooka 		host_close(ofds[i]);
    610  1.27  pooka 	}
    611  1.27  pooka 
    612  1.45  alnsn 	if (sverrno)
    613  1.45  alnsn 		errno = sverrno;
    614  1.45  alnsn 
    615  1.27  pooka 	return myfd;
    616  1.27  pooka }
    617  1.27  pooka 
    618  1.11  pooka static int
    619  1.44  pooka doconnect(void)
    620   1.1  pooka {
    621  1.18  pooka 	struct respwait rw;
    622  1.18  pooka 	struct rsp_hdr rhdr;
    623  1.15  pooka 	struct kevent kev[NSIG+1];
    624   1.9  pooka 	char banner[MAXBANNER];
    625  1.18  pooka 	struct pollfd pfd;
    626  1.15  pooka 	int s, error, flags, i;
    627   1.9  pooka 	ssize_t n;
    628   1.1  pooka 
    629  1.18  pooka 	if (kq != -1)
    630  1.18  pooka 		host_close(kq);
    631  1.18  pooka 	kq = -1;
    632  1.19  pooka 	s = -1;
    633  1.18  pooka 
    634  1.18  pooka 	if (clispc.spc_fd != -1)
    635  1.18  pooka 		host_close(clispc.spc_fd);
    636  1.18  pooka 	clispc.spc_fd = -1;
    637  1.18  pooka 
    638  1.18  pooka 	/*
    639  1.18  pooka 	 * for reconnect, gate everyone out of the receiver code
    640  1.18  pooka 	 */
    641  1.18  pooka 	putwait_locked(&clispc, &rw, &rhdr);
    642  1.18  pooka 
    643  1.18  pooka 	pthread_mutex_lock(&clispc.spc_mtx);
    644  1.18  pooka 	clispc.spc_reconnecting = 1;
    645  1.18  pooka 	pthread_cond_broadcast(&clispc.spc_cv);
    646  1.18  pooka 	clispc.spc_generation++;
    647  1.18  pooka 	while (clispc.spc_istatus != SPCSTATUS_FREE) {
    648  1.18  pooka 		clispc.spc_istatus = SPCSTATUS_WANTED;
    649  1.18  pooka 		pthread_cond_wait(&rw.rw_cv, &clispc.spc_mtx);
    650  1.18  pooka 	}
    651  1.18  pooka 	kickall(&clispc);
    652  1.18  pooka 
    653  1.18  pooka 	/*
    654  1.18  pooka 	 * we can release it already since we hold the
    655  1.18  pooka 	 * send lock during reconnect
    656  1.18  pooka 	 * XXX: assert it
    657  1.18  pooka 	 */
    658  1.18  pooka 	clispc.spc_istatus = SPCSTATUS_FREE;
    659  1.18  pooka 	pthread_mutex_unlock(&clispc.spc_mtx);
    660  1.18  pooka 	unputwait_locked(&clispc, &rw);
    661  1.18  pooka 
    662  1.18  pooka 	free(clispc.spc_buf);
    663  1.18  pooka 	clispc.spc_off = 0;
    664  1.18  pooka 
    665  1.28  pooka 	s = dupgood(host_socket(parsetab[ptab_idx].domain, SOCK_STREAM, 0), 0);
    666  1.11  pooka 	if (s == -1)
    667   1.2  pooka 		return -1;
    668   1.1  pooka 
    669  1.18  pooka 	pfd.fd = s;
    670  1.18  pooka 	pfd.events = POLLIN;
    671  1.18  pooka 	while (host_connect(s, serv_sa, (socklen_t)serv_sa->sa_len) == -1) {
    672  1.18  pooka 		if (errno == EINTR)
    673  1.18  pooka 			continue;
    674  1.44  pooka 		ERRLOG(("rump_sp: client connect failed: %s\n",
    675  1.44  pooka 		    strerror(errno)));
    676  1.20  pooka 		return -1;
    677   1.2  pooka 	}
    678   1.1  pooka 
    679  1.11  pooka 	if ((error = parsetab[ptab_idx].connhook(s)) != 0) {
    680  1.44  pooka 		ERRLOG(("rump_sp: connect hook failed\n"));
    681   1.2  pooka 		return -1;
    682   1.1  pooka 	}
    683   1.4  pooka 
    684  1.45  alnsn 	if ((n = host_read(s, banner, sizeof(banner)-1)) <= 0) {
    685  1.44  pooka 		ERRLOG(("rump_sp: failed to read banner\n"));
    686   1.2  pooka 		return -1;
    687   1.1  pooka 	}
    688   1.9  pooka 
    689   1.9  pooka 	if (banner[n-1] != '\n') {
    690  1.44  pooka 		ERRLOG(("rump_sp: invalid banner\n"));
    691   1.9  pooka 		return -1;
    692   1.9  pooka 	}
    693   1.9  pooka 	banner[n] = '\0';
    694  1.45  alnsn 	/* XXX parse the banner some day */
    695   1.9  pooka 
    696  1.15  pooka 	flags = host_fcntl(s, F_GETFL, 0);
    697  1.15  pooka 	if (host_fcntl(s, F_SETFL, flags | O_NONBLOCK) == -1) {
    698  1.44  pooka 		ERRLOG(("rump_sp: socket fd NONBLOCK: %s\n", strerror(errno)));
    699  1.15  pooka 		return -1;
    700  1.15  pooka 	}
    701  1.18  pooka 	clispc.spc_fd = s;
    702  1.18  pooka 	clispc.spc_state = SPCSTATE_RUNNING;
    703  1.18  pooka 	clispc.spc_reconnecting = 0;
    704  1.15  pooka 
    705  1.15  pooka 	/* setup kqueue, we want all signals and the fd */
    706  1.28  pooka 	if ((kq = dupgood(host_kqueue(), 0)) == -1) {
    707  1.44  pooka 		ERRLOG(("rump_sp: cannot setup kqueue"));
    708  1.15  pooka 		return -1;
    709  1.15  pooka 	}
    710  1.15  pooka 
    711  1.15  pooka 	for (i = 0; i < NSIG; i++) {
    712  1.15  pooka 		EV_SET(&kev[i], i+1, EVFILT_SIGNAL, EV_ADD|EV_ENABLE, 0, 0, 0);
    713  1.15  pooka 	}
    714  1.18  pooka 	EV_SET(&kev[NSIG], clispc.spc_fd,
    715  1.18  pooka 	    EVFILT_READ, EV_ADD|EV_ENABLE, 0, 0, 0);
    716  1.17  pooka 	if (host_kevent(kq, kev, NSIG+1, NULL, 0, NULL) == -1) {
    717  1.44  pooka 		ERRLOG(("rump_sp: kevent() failed"));
    718  1.15  pooka 		return -1;
    719  1.15  pooka 	}
    720  1.15  pooka 
    721  1.18  pooka 	return 0;
    722  1.18  pooka }
    723  1.18  pooka 
    724  1.18  pooka static int
    725  1.18  pooka doinit(void)
    726  1.18  pooka {
    727  1.18  pooka 
    728  1.11  pooka 	TAILQ_INIT(&clispc.spc_respwait);
    729  1.11  pooka 	pthread_mutex_init(&clispc.spc_mtx, NULL);
    730  1.11  pooka 	pthread_cond_init(&clispc.spc_cv, NULL);
    731  1.11  pooka 
    732  1.11  pooka 	return 0;
    733  1.11  pooka }
    734  1.11  pooka 
    735  1.35  pooka void *rumpclient__dlsym(void *, const char *);
    736  1.47  joerg void *rumphijack_dlsym(void *, const char *) __attribute__((__weak__));
    737  1.35  pooka void *
    738  1.35  pooka rumpclient__dlsym(void *handle, const char *symbol)
    739  1.35  pooka {
    740  1.35  pooka 
    741  1.35  pooka 	return dlsym(handle, symbol);
    742  1.35  pooka }
    743  1.48   matt __weak_alias(rumphijack_dlsym,rumpclient__dlsym)
    744  1.35  pooka 
    745  1.38  pooka static pid_t init_done = 0;
    746  1.13  pooka 
    747  1.11  pooka int
    748  1.46  joerg rumpclient_init(void)
    749  1.11  pooka {
    750  1.11  pooka 	char *p;
    751  1.11  pooka 	int error;
    752  1.29  pooka 	int rv = -1;
    753  1.29  pooka 	int hstype;
    754  1.38  pooka 	pid_t mypid;
    755  1.29  pooka 
    756  1.38  pooka 	/*
    757  1.38  pooka 	 * Make sure we're not riding the context of a previous
    758  1.38  pooka 	 * host fork.  Note: it's *possible* that after n>1 forks
    759  1.38  pooka 	 * we have the same pid as one of our exited parents, but
    760  1.38  pooka 	 * I'm pretty sure there are 0 practical implications, since
    761  1.38  pooka 	 * it means generations would have to skip rumpclient init.
    762  1.38  pooka 	 */
    763  1.38  pooka 	if (init_done == (mypid = getpid()))
    764  1.29  pooka 		return 0;
    765  1.38  pooka 
    766  1.38  pooka 	/* kq does not traverse fork() */
    767  1.38  pooka 	if (init_done != 0)
    768  1.38  pooka 		kq = -1;
    769  1.38  pooka 	init_done = mypid;
    770  1.11  pooka 
    771  1.25  pooka 	sigfillset(&fullset);
    772  1.25  pooka 
    773  1.13  pooka 	/*
    774  1.13  pooka 	 * sag mir, wo die symbol sind.  zogen fort, der krieg beginnt.
    775  1.13  pooka 	 * wann wird man je verstehen?  wann wird man je verstehen?
    776  1.13  pooka 	 */
    777  1.13  pooka #define FINDSYM2(_name_,_syscall_)					\
    778  1.35  pooka 	if ((host_##_name_ = rumphijack_dlsym(RTLD_NEXT,		\
    779  1.34  pooka 	    #_syscall_)) == NULL) {					\
    780  1.36  pooka 		if (rumphijack_dlsym == rumpclient__dlsym)		\
    781  1.34  pooka 			host_##_name_ = _name_; /* static fallback */	\
    782  1.36  pooka 		if (host_##_name_ == NULL)				\
    783  1.34  pooka 			errx(1, "cannot find %s: %s", #_syscall_,	\
    784  1.34  pooka 			    dlerror());					\
    785  1.34  pooka 	}
    786  1.13  pooka #define FINDSYM(_name_) FINDSYM2(_name_,_name_)
    787  1.34  pooka 	FINDSYM2(socket,__socket30)
    788  1.34  pooka 	FINDSYM(close)
    789  1.34  pooka 	FINDSYM(connect)
    790  1.34  pooka 	FINDSYM(fcntl)
    791  1.34  pooka 	FINDSYM(poll)
    792  1.34  pooka 	FINDSYM(read)
    793  1.39  pooka 	FINDSYM(sendmsg)
    794  1.34  pooka 	FINDSYM(setsockopt)
    795  1.34  pooka 	FINDSYM(dup)
    796  1.34  pooka 	FINDSYM(kqueue)
    797  1.34  pooka 	FINDSYM(execve)
    798  1.22  pooka #if !__NetBSD_Prereq__(5,99,7)
    799  1.34  pooka 	FINDSYM(kevent)
    800  1.22  pooka #else
    801  1.34  pooka 	FINDSYM2(kevent,_sys___kevent50)
    802  1.22  pooka #endif
    803  1.13  pooka #undef	FINDSYM
    804  1.13  pooka #undef	FINDSY2
    805  1.13  pooka 
    806  1.28  pooka 	if ((p = getenv("RUMP__PARSEDSERVER")) == NULL) {
    807  1.28  pooka 		if ((p = getenv("RUMP_SERVER")) == NULL) {
    808  1.28  pooka 			errno = ENOENT;
    809  1.29  pooka 			goto out;
    810  1.28  pooka 		}
    811  1.11  pooka 	}
    812  1.11  pooka 
    813  1.11  pooka 	if ((error = parseurl(p, &serv_sa, &ptab_idx, 0)) != 0) {
    814  1.11  pooka 		errno = error;
    815  1.29  pooka 		goto out;
    816  1.11  pooka 	}
    817  1.11  pooka 
    818  1.18  pooka 	if (doinit() == -1)
    819  1.29  pooka 		goto out;
    820  1.28  pooka 
    821  1.28  pooka 	if ((p = getenv("RUMPCLIENT__EXECFD")) != NULL) {
    822  1.28  pooka 		sscanf(p, "%d,%d", &clispc.spc_fd, &kq);
    823  1.28  pooka 		unsetenv("RUMPCLIENT__EXECFD");
    824  1.29  pooka 		hstype = HANDSHAKE_EXEC;
    825  1.29  pooka 	} else {
    826  1.44  pooka 		if (doconnect() == -1)
    827  1.29  pooka 			goto out;
    828  1.29  pooka 		hstype = HANDSHAKE_GUEST;
    829  1.28  pooka 	}
    830  1.28  pooka 
    831  1.29  pooka 	error = handshake_req(&clispc, hstype, NULL, 0, false);
    832  1.11  pooka 	if (error) {
    833  1.11  pooka 		pthread_mutex_destroy(&clispc.spc_mtx);
    834  1.11  pooka 		pthread_cond_destroy(&clispc.spc_cv);
    835  1.18  pooka 		if (clispc.spc_fd != -1)
    836  1.18  pooka 			host_close(clispc.spc_fd);
    837  1.10  pooka 		errno = error;
    838  1.29  pooka 		goto out;
    839  1.10  pooka 	}
    840  1.29  pooka 	rv = 0;
    841  1.10  pooka 
    842  1.29  pooka  out:
    843  1.29  pooka 	if (rv == -1)
    844  1.29  pooka 		init_done = 0;
    845  1.29  pooka 	return rv;
    846  1.11  pooka }
    847  1.11  pooka 
    848  1.11  pooka struct rumpclient_fork {
    849  1.11  pooka 	uint32_t fork_auth[AUTHLEN];
    850  1.31  pooka 	struct spclient fork_spc;
    851  1.31  pooka 	int fork_kq;
    852  1.11  pooka };
    853  1.11  pooka 
    854  1.11  pooka struct rumpclient_fork *
    855  1.11  pooka rumpclient_prefork(void)
    856  1.11  pooka {
    857  1.11  pooka 	struct rumpclient_fork *rpf;
    858  1.26  pooka 	sigset_t omask;
    859  1.11  pooka 	void *resp;
    860  1.11  pooka 	int rv;
    861  1.11  pooka 
    862  1.26  pooka 	pthread_sigmask(SIG_SETMASK, &fullset, &omask);
    863  1.11  pooka 	rpf = malloc(sizeof(*rpf));
    864  1.11  pooka 	if (rpf == NULL)
    865  1.30  pooka 		goto out;
    866  1.11  pooka 
    867  1.26  pooka 	if ((rv = prefork_req(&clispc, &omask, &resp)) != 0) {
    868  1.11  pooka 		free(rpf);
    869  1.11  pooka 		errno = rv;
    870  1.26  pooka 		rpf = NULL;
    871  1.26  pooka 		goto out;
    872  1.11  pooka 	}
    873  1.11  pooka 
    874  1.11  pooka 	memcpy(rpf->fork_auth, resp, sizeof(rpf->fork_auth));
    875  1.11  pooka 	free(resp);
    876  1.11  pooka 
    877  1.31  pooka 	rpf->fork_spc = clispc;
    878  1.31  pooka 	rpf->fork_kq = kq;
    879  1.31  pooka 
    880  1.26  pooka  out:
    881  1.26  pooka 	pthread_sigmask(SIG_SETMASK, &omask, NULL);
    882  1.11  pooka 	return rpf;
    883  1.11  pooka }
    884  1.11  pooka 
    885  1.11  pooka int
    886  1.11  pooka rumpclient_fork_init(struct rumpclient_fork *rpf)
    887  1.11  pooka {
    888  1.11  pooka 	int error;
    889  1.23  pooka 	int osock;
    890  1.11  pooka 
    891  1.23  pooka 	osock = clispc.spc_fd;
    892  1.11  pooka 	memset(&clispc, 0, sizeof(clispc));
    893  1.23  pooka 	clispc.spc_fd = osock;
    894  1.23  pooka 
    895  1.23  pooka 	kq = -1; /* kqueue descriptor is not copied over fork() */
    896  1.11  pooka 
    897  1.18  pooka 	if (doinit() == -1)
    898  1.18  pooka 		return -1;
    899  1.44  pooka 	if (doconnect() == -1)
    900  1.11  pooka 		return -1;
    901  1.10  pooka 
    902  1.29  pooka 	error = handshake_req(&clispc, HANDSHAKE_FORK, rpf->fork_auth,
    903  1.29  pooka 	    0, false);
    904  1.10  pooka 	if (error) {
    905  1.10  pooka 		pthread_mutex_destroy(&clispc.spc_mtx);
    906  1.10  pooka 		pthread_cond_destroy(&clispc.spc_cv);
    907  1.11  pooka 		errno = error;
    908  1.11  pooka 		return -1;
    909  1.10  pooka 	}
    910  1.11  pooka 
    911  1.11  pooka 	return 0;
    912   1.1  pooka }
    913  1.20  pooka 
    914  1.42  pooka /*ARGSUSED*/
    915  1.20  pooka void
    916  1.31  pooka rumpclient_fork_cancel(struct rumpclient_fork *rpf)
    917  1.31  pooka {
    918  1.31  pooka 
    919  1.31  pooka 	/* EUNIMPL */
    920  1.31  pooka }
    921  1.31  pooka 
    922  1.31  pooka void
    923  1.31  pooka rumpclient_fork_vparent(struct rumpclient_fork *rpf)
    924  1.31  pooka {
    925  1.31  pooka 
    926  1.31  pooka 	clispc = rpf->fork_spc;
    927  1.31  pooka 	kq = rpf->fork_kq;
    928  1.31  pooka }
    929  1.31  pooka 
    930  1.31  pooka void
    931  1.20  pooka rumpclient_setconnretry(time_t timeout)
    932  1.20  pooka {
    933  1.20  pooka 
    934  1.24  pooka 	if (timeout < RUMPCLIENT_RETRYCONN_DIE)
    935  1.20  pooka 		return; /* gigo */
    936  1.20  pooka 
    937  1.20  pooka 	retrytimo = timeout;
    938  1.20  pooka }
    939  1.28  pooka 
    940  1.28  pooka int
    941  1.28  pooka rumpclient__closenotify(int *fdp, enum rumpclient_closevariant variant)
    942  1.28  pooka {
    943  1.28  pooka 	int fd = *fdp;
    944  1.28  pooka 	int untilfd, rv;
    945  1.28  pooka 	int newfd;
    946  1.28  pooka 
    947  1.28  pooka 	switch (variant) {
    948  1.28  pooka 	case RUMPCLIENT_CLOSE_FCLOSEM:
    949  1.28  pooka 		untilfd = MAX(clispc.spc_fd, kq);
    950  1.28  pooka 		for (; fd <= untilfd; fd++) {
    951  1.28  pooka 			if (fd == clispc.spc_fd || fd == kq)
    952  1.28  pooka 				continue;
    953  1.28  pooka 			rv = host_close(fd);
    954  1.28  pooka 			if (rv == -1)
    955  1.28  pooka 				return -1;
    956  1.28  pooka 		}
    957  1.28  pooka 		*fdp = fd;
    958  1.28  pooka 		break;
    959  1.28  pooka 
    960  1.28  pooka 	case RUMPCLIENT_CLOSE_CLOSE:
    961  1.28  pooka 	case RUMPCLIENT_CLOSE_DUP2:
    962  1.28  pooka 		if (fd == clispc.spc_fd) {
    963  1.28  pooka 			struct kevent kev[2];
    964  1.28  pooka 
    965  1.28  pooka 			newfd = dupgood(clispc.spc_fd, 1);
    966  1.28  pooka 			if (newfd == -1)
    967  1.28  pooka 				return -1;
    968  1.28  pooka 			/*
    969  1.28  pooka 			 * now, we have a new socket number, so change
    970  1.28  pooka 			 * the file descriptor that kqueue is
    971  1.28  pooka 			 * monitoring.  remove old and add new.
    972  1.28  pooka 			 */
    973  1.28  pooka 			EV_SET(&kev[0], clispc.spc_fd,
    974  1.28  pooka 			    EVFILT_READ, EV_DELETE, 0, 0, 0);
    975  1.28  pooka 			EV_SET(&kev[1], newfd,
    976  1.28  pooka 			    EVFILT_READ, EV_ADD|EV_ENABLE, 0, 0, 0);
    977  1.28  pooka 			if (host_kevent(kq, kev, 2, NULL, 0, NULL) == -1) {
    978  1.28  pooka 				int sverrno = errno;
    979  1.28  pooka 				host_close(newfd);
    980  1.28  pooka 				errno = sverrno;
    981  1.28  pooka 				return -1;
    982  1.28  pooka 			}
    983  1.28  pooka 			clispc.spc_fd = newfd;
    984  1.28  pooka 		}
    985  1.28  pooka 		if (fd == kq) {
    986  1.28  pooka 			newfd = dupgood(kq, 1);
    987  1.28  pooka 			if (newfd == -1)
    988  1.28  pooka 				return -1;
    989  1.28  pooka 			kq = newfd;
    990  1.28  pooka 		}
    991  1.28  pooka 		break;
    992  1.28  pooka 	}
    993  1.28  pooka 
    994  1.28  pooka 	return 0;
    995  1.28  pooka }
    996  1.28  pooka 
    997  1.30  pooka pid_t
    998  1.46  joerg rumpclient_fork(void)
    999  1.30  pooka {
   1000  1.30  pooka 
   1001  1.31  pooka 	return rumpclient__dofork(fork);
   1002  1.30  pooka }
   1003  1.30  pooka 
   1004  1.28  pooka /*
   1005  1.28  pooka  * Process is about to exec.  Save info about our existing connection
   1006  1.28  pooka  * in the env.  rumpclient will check for this info in init().
   1007  1.28  pooka  * This is mostly for the benefit of rumphijack, but regular applications
   1008  1.28  pooka  * may use it as well.
   1009  1.28  pooka  */
   1010  1.28  pooka int
   1011  1.30  pooka rumpclient_exec(const char *path, char *const argv[], char *const envp[])
   1012  1.28  pooka {
   1013  1.28  pooka 	char buf[4096];
   1014  1.28  pooka 	char **newenv;
   1015  1.28  pooka 	char *envstr, *envstr2;
   1016  1.30  pooka 	size_t nelem;
   1017  1.30  pooka 	int rv, sverrno;
   1018  1.28  pooka 
   1019  1.28  pooka 	snprintf(buf, sizeof(buf), "RUMPCLIENT__EXECFD=%d,%d",
   1020  1.28  pooka 	    clispc.spc_fd, kq);
   1021  1.28  pooka 	envstr = malloc(strlen(buf)+1);
   1022  1.28  pooka 	if (envstr == NULL) {
   1023  1.28  pooka 		return ENOMEM;
   1024  1.28  pooka 	}
   1025  1.28  pooka 	strcpy(envstr, buf);
   1026  1.28  pooka 
   1027  1.28  pooka 	/* do we have a fully parsed url we want to forward in the env? */
   1028  1.28  pooka 	if (*parsedurl != '\0') {
   1029  1.28  pooka 		snprintf(buf, sizeof(buf),
   1030  1.28  pooka 		    "RUMP__PARSEDSERVER=%s", parsedurl);
   1031  1.28  pooka 		envstr2 = malloc(strlen(buf)+1);
   1032  1.28  pooka 		if (envstr2 == NULL) {
   1033  1.28  pooka 			free(envstr);
   1034  1.28  pooka 			return ENOMEM;
   1035  1.28  pooka 		}
   1036  1.28  pooka 		strcpy(envstr2, buf);
   1037  1.28  pooka 	} else {
   1038  1.28  pooka 		envstr2 = NULL;
   1039  1.28  pooka 	}
   1040  1.28  pooka 
   1041  1.30  pooka 	for (nelem = 0; envp && envp[nelem]; nelem++)
   1042  1.30  pooka 		continue;
   1043  1.28  pooka 
   1044  1.33  pooka 	newenv = malloc(sizeof(*newenv) * (nelem+3));
   1045  1.28  pooka 	if (newenv == NULL) {
   1046  1.28  pooka 		free(envstr2);
   1047  1.28  pooka 		free(envstr);
   1048  1.28  pooka 		return ENOMEM;
   1049  1.28  pooka 	}
   1050  1.30  pooka 	memcpy(&newenv[0], envp, nelem*sizeof(*envp));
   1051  1.28  pooka 
   1052  1.30  pooka 	newenv[nelem] = envstr;
   1053  1.30  pooka 	newenv[nelem+1] = envstr2;
   1054  1.30  pooka 	newenv[nelem+2] = NULL;
   1055  1.30  pooka 
   1056  1.30  pooka 	rv = host_execve(path, argv, newenv);
   1057  1.30  pooka 
   1058  1.30  pooka 	_DIAGASSERT(rv != 0);
   1059  1.30  pooka 	sverrno = errno;
   1060  1.30  pooka 	free(envstr2);
   1061  1.30  pooka 	free(envstr);
   1062  1.30  pooka 	free(newenv);
   1063  1.30  pooka 	errno = sverrno;
   1064  1.30  pooka 	return rv;
   1065  1.28  pooka }
   1066  1.31  pooka 
   1067  1.31  pooka int
   1068  1.31  pooka rumpclient_daemon(int nochdir, int noclose)
   1069  1.31  pooka {
   1070  1.31  pooka 	struct rumpclient_fork *rf;
   1071  1.31  pooka 	int sverrno;
   1072  1.31  pooka 
   1073  1.31  pooka 	if ((rf = rumpclient_prefork()) == NULL)
   1074  1.31  pooka 		return -1;
   1075  1.31  pooka 
   1076  1.31  pooka 	if (daemon(nochdir, noclose) == -1) {
   1077  1.31  pooka 		sverrno = errno;
   1078  1.31  pooka 		rumpclient_fork_cancel(rf);
   1079  1.31  pooka 		errno = sverrno;
   1080  1.31  pooka 		return -1;
   1081  1.31  pooka 	}
   1082  1.31  pooka 
   1083  1.31  pooka 	if (rumpclient_fork_init(rf) == -1)
   1084  1.31  pooka 		return -1;
   1085  1.31  pooka 
   1086  1.31  pooka 	return 0;
   1087  1.31  pooka }
   1088