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