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d75a0b97
FB
1/*
2 * libslirp glue
3 *
4 * Copyright (c) 2004-2008 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
7df7482b 24#include "qemu/osdep.h"
e1c5a2b3 25#include "qemu-common.h"
1de7afc9 26#include "qemu/timer.h"
eae303ff 27#include "qemu/error-report.h"
dccfcd0e 28#include "sysemu/char.h"
f0cbd3ec 29#include "slirp.h"
062e5527 30#include "hw/hw.h"
f348b6d1 31#include "qemu/cutils.h"
f0cbd3ec 32
f0cbd3ec
FB
33/* host loopback address */
34struct in_addr loopback_addr;
648cd33e 35/* host loopback network mask */
0b8db8fe 36unsigned long loopback_mask;
f0cbd3ec 37
a13a4126 38/* emulated hosts use the MAC addr 52:55:IP:IP:IP:IP */
1a0ca1e1 39static const uint8_t special_ethaddr[ETH_ALEN] = {
a13a4126 40 0x52, 0x55, 0x00, 0x00, 0x00, 0x00
f0cbd3ec
FB
41};
42
f1d99bbd 43u_int curtime;
f1d99bbd 44
72cf2d4f
BS
45static QTAILQ_HEAD(slirp_instances, Slirp) slirp_instances =
46 QTAILQ_HEAD_INITIALIZER(slirp_instances);
115defd1 47
9e3a95ef
SW
48static struct in_addr dns_addr;
49static u_int dns_addr_time;
df7a86ed 50
9b0ca6cc
LPF
51#define TIMEOUT_FAST 2 /* milliseconds */
52#define TIMEOUT_SLOW 499 /* milliseconds */
53/* for the aging of certain requests like DNS */
54#define TIMEOUT_DEFAULT 1000 /* milliseconds */
55
f0cbd3ec
FB
56#ifdef _WIN32
57
df7a86ed 58int get_dns_addr(struct in_addr *pdns_addr)
f0cbd3ec 59{
379ff53d
FB
60 FIXED_INFO *FixedInfo=NULL;
61 ULONG BufLen;
62 DWORD ret;
63 IP_ADDR_STRING *pIPAddr;
64 struct in_addr tmp_addr;
3b46e624 65
9b0ca6cc 66 if (dns_addr.s_addr != 0 && (curtime - dns_addr_time) < TIMEOUT_DEFAULT) {
df7a86ed
ES
67 *pdns_addr = dns_addr;
68 return 0;
69 }
70
379ff53d
FB
71 FixedInfo = (FIXED_INFO *)GlobalAlloc(GPTR, sizeof(FIXED_INFO));
72 BufLen = sizeof(FIXED_INFO);
3b46e624 73
379ff53d
FB
74 if (ERROR_BUFFER_OVERFLOW == GetNetworkParams(FixedInfo, &BufLen)) {
75 if (FixedInfo) {
76 GlobalFree(FixedInfo);
77 FixedInfo = NULL;
78 }
79 FixedInfo = GlobalAlloc(GPTR, BufLen);
80 }
5fafdf24 81
379ff53d
FB
82 if ((ret = GetNetworkParams(FixedInfo, &BufLen)) != ERROR_SUCCESS) {
83 printf("GetNetworkParams failed. ret = %08x\n", (u_int)ret );
84 if (FixedInfo) {
85 GlobalFree(FixedInfo);
86 FixedInfo = NULL;
87 }
88 return -1;
89 }
3b46e624 90
379ff53d
FB
91 pIPAddr = &(FixedInfo->DnsServerList);
92 inet_aton(pIPAddr->IpAddress.String, &tmp_addr);
93 *pdns_addr = tmp_addr;
df7a86ed
ES
94 dns_addr = tmp_addr;
95 dns_addr_time = curtime;
379ff53d
FB
96 if (FixedInfo) {
97 GlobalFree(FixedInfo);
98 FixedInfo = NULL;
99 }
100 return 0;
f0cbd3ec
FB
101}
102
df461894
JK
103static void winsock_cleanup(void)
104{
105 WSACleanup();
106}
107
f0cbd3ec
FB
108#else
109
1e6eec8b 110static struct stat dns_addr_stat;
df7a86ed
ES
111
112int get_dns_addr(struct in_addr *pdns_addr)
f0cbd3ec
FB
113{
114 char buff[512];
363a37d5 115 char buff2[257];
f0cbd3ec
FB
116 FILE *f;
117 int found = 0;
118 struct in_addr tmp_addr;
3b46e624 119
df7a86ed
ES
120 if (dns_addr.s_addr != 0) {
121 struct stat old_stat;
9b0ca6cc 122 if ((curtime - dns_addr_time) < TIMEOUT_DEFAULT) {
df7a86ed
ES
123 *pdns_addr = dns_addr;
124 return 0;
125 }
126 old_stat = dns_addr_stat;
127 if (stat("/etc/resolv.conf", &dns_addr_stat) != 0)
128 return -1;
129 if ((dns_addr_stat.st_dev == old_stat.st_dev)
130 && (dns_addr_stat.st_ino == old_stat.st_ino)
131 && (dns_addr_stat.st_size == old_stat.st_size)
132 && (dns_addr_stat.st_mtime == old_stat.st_mtime)) {
133 *pdns_addr = dns_addr;
134 return 0;
135 }
136 }
137
f0cbd3ec
FB
138 f = fopen("/etc/resolv.conf", "r");
139 if (!f)
140 return -1;
141
31a60e22 142#ifdef DEBUG
02d16089 143 fprintf(stderr, "IP address of your DNS(s): ");
31a60e22 144#endif
f0cbd3ec
FB
145 while (fgets(buff, 512, f) != NULL) {
146 if (sscanf(buff, "nameserver%*[ \t]%256s", buff2) == 1) {
147 if (!inet_aton(buff2, &tmp_addr))
148 continue;
f0cbd3ec 149 /* If it's the first one, set it to dns_addr */
df7a86ed 150 if (!found) {
f0cbd3ec 151 *pdns_addr = tmp_addr;
df7a86ed
ES
152 dns_addr = tmp_addr;
153 dns_addr_time = curtime;
154 }
31a60e22 155#ifdef DEBUG
f0cbd3ec 156 else
02d16089 157 fprintf(stderr, ", ");
31a60e22 158#endif
f0cbd3ec 159 if (++found > 3) {
31a60e22 160#ifdef DEBUG
02d16089 161 fprintf(stderr, "(more)");
31a60e22 162#endif
f0cbd3ec 163 break;
31a60e22
BS
164 }
165#ifdef DEBUG
166 else
02d16089 167 fprintf(stderr, "%s", inet_ntoa(tmp_addr));
31a60e22 168#endif
f0cbd3ec
FB
169 }
170 }
1d43a717 171 fclose(f);
f0cbd3ec
FB
172 if (!found)
173 return -1;
174 return 0;
175}
176
177#endif
178
df461894 179static void slirp_init_once(void)
379ff53d 180{
df461894 181 static int initialized;
df461894
JK
182#ifdef _WIN32
183 WSADATA Data;
379ff53d
FB
184#endif
185
df461894
JK
186 if (initialized) {
187 return;
188 }
189 initialized = 1;
190
191#ifdef _WIN32
192 WSAStartup(MAKEWORD(2,0), &Data);
193 atexit(winsock_cleanup);
194#endif
195
196 loopback_addr.s_addr = htonl(INADDR_LOOPBACK);
648cd33e 197 loopback_mask = htonl(IN_CLASSA_NET);
df461894
JK
198}
199
062e5527
AL
200static void slirp_state_save(QEMUFile *f, void *opaque);
201static int slirp_state_load(QEMUFile *f, void *opaque, int version_id);
202
9f8bd042
JK
203Slirp *slirp_init(int restricted, struct in_addr vnetwork,
204 struct in_addr vnetmask, struct in_addr vhost,
7aac531e
YB
205 struct in6_addr vprefix_addr6, uint8_t vprefix_len,
206 struct in6_addr vhost6, const char *vhostname,
207 const char *tftp_path, const char *bootfile,
208 struct in_addr vdhcp_start, struct in_addr vnameserver,
209 struct in6_addr vnameserver6, const char **vdnssearch,
63d2960b 210 void *opaque)
f0cbd3ec 211{
7267c094 212 Slirp *slirp = g_malloc0(sizeof(Slirp));
460fec67 213
df461894 214 slirp_init_once();
379ff53d 215
0d6ff71a 216 slirp->grand = g_rand_new();
460fec67 217 slirp->restricted = restricted;
f0cbd3ec 218
460fec67
JK
219 if_init(slirp);
220 ip_init(slirp);
0d6ff71a 221 ip6_init(slirp);
f0cbd3ec
FB
222
223 /* Initialise mbufs *after* setting the MTU */
460fec67 224 m_init(slirp);
f0cbd3ec 225
460fec67
JK
226 slirp->vnetwork_addr = vnetwork;
227 slirp->vnetwork_mask = vnetmask;
228 slirp->vhost_addr = vhost;
7aac531e
YB
229 slirp->vprefix_addr6 = vprefix_addr6;
230 slirp->vprefix_len = vprefix_len;
231 slirp->vhost_addr6 = vhost6;
c92ef6a2 232 if (vhostname) {
460fec67
JK
233 pstrcpy(slirp->client_hostname, sizeof(slirp->client_hostname),
234 vhostname);
a13a4126 235 }
c64f50d1
MA
236 slirp->tftp_prefix = g_strdup(tftp_path);
237 slirp->bootp_filename = g_strdup(bootfile);
460fec67
JK
238 slirp->vdhcp_startaddr = vdhcp_start;
239 slirp->vnameserver_addr = vnameserver;
7aac531e 240 slirp->vnameserver_addr6 = vnameserver6;
ad196a9d 241
63d2960b
KS
242 if (vdnssearch) {
243 translate_dnssearch(slirp, vdnssearch);
244 }
245
9f8bd042
JK
246 slirp->opaque = opaque;
247
eae303ff 248 register_savevm(NULL, "slirp", 0, 4,
0be71e32 249 slirp_state_save, slirp_state_load, slirp);
9f8bd042 250
72cf2d4f 251 QTAILQ_INSERT_TAIL(&slirp_instances, slirp, entry);
ad0d8c4c 252
9f8bd042 253 return slirp;
f0cbd3ec
FB
254}
255
ad0d8c4c
JK
256void slirp_cleanup(Slirp *slirp)
257{
72cf2d4f 258 QTAILQ_REMOVE(&slirp_instances, slirp, entry);
b1c99fcd 259
0be71e32 260 unregister_savevm(NULL, "slirp", slirp);
ad0d8c4c 261
a68adc22 262 ip_cleanup(slirp);
0d6ff71a 263 ip6_cleanup(slirp);
a68adc22
JK
264 m_cleanup(slirp);
265
0d6ff71a
GS
266 g_rand_free(slirp->grand);
267
63d2960b 268 g_free(slirp->vdnssearch);
7267c094
AL
269 g_free(slirp->tftp_prefix);
270 g_free(slirp->bootp_filename);
271 g_free(slirp);
ad0d8c4c
JK
272}
273
f0cbd3ec
FB
274#define CONN_CANFSEND(so) (((so)->so_state & (SS_FCANTSENDMORE|SS_ISFCONNECTED)) == SS_ISFCONNECTED)
275#define CONN_CANFRCV(so) (((so)->so_state & (SS_FCANTRCVMORE|SS_ISFCONNECTED)) == SS_ISFCONNECTED)
f0cbd3ec 276
a42e9c41 277static void slirp_update_timeout(uint32_t *timeout)
7c7db755 278{
a42e9c41
LPF
279 Slirp *slirp;
280 uint32_t t;
281
282 if (*timeout <= TIMEOUT_FAST) {
283 return;
284 }
426e3e6c
JK
285
286 t = MIN(1000, *timeout);
a42e9c41
LPF
287
288 /* If we have tcp timeout with slirp, then we will fill @timeout with
289 * more precise value.
290 */
291 QTAILQ_FOREACH(slirp, &slirp_instances, entry) {
292 if (slirp->time_fasttimo) {
293 *timeout = TIMEOUT_FAST;
294 return;
295 }
296 if (slirp->do_slowtimo) {
297 t = MIN(TIMEOUT_SLOW, t);
298 }
7c7db755 299 }
a42e9c41 300 *timeout = t;
7c7db755
SS
301}
302
a42e9c41 303void slirp_pollfds_fill(GArray *pollfds, uint32_t *timeout)
f0cbd3ec 304{
b1c99fcd 305 Slirp *slirp;
f0cbd3ec 306 struct socket *so, *so_next;
f0cbd3ec 307
72cf2d4f 308 if (QTAILQ_EMPTY(&slirp_instances)) {
d918f23e
JK
309 return;
310 }
311
cf1d078e
SH
312 /*
313 * First, TCP sockets
314 */
e6d43cfb 315
cf1d078e
SH
316 QTAILQ_FOREACH(slirp, &slirp_instances, entry) {
317 /*
318 * *_slowtimo needs calling if there are IP fragments
319 * in the fragment queue, or there are TCP connections active
320 */
fe0ff43c 321 slirp->do_slowtimo = ((slirp->tcb.so_next != &slirp->tcb) ||
cf1d078e
SH
322 (&slirp->ipq.ip_link != slirp->ipq.ip_link.next));
323
324 for (so = slirp->tcb.so_next; so != &slirp->tcb;
325 so = so_next) {
8917c3bd
SH
326 int events = 0;
327
cf1d078e
SH
328 so_next = so->so_next;
329
8917c3bd
SH
330 so->pollfds_idx = -1;
331
cf1d078e
SH
332 /*
333 * See if we need a tcp_fasttimo
334 */
fe0ff43c
LPF
335 if (slirp->time_fasttimo == 0 &&
336 so->so_tcpcb->t_flags & TF_DELACK) {
337 slirp->time_fasttimo = curtime; /* Flag when want a fasttimo */
cf1d078e 338 }
e6d43cfb 339
cf1d078e
SH
340 /*
341 * NOFDREF can include still connecting to local-host,
342 * newly socreated() sockets etc. Don't want to select these.
343 */
344 if (so->so_state & SS_NOFDREF || so->s == -1) {
345 continue;
346 }
e6d43cfb 347
cf1d078e
SH
348 /*
349 * Set for reading sockets which are accepting
350 */
351 if (so->so_state & SS_FACCEPTCONN) {
8917c3bd
SH
352 GPollFD pfd = {
353 .fd = so->s,
354 .events = G_IO_IN | G_IO_HUP | G_IO_ERR,
355 };
356 so->pollfds_idx = pollfds->len;
357 g_array_append_val(pollfds, pfd);
cf1d078e
SH
358 continue;
359 }
360
361 /*
362 * Set for writing sockets which are connecting
363 */
364 if (so->so_state & SS_ISFCONNECTING) {
8917c3bd
SH
365 GPollFD pfd = {
366 .fd = so->s,
367 .events = G_IO_OUT | G_IO_ERR,
368 };
369 so->pollfds_idx = pollfds->len;
370 g_array_append_val(pollfds, pfd);
cf1d078e
SH
371 continue;
372 }
373
374 /*
375 * Set for writing if we are connected, can send more, and
376 * we have something to send
377 */
378 if (CONN_CANFSEND(so) && so->so_rcv.sb_cc) {
8917c3bd 379 events |= G_IO_OUT | G_IO_ERR;
cf1d078e
SH
380 }
381
382 /*
383 * Set for reading (and urgent data) if we are connected, can
384 * receive more, and we have room for it XXX /2 ?
385 */
386 if (CONN_CANFRCV(so) &&
387 (so->so_snd.sb_cc < (so->so_snd.sb_datalen/2))) {
8917c3bd
SH
388 events |= G_IO_IN | G_IO_HUP | G_IO_ERR | G_IO_PRI;
389 }
390
391 if (events) {
392 GPollFD pfd = {
393 .fd = so->s,
394 .events = events,
395 };
396 so->pollfds_idx = pollfds->len;
397 g_array_append_val(pollfds, pfd);
cf1d078e
SH
398 }
399 }
400
401 /*
402 * UDP sockets
403 */
404 for (so = slirp->udb.so_next; so != &slirp->udb;
405 so = so_next) {
406 so_next = so->so_next;
407
8917c3bd
SH
408 so->pollfds_idx = -1;
409
cf1d078e
SH
410 /*
411 * See if it's timed out
412 */
413 if (so->so_expire) {
414 if (so->so_expire <= curtime) {
415 udp_detach(so);
416 continue;
417 } else {
fe0ff43c 418 slirp->do_slowtimo = true; /* Let socket expire */
e6d43cfb 419 }
cf1d078e
SH
420 }
421
422 /*
423 * When UDP packets are received from over the
424 * link, they're sendto()'d straight away, so
425 * no need for setting for writing
426 * Limit the number of packets queued by this session
427 * to 4. Note that even though we try and limit this
428 * to 4 packets, the session could have more queued
429 * if the packets needed to be fragmented
430 * (XXX <= 4 ?)
431 */
432 if ((so->so_state & SS_ISFCONNECTED) && so->so_queued <= 4) {
8917c3bd
SH
433 GPollFD pfd = {
434 .fd = so->s,
435 .events = G_IO_IN | G_IO_HUP | G_IO_ERR,
436 };
437 so->pollfds_idx = pollfds->len;
438 g_array_append_val(pollfds, pfd);
cf1d078e
SH
439 }
440 }
5fafdf24 441
cf1d078e
SH
442 /*
443 * ICMP sockets
444 */
445 for (so = slirp->icmp.so_next; so != &slirp->icmp;
446 so = so_next) {
447 so_next = so->so_next;
448
8917c3bd
SH
449 so->pollfds_idx = -1;
450
cf1d078e
SH
451 /*
452 * See if it's timed out
453 */
454 if (so->so_expire) {
455 if (so->so_expire <= curtime) {
456 icmp_detach(so);
457 continue;
458 } else {
fe0ff43c 459 slirp->do_slowtimo = true; /* Let socket expire */
cf1d078e
SH
460 }
461 }
462
463 if (so->so_state & SS_ISFCONNECTED) {
8917c3bd
SH
464 GPollFD pfd = {
465 .fd = so->s,
466 .events = G_IO_IN | G_IO_HUP | G_IO_ERR,
467 };
468 so->pollfds_idx = pollfds->len;
469 g_array_append_val(pollfds, pfd);
cf1d078e
SH
470 }
471 }
472 }
a42e9c41 473 slirp_update_timeout(timeout);
5fafdf24 474}
f0cbd3ec 475
8917c3bd 476void slirp_pollfds_poll(GArray *pollfds, int select_error)
f0cbd3ec 477{
b1c99fcd 478 Slirp *slirp;
f0cbd3ec
FB
479 struct socket *so, *so_next;
480 int ret;
481
72cf2d4f 482 if (QTAILQ_EMPTY(&slirp_instances)) {
d918f23e
JK
483 return;
484 }
485
bc72ad67 486 curtime = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
5fafdf24 487
72cf2d4f 488 QTAILQ_FOREACH(slirp, &slirp_instances, entry) {
cf1d078e
SH
489 /*
490 * See if anything has timed out
491 */
9b0ca6cc
LPF
492 if (slirp->time_fasttimo &&
493 ((curtime - slirp->time_fasttimo) >= TIMEOUT_FAST)) {
cf1d078e 494 tcp_fasttimo(slirp);
fe0ff43c 495 slirp->time_fasttimo = 0;
cf1d078e 496 }
9b0ca6cc
LPF
497 if (slirp->do_slowtimo &&
498 ((curtime - slirp->last_slowtimo) >= TIMEOUT_SLOW)) {
cf1d078e
SH
499 ip_slowtimo(slirp);
500 tcp_slowtimo(slirp);
fe0ff43c 501 slirp->last_slowtimo = curtime;
cf1d078e
SH
502 }
503
504 /*
505 * Check sockets
506 */
507 if (!select_error) {
508 /*
509 * Check TCP sockets
510 */
511 for (so = slirp->tcb.so_next; so != &slirp->tcb;
512 so = so_next) {
8917c3bd
SH
513 int revents;
514
cf1d078e
SH
515 so_next = so->so_next;
516
8917c3bd
SH
517 revents = 0;
518 if (so->pollfds_idx != -1) {
519 revents = g_array_index(pollfds, GPollFD,
520 so->pollfds_idx).revents;
521 }
522
cf1d078e
SH
523 if (so->so_state & SS_NOFDREF || so->s == -1) {
524 continue;
525 }
526
527 /*
528 * Check for URG data
529 * This will soread as well, so no need to
8917c3bd 530 * test for G_IO_IN below if this succeeds
cf1d078e 531 */
8917c3bd 532 if (revents & G_IO_PRI) {
cf1d078e
SH
533 sorecvoob(so);
534 }
535 /*
536 * Check sockets for reading
537 */
8917c3bd 538 else if (revents & (G_IO_IN | G_IO_HUP | G_IO_ERR)) {
cf1d078e
SH
539 /*
540 * Check for incoming connections
541 */
542 if (so->so_state & SS_FACCEPTCONN) {
543 tcp_connect(so);
544 continue;
545 } /* else */
546 ret = soread(so);
547
548 /* Output it if we read something */
549 if (ret > 0) {
550 tcp_output(sototcpcb(so));
551 }
552 }
553
554 /*
555 * Check sockets for writing
556 */
8917c3bd
SH
557 if (!(so->so_state & SS_NOFDREF) &&
558 (revents & (G_IO_OUT | G_IO_ERR))) {
cf1d078e
SH
559 /*
560 * Check for non-blocking, still-connecting sockets
561 */
562 if (so->so_state & SS_ISFCONNECTING) {
563 /* Connected */
564 so->so_state &= ~SS_ISFCONNECTING;
565
566 ret = send(so->s, (const void *) &ret, 0, 0);
567 if (ret < 0) {
568 /* XXXXX Must fix, zero bytes is a NOP */
569 if (errno == EAGAIN || errno == EWOULDBLOCK ||
570 errno == EINPROGRESS || errno == ENOTCONN) {
571 continue;
572 }
573
574 /* else failed */
575 so->so_state &= SS_PERSISTENT_MASK;
576 so->so_state |= SS_NOFDREF;
f0cbd3ec 577 }
cf1d078e
SH
578 /* else so->so_state &= ~SS_ISFCONNECTING; */
579
580 /*
581 * Continue tcp_input
582 */
9dfbf250
GS
583 tcp_input((struct mbuf *)NULL, sizeof(struct ip), so,
584 so->so_ffamily);
cf1d078e
SH
585 /* continue; */
586 } else {
587 ret = sowrite(so);
588 }
589 /*
590 * XXXXX If we wrote something (a lot), there
591 * could be a need for a window update.
592 * In the worst case, the remote will send
593 * a window probe to get things going again
594 */
595 }
e6d43cfb
JK
596
597 /*
cf1d078e
SH
598 * Probe a still-connecting, non-blocking socket
599 * to check if it's still alive
e6d43cfb 600 */
cf1d078e
SH
601#ifdef PROBE_CONN
602 if (so->so_state & SS_ISFCONNECTING) {
603 ret = qemu_recv(so->s, &ret, 0, 0);
604
605 if (ret < 0) {
606 /* XXX */
607 if (errno == EAGAIN || errno == EWOULDBLOCK ||
608 errno == EINPROGRESS || errno == ENOTCONN) {
609 continue; /* Still connecting, continue */
610 }
611
612 /* else failed */
613 so->so_state &= SS_PERSISTENT_MASK;
614 so->so_state |= SS_NOFDREF;
615
616 /* tcp_input will take care of it */
617 } else {
618 ret = send(so->s, &ret, 0, 0);
619 if (ret < 0) {
620 /* XXX */
621 if (errno == EAGAIN || errno == EWOULDBLOCK ||
622 errno == EINPROGRESS || errno == ENOTCONN) {
623 continue;
624 }
625 /* else failed */
626 so->so_state &= SS_PERSISTENT_MASK;
627 so->so_state |= SS_NOFDREF;
628 } else {
629 so->so_state &= ~SS_ISFCONNECTING;
630 }
e6d43cfb 631
e6d43cfb 632 }
9dfbf250
GS
633 tcp_input((struct mbuf *)NULL, sizeof(struct ip), so,
634 so->so_ffamily);
cf1d078e
SH
635 } /* SS_ISFCONNECTING */
636#endif
637 }
638
639 /*
640 * Now UDP sockets.
641 * Incoming packets are sent straight away, they're not buffered.
642 * Incoming UDP data isn't buffered either.
643 */
644 for (so = slirp->udb.so_next; so != &slirp->udb;
645 so = so_next) {
8917c3bd
SH
646 int revents;
647
cf1d078e
SH
648 so_next = so->so_next;
649
8917c3bd
SH
650 revents = 0;
651 if (so->pollfds_idx != -1) {
652 revents = g_array_index(pollfds, GPollFD,
653 so->pollfds_idx).revents;
654 }
655
656 if (so->s != -1 &&
657 (revents & (G_IO_IN | G_IO_HUP | G_IO_ERR))) {
cf1d078e 658 sorecvfrom(so);
e6d43cfb 659 }
cf1d078e
SH
660 }
661
662 /*
663 * Check incoming ICMP relies.
664 */
665 for (so = slirp->icmp.so_next; so != &slirp->icmp;
666 so = so_next) {
8917c3bd
SH
667 int revents;
668
669 so_next = so->so_next;
670
671 revents = 0;
672 if (so->pollfds_idx != -1) {
673 revents = g_array_index(pollfds, GPollFD,
674 so->pollfds_idx).revents;
675 }
cf1d078e 676
8917c3bd
SH
677 if (so->s != -1 &&
678 (revents & (G_IO_IN | G_IO_HUP | G_IO_ERR))) {
cf1d078e
SH
679 icmp_receive(so);
680 }
681 }
682 }
5fafdf24 683
f3734319 684 if_start(slirp);
b1c99fcd 685 }
f0cbd3ec
FB
686}
687
460fec67 688static void arp_input(Slirp *slirp, const uint8_t *pkt, int pkt_len)
f0cbd3ec 689{
f0cbd3ec 690 struct arphdr *ah = (struct arphdr *)(pkt + ETH_HLEN);
dbf3c4b4 691 uint8_t arp_reply[max(ETH_HLEN + sizeof(struct arphdr), 64)];
f0cbd3ec
FB
692 struct ethhdr *reh = (struct ethhdr *)arp_reply;
693 struct arphdr *rah = (struct arphdr *)(arp_reply + ETH_HLEN);
694 int ar_op;
a3d4af03 695 struct ex_list *ex_ptr;
f0cbd3ec
FB
696
697 ar_op = ntohs(ah->ar_op);
698 switch(ar_op) {
699 case ARPOP_REQUEST:
1a0ca1e1
FC
700 if (ah->ar_tip == ah->ar_sip) {
701 /* Gratuitous ARP */
702 arp_table_add(slirp, ah->ar_sip, ah->ar_sha);
703 return;
704 }
705
460fec67
JK
706 if ((ah->ar_tip & slirp->vnetwork_mask.s_addr) ==
707 slirp->vnetwork_addr.s_addr) {
708 if (ah->ar_tip == slirp->vnameserver_addr.s_addr ||
709 ah->ar_tip == slirp->vhost_addr.s_addr)
a3d4af03 710 goto arp_ok;
460fec67 711 for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next) {
a13a4126 712 if (ex_ptr->ex_addr.s_addr == ah->ar_tip)
a3d4af03
FB
713 goto arp_ok;
714 }
715 return;
716 arp_ok:
dbf3c4b4 717 memset(arp_reply, 0, sizeof(arp_reply));
1a0ca1e1
FC
718
719 arp_table_add(slirp, ah->ar_sip, ah->ar_sha);
f0cbd3ec
FB
720
721 /* ARP request for alias/dns mac address */
722 memcpy(reh->h_dest, pkt + ETH_ALEN, ETH_ALEN);
a13a4126
JK
723 memcpy(reh->h_source, special_ethaddr, ETH_ALEN - 4);
724 memcpy(&reh->h_source[2], &ah->ar_tip, 4);
f0cbd3ec
FB
725 reh->h_proto = htons(ETH_P_ARP);
726
727 rah->ar_hrd = htons(1);
728 rah->ar_pro = htons(ETH_P_IP);
729 rah->ar_hln = ETH_ALEN;
730 rah->ar_pln = 4;
731 rah->ar_op = htons(ARPOP_REPLY);
732 memcpy(rah->ar_sha, reh->h_source, ETH_ALEN);
a13a4126 733 rah->ar_sip = ah->ar_tip;
f0cbd3ec 734 memcpy(rah->ar_tha, ah->ar_sha, ETH_ALEN);
a13a4126 735 rah->ar_tip = ah->ar_sip;
9f8bd042 736 slirp_output(slirp->opaque, arp_reply, sizeof(arp_reply));
f0cbd3ec
FB
737 }
738 break;
de806f07 739 case ARPOP_REPLY:
1a0ca1e1 740 arp_table_add(slirp, ah->ar_sip, ah->ar_sha);
de806f07 741 break;
f0cbd3ec
FB
742 default:
743 break;
744 }
745}
746
9f8bd042 747void slirp_input(Slirp *slirp, const uint8_t *pkt, int pkt_len)
f0cbd3ec
FB
748{
749 struct mbuf *m;
750 int proto;
751
752 if (pkt_len < ETH_HLEN)
753 return;
3b46e624 754
f0cbd3ec
FB
755 proto = ntohs(*(uint16_t *)(pkt + 12));
756 switch(proto) {
757 case ETH_P_ARP:
460fec67 758 arp_input(slirp, pkt, pkt_len);
f0cbd3ec
FB
759 break;
760 case ETH_P_IP:
0d6ff71a 761 case ETH_P_IPV6:
460fec67 762 m = m_get(slirp);
f0cbd3ec
FB
763 if (!m)
764 return;
98c63057
GS
765 /* Note: we add 2 to align the IP header on 4 bytes,
766 * and add the margin for the tcpiphdr overhead */
767 if (M_FREEROOM(m) < pkt_len + TCPIPHDR_DELTA + 2) {
768 m_inc(m, pkt_len + TCPIPHDR_DELTA + 2);
e8e880a7 769 }
98c63057
GS
770 m->m_len = pkt_len + TCPIPHDR_DELTA + 2;
771 memcpy(m->m_data + TCPIPHDR_DELTA + 2, pkt, pkt_len);
f0cbd3ec 772
98c63057
GS
773 m->m_data += TCPIPHDR_DELTA + 2 + ETH_HLEN;
774 m->m_len -= TCPIPHDR_DELTA + 2 + ETH_HLEN;
f0cbd3ec 775
0d6ff71a
GS
776 if (proto == ETH_P_IP) {
777 ip_input(m);
778 } else if (proto == ETH_P_IPV6) {
779 ip6_input(m);
780 }
f0cbd3ec 781 break;
0d6ff71a 782
f0cbd3ec
FB
783 default:
784 break;
785 }
786}
787
18137fba
GS
788/* Prepare the IPv4 packet to be sent to the ethernet device. Returns 1 if no
789 * packet should be sent, 0 if the packet must be re-queued, 2 if the packet
790 * is ready to go.
1ab74cea 791 */
18137fba
GS
792static int if_encap4(Slirp *slirp, struct mbuf *ifm, struct ethhdr *eh,
793 uint8_t ethaddr[ETH_ALEN])
f0cbd3ec 794{
1ab74cea 795 const struct ip *iph = (const struct ip *)ifm->m_data;
f0cbd3ec 796
959e4147
ST
797 if (iph->ip_dst.s_addr == 0) {
798 /* 0.0.0.0 can not be a destination address, something went wrong,
799 * avoid making it worse */
800 return 1;
801 }
1a0ca1e1 802 if (!arp_table_search(slirp, iph->ip_dst.s_addr, ethaddr)) {
de806f07
FB
803 uint8_t arp_req[ETH_HLEN + sizeof(struct arphdr)];
804 struct ethhdr *reh = (struct ethhdr *)arp_req;
805 struct arphdr *rah = (struct arphdr *)(arp_req + ETH_HLEN);
de806f07 806
fc3779a1 807 if (!ifm->resolution_requested) {
1ab74cea
FC
808 /* If the client addr is not known, send an ARP request */
809 memset(reh->h_dest, 0xff, ETH_ALEN);
810 memcpy(reh->h_source, special_ethaddr, ETH_ALEN - 4);
811 memcpy(&reh->h_source[2], &slirp->vhost_addr, 4);
812 reh->h_proto = htons(ETH_P_ARP);
813 rah->ar_hrd = htons(1);
814 rah->ar_pro = htons(ETH_P_IP);
815 rah->ar_hln = ETH_ALEN;
816 rah->ar_pln = 4;
817 rah->ar_op = htons(ARPOP_REQUEST);
818
819 /* source hw addr */
820 memcpy(rah->ar_sha, special_ethaddr, ETH_ALEN - 4);
821 memcpy(&rah->ar_sha[2], &slirp->vhost_addr, 4);
822
823 /* source IP */
824 rah->ar_sip = slirp->vhost_addr.s_addr;
825
826 /* target hw addr (none) */
827 memset(rah->ar_tha, 0, ETH_ALEN);
828
829 /* target IP */
830 rah->ar_tip = iph->ip_dst.s_addr;
831 slirp->client_ipaddr = iph->ip_dst;
832 slirp_output(slirp->opaque, arp_req, sizeof(arp_req));
fc3779a1 833 ifm->resolution_requested = true;
e3a110b5
JK
834
835 /* Expire request and drop outgoing packet after 1 second */
bc72ad67 836 ifm->expiration_date = qemu_clock_get_ns(QEMU_CLOCK_REALTIME) + 1000000000ULL;
1ab74cea
FC
837 }
838 return 0;
de806f07 839 } else {
a13a4126 840 memcpy(eh->h_source, special_ethaddr, ETH_ALEN - 4);
de806f07 841 /* XXX: not correct */
460fec67 842 memcpy(&eh->h_source[2], &slirp->vhost_addr, 4);
de806f07 843 eh->h_proto = htons(ETH_P_IP);
18137fba
GS
844
845 /* Send this */
846 return 2;
847 }
848}
849
0d6ff71a
GS
850/* Prepare the IPv6 packet to be sent to the ethernet device. Returns 1 if no
851 * packet should be sent, 0 if the packet must be re-queued, 2 if the packet
852 * is ready to go.
853 */
854static int if_encap6(Slirp *slirp, struct mbuf *ifm, struct ethhdr *eh,
855 uint8_t ethaddr[ETH_ALEN])
856{
857 const struct ip6 *ip6h = mtod(ifm, const struct ip6 *);
858 if (!ndp_table_search(slirp, ip6h->ip_dst, ethaddr)) {
859 if (!ifm->resolution_requested) {
860 ndp_send_ns(slirp, ip6h->ip_dst);
861 ifm->resolution_requested = true;
862 ifm->expiration_date =
863 qemu_clock_get_ns(QEMU_CLOCK_REALTIME) + 1000000000ULL;
864 }
865 return 0;
866 } else {
867 eh->h_proto = htons(ETH_P_IPV6);
868 in6_compute_ethaddr(ip6h->ip_src, eh->h_source);
869
870 /* Send this */
871 return 2;
872 }
873}
874
18137fba
GS
875/* Output the IP packet to the ethernet device. Returns 0 if the packet must be
876 * re-queued.
877 */
878int if_encap(Slirp *slirp, struct mbuf *ifm)
879{
880 uint8_t buf[1600];
881 struct ethhdr *eh = (struct ethhdr *)buf;
882 uint8_t ethaddr[ETH_ALEN];
883 const struct ip *iph = (const struct ip *)ifm->m_data;
884 int ret;
885
886 if (ifm->m_len + ETH_HLEN > sizeof(buf)) {
1ab74cea 887 return 1;
de806f07 888 }
18137fba
GS
889
890 switch (iph->ip_v) {
891 case IPVERSION:
892 ret = if_encap4(slirp, ifm, eh, ethaddr);
893 if (ret < 2) {
894 return ret;
895 }
896 break;
897
0d6ff71a
GS
898 case IP6VERSION:
899 ret = if_encap6(slirp, ifm, eh, ethaddr);
900 if (ret < 2) {
901 return ret;
902 }
903 break;
904
18137fba 905 default:
0d6ff71a 906 g_assert_not_reached();
18137fba
GS
907 break;
908 }
909
910 memcpy(eh->h_dest, ethaddr, ETH_ALEN);
911 DEBUG_ARGS((dfd, " src = %02x:%02x:%02x:%02x:%02x:%02x\n",
912 eh->h_source[0], eh->h_source[1], eh->h_source[2],
913 eh->h_source[3], eh->h_source[4], eh->h_source[5]));
914 DEBUG_ARGS((dfd, " dst = %02x:%02x:%02x:%02x:%02x:%02x\n",
915 eh->h_dest[0], eh->h_dest[1], eh->h_dest[2],
916 eh->h_dest[3], eh->h_dest[4], eh->h_dest[5]));
917 memcpy(buf + sizeof(struct ethhdr), ifm->m_data, ifm->m_len);
918 slirp_output(slirp->opaque, buf, ifm->m_len + ETH_HLEN);
919 return 1;
f0cbd3ec 920}
9bf05444 921
9c12a6f2 922/* Drop host forwarding rule, return 0 if found. */
9f8bd042
JK
923int slirp_remove_hostfwd(Slirp *slirp, int is_udp, struct in_addr host_addr,
924 int host_port)
c1261d8d
AG
925{
926 struct socket *so;
460fec67 927 struct socket *head = (is_udp ? &slirp->udb : &slirp->tcb);
2ad82cf9
JK
928 struct sockaddr_in addr;
929 int port = htons(host_port);
930 socklen_t addr_len;
c1261d8d 931
c1261d8d 932 for (so = head->so_next; so != head; so = so->so_next) {
2ad82cf9 933 addr_len = sizeof(addr);
9c12a6f2
JK
934 if ((so->so_state & SS_HOSTFWD) &&
935 getsockname(so->s, (struct sockaddr *)&addr, &addr_len) == 0 &&
3c6a0580 936 addr.sin_addr.s_addr == host_addr.s_addr &&
2ad82cf9 937 addr.sin_port == port) {
c1261d8d
AG
938 close(so->s);
939 sofree(so);
9c12a6f2 940 return 0;
c1261d8d
AG
941 }
942 }
943
9c12a6f2 944 return -1;
c1261d8d
AG
945}
946
9f8bd042
JK
947int slirp_add_hostfwd(Slirp *slirp, int is_udp, struct in_addr host_addr,
948 int host_port, struct in_addr guest_addr, int guest_port)
9bf05444 949{
a13a4126 950 if (!guest_addr.s_addr) {
460fec67 951 guest_addr = slirp->vdhcp_startaddr;
a13a4126 952 }
9bf05444 953 if (is_udp) {
460fec67
JK
954 if (!udp_listen(slirp, host_addr.s_addr, htons(host_port),
955 guest_addr.s_addr, htons(guest_port), SS_HOSTFWD))
9bf05444
FB
956 return -1;
957 } else {
460fec67
JK
958 if (!tcp_listen(slirp, host_addr.s_addr, htons(host_port),
959 guest_addr.s_addr, htons(guest_port), SS_HOSTFWD))
9bf05444
FB
960 return -1;
961 }
962 return 0;
963}
a3d4af03 964
9f8bd042 965int slirp_add_exec(Slirp *slirp, int do_pty, const void *args,
bb53fc53 966 struct in_addr *guest_addr, int guest_port)
a3d4af03 967{
bb53fc53
JK
968 if (!guest_addr->s_addr) {
969 guest_addr->s_addr = slirp->vnetwork_addr.s_addr |
460fec67 970 (htonl(0x0204) & ~slirp->vnetwork_mask.s_addr);
c92ef6a2 971 }
bb53fc53 972 if ((guest_addr->s_addr & slirp->vnetwork_mask.s_addr) !=
460fec67 973 slirp->vnetwork_addr.s_addr ||
bb53fc53
JK
974 guest_addr->s_addr == slirp->vhost_addr.s_addr ||
975 guest_addr->s_addr == slirp->vnameserver_addr.s_addr) {
a13a4126
JK
976 return -1;
977 }
bb53fc53 978 return add_exec(&slirp->exec_list, do_pty, (char *)args, *guest_addr,
a13a4126 979 htons(guest_port));
a3d4af03 980}
e1c5a2b3
AL
981
982ssize_t slirp_send(struct socket *so, const void *buf, size_t len, int flags)
983{
cf1d078e
SH
984 if (so->s == -1 && so->extra) {
985 qemu_chr_fe_write(so->extra, buf, len);
986 return len;
987 }
e1c5a2b3 988
cf1d078e 989 return send(so->s, buf, len, flags);
e1c5a2b3
AL
990}
991
a13a4126 992static struct socket *
460fec67 993slirp_find_ctl_socket(Slirp *slirp, struct in_addr guest_addr, int guest_port)
e1c5a2b3 994{
a13a4126 995 struct socket *so;
e1c5a2b3 996
460fec67 997 for (so = slirp->tcb.so_next; so != &slirp->tcb; so = so->so_next) {
a13a4126
JK
998 if (so->so_faddr.s_addr == guest_addr.s_addr &&
999 htons(so->so_fport) == guest_port) {
1000 return so;
1001 }
1002 }
1003 return NULL;
e1c5a2b3
AL
1004}
1005
9f8bd042
JK
1006size_t slirp_socket_can_recv(Slirp *slirp, struct in_addr guest_addr,
1007 int guest_port)
e1c5a2b3 1008{
cf1d078e
SH
1009 struct iovec iov[2];
1010 struct socket *so;
e1c5a2b3 1011
cf1d078e 1012 so = slirp_find_ctl_socket(slirp, guest_addr, guest_port);
e1c5a2b3 1013
cf1d078e
SH
1014 if (!so || so->so_state & SS_NOFDREF) {
1015 return 0;
1016 }
e1c5a2b3 1017
cf1d078e
SH
1018 if (!CONN_CANFRCV(so) || so->so_snd.sb_cc >= (so->so_snd.sb_datalen/2)) {
1019 return 0;
1020 }
e1c5a2b3 1021
cf1d078e 1022 return sopreprbuf(so, iov, NULL);
e1c5a2b3
AL
1023}
1024
9f8bd042 1025void slirp_socket_recv(Slirp *slirp, struct in_addr guest_addr, int guest_port,
c92ef6a2 1026 const uint8_t *buf, int size)
e1c5a2b3
AL
1027{
1028 int ret;
460fec67 1029 struct socket *so = slirp_find_ctl_socket(slirp, guest_addr, guest_port);
a13a4126 1030
e1c5a2b3
AL
1031 if (!so)
1032 return;
1033
0580ac91 1034 ret = soreadbuf(so, (const char *)buf, size);
e1c5a2b3
AL
1035
1036 if (ret > 0)
1037 tcp_output(sototcpcb(so));
1038}
062e5527
AL
1039
1040static void slirp_tcp_save(QEMUFile *f, struct tcpcb *tp)
1041{
1042 int i;
1043
1044 qemu_put_sbe16(f, tp->t_state);
1045 for (i = 0; i < TCPT_NTIMERS; i++)
1046 qemu_put_sbe16(f, tp->t_timer[i]);
1047 qemu_put_sbe16(f, tp->t_rxtshift);
1048 qemu_put_sbe16(f, tp->t_rxtcur);
1049 qemu_put_sbe16(f, tp->t_dupacks);
1050 qemu_put_be16(f, tp->t_maxseg);
1051 qemu_put_sbyte(f, tp->t_force);
1052 qemu_put_be16(f, tp->t_flags);
1053 qemu_put_be32(f, tp->snd_una);
1054 qemu_put_be32(f, tp->snd_nxt);
1055 qemu_put_be32(f, tp->snd_up);
1056 qemu_put_be32(f, tp->snd_wl1);
1057 qemu_put_be32(f, tp->snd_wl2);
1058 qemu_put_be32(f, tp->iss);
1059 qemu_put_be32(f, tp->snd_wnd);
1060 qemu_put_be32(f, tp->rcv_wnd);
1061 qemu_put_be32(f, tp->rcv_nxt);
1062 qemu_put_be32(f, tp->rcv_up);
1063 qemu_put_be32(f, tp->irs);
1064 qemu_put_be32(f, tp->rcv_adv);
1065 qemu_put_be32(f, tp->snd_max);
1066 qemu_put_be32(f, tp->snd_cwnd);
1067 qemu_put_be32(f, tp->snd_ssthresh);
1068 qemu_put_sbe16(f, tp->t_idle);
1069 qemu_put_sbe16(f, tp->t_rtt);
1070 qemu_put_be32(f, tp->t_rtseq);
1071 qemu_put_sbe16(f, tp->t_srtt);
1072 qemu_put_sbe16(f, tp->t_rttvar);
1073 qemu_put_be16(f, tp->t_rttmin);
1074 qemu_put_be32(f, tp->max_sndwnd);
1075 qemu_put_byte(f, tp->t_oobflags);
1076 qemu_put_byte(f, tp->t_iobc);
1077 qemu_put_sbe16(f, tp->t_softerror);
1078 qemu_put_byte(f, tp->snd_scale);
1079 qemu_put_byte(f, tp->rcv_scale);
1080 qemu_put_byte(f, tp->request_r_scale);
1081 qemu_put_byte(f, tp->requested_s_scale);
1082 qemu_put_be32(f, tp->ts_recent);
1083 qemu_put_be32(f, tp->ts_recent_age);
1084 qemu_put_be32(f, tp->last_ack_sent);
1085}
1086
1087static void slirp_sbuf_save(QEMUFile *f, struct sbuf *sbuf)
1088{
1089 uint32_t off;
1090
1091 qemu_put_be32(f, sbuf->sb_cc);
1092 qemu_put_be32(f, sbuf->sb_datalen);
1093 off = (uint32_t)(sbuf->sb_wptr - sbuf->sb_data);
1094 qemu_put_sbe32(f, off);
1095 off = (uint32_t)(sbuf->sb_rptr - sbuf->sb_data);
1096 qemu_put_sbe32(f, off);
1097 qemu_put_buffer(f, (unsigned char*)sbuf->sb_data, sbuf->sb_datalen);
1098}
1099
1100static void slirp_socket_save(QEMUFile *f, struct socket *so)
1101{
1102 qemu_put_be32(f, so->so_urgc);
eae303ff
GS
1103 qemu_put_be16(f, so->so_ffamily);
1104 switch (so->so_ffamily) {
1105 case AF_INET:
1106 qemu_put_be32(f, so->so_faddr.s_addr);
1107 qemu_put_be16(f, so->so_fport);
1108 break;
1109 default:
1110 error_report(
1111 "so_ffamily unknown, unable to save so_faddr and so_fport\n");
1112 }
1113 qemu_put_be16(f, so->so_lfamily);
1114 switch (so->so_lfamily) {
1115 case AF_INET:
1116 qemu_put_be32(f, so->so_laddr.s_addr);
1117 qemu_put_be16(f, so->so_lport);
1118 break;
1119 default:
1120 error_report(
1121 "so_ffamily unknown, unable to save so_laddr and so_lport\n");
1122 }
062e5527
AL
1123 qemu_put_byte(f, so->so_iptos);
1124 qemu_put_byte(f, so->so_emu);
1125 qemu_put_byte(f, so->so_type);
1126 qemu_put_be32(f, so->so_state);
1127 slirp_sbuf_save(f, &so->so_rcv);
1128 slirp_sbuf_save(f, &so->so_snd);
1129 slirp_tcp_save(f, so->so_tcpcb);
1130}
1131
0a1f851e
JK
1132static void slirp_bootp_save(QEMUFile *f, Slirp *slirp)
1133{
1134 int i;
1135
1136 for (i = 0; i < NB_BOOTP_CLIENTS; i++) {
1137 qemu_put_be16(f, slirp->bootp_clients[i].allocated);
1138 qemu_put_buffer(f, slirp->bootp_clients[i].macaddr, 6);
1139 }
1140}
1141
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AL
1142static void slirp_state_save(QEMUFile *f, void *opaque)
1143{
460fec67 1144 Slirp *slirp = opaque;
062e5527
AL
1145 struct ex_list *ex_ptr;
1146
460fec67 1147 for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next)
062e5527
AL
1148 if (ex_ptr->ex_pty == 3) {
1149 struct socket *so;
460fec67
JK
1150 so = slirp_find_ctl_socket(slirp, ex_ptr->ex_addr,
1151 ntohs(ex_ptr->ex_fport));
062e5527
AL
1152 if (!so)
1153 continue;
1154
1155 qemu_put_byte(f, 42);
1156 slirp_socket_save(f, so);
1157 }
1158 qemu_put_byte(f, 0);
285f7a62 1159
460fec67 1160 qemu_put_be16(f, slirp->ip_id);
0a1f851e
JK
1161
1162 slirp_bootp_save(f, slirp);
062e5527
AL
1163}
1164
1165static void slirp_tcp_load(QEMUFile *f, struct tcpcb *tp)
1166{
1167 int i;
1168
1169 tp->t_state = qemu_get_sbe16(f);
1170 for (i = 0; i < TCPT_NTIMERS; i++)
1171 tp->t_timer[i] = qemu_get_sbe16(f);
1172 tp->t_rxtshift = qemu_get_sbe16(f);
1173 tp->t_rxtcur = qemu_get_sbe16(f);
1174 tp->t_dupacks = qemu_get_sbe16(f);
1175 tp->t_maxseg = qemu_get_be16(f);
1176 tp->t_force = qemu_get_sbyte(f);
1177 tp->t_flags = qemu_get_be16(f);
1178 tp->snd_una = qemu_get_be32(f);
1179 tp->snd_nxt = qemu_get_be32(f);
1180 tp->snd_up = qemu_get_be32(f);
1181 tp->snd_wl1 = qemu_get_be32(f);
1182 tp->snd_wl2 = qemu_get_be32(f);
1183 tp->iss = qemu_get_be32(f);
1184 tp->snd_wnd = qemu_get_be32(f);
1185 tp->rcv_wnd = qemu_get_be32(f);
1186 tp->rcv_nxt = qemu_get_be32(f);
1187 tp->rcv_up = qemu_get_be32(f);
1188 tp->irs = qemu_get_be32(f);
1189 tp->rcv_adv = qemu_get_be32(f);
1190 tp->snd_max = qemu_get_be32(f);
1191 tp->snd_cwnd = qemu_get_be32(f);
1192 tp->snd_ssthresh = qemu_get_be32(f);
1193 tp->t_idle = qemu_get_sbe16(f);
1194 tp->t_rtt = qemu_get_sbe16(f);
1195 tp->t_rtseq = qemu_get_be32(f);
1196 tp->t_srtt = qemu_get_sbe16(f);
1197 tp->t_rttvar = qemu_get_sbe16(f);
1198 tp->t_rttmin = qemu_get_be16(f);
1199 tp->max_sndwnd = qemu_get_be32(f);
1200 tp->t_oobflags = qemu_get_byte(f);
1201 tp->t_iobc = qemu_get_byte(f);
1202 tp->t_softerror = qemu_get_sbe16(f);
1203 tp->snd_scale = qemu_get_byte(f);
1204 tp->rcv_scale = qemu_get_byte(f);
1205 tp->request_r_scale = qemu_get_byte(f);
1206 tp->requested_s_scale = qemu_get_byte(f);
1207 tp->ts_recent = qemu_get_be32(f);
1208 tp->ts_recent_age = qemu_get_be32(f);
1209 tp->last_ack_sent = qemu_get_be32(f);
1210 tcp_template(tp);
1211}
1212
1213static int slirp_sbuf_load(QEMUFile *f, struct sbuf *sbuf)
1214{
1215 uint32_t off, sb_cc, sb_datalen;
1216
1217 sb_cc = qemu_get_be32(f);
1218 sb_datalen = qemu_get_be32(f);
1219
1220 sbreserve(sbuf, sb_datalen);
1221
1222 if (sbuf->sb_datalen != sb_datalen)
1223 return -ENOMEM;
1224
1225 sbuf->sb_cc = sb_cc;
1226
1227 off = qemu_get_sbe32(f);
1228 sbuf->sb_wptr = sbuf->sb_data + off;
1229 off = qemu_get_sbe32(f);
1230 sbuf->sb_rptr = sbuf->sb_data + off;
1231 qemu_get_buffer(f, (unsigned char*)sbuf->sb_data, sbuf->sb_datalen);
1232
1233 return 0;
1234}
1235
1236static int slirp_socket_load(QEMUFile *f, struct socket *so)
1237{
1238 if (tcp_attach(so) < 0)
1239 return -ENOMEM;
1240
1241 so->so_urgc = qemu_get_be32(f);
eae303ff
GS
1242 so->so_ffamily = qemu_get_be16(f);
1243 switch (so->so_ffamily) {
1244 case AF_INET:
1245 so->so_faddr.s_addr = qemu_get_be32(f);
1246 so->so_fport = qemu_get_be16(f);
1247 break;
1248 default:
1249 error_report(
1250 "so_ffamily unknown, unable to restore so_faddr and so_lport\n");
1251 }
1252 so->so_lfamily = qemu_get_be16(f);
1253 switch (so->so_lfamily) {
1254 case AF_INET:
1255 so->so_laddr.s_addr = qemu_get_be32(f);
1256 so->so_lport = qemu_get_be16(f);
1257 break;
1258 default:
1259 error_report(
1260 "so_ffamily unknown, unable to restore so_laddr and so_lport\n");
1261 }
062e5527
AL
1262 so->so_iptos = qemu_get_byte(f);
1263 so->so_emu = qemu_get_byte(f);
1264 so->so_type = qemu_get_byte(f);
1265 so->so_state = qemu_get_be32(f);
1266 if (slirp_sbuf_load(f, &so->so_rcv) < 0)
1267 return -ENOMEM;
1268 if (slirp_sbuf_load(f, &so->so_snd) < 0)
1269 return -ENOMEM;
1270 slirp_tcp_load(f, so->so_tcpcb);
1271
1272 return 0;
1273}
1274
0a1f851e
JK
1275static void slirp_bootp_load(QEMUFile *f, Slirp *slirp)
1276{
1277 int i;
1278
1279 for (i = 0; i < NB_BOOTP_CLIENTS; i++) {
1280 slirp->bootp_clients[i].allocated = qemu_get_be16(f);
1281 qemu_get_buffer(f, slirp->bootp_clients[i].macaddr, 6);
1282 }
1283}
1284
062e5527
AL
1285static int slirp_state_load(QEMUFile *f, void *opaque, int version_id)
1286{
460fec67 1287 Slirp *slirp = opaque;
062e5527 1288 struct ex_list *ex_ptr;
062e5527 1289
b0e04867 1290 while (qemu_get_byte(f)) {
062e5527 1291 int ret;
460fec67 1292 struct socket *so = socreate(slirp);
062e5527
AL
1293
1294 if (!so)
1295 return -ENOMEM;
1296
1297 ret = slirp_socket_load(f, so);
1298
1299 if (ret < 0)
1300 return ret;
1301
460fec67
JK
1302 if ((so->so_faddr.s_addr & slirp->vnetwork_mask.s_addr) !=
1303 slirp->vnetwork_addr.s_addr) {
062e5527 1304 return -EINVAL;
a13a4126 1305 }
460fec67 1306 for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next) {
062e5527 1307 if (ex_ptr->ex_pty == 3 &&
a13a4126
JK
1308 so->so_faddr.s_addr == ex_ptr->ex_addr.s_addr &&
1309 so->so_fport == ex_ptr->ex_fport) {
062e5527 1310 break;
a13a4126
JK
1311 }
1312 }
062e5527
AL
1313 if (!ex_ptr)
1314 return -EINVAL;
1315
0580ac91 1316 so->extra = (void *)ex_ptr->ex_exec;
062e5527
AL
1317 }
1318
285f7a62 1319 if (version_id >= 2) {
460fec67 1320 slirp->ip_id = qemu_get_be16(f);
285f7a62
JK
1321 }
1322
0a1f851e
JK
1323 if (version_id >= 3) {
1324 slirp_bootp_load(f, slirp);
1325 }
1326
062e5527
AL
1327 return 0;
1328}