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1 d75a0b97 bellard
/*
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 * libslirp glue
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 *
4 d75a0b97 bellard
 * Copyright (c) 2004-2008 Fabrice Bellard
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 *
6 d75a0b97 bellard
 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 d75a0b97 bellard
 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
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 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
14 d75a0b97 bellard
 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 d75a0b97 bellard
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 d75a0b97 bellard
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 d75a0b97 bellard
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 d75a0b97 bellard
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 */
24 e1c5a2b3 aliguori
#include "qemu-common.h"
25 aaf10d9d Ed Swierk
#include "qemu-timer.h"
26 0580ac91 blueswir1
#include "qemu-char.h"
27 f0cbd3ec bellard
#include "slirp.h"
28 062e5527 aliguori
#include "hw/hw.h"
29 f0cbd3ec bellard
30 f0cbd3ec bellard
/* host loopback address */
31 f0cbd3ec bellard
struct in_addr loopback_addr;
32 f0cbd3ec bellard
33 a13a4126 Jan Kiszka
/* emulated hosts use the MAC addr 52:55:IP:IP:IP:IP */
34 9634d903 blueswir1
static const uint8_t special_ethaddr[6] = {
35 a13a4126 Jan Kiszka
    0x52, 0x55, 0x00, 0x00, 0x00, 0x00
36 f0cbd3ec bellard
};
37 f0cbd3ec bellard
38 de806f07 bellard
static const uint8_t zero_ethaddr[6] = { 0, 0, 0, 0, 0, 0 };
39 f0cbd3ec bellard
40 f0cbd3ec bellard
/* XXX: suppress those select globals */
41 f0cbd3ec bellard
fd_set *global_readfds, *global_writefds, *global_xfds;
42 f0cbd3ec bellard
43 f1d99bbd Jan Kiszka
u_int curtime;
44 f1d99bbd Jan Kiszka
static u_int time_fasttimo, last_slowtimo;
45 f1d99bbd Jan Kiszka
static int do_slowtimo;
46 f1d99bbd Jan Kiszka
47 72cf2d4f Blue Swirl
static QTAILQ_HEAD(slirp_instances, Slirp) slirp_instances =
48 72cf2d4f Blue Swirl
    QTAILQ_HEAD_INITIALIZER(slirp_instances);
49 115defd1 pbrook
50 9e3a95ef Stefan Weil
static struct in_addr dns_addr;
51 9e3a95ef Stefan Weil
static u_int dns_addr_time;
52 df7a86ed Ed Swierk
53 f0cbd3ec bellard
#ifdef _WIN32
54 f0cbd3ec bellard
55 df7a86ed Ed Swierk
int get_dns_addr(struct in_addr *pdns_addr)
56 f0cbd3ec bellard
{
57 379ff53d bellard
    FIXED_INFO *FixedInfo=NULL;
58 379ff53d bellard
    ULONG    BufLen;
59 379ff53d bellard
    DWORD    ret;
60 379ff53d bellard
    IP_ADDR_STRING *pIPAddr;
61 379ff53d bellard
    struct in_addr tmp_addr;
62 3b46e624 ths
63 df7a86ed Ed Swierk
    if (dns_addr.s_addr != 0 && (curtime - dns_addr_time) < 1000) {
64 df7a86ed Ed Swierk
        *pdns_addr = dns_addr;
65 df7a86ed Ed Swierk
        return 0;
66 df7a86ed Ed Swierk
    }
67 df7a86ed Ed Swierk
68 379ff53d bellard
    FixedInfo = (FIXED_INFO *)GlobalAlloc(GPTR, sizeof(FIXED_INFO));
69 379ff53d bellard
    BufLen = sizeof(FIXED_INFO);
70 3b46e624 ths
71 379ff53d bellard
    if (ERROR_BUFFER_OVERFLOW == GetNetworkParams(FixedInfo, &BufLen)) {
72 379ff53d bellard
        if (FixedInfo) {
73 379ff53d bellard
            GlobalFree(FixedInfo);
74 379ff53d bellard
            FixedInfo = NULL;
75 379ff53d bellard
        }
76 379ff53d bellard
        FixedInfo = GlobalAlloc(GPTR, BufLen);
77 379ff53d bellard
    }
78 5fafdf24 ths
79 379ff53d bellard
    if ((ret = GetNetworkParams(FixedInfo, &BufLen)) != ERROR_SUCCESS) {
80 379ff53d bellard
        printf("GetNetworkParams failed. ret = %08x\n", (u_int)ret );
81 379ff53d bellard
        if (FixedInfo) {
82 379ff53d bellard
            GlobalFree(FixedInfo);
83 379ff53d bellard
            FixedInfo = NULL;
84 379ff53d bellard
        }
85 379ff53d bellard
        return -1;
86 379ff53d bellard
    }
87 3b46e624 ths
88 379ff53d bellard
    pIPAddr = &(FixedInfo->DnsServerList);
89 379ff53d bellard
    inet_aton(pIPAddr->IpAddress.String, &tmp_addr);
90 379ff53d bellard
    *pdns_addr = tmp_addr;
91 df7a86ed Ed Swierk
    dns_addr = tmp_addr;
92 df7a86ed Ed Swierk
    dns_addr_time = curtime;
93 379ff53d bellard
    if (FixedInfo) {
94 379ff53d bellard
        GlobalFree(FixedInfo);
95 379ff53d bellard
        FixedInfo = NULL;
96 379ff53d bellard
    }
97 379ff53d bellard
    return 0;
98 f0cbd3ec bellard
}
99 f0cbd3ec bellard
100 df461894 Jan Kiszka
static void winsock_cleanup(void)
101 df461894 Jan Kiszka
{
102 df461894 Jan Kiszka
    WSACleanup();
103 df461894 Jan Kiszka
}
104 df461894 Jan Kiszka
105 f0cbd3ec bellard
#else
106 f0cbd3ec bellard
107 1e6eec8b Blue Swirl
static struct stat dns_addr_stat;
108 df7a86ed Ed Swierk
109 df7a86ed Ed Swierk
int get_dns_addr(struct in_addr *pdns_addr)
110 f0cbd3ec bellard
{
111 f0cbd3ec bellard
    char buff[512];
112 363a37d5 blueswir1
    char buff2[257];
113 f0cbd3ec bellard
    FILE *f;
114 f0cbd3ec bellard
    int found = 0;
115 f0cbd3ec bellard
    struct in_addr tmp_addr;
116 3b46e624 ths
117 df7a86ed Ed Swierk
    if (dns_addr.s_addr != 0) {
118 df7a86ed Ed Swierk
        struct stat old_stat;
119 df7a86ed Ed Swierk
        if ((curtime - dns_addr_time) < 1000) {
120 df7a86ed Ed Swierk
            *pdns_addr = dns_addr;
121 df7a86ed Ed Swierk
            return 0;
122 df7a86ed Ed Swierk
        }
123 df7a86ed Ed Swierk
        old_stat = dns_addr_stat;
124 df7a86ed Ed Swierk
        if (stat("/etc/resolv.conf", &dns_addr_stat) != 0)
125 df7a86ed Ed Swierk
            return -1;
126 df7a86ed Ed Swierk
        if ((dns_addr_stat.st_dev == old_stat.st_dev)
127 df7a86ed Ed Swierk
            && (dns_addr_stat.st_ino == old_stat.st_ino)
128 df7a86ed Ed Swierk
            && (dns_addr_stat.st_size == old_stat.st_size)
129 df7a86ed Ed Swierk
            && (dns_addr_stat.st_mtime == old_stat.st_mtime)) {
130 df7a86ed Ed Swierk
            *pdns_addr = dns_addr;
131 df7a86ed Ed Swierk
            return 0;
132 df7a86ed Ed Swierk
        }
133 df7a86ed Ed Swierk
    }
134 df7a86ed Ed Swierk
135 f0cbd3ec bellard
    f = fopen("/etc/resolv.conf", "r");
136 f0cbd3ec bellard
    if (!f)
137 f0cbd3ec bellard
        return -1;
138 f0cbd3ec bellard
139 31a60e22 blueswir1
#ifdef DEBUG
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    lprint("IP address of your DNS(s): ");
141 31a60e22 blueswir1
#endif
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    while (fgets(buff, 512, f) != NULL) {
143 f0cbd3ec bellard
        if (sscanf(buff, "nameserver%*[ \t]%256s", buff2) == 1) {
144 f0cbd3ec bellard
            if (!inet_aton(buff2, &tmp_addr))
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                continue;
146 f0cbd3ec bellard
            /* If it's the first one, set it to dns_addr */
147 df7a86ed Ed Swierk
            if (!found) {
148 f0cbd3ec bellard
                *pdns_addr = tmp_addr;
149 df7a86ed Ed Swierk
                dns_addr = tmp_addr;
150 df7a86ed Ed Swierk
                dns_addr_time = curtime;
151 df7a86ed Ed Swierk
            }
152 31a60e22 blueswir1
#ifdef DEBUG
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            else
154 f0cbd3ec bellard
                lprint(", ");
155 31a60e22 blueswir1
#endif
156 f0cbd3ec bellard
            if (++found > 3) {
157 31a60e22 blueswir1
#ifdef DEBUG
158 f0cbd3ec bellard
                lprint("(more)");
159 31a60e22 blueswir1
#endif
160 f0cbd3ec bellard
                break;
161 31a60e22 blueswir1
            }
162 31a60e22 blueswir1
#ifdef DEBUG
163 31a60e22 blueswir1
            else
164 f0cbd3ec bellard
                lprint("%s", inet_ntoa(tmp_addr));
165 31a60e22 blueswir1
#endif
166 f0cbd3ec bellard
        }
167 f0cbd3ec bellard
    }
168 1d43a717 bellard
    fclose(f);
169 f0cbd3ec bellard
    if (!found)
170 f0cbd3ec bellard
        return -1;
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    return 0;
172 f0cbd3ec bellard
}
173 f0cbd3ec bellard
174 f0cbd3ec bellard
#endif
175 f0cbd3ec bellard
176 df461894 Jan Kiszka
static void slirp_init_once(void)
177 379ff53d bellard
{
178 df461894 Jan Kiszka
    static int initialized;
179 df461894 Jan Kiszka
#ifdef _WIN32
180 df461894 Jan Kiszka
    WSADATA Data;
181 379ff53d bellard
#endif
182 379ff53d bellard
183 df461894 Jan Kiszka
    if (initialized) {
184 df461894 Jan Kiszka
        return;
185 df461894 Jan Kiszka
    }
186 df461894 Jan Kiszka
    initialized = 1;
187 df461894 Jan Kiszka
188 df461894 Jan Kiszka
#ifdef _WIN32
189 df461894 Jan Kiszka
    WSAStartup(MAKEWORD(2,0), &Data);
190 df461894 Jan Kiszka
    atexit(winsock_cleanup);
191 df461894 Jan Kiszka
#endif
192 df461894 Jan Kiszka
193 df461894 Jan Kiszka
    loopback_addr.s_addr = htonl(INADDR_LOOPBACK);
194 df461894 Jan Kiszka
}
195 df461894 Jan Kiszka
196 062e5527 aliguori
static void slirp_state_save(QEMUFile *f, void *opaque);
197 062e5527 aliguori
static int slirp_state_load(QEMUFile *f, void *opaque, int version_id);
198 062e5527 aliguori
199 9f8bd042 Jan Kiszka
Slirp *slirp_init(int restricted, struct in_addr vnetwork,
200 9f8bd042 Jan Kiszka
                  struct in_addr vnetmask, struct in_addr vhost,
201 9f8bd042 Jan Kiszka
                  const char *vhostname, const char *tftp_path,
202 9f8bd042 Jan Kiszka
                  const char *bootfile, struct in_addr vdhcp_start,
203 9f8bd042 Jan Kiszka
                  struct in_addr vnameserver, void *opaque)
204 f0cbd3ec bellard
{
205 ad0d8c4c Jan Kiszka
    Slirp *slirp = qemu_mallocz(sizeof(Slirp));
206 460fec67 Jan Kiszka
207 df461894 Jan Kiszka
    slirp_init_once();
208 379ff53d bellard
209 460fec67 Jan Kiszka
    slirp->restricted = restricted;
210 f0cbd3ec bellard
211 460fec67 Jan Kiszka
    if_init(slirp);
212 460fec67 Jan Kiszka
    ip_init(slirp);
213 f0cbd3ec bellard
214 f0cbd3ec bellard
    /* Initialise mbufs *after* setting the MTU */
215 460fec67 Jan Kiszka
    m_init(slirp);
216 f0cbd3ec bellard
217 460fec67 Jan Kiszka
    slirp->vnetwork_addr = vnetwork;
218 460fec67 Jan Kiszka
    slirp->vnetwork_mask = vnetmask;
219 460fec67 Jan Kiszka
    slirp->vhost_addr = vhost;
220 c92ef6a2 Jan Kiszka
    if (vhostname) {
221 460fec67 Jan Kiszka
        pstrcpy(slirp->client_hostname, sizeof(slirp->client_hostname),
222 460fec67 Jan Kiszka
                vhostname);
223 a13a4126 Jan Kiszka
    }
224 ad196a9d Jan Kiszka
    if (tftp_path) {
225 460fec67 Jan Kiszka
        slirp->tftp_prefix = qemu_strdup(tftp_path);
226 ad196a9d Jan Kiszka
    }
227 ad196a9d Jan Kiszka
    if (bootfile) {
228 460fec67 Jan Kiszka
        slirp->bootp_filename = qemu_strdup(bootfile);
229 ad196a9d Jan Kiszka
    }
230 460fec67 Jan Kiszka
    slirp->vdhcp_startaddr = vdhcp_start;
231 460fec67 Jan Kiszka
    slirp->vnameserver_addr = vnameserver;
232 ad196a9d Jan Kiszka
233 9f8bd042 Jan Kiszka
    slirp->opaque = opaque;
234 9f8bd042 Jan Kiszka
235 0be71e32 Alex Williamson
    register_savevm(NULL, "slirp", 0, 3,
236 0be71e32 Alex Williamson
                    slirp_state_save, slirp_state_load, slirp);
237 9f8bd042 Jan Kiszka
238 72cf2d4f Blue Swirl
    QTAILQ_INSERT_TAIL(&slirp_instances, slirp, entry);
239 ad0d8c4c Jan Kiszka
240 9f8bd042 Jan Kiszka
    return slirp;
241 f0cbd3ec bellard
}
242 f0cbd3ec bellard
243 ad0d8c4c Jan Kiszka
void slirp_cleanup(Slirp *slirp)
244 ad0d8c4c Jan Kiszka
{
245 72cf2d4f Blue Swirl
    QTAILQ_REMOVE(&slirp_instances, slirp, entry);
246 b1c99fcd Jan Kiszka
247 0be71e32 Alex Williamson
    unregister_savevm(NULL, "slirp", slirp);
248 ad0d8c4c Jan Kiszka
249 ad0d8c4c Jan Kiszka
    qemu_free(slirp->tftp_prefix);
250 ad0d8c4c Jan Kiszka
    qemu_free(slirp->bootp_filename);
251 ad0d8c4c Jan Kiszka
    qemu_free(slirp);
252 ad0d8c4c Jan Kiszka
}
253 ad0d8c4c Jan Kiszka
254 f0cbd3ec bellard
#define CONN_CANFSEND(so) (((so)->so_state & (SS_FCANTSENDMORE|SS_ISFCONNECTED)) == SS_ISFCONNECTED)
255 f0cbd3ec bellard
#define CONN_CANFRCV(so) (((so)->so_state & (SS_FCANTRCVMORE|SS_ISFCONNECTED)) == SS_ISFCONNECTED)
256 f0cbd3ec bellard
#define UPD_NFDS(x) if (nfds < (x)) nfds = (x)
257 f0cbd3ec bellard
258 5fafdf24 ths
void slirp_select_fill(int *pnfds,
259 f0cbd3ec bellard
                       fd_set *readfds, fd_set *writefds, fd_set *xfds)
260 f0cbd3ec bellard
{
261 b1c99fcd Jan Kiszka
    Slirp *slirp;
262 f0cbd3ec bellard
    struct socket *so, *so_next;
263 f0cbd3ec bellard
    int nfds;
264 f0cbd3ec bellard
265 72cf2d4f Blue Swirl
    if (QTAILQ_EMPTY(&slirp_instances)) {
266 d918f23e Jan Kiszka
        return;
267 d918f23e Jan Kiszka
    }
268 d918f23e Jan Kiszka
269 f0cbd3ec bellard
    /* fail safe */
270 f0cbd3ec bellard
    global_readfds = NULL;
271 f0cbd3ec bellard
    global_writefds = NULL;
272 f0cbd3ec bellard
    global_xfds = NULL;
273 3b46e624 ths
274 f0cbd3ec bellard
    nfds = *pnfds;
275 f0cbd3ec bellard
        /*
276 f0cbd3ec bellard
         * First, TCP sockets
277 f0cbd3ec bellard
         */
278 f0cbd3ec bellard
        do_slowtimo = 0;
279 d918f23e Jan Kiszka
280 72cf2d4f Blue Swirl
        QTAILQ_FOREACH(slirp, &slirp_instances, entry) {
281 5fafdf24 ths
                /*
282 f0cbd3ec bellard
                 * *_slowtimo needs calling if there are IP fragments
283 f0cbd3ec bellard
                 * in the fragment queue, or there are TCP connections active
284 f0cbd3ec bellard
                 */
285 b1c99fcd Jan Kiszka
                do_slowtimo |= ((slirp->tcb.so_next != &slirp->tcb) ||
286 460fec67 Jan Kiszka
                    (&slirp->ipq.ip_link != slirp->ipq.ip_link.next));
287 3b46e624 ths
288 460fec67 Jan Kiszka
                for (so = slirp->tcb.so_next; so != &slirp->tcb;
289 460fec67 Jan Kiszka
                     so = so_next) {
290 f0cbd3ec bellard
                        so_next = so->so_next;
291 3b46e624 ths
292 f0cbd3ec bellard
                        /*
293 f0cbd3ec bellard
                         * See if we need a tcp_fasttimo
294 f0cbd3ec bellard
                         */
295 f0cbd3ec bellard
                        if (time_fasttimo == 0 && so->so_tcpcb->t_flags & TF_DELACK)
296 f0cbd3ec bellard
                           time_fasttimo = curtime; /* Flag when we want a fasttimo */
297 3b46e624 ths
298 f0cbd3ec bellard
                        /*
299 f0cbd3ec bellard
                         * NOFDREF can include still connecting to local-host,
300 f0cbd3ec bellard
                         * newly socreated() sockets etc. Don't want to select these.
301 f0cbd3ec bellard
                          */
302 f0cbd3ec bellard
                        if (so->so_state & SS_NOFDREF || so->s == -1)
303 f0cbd3ec bellard
                           continue;
304 3b46e624 ths
305 f0cbd3ec bellard
                        /*
306 f0cbd3ec bellard
                         * Set for reading sockets which are accepting
307 f0cbd3ec bellard
                         */
308 f0cbd3ec bellard
                        if (so->so_state & SS_FACCEPTCONN) {
309 f0cbd3ec bellard
                                FD_SET(so->s, readfds);
310 f0cbd3ec bellard
                                UPD_NFDS(so->s);
311 f0cbd3ec bellard
                                continue;
312 f0cbd3ec bellard
                        }
313 3b46e624 ths
314 f0cbd3ec bellard
                        /*
315 f0cbd3ec bellard
                         * Set for writing sockets which are connecting
316 f0cbd3ec bellard
                         */
317 f0cbd3ec bellard
                        if (so->so_state & SS_ISFCONNECTING) {
318 f0cbd3ec bellard
                                FD_SET(so->s, writefds);
319 f0cbd3ec bellard
                                UPD_NFDS(so->s);
320 f0cbd3ec bellard
                                continue;
321 f0cbd3ec bellard
                        }
322 3b46e624 ths
323 f0cbd3ec bellard
                        /*
324 f0cbd3ec bellard
                         * Set for writing if we are connected, can send more, and
325 f0cbd3ec bellard
                         * we have something to send
326 f0cbd3ec bellard
                         */
327 f0cbd3ec bellard
                        if (CONN_CANFSEND(so) && so->so_rcv.sb_cc) {
328 f0cbd3ec bellard
                                FD_SET(so->s, writefds);
329 f0cbd3ec bellard
                                UPD_NFDS(so->s);
330 f0cbd3ec bellard
                        }
331 3b46e624 ths
332 f0cbd3ec bellard
                        /*
333 f0cbd3ec bellard
                         * Set for reading (and urgent data) if we are connected, can
334 f0cbd3ec bellard
                         * receive more, and we have room for it XXX /2 ?
335 f0cbd3ec bellard
                         */
336 f0cbd3ec bellard
                        if (CONN_CANFRCV(so) && (so->so_snd.sb_cc < (so->so_snd.sb_datalen/2))) {
337 f0cbd3ec bellard
                                FD_SET(so->s, readfds);
338 f0cbd3ec bellard
                                FD_SET(so->s, xfds);
339 f0cbd3ec bellard
                                UPD_NFDS(so->s);
340 f0cbd3ec bellard
                        }
341 f0cbd3ec bellard
                }
342 3b46e624 ths
343 f0cbd3ec bellard
                /*
344 f0cbd3ec bellard
                 * UDP sockets
345 f0cbd3ec bellard
                 */
346 460fec67 Jan Kiszka
                for (so = slirp->udb.so_next; so != &slirp->udb;
347 460fec67 Jan Kiszka
                     so = so_next) {
348 f0cbd3ec bellard
                        so_next = so->so_next;
349 3b46e624 ths
350 f0cbd3ec bellard
                        /*
351 f0cbd3ec bellard
                         * See if it's timed out
352 f0cbd3ec bellard
                         */
353 f0cbd3ec bellard
                        if (so->so_expire) {
354 f0cbd3ec bellard
                                if (so->so_expire <= curtime) {
355 f0cbd3ec bellard
                                        udp_detach(so);
356 f0cbd3ec bellard
                                        continue;
357 f0cbd3ec bellard
                                } else
358 f0cbd3ec bellard
                                        do_slowtimo = 1; /* Let socket expire */
359 f0cbd3ec bellard
                        }
360 3b46e624 ths
361 f0cbd3ec bellard
                        /*
362 f0cbd3ec bellard
                         * When UDP packets are received from over the
363 f0cbd3ec bellard
                         * link, they're sendto()'d straight away, so
364 f0cbd3ec bellard
                         * no need for setting for writing
365 f0cbd3ec bellard
                         * Limit the number of packets queued by this session
366 f0cbd3ec bellard
                         * to 4.  Note that even though we try and limit this
367 f0cbd3ec bellard
                         * to 4 packets, the session could have more queued
368 f0cbd3ec bellard
                         * if the packets needed to be fragmented
369 f0cbd3ec bellard
                         * (XXX <= 4 ?)
370 f0cbd3ec bellard
                         */
371 f0cbd3ec bellard
                        if ((so->so_state & SS_ISFCONNECTED) && so->so_queued <= 4) {
372 f0cbd3ec bellard
                                FD_SET(so->s, readfds);
373 f0cbd3ec bellard
                                UPD_NFDS(so->s);
374 f0cbd3ec bellard
                        }
375 f0cbd3ec bellard
                }
376 b1c99fcd Jan Kiszka
        }
377 5fafdf24 ths
378 f0cbd3ec bellard
        *pnfds = nfds;
379 5fafdf24 ths
}
380 f0cbd3ec bellard
381 d918f23e Jan Kiszka
void slirp_select_poll(fd_set *readfds, fd_set *writefds, fd_set *xfds,
382 d918f23e Jan Kiszka
                       int select_error)
383 f0cbd3ec bellard
{
384 b1c99fcd Jan Kiszka
    Slirp *slirp;
385 f0cbd3ec bellard
    struct socket *so, *so_next;
386 f0cbd3ec bellard
    int ret;
387 f0cbd3ec bellard
388 72cf2d4f Blue Swirl
    if (QTAILQ_EMPTY(&slirp_instances)) {
389 d918f23e Jan Kiszka
        return;
390 d918f23e Jan Kiszka
    }
391 d918f23e Jan Kiszka
392 f0cbd3ec bellard
    global_readfds = readfds;
393 f0cbd3ec bellard
    global_writefds = writefds;
394 f0cbd3ec bellard
    global_xfds = xfds;
395 f0cbd3ec bellard
396 aaf10d9d Ed Swierk
    curtime = qemu_get_clock(rt_clock);
397 5fafdf24 ths
398 72cf2d4f Blue Swirl
    QTAILQ_FOREACH(slirp, &slirp_instances, entry) {
399 f0cbd3ec bellard
        /*
400 5fafdf24 ths
         * See if anything has timed out
401 f0cbd3ec bellard
         */
402 df5f8956 bellard
                if (time_fasttimo && ((curtime - time_fasttimo) >= 2)) {
403 460fec67 Jan Kiszka
                        tcp_fasttimo(slirp);
404 f0cbd3ec bellard
                        time_fasttimo = 0;
405 f0cbd3ec bellard
                }
406 f0cbd3ec bellard
                if (do_slowtimo && ((curtime - last_slowtimo) >= 499)) {
407 460fec67 Jan Kiszka
                        ip_slowtimo(slirp);
408 460fec67 Jan Kiszka
                        tcp_slowtimo(slirp);
409 f0cbd3ec bellard
                        last_slowtimo = curtime;
410 f0cbd3ec bellard
                }
411 5fafdf24 ths
412 f0cbd3ec bellard
        /*
413 f0cbd3ec bellard
         * Check sockets
414 f0cbd3ec bellard
         */
415 d918f23e Jan Kiszka
        if (!select_error) {
416 f0cbd3ec bellard
                /*
417 f0cbd3ec bellard
                 * Check TCP sockets
418 f0cbd3ec bellard
                 */
419 460fec67 Jan Kiszka
                for (so = slirp->tcb.so_next; so != &slirp->tcb;
420 460fec67 Jan Kiszka
                     so = so_next) {
421 f0cbd3ec bellard
                        so_next = so->so_next;
422 3b46e624 ths
423 f0cbd3ec bellard
                        /*
424 f0cbd3ec bellard
                         * FD_ISSET is meaningless on these sockets
425 f0cbd3ec bellard
                         * (and they can crash the program)
426 f0cbd3ec bellard
                         */
427 f0cbd3ec bellard
                        if (so->so_state & SS_NOFDREF || so->s == -1)
428 f0cbd3ec bellard
                           continue;
429 3b46e624 ths
430 f0cbd3ec bellard
                        /*
431 f0cbd3ec bellard
                         * Check for URG data
432 f0cbd3ec bellard
                         * This will soread as well, so no need to
433 f0cbd3ec bellard
                         * test for readfds below if this succeeds
434 f0cbd3ec bellard
                         */
435 f0cbd3ec bellard
                        if (FD_ISSET(so->s, xfds))
436 f0cbd3ec bellard
                           sorecvoob(so);
437 f0cbd3ec bellard
                        /*
438 f0cbd3ec bellard
                         * Check sockets for reading
439 f0cbd3ec bellard
                         */
440 f0cbd3ec bellard
                        else if (FD_ISSET(so->s, readfds)) {
441 f0cbd3ec bellard
                                /*
442 f0cbd3ec bellard
                                 * Check for incoming connections
443 f0cbd3ec bellard
                                 */
444 f0cbd3ec bellard
                                if (so->so_state & SS_FACCEPTCONN) {
445 f0cbd3ec bellard
                                        tcp_connect(so);
446 f0cbd3ec bellard
                                        continue;
447 f0cbd3ec bellard
                                } /* else */
448 f0cbd3ec bellard
                                ret = soread(so);
449 3b46e624 ths
450 f0cbd3ec bellard
                                /* Output it if we read something */
451 f0cbd3ec bellard
                                if (ret > 0)
452 f0cbd3ec bellard
                                   tcp_output(sototcpcb(so));
453 f0cbd3ec bellard
                        }
454 3b46e624 ths
455 f0cbd3ec bellard
                        /*
456 f0cbd3ec bellard
                         * Check sockets for writing
457 f0cbd3ec bellard
                         */
458 f0cbd3ec bellard
                        if (FD_ISSET(so->s, writefds)) {
459 f0cbd3ec bellard
                          /*
460 f0cbd3ec bellard
                           * Check for non-blocking, still-connecting sockets
461 f0cbd3ec bellard
                           */
462 f0cbd3ec bellard
                          if (so->so_state & SS_ISFCONNECTING) {
463 f0cbd3ec bellard
                            /* Connected */
464 f0cbd3ec bellard
                            so->so_state &= ~SS_ISFCONNECTING;
465 3b46e624 ths
466 0a656f5f malc
                            ret = send(so->s, (const void *) &ret, 0, 0);
467 f0cbd3ec bellard
                            if (ret < 0) {
468 f0cbd3ec bellard
                              /* XXXXX Must fix, zero bytes is a NOP */
469 f0cbd3ec bellard
                              if (errno == EAGAIN || errno == EWOULDBLOCK ||
470 f0cbd3ec bellard
                                  errno == EINPROGRESS || errno == ENOTCONN)
471 f0cbd3ec bellard
                                continue;
472 3b46e624 ths
473 f0cbd3ec bellard
                              /* else failed */
474 f932b6ce Jan Kiszka
                              so->so_state &= SS_PERSISTENT_MASK;
475 f932b6ce Jan Kiszka
                              so->so_state |= SS_NOFDREF;
476 f0cbd3ec bellard
                            }
477 f0cbd3ec bellard
                            /* else so->so_state &= ~SS_ISFCONNECTING; */
478 3b46e624 ths
479 f0cbd3ec bellard
                            /*
480 f0cbd3ec bellard
                             * Continue tcp_input
481 f0cbd3ec bellard
                             */
482 f0cbd3ec bellard
                            tcp_input((struct mbuf *)NULL, sizeof(struct ip), so);
483 f0cbd3ec bellard
                            /* continue; */
484 f0cbd3ec bellard
                          } else
485 f0cbd3ec bellard
                            ret = sowrite(so);
486 f0cbd3ec bellard
                          /*
487 5fafdf24 ths
                           * XXXXX If we wrote something (a lot), there
488 f0cbd3ec bellard
                           * could be a need for a window update.
489 f0cbd3ec bellard
                           * In the worst case, the remote will send
490 f0cbd3ec bellard
                           * a window probe to get things going again
491 f0cbd3ec bellard
                           */
492 f0cbd3ec bellard
                        }
493 3b46e624 ths
494 f0cbd3ec bellard
                        /*
495 f0cbd3ec bellard
                         * Probe a still-connecting, non-blocking socket
496 f0cbd3ec bellard
                         * to check if it's still alive
497 f0cbd3ec bellard
                           */
498 f0cbd3ec bellard
#ifdef PROBE_CONN
499 f0cbd3ec bellard
                        if (so->so_state & SS_ISFCONNECTING) {
500 02d2c54c bellard
                          ret = recv(so->s, (char *)&ret, 0,0);
501 3b46e624 ths
502 f0cbd3ec bellard
                          if (ret < 0) {
503 f0cbd3ec bellard
                            /* XXX */
504 f0cbd3ec bellard
                            if (errno == EAGAIN || errno == EWOULDBLOCK ||
505 f0cbd3ec bellard
                                errno == EINPROGRESS || errno == ENOTCONN)
506 f0cbd3ec bellard
                              continue; /* Still connecting, continue */
507 3b46e624 ths
508 f0cbd3ec bellard
                            /* else failed */
509 f932b6ce Jan Kiszka
                            so->so_state &= SS_PERSISTENT_MASK;
510 f932b6ce Jan Kiszka
                            so->so_state |= SS_NOFDREF;
511 3b46e624 ths
512 f0cbd3ec bellard
                            /* tcp_input will take care of it */
513 f0cbd3ec bellard
                          } else {
514 02d2c54c bellard
                            ret = send(so->s, &ret, 0,0);
515 f0cbd3ec bellard
                            if (ret < 0) {
516 f0cbd3ec bellard
                              /* XXX */
517 f0cbd3ec bellard
                              if (errno == EAGAIN || errno == EWOULDBLOCK ||
518 f0cbd3ec bellard
                                  errno == EINPROGRESS || errno == ENOTCONN)
519 f0cbd3ec bellard
                                continue;
520 f0cbd3ec bellard
                              /* else failed */
521 f932b6ce Jan Kiszka
                              so->so_state &= SS_PERSISTENT_MASK;
522 f932b6ce Jan Kiszka
                              so->so_state |= SS_NOFDREF;
523 f0cbd3ec bellard
                            } else
524 f0cbd3ec bellard
                              so->so_state &= ~SS_ISFCONNECTING;
525 3b46e624 ths
526 f0cbd3ec bellard
                          }
527 f0cbd3ec bellard
                          tcp_input((struct mbuf *)NULL, sizeof(struct ip),so);
528 f0cbd3ec bellard
                        } /* SS_ISFCONNECTING */
529 f0cbd3ec bellard
#endif
530 f0cbd3ec bellard
                }
531 3b46e624 ths
532 f0cbd3ec bellard
                /*
533 f0cbd3ec bellard
                 * Now UDP sockets.
534 f0cbd3ec bellard
                 * Incoming packets are sent straight away, they're not buffered.
535 f0cbd3ec bellard
                 * Incoming UDP data isn't buffered either.
536 f0cbd3ec bellard
                 */
537 460fec67 Jan Kiszka
                for (so = slirp->udb.so_next; so != &slirp->udb;
538 460fec67 Jan Kiszka
                     so = so_next) {
539 f0cbd3ec bellard
                        so_next = so->so_next;
540 3b46e624 ths
541 f0cbd3ec bellard
                        if (so->s != -1 && FD_ISSET(so->s, readfds)) {
542 f0cbd3ec bellard
                            sorecvfrom(so);
543 f0cbd3ec bellard
                        }
544 f0cbd3ec bellard
                }
545 f0cbd3ec bellard
        }
546 5fafdf24 ths
547 f0cbd3ec bellard
        /*
548 f0cbd3ec bellard
         * See if we can start outputting
549 f0cbd3ec bellard
         */
550 460fec67 Jan Kiszka
        if (slirp->if_queued) {
551 460fec67 Jan Kiszka
            if_start(slirp);
552 460fec67 Jan Kiszka
        }
553 b1c99fcd Jan Kiszka
    }
554 02d2c54c bellard
555 02d2c54c bellard
        /* clear global file descriptor sets.
556 02d2c54c bellard
         * these reside on the stack in vl.c
557 02d2c54c bellard
         * so they're unusable if we're not in
558 02d2c54c bellard
         * slirp_select_fill or slirp_select_poll.
559 02d2c54c bellard
         */
560 02d2c54c bellard
         global_readfds = NULL;
561 02d2c54c bellard
         global_writefds = NULL;
562 02d2c54c bellard
         global_xfds = NULL;
563 f0cbd3ec bellard
}
564 f0cbd3ec bellard
565 f0cbd3ec bellard
#define ETH_ALEN 6
566 f0cbd3ec bellard
#define ETH_HLEN 14
567 f0cbd3ec bellard
568 f0cbd3ec bellard
#define ETH_P_IP        0x0800                /* Internet Protocol packet        */
569 f0cbd3ec bellard
#define ETH_P_ARP        0x0806                /* Address Resolution packet        */
570 f0cbd3ec bellard
571 f0cbd3ec bellard
#define        ARPOP_REQUEST        1                /* ARP request                        */
572 f0cbd3ec bellard
#define        ARPOP_REPLY        2                /* ARP reply                        */
573 f0cbd3ec bellard
574 5fafdf24 ths
struct ethhdr
575 f0cbd3ec bellard
{
576 f0cbd3ec bellard
        unsigned char        h_dest[ETH_ALEN];        /* destination eth addr        */
577 f0cbd3ec bellard
        unsigned char        h_source[ETH_ALEN];        /* source ether addr        */
578 f0cbd3ec bellard
        unsigned short        h_proto;                /* packet type ID field        */
579 f0cbd3ec bellard
};
580 f0cbd3ec bellard
581 f0cbd3ec bellard
struct arphdr
582 f0cbd3ec bellard
{
583 f0cbd3ec bellard
        unsigned short        ar_hrd;                /* format of hardware address        */
584 f0cbd3ec bellard
        unsigned short        ar_pro;                /* format of protocol address        */
585 f0cbd3ec bellard
        unsigned char        ar_hln;                /* length of hardware address        */
586 f0cbd3ec bellard
        unsigned char        ar_pln;                /* length of protocol address        */
587 f0cbd3ec bellard
        unsigned short        ar_op;                /* ARP opcode (command)                */
588 f0cbd3ec bellard
589 f0cbd3ec bellard
         /*
590 f0cbd3ec bellard
          *         Ethernet looks like this : This bit is variable sized however...
591 f0cbd3ec bellard
          */
592 f0cbd3ec bellard
        unsigned char                ar_sha[ETH_ALEN];        /* sender hardware address        */
593 a13a4126 Jan Kiszka
        uint32_t                ar_sip;                        /* sender IP address                */
594 f0cbd3ec bellard
        unsigned char                ar_tha[ETH_ALEN];        /* target hardware address        */
595 a13a4126 Jan Kiszka
        uint32_t                ar_tip        ;                /* target IP address                */
596 a13a4126 Jan Kiszka
} __attribute__((packed));
597 f0cbd3ec bellard
598 460fec67 Jan Kiszka
static void arp_input(Slirp *slirp, const uint8_t *pkt, int pkt_len)
599 f0cbd3ec bellard
{
600 f0cbd3ec bellard
    struct ethhdr *eh = (struct ethhdr *)pkt;
601 f0cbd3ec bellard
    struct arphdr *ah = (struct arphdr *)(pkt + ETH_HLEN);
602 f0cbd3ec bellard
    uint8_t arp_reply[ETH_HLEN + sizeof(struct arphdr)];
603 f0cbd3ec bellard
    struct ethhdr *reh = (struct ethhdr *)arp_reply;
604 f0cbd3ec bellard
    struct arphdr *rah = (struct arphdr *)(arp_reply + ETH_HLEN);
605 f0cbd3ec bellard
    int ar_op;
606 a3d4af03 bellard
    struct ex_list *ex_ptr;
607 f0cbd3ec bellard
608 f0cbd3ec bellard
    ar_op = ntohs(ah->ar_op);
609 f0cbd3ec bellard
    switch(ar_op) {
610 f0cbd3ec bellard
    case ARPOP_REQUEST:
611 460fec67 Jan Kiszka
        if ((ah->ar_tip & slirp->vnetwork_mask.s_addr) ==
612 460fec67 Jan Kiszka
            slirp->vnetwork_addr.s_addr) {
613 460fec67 Jan Kiszka
            if (ah->ar_tip == slirp->vnameserver_addr.s_addr ||
614 460fec67 Jan Kiszka
                ah->ar_tip == slirp->vhost_addr.s_addr)
615 a3d4af03 bellard
                goto arp_ok;
616 460fec67 Jan Kiszka
            for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next) {
617 a13a4126 Jan Kiszka
                if (ex_ptr->ex_addr.s_addr == ah->ar_tip)
618 a3d4af03 bellard
                    goto arp_ok;
619 a3d4af03 bellard
            }
620 a3d4af03 bellard
            return;
621 a3d4af03 bellard
        arp_ok:
622 f0cbd3ec bellard
            /* XXX: make an ARP request to have the client address */
623 460fec67 Jan Kiszka
            memcpy(slirp->client_ethaddr, eh->h_source, ETH_ALEN);
624 f0cbd3ec bellard
625 f0cbd3ec bellard
            /* ARP request for alias/dns mac address */
626 f0cbd3ec bellard
            memcpy(reh->h_dest, pkt + ETH_ALEN, ETH_ALEN);
627 a13a4126 Jan Kiszka
            memcpy(reh->h_source, special_ethaddr, ETH_ALEN - 4);
628 a13a4126 Jan Kiszka
            memcpy(&reh->h_source[2], &ah->ar_tip, 4);
629 f0cbd3ec bellard
            reh->h_proto = htons(ETH_P_ARP);
630 f0cbd3ec bellard
631 f0cbd3ec bellard
            rah->ar_hrd = htons(1);
632 f0cbd3ec bellard
            rah->ar_pro = htons(ETH_P_IP);
633 f0cbd3ec bellard
            rah->ar_hln = ETH_ALEN;
634 f0cbd3ec bellard
            rah->ar_pln = 4;
635 f0cbd3ec bellard
            rah->ar_op = htons(ARPOP_REPLY);
636 f0cbd3ec bellard
            memcpy(rah->ar_sha, reh->h_source, ETH_ALEN);
637 a13a4126 Jan Kiszka
            rah->ar_sip = ah->ar_tip;
638 f0cbd3ec bellard
            memcpy(rah->ar_tha, ah->ar_sha, ETH_ALEN);
639 a13a4126 Jan Kiszka
            rah->ar_tip = ah->ar_sip;
640 9f8bd042 Jan Kiszka
            slirp_output(slirp->opaque, arp_reply, sizeof(arp_reply));
641 f0cbd3ec bellard
        }
642 f0cbd3ec bellard
        break;
643 de806f07 bellard
    case ARPOP_REPLY:
644 de806f07 bellard
        /* reply to request of client mac address ? */
645 460fec67 Jan Kiszka
        if (!memcmp(slirp->client_ethaddr, zero_ethaddr, ETH_ALEN) &&
646 460fec67 Jan Kiszka
            ah->ar_sip == slirp->client_ipaddr.s_addr) {
647 460fec67 Jan Kiszka
            memcpy(slirp->client_ethaddr, ah->ar_sha, ETH_ALEN);
648 de806f07 bellard
        }
649 de806f07 bellard
        break;
650 f0cbd3ec bellard
    default:
651 f0cbd3ec bellard
        break;
652 f0cbd3ec bellard
    }
653 f0cbd3ec bellard
}
654 f0cbd3ec bellard
655 9f8bd042 Jan Kiszka
void slirp_input(Slirp *slirp, const uint8_t *pkt, int pkt_len)
656 f0cbd3ec bellard
{
657 f0cbd3ec bellard
    struct mbuf *m;
658 f0cbd3ec bellard
    int proto;
659 f0cbd3ec bellard
660 f0cbd3ec bellard
    if (pkt_len < ETH_HLEN)
661 f0cbd3ec bellard
        return;
662 3b46e624 ths
663 f0cbd3ec bellard
    proto = ntohs(*(uint16_t *)(pkt + 12));
664 f0cbd3ec bellard
    switch(proto) {
665 f0cbd3ec bellard
    case ETH_P_ARP:
666 460fec67 Jan Kiszka
        arp_input(slirp, pkt, pkt_len);
667 f0cbd3ec bellard
        break;
668 f0cbd3ec bellard
    case ETH_P_IP:
669 460fec67 Jan Kiszka
        m = m_get(slirp);
670 f0cbd3ec bellard
        if (!m)
671 f0cbd3ec bellard
            return;
672 38f3e7c2 bellard
        /* Note: we add to align the IP header */
673 e8e880a7 aurel32
        if (M_FREEROOM(m) < pkt_len + 2) {
674 e8e880a7 aurel32
            m_inc(m, pkt_len + 2);
675 e8e880a7 aurel32
        }
676 38f3e7c2 bellard
        m->m_len = pkt_len + 2;
677 38f3e7c2 bellard
        memcpy(m->m_data + 2, pkt, pkt_len);
678 f0cbd3ec bellard
679 38f3e7c2 bellard
        m->m_data += 2 + ETH_HLEN;
680 38f3e7c2 bellard
        m->m_len -= 2 + ETH_HLEN;
681 f0cbd3ec bellard
682 f0cbd3ec bellard
        ip_input(m);
683 f0cbd3ec bellard
        break;
684 f0cbd3ec bellard
    default:
685 f0cbd3ec bellard
        break;
686 f0cbd3ec bellard
    }
687 f0cbd3ec bellard
}
688 f0cbd3ec bellard
689 f0cbd3ec bellard
/* output the IP packet to the ethernet device */
690 460fec67 Jan Kiszka
void if_encap(Slirp *slirp, const uint8_t *ip_data, int ip_data_len)
691 f0cbd3ec bellard
{
692 f0cbd3ec bellard
    uint8_t buf[1600];
693 f0cbd3ec bellard
    struct ethhdr *eh = (struct ethhdr *)buf;
694 f0cbd3ec bellard
695 f0cbd3ec bellard
    if (ip_data_len + ETH_HLEN > sizeof(buf))
696 f0cbd3ec bellard
        return;
697 de806f07 bellard
    
698 460fec67 Jan Kiszka
    if (!memcmp(slirp->client_ethaddr, zero_ethaddr, ETH_ALEN)) {
699 de806f07 bellard
        uint8_t arp_req[ETH_HLEN + sizeof(struct arphdr)];
700 de806f07 bellard
        struct ethhdr *reh = (struct ethhdr *)arp_req;
701 de806f07 bellard
        struct arphdr *rah = (struct arphdr *)(arp_req + ETH_HLEN);
702 de806f07 bellard
        const struct ip *iph = (const struct ip *)ip_data;
703 de806f07 bellard
704 de806f07 bellard
        /* If the client addr is not known, there is no point in
705 de806f07 bellard
           sending the packet to it. Normally the sender should have
706 de806f07 bellard
           done an ARP request to get its MAC address. Here we do it
707 de806f07 bellard
           in place of sending the packet and we hope that the sender
708 de806f07 bellard
           will retry sending its packet. */
709 de806f07 bellard
        memset(reh->h_dest, 0xff, ETH_ALEN);
710 a13a4126 Jan Kiszka
        memcpy(reh->h_source, special_ethaddr, ETH_ALEN - 4);
711 460fec67 Jan Kiszka
        memcpy(&reh->h_source[2], &slirp->vhost_addr, 4);
712 de806f07 bellard
        reh->h_proto = htons(ETH_P_ARP);
713 de806f07 bellard
        rah->ar_hrd = htons(1);
714 de806f07 bellard
        rah->ar_pro = htons(ETH_P_IP);
715 de806f07 bellard
        rah->ar_hln = ETH_ALEN;
716 de806f07 bellard
        rah->ar_pln = 4;
717 de806f07 bellard
        rah->ar_op = htons(ARPOP_REQUEST);
718 de806f07 bellard
        /* source hw addr */
719 a13a4126 Jan Kiszka
        memcpy(rah->ar_sha, special_ethaddr, ETH_ALEN - 4);
720 460fec67 Jan Kiszka
        memcpy(&rah->ar_sha[2], &slirp->vhost_addr, 4);
721 de806f07 bellard
        /* source IP */
722 460fec67 Jan Kiszka
        rah->ar_sip = slirp->vhost_addr.s_addr;
723 de806f07 bellard
        /* target hw addr (none) */
724 de806f07 bellard
        memset(rah->ar_tha, 0, ETH_ALEN);
725 de806f07 bellard
        /* target IP */
726 a13a4126 Jan Kiszka
        rah->ar_tip = iph->ip_dst.s_addr;
727 460fec67 Jan Kiszka
        slirp->client_ipaddr = iph->ip_dst;
728 9f8bd042 Jan Kiszka
        slirp_output(slirp->opaque, arp_req, sizeof(arp_req));
729 de806f07 bellard
    } else {
730 460fec67 Jan Kiszka
        memcpy(eh->h_dest, slirp->client_ethaddr, ETH_ALEN);
731 a13a4126 Jan Kiszka
        memcpy(eh->h_source, special_ethaddr, ETH_ALEN - 4);
732 de806f07 bellard
        /* XXX: not correct */
733 460fec67 Jan Kiszka
        memcpy(&eh->h_source[2], &slirp->vhost_addr, 4);
734 de806f07 bellard
        eh->h_proto = htons(ETH_P_IP);
735 de806f07 bellard
        memcpy(buf + sizeof(struct ethhdr), ip_data, ip_data_len);
736 9f8bd042 Jan Kiszka
        slirp_output(slirp->opaque, buf, ip_data_len + ETH_HLEN);
737 de806f07 bellard
    }
738 f0cbd3ec bellard
}
739 9bf05444 bellard
740 9c12a6f2 Jan Kiszka
/* Drop host forwarding rule, return 0 if found. */
741 9f8bd042 Jan Kiszka
int slirp_remove_hostfwd(Slirp *slirp, int is_udp, struct in_addr host_addr,
742 9f8bd042 Jan Kiszka
                         int host_port)
743 c1261d8d Alexander Graf
{
744 c1261d8d Alexander Graf
    struct socket *so;
745 460fec67 Jan Kiszka
    struct socket *head = (is_udp ? &slirp->udb : &slirp->tcb);
746 2ad82cf9 Jan Kiszka
    struct sockaddr_in addr;
747 2ad82cf9 Jan Kiszka
    int port = htons(host_port);
748 2ad82cf9 Jan Kiszka
    socklen_t addr_len;
749 c1261d8d Alexander Graf
750 c1261d8d Alexander Graf
    for (so = head->so_next; so != head; so = so->so_next) {
751 2ad82cf9 Jan Kiszka
        addr_len = sizeof(addr);
752 9c12a6f2 Jan Kiszka
        if ((so->so_state & SS_HOSTFWD) &&
753 9c12a6f2 Jan Kiszka
            getsockname(so->s, (struct sockaddr *)&addr, &addr_len) == 0 &&
754 3c6a0580 Jan Kiszka
            addr.sin_addr.s_addr == host_addr.s_addr &&
755 2ad82cf9 Jan Kiszka
            addr.sin_port == port) {
756 c1261d8d Alexander Graf
            close(so->s);
757 c1261d8d Alexander Graf
            sofree(so);
758 9c12a6f2 Jan Kiszka
            return 0;
759 c1261d8d Alexander Graf
        }
760 c1261d8d Alexander Graf
    }
761 c1261d8d Alexander Graf
762 9c12a6f2 Jan Kiszka
    return -1;
763 c1261d8d Alexander Graf
}
764 c1261d8d Alexander Graf
765 9f8bd042 Jan Kiszka
int slirp_add_hostfwd(Slirp *slirp, int is_udp, struct in_addr host_addr,
766 9f8bd042 Jan Kiszka
                      int host_port, struct in_addr guest_addr, int guest_port)
767 9bf05444 bellard
{
768 a13a4126 Jan Kiszka
    if (!guest_addr.s_addr) {
769 460fec67 Jan Kiszka
        guest_addr = slirp->vdhcp_startaddr;
770 a13a4126 Jan Kiszka
    }
771 9bf05444 bellard
    if (is_udp) {
772 460fec67 Jan Kiszka
        if (!udp_listen(slirp, host_addr.s_addr, htons(host_port),
773 460fec67 Jan Kiszka
                        guest_addr.s_addr, htons(guest_port), SS_HOSTFWD))
774 9bf05444 bellard
            return -1;
775 9bf05444 bellard
    } else {
776 460fec67 Jan Kiszka
        if (!tcp_listen(slirp, host_addr.s_addr, htons(host_port),
777 460fec67 Jan Kiszka
                        guest_addr.s_addr, htons(guest_port), SS_HOSTFWD))
778 9bf05444 bellard
            return -1;
779 9bf05444 bellard
    }
780 9bf05444 bellard
    return 0;
781 9bf05444 bellard
}
782 a3d4af03 bellard
783 9f8bd042 Jan Kiszka
int slirp_add_exec(Slirp *slirp, int do_pty, const void *args,
784 bb53fc53 Jan Kiszka
                   struct in_addr *guest_addr, int guest_port)
785 a3d4af03 bellard
{
786 bb53fc53 Jan Kiszka
    if (!guest_addr->s_addr) {
787 bb53fc53 Jan Kiszka
        guest_addr->s_addr = slirp->vnetwork_addr.s_addr |
788 460fec67 Jan Kiszka
            (htonl(0x0204) & ~slirp->vnetwork_mask.s_addr);
789 c92ef6a2 Jan Kiszka
    }
790 bb53fc53 Jan Kiszka
    if ((guest_addr->s_addr & slirp->vnetwork_mask.s_addr) !=
791 460fec67 Jan Kiszka
        slirp->vnetwork_addr.s_addr ||
792 bb53fc53 Jan Kiszka
        guest_addr->s_addr == slirp->vhost_addr.s_addr ||
793 bb53fc53 Jan Kiszka
        guest_addr->s_addr == slirp->vnameserver_addr.s_addr) {
794 a13a4126 Jan Kiszka
        return -1;
795 a13a4126 Jan Kiszka
    }
796 bb53fc53 Jan Kiszka
    return add_exec(&slirp->exec_list, do_pty, (char *)args, *guest_addr,
797 a13a4126 Jan Kiszka
                    htons(guest_port));
798 a3d4af03 bellard
}
799 e1c5a2b3 aliguori
800 e1c5a2b3 aliguori
ssize_t slirp_send(struct socket *so, const void *buf, size_t len, int flags)
801 e1c5a2b3 aliguori
{
802 e1c5a2b3 aliguori
        if (so->s == -1 && so->extra) {
803 e1c5a2b3 aliguori
                qemu_chr_write(so->extra, buf, len);
804 e1c5a2b3 aliguori
                return len;
805 e1c5a2b3 aliguori
        }
806 e1c5a2b3 aliguori
807 e1c5a2b3 aliguori
        return send(so->s, buf, len, flags);
808 e1c5a2b3 aliguori
}
809 e1c5a2b3 aliguori
810 a13a4126 Jan Kiszka
static struct socket *
811 460fec67 Jan Kiszka
slirp_find_ctl_socket(Slirp *slirp, struct in_addr guest_addr, int guest_port)
812 e1c5a2b3 aliguori
{
813 a13a4126 Jan Kiszka
    struct socket *so;
814 e1c5a2b3 aliguori
815 460fec67 Jan Kiszka
    for (so = slirp->tcb.so_next; so != &slirp->tcb; so = so->so_next) {
816 a13a4126 Jan Kiszka
        if (so->so_faddr.s_addr == guest_addr.s_addr &&
817 a13a4126 Jan Kiszka
            htons(so->so_fport) == guest_port) {
818 a13a4126 Jan Kiszka
            return so;
819 a13a4126 Jan Kiszka
        }
820 a13a4126 Jan Kiszka
    }
821 a13a4126 Jan Kiszka
    return NULL;
822 e1c5a2b3 aliguori
}
823 e1c5a2b3 aliguori
824 9f8bd042 Jan Kiszka
size_t slirp_socket_can_recv(Slirp *slirp, struct in_addr guest_addr,
825 9f8bd042 Jan Kiszka
                             int guest_port)
826 e1c5a2b3 aliguori
{
827 e1c5a2b3 aliguori
        struct iovec iov[2];
828 e1c5a2b3 aliguori
        struct socket *so;
829 e1c5a2b3 aliguori
830 460fec67 Jan Kiszka
        so = slirp_find_ctl_socket(slirp, guest_addr, guest_port);
831 e1c5a2b3 aliguori
832 e1c5a2b3 aliguori
        if (!so || so->so_state & SS_NOFDREF)
833 e1c5a2b3 aliguori
                return 0;
834 e1c5a2b3 aliguori
835 e1c5a2b3 aliguori
        if (!CONN_CANFRCV(so) || so->so_snd.sb_cc >= (so->so_snd.sb_datalen/2))
836 e1c5a2b3 aliguori
                return 0;
837 e1c5a2b3 aliguori
838 e1c5a2b3 aliguori
        return sopreprbuf(so, iov, NULL);
839 e1c5a2b3 aliguori
}
840 e1c5a2b3 aliguori
841 9f8bd042 Jan Kiszka
void slirp_socket_recv(Slirp *slirp, struct in_addr guest_addr, int guest_port,
842 c92ef6a2 Jan Kiszka
                       const uint8_t *buf, int size)
843 e1c5a2b3 aliguori
{
844 e1c5a2b3 aliguori
    int ret;
845 460fec67 Jan Kiszka
    struct socket *so = slirp_find_ctl_socket(slirp, guest_addr, guest_port);
846 a13a4126 Jan Kiszka
847 e1c5a2b3 aliguori
    if (!so)
848 e1c5a2b3 aliguori
        return;
849 e1c5a2b3 aliguori
850 0580ac91 blueswir1
    ret = soreadbuf(so, (const char *)buf, size);
851 e1c5a2b3 aliguori
852 e1c5a2b3 aliguori
    if (ret > 0)
853 e1c5a2b3 aliguori
        tcp_output(sototcpcb(so));
854 e1c5a2b3 aliguori
}
855 062e5527 aliguori
856 062e5527 aliguori
static void slirp_tcp_save(QEMUFile *f, struct tcpcb *tp)
857 062e5527 aliguori
{
858 062e5527 aliguori
    int i;
859 062e5527 aliguori
860 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_state);
861 062e5527 aliguori
    for (i = 0; i < TCPT_NTIMERS; i++)
862 062e5527 aliguori
        qemu_put_sbe16(f, tp->t_timer[i]);
863 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_rxtshift);
864 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_rxtcur);
865 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_dupacks);
866 062e5527 aliguori
    qemu_put_be16(f, tp->t_maxseg);
867 062e5527 aliguori
    qemu_put_sbyte(f, tp->t_force);
868 062e5527 aliguori
    qemu_put_be16(f, tp->t_flags);
869 062e5527 aliguori
    qemu_put_be32(f, tp->snd_una);
870 062e5527 aliguori
    qemu_put_be32(f, tp->snd_nxt);
871 062e5527 aliguori
    qemu_put_be32(f, tp->snd_up);
872 062e5527 aliguori
    qemu_put_be32(f, tp->snd_wl1);
873 062e5527 aliguori
    qemu_put_be32(f, tp->snd_wl2);
874 062e5527 aliguori
    qemu_put_be32(f, tp->iss);
875 062e5527 aliguori
    qemu_put_be32(f, tp->snd_wnd);
876 062e5527 aliguori
    qemu_put_be32(f, tp->rcv_wnd);
877 062e5527 aliguori
    qemu_put_be32(f, tp->rcv_nxt);
878 062e5527 aliguori
    qemu_put_be32(f, tp->rcv_up);
879 062e5527 aliguori
    qemu_put_be32(f, tp->irs);
880 062e5527 aliguori
    qemu_put_be32(f, tp->rcv_adv);
881 062e5527 aliguori
    qemu_put_be32(f, tp->snd_max);
882 062e5527 aliguori
    qemu_put_be32(f, tp->snd_cwnd);
883 062e5527 aliguori
    qemu_put_be32(f, tp->snd_ssthresh);
884 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_idle);
885 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_rtt);
886 062e5527 aliguori
    qemu_put_be32(f, tp->t_rtseq);
887 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_srtt);
888 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_rttvar);
889 062e5527 aliguori
    qemu_put_be16(f, tp->t_rttmin);
890 062e5527 aliguori
    qemu_put_be32(f, tp->max_sndwnd);
891 062e5527 aliguori
    qemu_put_byte(f, tp->t_oobflags);
892 062e5527 aliguori
    qemu_put_byte(f, tp->t_iobc);
893 062e5527 aliguori
    qemu_put_sbe16(f, tp->t_softerror);
894 062e5527 aliguori
    qemu_put_byte(f, tp->snd_scale);
895 062e5527 aliguori
    qemu_put_byte(f, tp->rcv_scale);
896 062e5527 aliguori
    qemu_put_byte(f, tp->request_r_scale);
897 062e5527 aliguori
    qemu_put_byte(f, tp->requested_s_scale);
898 062e5527 aliguori
    qemu_put_be32(f, tp->ts_recent);
899 062e5527 aliguori
    qemu_put_be32(f, tp->ts_recent_age);
900 062e5527 aliguori
    qemu_put_be32(f, tp->last_ack_sent);
901 062e5527 aliguori
}
902 062e5527 aliguori
903 062e5527 aliguori
static void slirp_sbuf_save(QEMUFile *f, struct sbuf *sbuf)
904 062e5527 aliguori
{
905 062e5527 aliguori
    uint32_t off;
906 062e5527 aliguori
907 062e5527 aliguori
    qemu_put_be32(f, sbuf->sb_cc);
908 062e5527 aliguori
    qemu_put_be32(f, sbuf->sb_datalen);
909 062e5527 aliguori
    off = (uint32_t)(sbuf->sb_wptr - sbuf->sb_data);
910 062e5527 aliguori
    qemu_put_sbe32(f, off);
911 062e5527 aliguori
    off = (uint32_t)(sbuf->sb_rptr - sbuf->sb_data);
912 062e5527 aliguori
    qemu_put_sbe32(f, off);
913 062e5527 aliguori
    qemu_put_buffer(f, (unsigned char*)sbuf->sb_data, sbuf->sb_datalen);
914 062e5527 aliguori
}
915 062e5527 aliguori
916 062e5527 aliguori
static void slirp_socket_save(QEMUFile *f, struct socket *so)
917 062e5527 aliguori
{
918 062e5527 aliguori
    qemu_put_be32(f, so->so_urgc);
919 062e5527 aliguori
    qemu_put_be32(f, so->so_faddr.s_addr);
920 062e5527 aliguori
    qemu_put_be32(f, so->so_laddr.s_addr);
921 062e5527 aliguori
    qemu_put_be16(f, so->so_fport);
922 062e5527 aliguori
    qemu_put_be16(f, so->so_lport);
923 062e5527 aliguori
    qemu_put_byte(f, so->so_iptos);
924 062e5527 aliguori
    qemu_put_byte(f, so->so_emu);
925 062e5527 aliguori
    qemu_put_byte(f, so->so_type);
926 062e5527 aliguori
    qemu_put_be32(f, so->so_state);
927 062e5527 aliguori
    slirp_sbuf_save(f, &so->so_rcv);
928 062e5527 aliguori
    slirp_sbuf_save(f, &so->so_snd);
929 062e5527 aliguori
    slirp_tcp_save(f, so->so_tcpcb);
930 062e5527 aliguori
}
931 062e5527 aliguori
932 0a1f851e Jan Kiszka
static void slirp_bootp_save(QEMUFile *f, Slirp *slirp)
933 0a1f851e Jan Kiszka
{
934 0a1f851e Jan Kiszka
    int i;
935 0a1f851e Jan Kiszka
936 0a1f851e Jan Kiszka
    for (i = 0; i < NB_BOOTP_CLIENTS; i++) {
937 0a1f851e Jan Kiszka
        qemu_put_be16(f, slirp->bootp_clients[i].allocated);
938 0a1f851e Jan Kiszka
        qemu_put_buffer(f, slirp->bootp_clients[i].macaddr, 6);
939 0a1f851e Jan Kiszka
    }
940 0a1f851e Jan Kiszka
}
941 0a1f851e Jan Kiszka
942 062e5527 aliguori
static void slirp_state_save(QEMUFile *f, void *opaque)
943 062e5527 aliguori
{
944 460fec67 Jan Kiszka
    Slirp *slirp = opaque;
945 062e5527 aliguori
    struct ex_list *ex_ptr;
946 062e5527 aliguori
947 460fec67 Jan Kiszka
    for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next)
948 062e5527 aliguori
        if (ex_ptr->ex_pty == 3) {
949 062e5527 aliguori
            struct socket *so;
950 460fec67 Jan Kiszka
            so = slirp_find_ctl_socket(slirp, ex_ptr->ex_addr,
951 460fec67 Jan Kiszka
                                       ntohs(ex_ptr->ex_fport));
952 062e5527 aliguori
            if (!so)
953 062e5527 aliguori
                continue;
954 062e5527 aliguori
955 062e5527 aliguori
            qemu_put_byte(f, 42);
956 062e5527 aliguori
            slirp_socket_save(f, so);
957 062e5527 aliguori
        }
958 062e5527 aliguori
    qemu_put_byte(f, 0);
959 285f7a62 Jan Kiszka
960 460fec67 Jan Kiszka
    qemu_put_be16(f, slirp->ip_id);
961 0a1f851e Jan Kiszka
962 0a1f851e Jan Kiszka
    slirp_bootp_save(f, slirp);
963 062e5527 aliguori
}
964 062e5527 aliguori
965 062e5527 aliguori
static void slirp_tcp_load(QEMUFile *f, struct tcpcb *tp)
966 062e5527 aliguori
{
967 062e5527 aliguori
    int i;
968 062e5527 aliguori
969 062e5527 aliguori
    tp->t_state = qemu_get_sbe16(f);
970 062e5527 aliguori
    for (i = 0; i < TCPT_NTIMERS; i++)
971 062e5527 aliguori
        tp->t_timer[i] = qemu_get_sbe16(f);
972 062e5527 aliguori
    tp->t_rxtshift = qemu_get_sbe16(f);
973 062e5527 aliguori
    tp->t_rxtcur = qemu_get_sbe16(f);
974 062e5527 aliguori
    tp->t_dupacks = qemu_get_sbe16(f);
975 062e5527 aliguori
    tp->t_maxseg = qemu_get_be16(f);
976 062e5527 aliguori
    tp->t_force = qemu_get_sbyte(f);
977 062e5527 aliguori
    tp->t_flags = qemu_get_be16(f);
978 062e5527 aliguori
    tp->snd_una = qemu_get_be32(f);
979 062e5527 aliguori
    tp->snd_nxt = qemu_get_be32(f);
980 062e5527 aliguori
    tp->snd_up = qemu_get_be32(f);
981 062e5527 aliguori
    tp->snd_wl1 = qemu_get_be32(f);
982 062e5527 aliguori
    tp->snd_wl2 = qemu_get_be32(f);
983 062e5527 aliguori
    tp->iss = qemu_get_be32(f);
984 062e5527 aliguori
    tp->snd_wnd = qemu_get_be32(f);
985 062e5527 aliguori
    tp->rcv_wnd = qemu_get_be32(f);
986 062e5527 aliguori
    tp->rcv_nxt = qemu_get_be32(f);
987 062e5527 aliguori
    tp->rcv_up = qemu_get_be32(f);
988 062e5527 aliguori
    tp->irs = qemu_get_be32(f);
989 062e5527 aliguori
    tp->rcv_adv = qemu_get_be32(f);
990 062e5527 aliguori
    tp->snd_max = qemu_get_be32(f);
991 062e5527 aliguori
    tp->snd_cwnd = qemu_get_be32(f);
992 062e5527 aliguori
    tp->snd_ssthresh = qemu_get_be32(f);
993 062e5527 aliguori
    tp->t_idle = qemu_get_sbe16(f);
994 062e5527 aliguori
    tp->t_rtt = qemu_get_sbe16(f);
995 062e5527 aliguori
    tp->t_rtseq = qemu_get_be32(f);
996 062e5527 aliguori
    tp->t_srtt = qemu_get_sbe16(f);
997 062e5527 aliguori
    tp->t_rttvar = qemu_get_sbe16(f);
998 062e5527 aliguori
    tp->t_rttmin = qemu_get_be16(f);
999 062e5527 aliguori
    tp->max_sndwnd = qemu_get_be32(f);
1000 062e5527 aliguori
    tp->t_oobflags = qemu_get_byte(f);
1001 062e5527 aliguori
    tp->t_iobc = qemu_get_byte(f);
1002 062e5527 aliguori
    tp->t_softerror = qemu_get_sbe16(f);
1003 062e5527 aliguori
    tp->snd_scale = qemu_get_byte(f);
1004 062e5527 aliguori
    tp->rcv_scale = qemu_get_byte(f);
1005 062e5527 aliguori
    tp->request_r_scale = qemu_get_byte(f);
1006 062e5527 aliguori
    tp->requested_s_scale = qemu_get_byte(f);
1007 062e5527 aliguori
    tp->ts_recent = qemu_get_be32(f);
1008 062e5527 aliguori
    tp->ts_recent_age = qemu_get_be32(f);
1009 062e5527 aliguori
    tp->last_ack_sent = qemu_get_be32(f);
1010 062e5527 aliguori
    tcp_template(tp);
1011 062e5527 aliguori
}
1012 062e5527 aliguori
1013 062e5527 aliguori
static int slirp_sbuf_load(QEMUFile *f, struct sbuf *sbuf)
1014 062e5527 aliguori
{
1015 062e5527 aliguori
    uint32_t off, sb_cc, sb_datalen;
1016 062e5527 aliguori
1017 062e5527 aliguori
    sb_cc = qemu_get_be32(f);
1018 062e5527 aliguori
    sb_datalen = qemu_get_be32(f);
1019 062e5527 aliguori
1020 062e5527 aliguori
    sbreserve(sbuf, sb_datalen);
1021 062e5527 aliguori
1022 062e5527 aliguori
    if (sbuf->sb_datalen != sb_datalen)
1023 062e5527 aliguori
        return -ENOMEM;
1024 062e5527 aliguori
1025 062e5527 aliguori
    sbuf->sb_cc = sb_cc;
1026 062e5527 aliguori
1027 062e5527 aliguori
    off = qemu_get_sbe32(f);
1028 062e5527 aliguori
    sbuf->sb_wptr = sbuf->sb_data + off;
1029 062e5527 aliguori
    off = qemu_get_sbe32(f);
1030 062e5527 aliguori
    sbuf->sb_rptr = sbuf->sb_data + off;
1031 062e5527 aliguori
    qemu_get_buffer(f, (unsigned char*)sbuf->sb_data, sbuf->sb_datalen);
1032 062e5527 aliguori
1033 062e5527 aliguori
    return 0;
1034 062e5527 aliguori
}
1035 062e5527 aliguori
1036 062e5527 aliguori
static int slirp_socket_load(QEMUFile *f, struct socket *so)
1037 062e5527 aliguori
{
1038 062e5527 aliguori
    if (tcp_attach(so) < 0)
1039 062e5527 aliguori
        return -ENOMEM;
1040 062e5527 aliguori
1041 062e5527 aliguori
    so->so_urgc = qemu_get_be32(f);
1042 062e5527 aliguori
    so->so_faddr.s_addr = qemu_get_be32(f);
1043 062e5527 aliguori
    so->so_laddr.s_addr = qemu_get_be32(f);
1044 062e5527 aliguori
    so->so_fport = qemu_get_be16(f);
1045 062e5527 aliguori
    so->so_lport = qemu_get_be16(f);
1046 062e5527 aliguori
    so->so_iptos = qemu_get_byte(f);
1047 062e5527 aliguori
    so->so_emu = qemu_get_byte(f);
1048 062e5527 aliguori
    so->so_type = qemu_get_byte(f);
1049 062e5527 aliguori
    so->so_state = qemu_get_be32(f);
1050 062e5527 aliguori
    if (slirp_sbuf_load(f, &so->so_rcv) < 0)
1051 062e5527 aliguori
        return -ENOMEM;
1052 062e5527 aliguori
    if (slirp_sbuf_load(f, &so->so_snd) < 0)
1053 062e5527 aliguori
        return -ENOMEM;
1054 062e5527 aliguori
    slirp_tcp_load(f, so->so_tcpcb);
1055 062e5527 aliguori
1056 062e5527 aliguori
    return 0;
1057 062e5527 aliguori
}
1058 062e5527 aliguori
1059 0a1f851e Jan Kiszka
static void slirp_bootp_load(QEMUFile *f, Slirp *slirp)
1060 0a1f851e Jan Kiszka
{
1061 0a1f851e Jan Kiszka
    int i;
1062 0a1f851e Jan Kiszka
1063 0a1f851e Jan Kiszka
    for (i = 0; i < NB_BOOTP_CLIENTS; i++) {
1064 0a1f851e Jan Kiszka
        slirp->bootp_clients[i].allocated = qemu_get_be16(f);
1065 0a1f851e Jan Kiszka
        qemu_get_buffer(f, slirp->bootp_clients[i].macaddr, 6);
1066 0a1f851e Jan Kiszka
    }
1067 0a1f851e Jan Kiszka
}
1068 0a1f851e Jan Kiszka
1069 062e5527 aliguori
static int slirp_state_load(QEMUFile *f, void *opaque, int version_id)
1070 062e5527 aliguori
{
1071 460fec67 Jan Kiszka
    Slirp *slirp = opaque;
1072 062e5527 aliguori
    struct ex_list *ex_ptr;
1073 062e5527 aliguori
1074 b0e04867 Blue Swirl
    while (qemu_get_byte(f)) {
1075 062e5527 aliguori
        int ret;
1076 460fec67 Jan Kiszka
        struct socket *so = socreate(slirp);
1077 062e5527 aliguori
1078 062e5527 aliguori
        if (!so)
1079 062e5527 aliguori
            return -ENOMEM;
1080 062e5527 aliguori
1081 062e5527 aliguori
        ret = slirp_socket_load(f, so);
1082 062e5527 aliguori
1083 062e5527 aliguori
        if (ret < 0)
1084 062e5527 aliguori
            return ret;
1085 062e5527 aliguori
1086 460fec67 Jan Kiszka
        if ((so->so_faddr.s_addr & slirp->vnetwork_mask.s_addr) !=
1087 460fec67 Jan Kiszka
            slirp->vnetwork_addr.s_addr) {
1088 062e5527 aliguori
            return -EINVAL;
1089 a13a4126 Jan Kiszka
        }
1090 460fec67 Jan Kiszka
        for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next) {
1091 062e5527 aliguori
            if (ex_ptr->ex_pty == 3 &&
1092 a13a4126 Jan Kiszka
                so->so_faddr.s_addr == ex_ptr->ex_addr.s_addr &&
1093 a13a4126 Jan Kiszka
                so->so_fport == ex_ptr->ex_fport) {
1094 062e5527 aliguori
                break;
1095 a13a4126 Jan Kiszka
            }
1096 a13a4126 Jan Kiszka
        }
1097 062e5527 aliguori
        if (!ex_ptr)
1098 062e5527 aliguori
            return -EINVAL;
1099 062e5527 aliguori
1100 0580ac91 blueswir1
        so->extra = (void *)ex_ptr->ex_exec;
1101 062e5527 aliguori
    }
1102 062e5527 aliguori
1103 285f7a62 Jan Kiszka
    if (version_id >= 2) {
1104 460fec67 Jan Kiszka
        slirp->ip_id = qemu_get_be16(f);
1105 285f7a62 Jan Kiszka
    }
1106 285f7a62 Jan Kiszka
1107 0a1f851e Jan Kiszka
    if (version_id >= 3) {
1108 0a1f851e Jan Kiszka
        slirp_bootp_load(f, slirp);
1109 0a1f851e Jan Kiszka
    }
1110 0a1f851e Jan Kiszka
1111 062e5527 aliguori
    return 0;
1112 062e5527 aliguori
}