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1/*
2 * Copyright (c) 1982, 1986, 1988, 1990, 1993
3 * The Regents of the University of California. All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 * notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in the
12 * documentation and/or other materials provided with the distribution.
2f5f8996 13 * 3. Neither the name of the University nor the names of its contributors
f0cbd3ec
FB
14 * may be used to endorse or promote products derived from this software
15 * without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 *
29 * @(#)tcp_subr.c 8.1 (Berkeley) 6/10/93
30 * tcp_subr.c,v 1.5 1994/10/08 22:39:58 phk Exp
31 */
32
33/*
34 * Changes and additions relating to SLiRP
35 * Copyright (c) 1995 Danny Gasparovski.
5fafdf24
TS
36 *
37 * Please read the file COPYRIGHT for the
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38 * terms and conditions of the copyright.
39 */
40
7df7482b 41#include "qemu/osdep.h"
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42#include <slirp.h>
43
44/* patchable/settable parameters for tcp */
9634d903
BS
45/* Don't do rfc1323 performance enhancements */
46#define TCP_DO_RFC1323 0
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47
48/*
49 * Tcp initialization
50 */
51void
460fec67 52tcp_init(Slirp *slirp)
f0cbd3ec 53{
460fec67
JK
54 slirp->tcp_iss = 1; /* wrong */
55 slirp->tcb.so_next = slirp->tcb.so_prev = &slirp->tcb;
56 slirp->tcp_last_so = &slirp->tcb;
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FB
57}
58
a68adc22
JK
59void tcp_cleanup(Slirp *slirp)
60{
61 while (slirp->tcb.so_next != &slirp->tcb) {
62 tcp_close(sototcpcb(slirp->tcb.so_next));
63 }
64}
65
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66/*
67 * Create template to be used to send tcp packets on a connection.
68 * Call after host entry created, fills
69 * in a skeletal tcp/ip header, minimizing the amount of work
70 * necessary when the connection is used.
71 */
f0cbd3ec 72void
511d2b14 73tcp_template(struct tcpcb *tp)
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74{
75 struct socket *so = tp->t_socket;
76 register struct tcpiphdr *n = &tp->t_template;
77
429d0a3d 78 n->ti_mbuf = NULL;
98c63057
GS
79 memset(&n->ti, 0, sizeof(n->ti));
80 n->ti_x0 = 0;
9dfbf250
GS
81 switch (so->so_ffamily) {
82 case AF_INET:
1252cf40
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83 n->ti_pr = IPPROTO_TCP;
84 n->ti_len = htons(sizeof(struct tcphdr));
85 n->ti_src = so->so_faddr;
86 n->ti_dst = so->so_laddr;
87 n->ti_sport = so->so_fport;
88 n->ti_dport = so->so_lport;
9dfbf250
GS
89 break;
90
3feea444
GS
91 case AF_INET6:
92 n->ti_nh6 = IPPROTO_TCP;
93 n->ti_len = htons(sizeof(struct tcphdr));
94 n->ti_src6 = so->so_faddr6;
95 n->ti_dst6 = so->so_laddr6;
96 n->ti_sport = so->so_fport6;
97 n->ti_dport = so->so_lport6;
98 break;
99
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GS
100 default:
101 g_assert_not_reached();
102 }
5fafdf24 103
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104 n->ti_seq = 0;
105 n->ti_ack = 0;
106 n->ti_x2 = 0;
107 n->ti_off = 5;
108 n->ti_flags = 0;
109 n->ti_win = 0;
110 n->ti_sum = 0;
111 n->ti_urp = 0;
112}
113
114/*
115 * Send a single message to the TCP at address specified by
116 * the given TCP/IP header. If m == 0, then we make a copy
117 * of the tcpiphdr at ti and send directly to the addressed host.
118 * This is used to force keep alive messages out using the TCP
119 * template for a connection tp->t_template. If flags are given
120 * then we send a message back to the TCP which originated the
121 * segment ti, and discard the mbuf containing it and any other
122 * attached mbufs.
123 *
124 * In any case the ack and sequence number of the transmitted
125 * segment are as specified by the parameters.
126 */
127void
511d2b14 128tcp_respond(struct tcpcb *tp, struct tcpiphdr *ti, struct mbuf *m,
9dfbf250 129 tcp_seq ack, tcp_seq seq, int flags, unsigned short af)
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130{
131 register int tlen;
132 int win = 0;
133
134 DEBUG_CALL("tcp_respond");
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SW
135 DEBUG_ARG("tp = %p", tp);
136 DEBUG_ARG("ti = %p", ti);
137 DEBUG_ARG("m = %p", m);
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138 DEBUG_ARG("ack = %u", ack);
139 DEBUG_ARG("seq = %u", seq);
140 DEBUG_ARG("flags = %x", flags);
5fafdf24 141
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142 if (tp)
143 win = sbspace(&tp->t_socket->so_rcv);
511d2b14 144 if (m == NULL) {
e56afbc5 145 if (!tp || (m = m_get(tp->t_socket->slirp)) == NULL)
f0cbd3ec 146 return;
f0cbd3ec 147 tlen = 0;
9634d903 148 m->m_data += IF_MAXLINKHDR;
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149 *mtod(m, struct tcpiphdr *) = *ti;
150 ti = mtod(m, struct tcpiphdr *);
98c63057 151 memset(&ti->ti, 0, sizeof(ti->ti));
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152 flags = TH_ACK;
153 } else {
5fafdf24 154 /*
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155 * ti points into m so the next line is just making
156 * the mbuf point to ti
157 */
158 m->m_data = (caddr_t)ti;
3b46e624 159
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160 m->m_len = sizeof (struct tcpiphdr);
161 tlen = 0;
162#define xchg(a,b,type) { type t; t=a; a=b; b=t; }
9dfbf250
GS
163 switch (af) {
164 case AF_INET:
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165 xchg(ti->ti_dst.s_addr, ti->ti_src.s_addr, uint32_t);
166 xchg(ti->ti_dport, ti->ti_sport, uint16_t);
9dfbf250 167 break;
3feea444
GS
168 case AF_INET6:
169 xchg(ti->ti_dst6, ti->ti_src6, struct in6_addr);
170 xchg(ti->ti_dport, ti->ti_sport, uint16_t);
171 break;
9dfbf250
GS
172 default:
173 g_assert_not_reached();
174 }
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175#undef xchg
176 }
177 ti->ti_len = htons((u_short)(sizeof (struct tcphdr) + tlen));
178 tlen += sizeof (struct tcpiphdr);
179 m->m_len = tlen;
180
98c63057
GS
181 ti->ti_mbuf = NULL;
182 ti->ti_x0 = 0;
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183 ti->ti_seq = htonl(seq);
184 ti->ti_ack = htonl(ack);
185 ti->ti_x2 = 0;
186 ti->ti_off = sizeof (struct tcphdr) >> 2;
187 ti->ti_flags = flags;
188 if (tp)
b6dce92e 189 ti->ti_win = htons((uint16_t) (win >> tp->rcv_scale));
f0cbd3ec 190 else
b6dce92e 191 ti->ti_win = htons((uint16_t)win);
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192 ti->ti_urp = 0;
193 ti->ti_sum = 0;
194 ti->ti_sum = cksum(m, tlen);
f0cbd3ec 195
98c63057 196 struct tcpiphdr tcpiph_save = *(mtod(m, struct tcpiphdr *));
9dfbf250 197 struct ip *ip;
3feea444 198 struct ip6 *ip6;
9dfbf250
GS
199
200 switch (af) {
201 case AF_INET:
1252cf40
GS
202 m->m_data += sizeof(struct tcpiphdr) - sizeof(struct tcphdr)
203 - sizeof(struct ip);
204 m->m_len -= sizeof(struct tcpiphdr) - sizeof(struct tcphdr)
205 - sizeof(struct ip);
206 ip = mtod(m, struct ip *);
207 ip->ip_len = tlen;
208 ip->ip_dst = tcpiph_save.ti_dst;
209 ip->ip_src = tcpiph_save.ti_src;
210 ip->ip_p = tcpiph_save.ti_pr;
211
212 if (flags & TH_RST) {
213 ip->ip_ttl = MAXTTL;
214 } else {
215 ip->ip_ttl = IPDEFTTL;
216 }
217
3feea444
GS
218 ip_output(NULL, m);
219 break;
220
221 case AF_INET6:
222 m->m_data += sizeof(struct tcpiphdr) - sizeof(struct tcphdr)
223 - sizeof(struct ip6);
224 m->m_len -= sizeof(struct tcpiphdr) - sizeof(struct tcphdr)
225 - sizeof(struct ip6);
226 ip6 = mtod(m, struct ip6 *);
227 ip6->ip_pl = tlen;
228 ip6->ip_dst = tcpiph_save.ti_dst6;
229 ip6->ip_src = tcpiph_save.ti_src6;
230 ip6->ip_nh = tcpiph_save.ti_nh6;
231
232 ip6_output(NULL, m, 0);
9dfbf250
GS
233 break;
234
235 default:
236 g_assert_not_reached();
237 }
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238}
239
240/*
241 * Create a new TCP control block, making an
242 * empty reassembly queue and hooking it to the argument
243 * protocol control block.
244 */
245struct tcpcb *
511d2b14 246tcp_newtcpcb(struct socket *so)
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247{
248 register struct tcpcb *tp;
5fafdf24 249
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250 tp = (struct tcpcb *)malloc(sizeof(*tp));
251 if (tp == NULL)
252 return ((struct tcpcb *)0);
5fafdf24 253
f0cbd3ec 254 memset((char *) tp, 0, sizeof(struct tcpcb));
429d0a3d 255 tp->seg_next = tp->seg_prev = (struct tcpiphdr*)tp;
3feea444 256 tp->t_maxseg = (so->so_ffamily == AF_INET) ? TCP_MSS : TCP6_MSS;
5fafdf24 257
9634d903 258 tp->t_flags = TCP_DO_RFC1323 ? (TF_REQ_SCALE|TF_REQ_TSTMP) : 0;
f0cbd3ec 259 tp->t_socket = so;
5fafdf24 260
f0cbd3ec
FB
261 /*
262 * Init srtt to TCPTV_SRTTBASE (0), so we can tell that we have no
263 * rtt estimate. Set rttvar so that srtt + 2 * rttvar gives
264 * reasonable initial retransmit time.
265 */
266 tp->t_srtt = TCPTV_SRTTBASE;
9634d903 267 tp->t_rttvar = TCPTV_SRTTDFLT << 2;
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FB
268 tp->t_rttmin = TCPTV_MIN;
269
5fafdf24 270 TCPT_RANGESET(tp->t_rxtcur,
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FB
271 ((TCPTV_SRTTBASE >> 2) + (TCPTV_SRTTDFLT << 2)) >> 1,
272 TCPTV_MIN, TCPTV_REXMTMAX);
273
274 tp->snd_cwnd = TCP_MAXWIN << TCP_MAX_WINSHIFT;
275 tp->snd_ssthresh = TCP_MAXWIN << TCP_MAX_WINSHIFT;
276 tp->t_state = TCPS_CLOSED;
5fafdf24 277
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FB
278 so->so_tcpcb = tp;
279
280 return (tp);
281}
282
283/*
284 * Drop a TCP connection, reporting
285 * the specified error. If connection is synchronized,
286 * then send a RST to peer.
287 */
5fafdf24 288struct tcpcb *tcp_drop(struct tcpcb *tp, int err)
f0cbd3ec 289{
f0cbd3ec 290 DEBUG_CALL("tcp_drop");
ecc804ca 291 DEBUG_ARG("tp = %p", tp);
f0cbd3ec 292 DEBUG_ARG("errno = %d", errno);
5fafdf24 293
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FB
294 if (TCPS_HAVERCVDSYN(tp->t_state)) {
295 tp->t_state = TCPS_CLOSED;
296 (void) tcp_output(tp);
0fe6a7f2 297 }
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298 return (tcp_close(tp));
299}
300
301/*
302 * Close a TCP control block:
303 * discard all space held by the tcp
304 * discard internet protocol block
305 * wake up any sleepers
306 */
307struct tcpcb *
511d2b14 308tcp_close(struct tcpcb *tp)
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309{
310 register struct tcpiphdr *t;
311 struct socket *so = tp->t_socket;
460fec67 312 Slirp *slirp = so->slirp;
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313 register struct mbuf *m;
314
315 DEBUG_CALL("tcp_close");
ecc804ca 316 DEBUG_ARG("tp = %p", tp);
5fafdf24 317
f0cbd3ec 318 /* free the reassembly queue, if any */
429d0a3d
BS
319 t = tcpfrag_list_first(tp);
320 while (!tcpfrag_list_end(t, tp)) {
321 t = tcpiphdr_next(t);
322 m = tcpiphdr_prev(t)->ti_mbuf;
323 remque(tcpiphdr2qlink(tcpiphdr_prev(t)));
3acccfc6 324 m_free(m);
f0cbd3ec 325 }
f0cbd3ec 326 free(tp);
511d2b14 327 so->so_tcpcb = NULL;
f0cbd3ec 328 /* clobber input socket cache if we're closing the cached connection */
460fec67
JK
329 if (so == slirp->tcp_last_so)
330 slirp->tcp_last_so = &slirp->tcb;
379ff53d 331 closesocket(so->s);
f0cbd3ec
FB
332 sbfree(&so->so_rcv);
333 sbfree(&so->so_snd);
334 sofree(so);
f0cbd3ec
FB
335 return ((struct tcpcb *)0);
336}
337
f0cbd3ec
FB
338/*
339 * TCP protocol interface to socket abstraction.
340 */
341
342/*
343 * User issued close, and wish to trail through shutdown states:
344 * if never received SYN, just forget it. If got a SYN from peer,
345 * but haven't sent FIN, then go to FIN_WAIT_1 state to send peer a FIN.
346 * If already got a FIN from peer, then almost done; go to LAST_ACK
347 * state. In all other cases, have already sent FIN to peer (e.g.
348 * after PRU_SHUTDOWN), and just have to play tedious game waiting
349 * for peer to send FIN or not respond to keep-alives, etc.
350 * We can let the user exit from the close as soon as the FIN is acked.
351 */
352void
511d2b14 353tcp_sockclosed(struct tcpcb *tp)
f0cbd3ec
FB
354{
355
356 DEBUG_CALL("tcp_sockclosed");
ecc804ca 357 DEBUG_ARG("tp = %p", tp);
5fafdf24 358
f0cbd3ec
FB
359 switch (tp->t_state) {
360
361 case TCPS_CLOSED:
362 case TCPS_LISTEN:
363 case TCPS_SYN_SENT:
364 tp->t_state = TCPS_CLOSED;
365 tp = tcp_close(tp);
366 break;
367
368 case TCPS_SYN_RECEIVED:
369 case TCPS_ESTABLISHED:
370 tp->t_state = TCPS_FIN_WAIT_1;
371 break;
372
373 case TCPS_CLOSE_WAIT:
374 tp->t_state = TCPS_LAST_ACK;
375 break;
376 }
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FB
377 if (tp)
378 tcp_output(tp);
379}
380
5fafdf24 381/*
f0cbd3ec
FB
382 * Connect to a host on the Internet
383 * Called by tcp_input
384 * Only do a connect, the tcp fields will be set in tcp_input
385 * return 0 if there's a result of the connect,
386 * else return -1 means we're still connecting
387 * The return value is almost always -1 since the socket is
5fafdf24 388 * nonblocking. Connect returns after the SYN is sent, and does
f0cbd3ec
FB
389 * not wait for ACK+SYN.
390 */
cc573a69 391int tcp_fconnect(struct socket *so, unsigned short af)
f0cbd3ec
FB
392{
393 int ret=0;
3b46e624 394
f0cbd3ec 395 DEBUG_CALL("tcp_fconnect");
ecc804ca 396 DEBUG_ARG("so = %p", so);
f0cbd3ec 397
cc573a69
GS
398 ret = so->s = qemu_socket(af, SOCK_STREAM, 0);
399 if (ret >= 0) {
f0cbd3ec 400 int opt, s=so->s;
5379229a 401 struct sockaddr_storage addr;
f0cbd3ec 402
f9e8cacc 403 qemu_set_nonblock(s);
aad1239a 404 socket_set_fast_reuse(s);
f0cbd3ec 405 opt = 1;
9957fc7f 406 qemu_setsockopt(s, SOL_SOCKET, SO_OOBINLINE, &opt, sizeof(opt));
3b46e624 407
5379229a
GS
408 addr = so->fhost.ss;
409 DEBUG_CALL(" connect()ing")
410 sotranslate_out(so, &addr);
411
f0cbd3ec
FB
412 /* We don't care what port we get */
413 ret = connect(s,(struct sockaddr *)&addr,sizeof (addr));
3b46e624 414
f0cbd3ec
FB
415 /*
416 * If it's not in progress, it failed, so we just return 0,
417 * without clearing SS_NOFDREF
418 */
419 soisfconnecting(so);
420 }
421
422 return(ret);
423}
424
425/*
426 * Accept the socket and connect to the local-host
5fafdf24 427 *
f0cbd3ec
FB
428 * We have a problem. The correct thing to do would be
429 * to first connect to the local-host, and only if the
430 * connection is accepted, then do an accept() here.
5fafdf24 431 * But, a) we need to know who's trying to connect
f0cbd3ec
FB
432 * to the socket to be able to SYN the local-host, and
433 * b) we are already connected to the foreign host by
434 * the time it gets to accept(), so... We simply accept
435 * here and SYN the local-host.
5fafdf24 436 */
4ef7b894 437void tcp_connect(struct socket *inso)
f0cbd3ec 438{
4ef7b894
MK
439 Slirp *slirp = inso->slirp;
440 struct socket *so;
9dfbf250
GS
441 struct sockaddr_storage addr;
442 socklen_t addrlen = sizeof(struct sockaddr_storage);
4ef7b894
MK
443 struct tcpcb *tp;
444 int s, opt;
f0cbd3ec 445
4ef7b894 446 DEBUG_CALL("tcp_connect");
ecc804ca 447 DEBUG_ARG("inso = %p", inso);
5fafdf24 448
4ef7b894
MK
449 /*
450 * If it's an SS_ACCEPTONCE socket, no need to socreate()
451 * another socket, just use the accept() socket.
452 */
453 if (inso->so_state & SS_FACCEPTONCE) {
454 /* FACCEPTONCE already have a tcpcb */
455 so = inso;
456 } else {
457 so = socreate(slirp);
458 if (so == NULL) {
459 /* If it failed, get rid of the pending connection */
460 closesocket(accept(inso->s, (struct sockaddr *)&addr, &addrlen));
461 return;
462 }
463 if (tcp_attach(so) < 0) {
464 free(so); /* NOT sofree */
465 return;
466 }
9dfbf250
GS
467 so->lhost = inso->lhost;
468 so->so_ffamily = inso->so_ffamily;
4ef7b894 469 }
5fafdf24 470
4ef7b894 471 tcp_mss(sototcpcb(so), 0);
f0cbd3ec 472
4ef7b894
MK
473 s = accept(inso->s, (struct sockaddr *)&addr, &addrlen);
474 if (s < 0) {
475 tcp_close(sototcpcb(so)); /* This will sofree() as well */
476 return;
477 }
f9e8cacc 478 qemu_set_nonblock(s);
aad1239a 479 socket_set_fast_reuse(s);
4ef7b894 480 opt = 1;
9957fc7f 481 qemu_setsockopt(s, SOL_SOCKET, SO_OOBINLINE, &opt, sizeof(int));
bf1c852a 482 socket_set_nodelay(s);
4ef7b894 483
9dfbf250 484 so->fhost.ss = addr;
5379229a 485 sotranslate_accept(so);
5fafdf24 486
4ef7b894
MK
487 /* Close the accept() socket, set right state */
488 if (inso->so_state & SS_FACCEPTONCE) {
489 /* If we only accept once, close the accept() socket */
490 closesocket(so->s);
491
492 /* Don't select it yet, even though we have an FD */
493 /* if it's not FACCEPTONCE, it's already NOFDREF */
494 so->so_state = SS_NOFDREF;
495 }
496 so->s = s;
497 so->so_state |= SS_INCOMING;
5fafdf24 498
4ef7b894
MK
499 so->so_iptos = tcp_tos(so);
500 tp = sototcpcb(so);
f0cbd3ec 501
4ef7b894 502 tcp_template(tp);
5fafdf24 503
4ef7b894
MK
504 tp->t_state = TCPS_SYN_SENT;
505 tp->t_timer[TCPT_KEEP] = TCPTV_KEEP_INIT;
506 tp->iss = slirp->tcp_iss;
507 slirp->tcp_iss += TCP_ISSINCR/2;
508 tcp_sendseqinit(tp);
509 tcp_output(tp);
f0cbd3ec
FB
510}
511
512/*
513 * Attach a TCPCB to a socket.
514 */
515int
511d2b14 516tcp_attach(struct socket *so)
f0cbd3ec
FB
517{
518 if ((so->so_tcpcb = tcp_newtcpcb(so)) == NULL)
519 return -1;
5fafdf24 520
460fec67 521 insque(so, &so->slirp->tcb);
f0cbd3ec
FB
522
523 return 0;
524}
525
526/*
527 * Set the socket's type of service field
528 */
9634d903 529static const struct tos_t tcptos[] = {
f0cbd3ec
FB
530 {0, 20, IPTOS_THROUGHPUT, 0}, /* ftp data */
531 {21, 21, IPTOS_LOWDELAY, EMU_FTP}, /* ftp control */
532 {0, 23, IPTOS_LOWDELAY, 0}, /* telnet */
533 {0, 80, IPTOS_THROUGHPUT, 0}, /* WWW */
534 {0, 513, IPTOS_LOWDELAY, EMU_RLOGIN|EMU_NOCONNECT}, /* rlogin */
535 {0, 514, IPTOS_LOWDELAY, EMU_RSH|EMU_NOCONNECT}, /* shell */
536 {0, 544, IPTOS_LOWDELAY, EMU_KSH}, /* kshell */
537 {0, 543, IPTOS_LOWDELAY, 0}, /* klogin */
538 {0, 6667, IPTOS_THROUGHPUT, EMU_IRC}, /* IRC */
539 {0, 6668, IPTOS_THROUGHPUT, EMU_IRC}, /* IRC undernet */
540 {0, 7070, IPTOS_LOWDELAY, EMU_REALAUDIO }, /* RealAudio control */
541 {0, 113, IPTOS_LOWDELAY, EMU_IDENT }, /* identd protocol */
542 {0, 0, 0, 0}
543};
544
0d62c4cf 545static struct emu_t *tcpemu = NULL;
3b46e624 546
f0cbd3ec
FB
547/*
548 * Return TOS according to the above table
549 */
b6dce92e 550uint8_t
511d2b14 551tcp_tos(struct socket *so)
f0cbd3ec
FB
552{
553 int i = 0;
554 struct emu_t *emup;
5fafdf24 555
f0cbd3ec
FB
556 while(tcptos[i].tos) {
557 if ((tcptos[i].fport && (ntohs(so->so_fport) == tcptos[i].fport)) ||
558 (tcptos[i].lport && (ntohs(so->so_lport) == tcptos[i].lport))) {
559 so->so_emu = tcptos[i].emu;
560 return tcptos[i].tos;
561 }
562 i++;
563 }
5fafdf24 564
f0cbd3ec
FB
565 /* Nope, lets see if there's a user-added one */
566 for (emup = tcpemu; emup; emup = emup->next) {
567 if ((emup->fport && (ntohs(so->so_fport) == emup->fport)) ||
568 (emup->lport && (ntohs(so->so_lport) == emup->lport))) {
569 so->so_emu = emup->emu;
570 return emup->tos;
571 }
572 }
5fafdf24 573
f0cbd3ec
FB
574 return 0;
575}
576
f0cbd3ec
FB
577/*
578 * Emulate programs that try and connect to us
579 * This includes ftp (the data connection is
580 * initiated by the server) and IRC (DCC CHAT and
581 * DCC SEND) for now
5fafdf24 582 *
f0cbd3ec
FB
583 * NOTE: It's possible to crash SLiRP by sending it
584 * unstandard strings to emulate... if this is a problem,
585 * more checks are needed here
586 *
587 * XXX Assumes the whole command came in one packet
3b46e624 588 *
f0cbd3ec
FB
589 * XXX Some ftp clients will have their TOS set to
590 * LOWDELAY and so Nagel will kick in. Because of this,
591 * we'll get the first letter, followed by the rest, so
592 * we simply scan for ORT instead of PORT...
593 * DCC doesn't have this problem because there's other stuff
594 * in the packet before the DCC command.
5fafdf24
TS
595 *
596 * Return 1 if the mbuf m is still valid and should be
f0cbd3ec 597 * sbappend()ed
5fafdf24 598 *
f0cbd3ec
FB
599 * NOTE: if you return 0 you MUST m_free() the mbuf!
600 */
601int
511d2b14 602tcp_emu(struct socket *so, struct mbuf *m)
f0cbd3ec 603{
460fec67 604 Slirp *slirp = so->slirp;
f0cbd3ec 605 u_int n1, n2, n3, n4, n5, n6;
363a37d5 606 char buff[257];
b6dce92e 607 uint32_t laddr;
f0cbd3ec
FB
608 u_int lport;
609 char *bptr;
5fafdf24 610
f0cbd3ec 611 DEBUG_CALL("tcp_emu");
ecc804ca
SW
612 DEBUG_ARG("so = %p", so);
613 DEBUG_ARG("m = %p", m);
5fafdf24 614
f0cbd3ec
FB
615 switch(so->so_emu) {
616 int x, i;
3b46e624 617
f0cbd3ec
FB
618 case EMU_IDENT:
619 /*
620 * Identification protocol as per rfc-1413
621 */
3b46e624 622
f0cbd3ec
FB
623 {
624 struct socket *tmpso;
625 struct sockaddr_in addr;
b55266b5 626 socklen_t addrlen = sizeof(struct sockaddr_in);
f0cbd3ec 627 struct sbuf *so_rcv = &so->so_rcv;
3b46e624 628
f0cbd3ec
FB
629 memcpy(so_rcv->sb_wptr, m->m_data, m->m_len);
630 so_rcv->sb_wptr += m->m_len;
631 so_rcv->sb_rptr += m->m_len;
632 m->m_data[m->m_len] = 0; /* NULL terminate */
633 if (strchr(m->m_data, '\r') || strchr(m->m_data, '\n')) {
9634d903 634 if (sscanf(so_rcv->sb_data, "%u%*[ ,]%u", &n1, &n2) == 2) {
f0cbd3ec
FB
635 HTONS(n1);
636 HTONS(n2);
637 /* n2 is the one on our host */
460fec67
JK
638 for (tmpso = slirp->tcb.so_next;
639 tmpso != &slirp->tcb;
640 tmpso = tmpso->so_next) {
f0cbd3ec
FB
641 if (tmpso->so_laddr.s_addr == so->so_laddr.s_addr &&
642 tmpso->so_lport == n2 &&
643 tmpso->so_faddr.s_addr == so->so_faddr.s_addr &&
644 tmpso->so_fport == n1) {
645 if (getsockname(tmpso->s,
646 (struct sockaddr *)&addr, &addrlen) == 0)
647 n2 = ntohs(addr.sin_port);
648 break;
649 }
650 }
651 }
363a37d5
BS
652 so_rcv->sb_cc = snprintf(so_rcv->sb_data,
653 so_rcv->sb_datalen,
654 "%d,%d\r\n", n1, n2);
f0cbd3ec
FB
655 so_rcv->sb_rptr = so_rcv->sb_data;
656 so_rcv->sb_wptr = so_rcv->sb_data + so_rcv->sb_cc;
657 }
658 m_free(m);
659 return 0;
660 }
3b46e624 661
f0cbd3ec 662 case EMU_FTP: /* ftp */
511d2b14 663 *(m->m_data+m->m_len) = 0; /* NUL terminate for strstr */
f0cbd3ec
FB
664 if ((bptr = (char *)strstr(m->m_data, "ORT")) != NULL) {
665 /*
666 * Need to emulate the PORT command
3b46e624 667 */
9634d903 668 x = sscanf(bptr, "ORT %u,%u,%u,%u,%u,%u\r\n%256[^\177]",
f0cbd3ec
FB
669 &n1, &n2, &n3, &n4, &n5, &n6, buff);
670 if (x < 6)
671 return 1;
3b46e624 672
f0cbd3ec
FB
673 laddr = htonl((n1 << 24) | (n2 << 16) | (n3 << 8) | (n4));
674 lport = htons((n5 << 8) | (n6));
3b46e624 675
460fec67
JK
676 if ((so = tcp_listen(slirp, INADDR_ANY, 0, laddr,
677 lport, SS_FACCEPTONCE)) == NULL) {
f0cbd3ec 678 return 1;
460fec67 679 }
f0cbd3ec 680 n6 = ntohs(so->so_fport);
3b46e624 681
f0cbd3ec
FB
682 n5 = (n6 >> 8) & 0xff;
683 n6 &= 0xff;
3b46e624 684
f0cbd3ec 685 laddr = ntohl(so->so_faddr.s_addr);
3b46e624 686
f0cbd3ec
FB
687 n1 = ((laddr >> 24) & 0xff);
688 n2 = ((laddr >> 16) & 0xff);
689 n3 = ((laddr >> 8) & 0xff);
690 n4 = (laddr & 0xff);
3b46e624 691
f0cbd3ec 692 m->m_len = bptr - m->m_data; /* Adjust length */
0e44486c 693 m->m_len += snprintf(bptr, m->m_size - m->m_len,
363a37d5
BS
694 "ORT %d,%d,%d,%d,%d,%d\r\n%s",
695 n1, n2, n3, n4, n5, n6, x==7?buff:"");
f0cbd3ec
FB
696 return 1;
697 } else if ((bptr = (char *)strstr(m->m_data, "27 Entering")) != NULL) {
698 /*
699 * Need to emulate the PASV response
700 */
9634d903 701 x = sscanf(bptr, "27 Entering Passive Mode (%u,%u,%u,%u,%u,%u)\r\n%256[^\177]",
f0cbd3ec
FB
702 &n1, &n2, &n3, &n4, &n5, &n6, buff);
703 if (x < 6)
704 return 1;
3b46e624 705
f0cbd3ec
FB
706 laddr = htonl((n1 << 24) | (n2 << 16) | (n3 << 8) | (n4));
707 lport = htons((n5 << 8) | (n6));
3b46e624 708
460fec67
JK
709 if ((so = tcp_listen(slirp, INADDR_ANY, 0, laddr,
710 lport, SS_FACCEPTONCE)) == NULL) {
f0cbd3ec 711 return 1;
460fec67 712 }
f0cbd3ec 713 n6 = ntohs(so->so_fport);
3b46e624 714
f0cbd3ec
FB
715 n5 = (n6 >> 8) & 0xff;
716 n6 &= 0xff;
3b46e624 717
f0cbd3ec 718 laddr = ntohl(so->so_faddr.s_addr);
3b46e624 719
f0cbd3ec
FB
720 n1 = ((laddr >> 24) & 0xff);
721 n2 = ((laddr >> 16) & 0xff);
722 n3 = ((laddr >> 8) & 0xff);
723 n4 = (laddr & 0xff);
3b46e624 724
f0cbd3ec 725 m->m_len = bptr - m->m_data; /* Adjust length */
0e44486c 726 m->m_len += snprintf(bptr, m->m_size - m->m_len,
363a37d5
BS
727 "27 Entering Passive Mode (%d,%d,%d,%d,%d,%d)\r\n%s",
728 n1, n2, n3, n4, n5, n6, x==7?buff:"");
3b46e624 729
f0cbd3ec
FB
730 return 1;
731 }
3b46e624 732
f0cbd3ec 733 return 1;
3b46e624 734
f0cbd3ec
FB
735 case EMU_KSH:
736 /*
737 * The kshell (Kerberos rsh) and shell services both pass
738 * a local port port number to carry signals to the server
739 * and stderr to the client. It is passed at the beginning
740 * of the connection as a NUL-terminated decimal ASCII string.
741 */
742 so->so_emu = 0;
743 for (lport = 0, i = 0; i < m->m_len-1; ++i) {
744 if (m->m_data[i] < '0' || m->m_data[i] > '9')
745 return 1; /* invalid number */
746 lport *= 10;
747 lport += m->m_data[i] - '0';
748 }
749 if (m->m_data[m->m_len-1] == '\0' && lport != 0 &&
460fec67
JK
750 (so = tcp_listen(slirp, INADDR_ANY, 0, so->so_laddr.s_addr,
751 htons(lport), SS_FACCEPTONCE)) != NULL)
0e44486c 752 m->m_len = snprintf(m->m_data, m->m_size, "%d",
363a37d5 753 ntohs(so->so_fport)) + 1;
f0cbd3ec 754 return 1;
3b46e624 755
f0cbd3ec
FB
756 case EMU_IRC:
757 /*
758 * Need to emulate DCC CHAT, DCC SEND and DCC MOVE
759 */
760 *(m->m_data+m->m_len) = 0; /* NULL terminate the string for strstr */
761 if ((bptr = (char *)strstr(m->m_data, "DCC")) == NULL)
762 return 1;
3b46e624 763
f0cbd3ec
FB
764 /* The %256s is for the broken mIRC */
765 if (sscanf(bptr, "DCC CHAT %256s %u %u", buff, &laddr, &lport) == 3) {
460fec67
JK
766 if ((so = tcp_listen(slirp, INADDR_ANY, 0,
767 htonl(laddr), htons(lport),
768 SS_FACCEPTONCE)) == NULL) {
f0cbd3ec 769 return 1;
460fec67 770 }
f0cbd3ec 771 m->m_len = bptr - m->m_data; /* Adjust length */
0e44486c 772 m->m_len += snprintf(bptr, m->m_size,
363a37d5
BS
773 "DCC CHAT chat %lu %u%c\n",
774 (unsigned long)ntohl(so->so_faddr.s_addr),
775 ntohs(so->so_fport), 1);
f0cbd3ec 776 } else if (sscanf(bptr, "DCC SEND %256s %u %u %u", buff, &laddr, &lport, &n1) == 4) {
460fec67
JK
777 if ((so = tcp_listen(slirp, INADDR_ANY, 0,
778 htonl(laddr), htons(lport),
779 SS_FACCEPTONCE)) == NULL) {
f0cbd3ec 780 return 1;
460fec67 781 }
f0cbd3ec 782 m->m_len = bptr - m->m_data; /* Adjust length */
0e44486c 783 m->m_len += snprintf(bptr, m->m_size,
363a37d5
BS
784 "DCC SEND %s %lu %u %u%c\n", buff,
785 (unsigned long)ntohl(so->so_faddr.s_addr),
786 ntohs(so->so_fport), n1, 1);
f0cbd3ec 787 } else if (sscanf(bptr, "DCC MOVE %256s %u %u %u", buff, &laddr, &lport, &n1) == 4) {
460fec67
JK
788 if ((so = tcp_listen(slirp, INADDR_ANY, 0,
789 htonl(laddr), htons(lport),
790 SS_FACCEPTONCE)) == NULL) {
f0cbd3ec 791 return 1;
460fec67 792 }
f0cbd3ec 793 m->m_len = bptr - m->m_data; /* Adjust length */
0e44486c 794 m->m_len += snprintf(bptr, m->m_size,
363a37d5
BS
795 "DCC MOVE %s %lu %u %u%c\n", buff,
796 (unsigned long)ntohl(so->so_faddr.s_addr),
797 ntohs(so->so_fport), n1, 1);
f0cbd3ec
FB
798 }
799 return 1;
800
801 case EMU_REALAUDIO:
5fafdf24 802 /*
f0cbd3ec
FB
803 * RealAudio emulation - JP. We must try to parse the incoming
804 * data and try to find the two characters that contain the
805 * port number. Then we redirect an udp port and replace the
806 * number with the real port we got.
807 *
808 * The 1.0 beta versions of the player are not supported
809 * any more.
5fafdf24 810 *
f0cbd3ec 811 * A typical packet for player version 1.0 (release version):
3b46e624 812 *
5fafdf24 813 * 0000:50 4E 41 00 05
0d62c4cf 814 * 0000:00 01 00 02 1B D7 00 00 67 E6 6C DC 63 00 12 50 ........g.l.c..P
f0cbd3ec
FB
815 * 0010:4E 43 4C 49 45 4E 54 20 31 30 31 20 41 4C 50 48 NCLIENT 101 ALPH
816 * 0020:41 6C 00 00 52 00 17 72 61 66 69 6C 65 73 2F 76 Al..R..rafiles/v
817 * 0030:6F 61 2F 65 6E 67 6C 69 73 68 5F 2E 72 61 79 42 oa/english_.rayB
3b46e624 818 *
f0cbd3ec
FB
819 * Now the port number 0x1BD7 is found at offset 0x04 of the
820 * Now the port number 0x1BD7 is found at offset 0x04 of the
821 * second packet. This time we received five bytes first and
822 * then the rest. You never know how many bytes you get.
823 *
824 * A typical packet for player version 2.0 (beta):
3b46e624 825 *
0d62c4cf
JK
826 * 0000:50 4E 41 00 06 00 02 00 00 00 01 00 02 1B C1 00 PNA.............
827 * 0010:00 67 75 78 F5 63 00 0A 57 69 6E 32 2E 30 2E 30 .gux.c..Win2.0.0
f0cbd3ec
FB
828 * 0020:2E 35 6C 00 00 52 00 1C 72 61 66 69 6C 65 73 2F .5l..R..rafiles/
829 * 0030:77 65 62 73 69 74 65 2F 32 30 72 65 6C 65 61 73 website/20releas
830 * 0040:65 2E 72 61 79 53 00 00 06 36 42 e.rayS...6B
3b46e624 831 *
f0cbd3ec 832 * Port number 0x1BC1 is found at offset 0x0d.
3b46e624 833 *
f0cbd3ec
FB
834 * This is just a horrible switch statement. Variable ra tells
835 * us where we're going.
836 */
3b46e624 837
f0cbd3ec
FB
838 bptr = m->m_data;
839 while (bptr < m->m_data + m->m_len) {
840 u_short p;
841 static int ra = 0;
5fafdf24 842 char ra_tbl[4];
3b46e624 843
f0cbd3ec
FB
844 ra_tbl[0] = 0x50;
845 ra_tbl[1] = 0x4e;
846 ra_tbl[2] = 0x41;
847 ra_tbl[3] = 0;
3b46e624 848
f0cbd3ec
FB
849 switch (ra) {
850 case 0:
851 case 2:
852 case 3:
853 if (*bptr++ != ra_tbl[ra]) {
854 ra = 0;
855 continue;
856 }
857 break;
3b46e624 858
f0cbd3ec
FB
859 case 1:
860 /*
861 * We may get 0x50 several times, ignore them
862 */
863 if (*bptr == 0x50) {
864 ra = 1;
865 bptr++;
866 continue;
867 } else if (*bptr++ != ra_tbl[ra]) {
868 ra = 0;
869 continue;
870 }
871 break;
3b46e624 872
5fafdf24
TS
873 case 4:
874 /*
f0cbd3ec
FB
875 * skip version number
876 */
877 bptr++;
878 break;
3b46e624 879
5fafdf24 880 case 5:
f0cbd3ec
FB
881 /*
882 * The difference between versions 1.0 and
883 * 2.0 is here. For future versions of
884 * the player this may need to be modified.
885 */
886 if (*(bptr + 1) == 0x02)
887 bptr += 8;
888 else
889 bptr += 4;
3b46e624
TS
890 break;
891
f0cbd3ec
FB
892 case 6:
893 /* This is the field containing the port
894 * number that RA-player is listening to.
895 */
5fafdf24 896 lport = (((u_char*)bptr)[0] << 8)
f0cbd3ec 897 + ((u_char *)bptr)[1];
3b46e624 898 if (lport < 6970)
f0cbd3ec
FB
899 lport += 256; /* don't know why */
900 if (lport < 6970 || lport > 7170)
901 return 1; /* failed */
3b46e624 902
f0cbd3ec
FB
903 /* try to get udp port between 6970 - 7170 */
904 for (p = 6970; p < 7071; p++) {
460fec67 905 if (udp_listen(slirp, INADDR_ANY,
3c6a0580 906 htons(p),
f0cbd3ec
FB
907 so->so_laddr.s_addr,
908 htons(lport),
909 SS_FACCEPTONCE)) {
910 break;
911 }
912 }
913 if (p == 7071)
914 p = 0;
915 *(u_char *)bptr++ = (p >> 8) & 0xff;
369c86e7 916 *(u_char *)bptr = p & 0xff;
5fafdf24 917 ra = 0;
f0cbd3ec 918 return 1; /* port redirected, we're done */
3b46e624
TS
919 break;
920
f0cbd3ec 921 default:
3b46e624 922 ra = 0;
f0cbd3ec
FB
923 }
924 ra++;
925 }
3b46e624
TS
926 return 1;
927
f0cbd3ec
FB
928 default:
929 /* Ooops, not emulated, won't call tcp_emu again */
930 so->so_emu = 0;
931 return 1;
932 }
933}
934
935/*
936 * Do misc. config of SLiRP while its running.
937 * Return 0 if this connections is to be closed, 1 otherwise,
938 * return 2 if this is a command-line connection
939 */
b35725c5 940int tcp_ctl(struct socket *so)
f0cbd3ec 941{
460fec67 942 Slirp *slirp = so->slirp;
b35725c5
JK
943 struct sbuf *sb = &so->so_snd;
944 struct ex_list *ex_ptr;
945 int do_pty;
946
947 DEBUG_CALL("tcp_ctl");
ecc804ca 948 DEBUG_ARG("so = %p", so);
b35725c5 949
460fec67 950 if (so->so_faddr.s_addr != slirp->vhost_addr.s_addr) {
b35725c5 951 /* Check if it's pty_exec */
460fec67 952 for (ex_ptr = slirp->exec_list; ex_ptr; ex_ptr = ex_ptr->ex_next) {
b35725c5 953 if (ex_ptr->ex_fport == so->so_fport &&
a13a4126 954 so->so_faddr.s_addr == ex_ptr->ex_addr.s_addr) {
b35725c5
JK
955 if (ex_ptr->ex_pty == 3) {
956 so->s = -1;
957 so->extra = (void *)ex_ptr->ex_exec;
958 return 1;
959 }
960 do_pty = ex_ptr->ex_pty;
b2bedb21 961 DEBUG_MISC((dfd, " executing %s\n", ex_ptr->ex_exec));
b35725c5
JK
962 return fork_exec(so, ex_ptr->ex_exec, do_pty);
963 }
964 }
965 }
966 sb->sb_cc =
967 snprintf(sb->sb_wptr, sb->sb_datalen - (sb->sb_wptr - sb->sb_data),
968 "Error: No application configured.\r\n");
969 sb->sb_wptr += sb->sb_cc;
970 return 0;
f0cbd3ec 971}