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1 /*
2  *  net/dccp/ipv4.c
3  *
4  *  An implementation of the DCCP protocol
5  *  Arnaldo Carvalho de Melo <acme@conectiva.com.br>
6  *
7  *	This program is free software; you can redistribute it and/or
8  *	modify it under the terms of the GNU General Public License
9  *	as published by the Free Software Foundation; either version
10  *	2 of the License, or (at your option) any later version.
11  */
12 
13 #include <linux/dccp.h>
14 #include <linux/icmp.h>
15 #include <linux/slab.h>
16 #include <linux/module.h>
17 #include <linux/skbuff.h>
18 #include <linux/random.h>
19 
20 #include <net/icmp.h>
21 #include <net/inet_common.h>
22 #include <net/inet_hashtables.h>
23 #include <net/inet_sock.h>
24 #include <net/protocol.h>
25 #include <net/sock.h>
26 #include <net/timewait_sock.h>
27 #include <net/tcp_states.h>
28 #include <net/xfrm.h>
29 #include <net/secure_seq.h>
30 
31 #include "ackvec.h"
32 #include "ccid.h"
33 #include "dccp.h"
34 #include "feat.h"
35 
36 /*
37  * The per-net dccp.v4_ctl_sk socket is used for responding to
38  * the Out-of-the-blue (OOTB) packets. A control sock will be created
39  * for this socket at the initialization time.
40  */
41 
dccp_v4_connect(struct sock * sk,struct sockaddr * uaddr,int addr_len)42 int dccp_v4_connect(struct sock *sk, struct sockaddr *uaddr, int addr_len)
43 {
44 	const struct sockaddr_in *usin = (struct sockaddr_in *)uaddr;
45 	struct inet_sock *inet = inet_sk(sk);
46 	struct dccp_sock *dp = dccp_sk(sk);
47 	__be16 orig_sport, orig_dport;
48 	__be32 daddr, nexthop;
49 	struct flowi4 *fl4;
50 	struct rtable *rt;
51 	int err;
52 	struct ip_options_rcu *inet_opt;
53 
54 	dp->dccps_role = DCCP_ROLE_CLIENT;
55 
56 	if (addr_len < sizeof(struct sockaddr_in))
57 		return -EINVAL;
58 
59 	if (usin->sin_family != AF_INET)
60 		return -EAFNOSUPPORT;
61 
62 	nexthop = daddr = usin->sin_addr.s_addr;
63 
64 	inet_opt = rcu_dereference_protected(inet->inet_opt,
65 					     sock_owned_by_user(sk));
66 	if (inet_opt != NULL && inet_opt->opt.srr) {
67 		if (daddr == 0)
68 			return -EINVAL;
69 		nexthop = inet_opt->opt.faddr;
70 	}
71 
72 	orig_sport = inet->inet_sport;
73 	orig_dport = usin->sin_port;
74 	fl4 = &inet->cork.fl.u.ip4;
75 	rt = ip_route_connect(fl4, nexthop, inet->inet_saddr,
76 			      RT_CONN_FLAGS(sk), sk->sk_bound_dev_if,
77 			      IPPROTO_DCCP,
78 			      orig_sport, orig_dport, sk);
79 	if (IS_ERR(rt))
80 		return PTR_ERR(rt);
81 
82 	if (rt->rt_flags & (RTCF_MULTICAST | RTCF_BROADCAST)) {
83 		ip_rt_put(rt);
84 		return -ENETUNREACH;
85 	}
86 
87 	if (inet_opt == NULL || !inet_opt->opt.srr)
88 		daddr = fl4->daddr;
89 
90 	if (inet->inet_saddr == 0)
91 		inet->inet_saddr = fl4->saddr;
92 	inet->inet_rcv_saddr = inet->inet_saddr;
93 
94 	inet->inet_dport = usin->sin_port;
95 	inet->inet_daddr = daddr;
96 
97 	inet_csk(sk)->icsk_ext_hdr_len = 0;
98 	if (inet_opt)
99 		inet_csk(sk)->icsk_ext_hdr_len = inet_opt->opt.optlen;
100 	/*
101 	 * Socket identity is still unknown (sport may be zero).
102 	 * However we set state to DCCP_REQUESTING and not releasing socket
103 	 * lock select source port, enter ourselves into the hash tables and
104 	 * complete initialization after this.
105 	 */
106 	dccp_set_state(sk, DCCP_REQUESTING);
107 	err = inet_hash_connect(&dccp_death_row, sk);
108 	if (err != 0)
109 		goto failure;
110 
111 	rt = ip_route_newports(fl4, rt, orig_sport, orig_dport,
112 			       inet->inet_sport, inet->inet_dport, sk);
113 	if (IS_ERR(rt)) {
114 		err = PTR_ERR(rt);
115 		rt = NULL;
116 		goto failure;
117 	}
118 	/* OK, now commit destination to socket.  */
119 	sk_setup_caps(sk, &rt->dst);
120 
121 	dp->dccps_iss = secure_dccp_sequence_number(inet->inet_saddr,
122 						    inet->inet_daddr,
123 						    inet->inet_sport,
124 						    inet->inet_dport);
125 	inet->inet_id = dp->dccps_iss ^ jiffies;
126 
127 	err = dccp_connect(sk);
128 	rt = NULL;
129 	if (err != 0)
130 		goto failure;
131 out:
132 	return err;
133 failure:
134 	/*
135 	 * This unhashes the socket and releases the local port, if necessary.
136 	 */
137 	dccp_set_state(sk, DCCP_CLOSED);
138 	ip_rt_put(rt);
139 	sk->sk_route_caps = 0;
140 	inet->inet_dport = 0;
141 	goto out;
142 }
143 
144 EXPORT_SYMBOL_GPL(dccp_v4_connect);
145 
146 /*
147  * This routine does path mtu discovery as defined in RFC1191.
148  */
dccp_do_pmtu_discovery(struct sock * sk,const struct iphdr * iph,u32 mtu)149 static inline void dccp_do_pmtu_discovery(struct sock *sk,
150 					  const struct iphdr *iph,
151 					  u32 mtu)
152 {
153 	struct dst_entry *dst;
154 	const struct inet_sock *inet = inet_sk(sk);
155 	const struct dccp_sock *dp = dccp_sk(sk);
156 
157 	/* We are not interested in DCCP_LISTEN and request_socks (RESPONSEs
158 	 * send out by Linux are always < 576bytes so they should go through
159 	 * unfragmented).
160 	 */
161 	if (sk->sk_state == DCCP_LISTEN)
162 		return;
163 
164 	dst = inet_csk_update_pmtu(sk, mtu);
165 	if (!dst)
166 		return;
167 
168 	/* Something is about to be wrong... Remember soft error
169 	 * for the case, if this connection will not able to recover.
170 	 */
171 	if (mtu < dst_mtu(dst) && ip_dont_fragment(sk, dst))
172 		sk->sk_err_soft = EMSGSIZE;
173 
174 	mtu = dst_mtu(dst);
175 
176 	if (inet->pmtudisc != IP_PMTUDISC_DONT &&
177 	    ip_sk_accept_pmtu(sk) &&
178 	    inet_csk(sk)->icsk_pmtu_cookie > mtu) {
179 		dccp_sync_mss(sk, mtu);
180 
181 		/*
182 		 * From RFC 4340, sec. 14.1:
183 		 *
184 		 *	DCCP-Sync packets are the best choice for upward
185 		 *	probing, since DCCP-Sync probes do not risk application
186 		 *	data loss.
187 		 */
188 		dccp_send_sync(sk, dp->dccps_gsr, DCCP_PKT_SYNC);
189 	} /* else let the usual retransmit timer handle it */
190 }
191 
dccp_do_redirect(struct sk_buff * skb,struct sock * sk)192 static void dccp_do_redirect(struct sk_buff *skb, struct sock *sk)
193 {
194 	struct dst_entry *dst = __sk_dst_check(sk, 0);
195 
196 	if (dst)
197 		dst->ops->redirect(dst, sk, skb);
198 }
199 
200 /*
201  * This routine is called by the ICMP module when it gets some sort of error
202  * condition. If err < 0 then the socket should be closed and the error
203  * returned to the user. If err > 0 it's just the icmp type << 8 | icmp code.
204  * After adjustment header points to the first 8 bytes of the tcp header. We
205  * need to find the appropriate port.
206  *
207  * The locking strategy used here is very "optimistic". When someone else
208  * accesses the socket the ICMP is just dropped and for some paths there is no
209  * check at all. A more general error queue to queue errors for later handling
210  * is probably better.
211  */
dccp_v4_err(struct sk_buff * skb,u32 info)212 static void dccp_v4_err(struct sk_buff *skb, u32 info)
213 {
214 	const struct iphdr *iph = (struct iphdr *)skb->data;
215 	const u8 offset = iph->ihl << 2;
216 	const struct dccp_hdr *dh = (struct dccp_hdr *)(skb->data + offset);
217 	struct dccp_sock *dp;
218 	struct inet_sock *inet;
219 	const int type = icmp_hdr(skb)->type;
220 	const int code = icmp_hdr(skb)->code;
221 	struct sock *sk;
222 	__u64 seq;
223 	int err;
224 	struct net *net = dev_net(skb->dev);
225 
226 	if (skb->len < offset + sizeof(*dh) ||
227 	    skb->len < offset + __dccp_basic_hdr_len(dh)) {
228 		ICMP_INC_STATS_BH(net, ICMP_MIB_INERRORS);
229 		return;
230 	}
231 
232 	sk = inet_lookup(net, &dccp_hashinfo,
233 			iph->daddr, dh->dccph_dport,
234 			iph->saddr, dh->dccph_sport, inet_iif(skb));
235 	if (sk == NULL) {
236 		ICMP_INC_STATS_BH(net, ICMP_MIB_INERRORS);
237 		return;
238 	}
239 
240 	if (sk->sk_state == DCCP_TIME_WAIT) {
241 		inet_twsk_put(inet_twsk(sk));
242 		return;
243 	}
244 
245 	bh_lock_sock(sk);
246 	/* If too many ICMPs get dropped on busy
247 	 * servers this needs to be solved differently.
248 	 */
249 	if (sock_owned_by_user(sk))
250 		NET_INC_STATS_BH(net, LINUX_MIB_LOCKDROPPEDICMPS);
251 
252 	if (sk->sk_state == DCCP_CLOSED)
253 		goto out;
254 
255 	dp = dccp_sk(sk);
256 	seq = dccp_hdr_seq(dh);
257 	if ((1 << sk->sk_state) & ~(DCCPF_REQUESTING | DCCPF_LISTEN) &&
258 	    !between48(seq, dp->dccps_awl, dp->dccps_awh)) {
259 		NET_INC_STATS_BH(net, LINUX_MIB_OUTOFWINDOWICMPS);
260 		goto out;
261 	}
262 
263 	switch (type) {
264 	case ICMP_REDIRECT:
265 		if (!sock_owned_by_user(sk))
266 			dccp_do_redirect(skb, sk);
267 		goto out;
268 	case ICMP_SOURCE_QUENCH:
269 		/* Just silently ignore these. */
270 		goto out;
271 	case ICMP_PARAMETERPROB:
272 		err = EPROTO;
273 		break;
274 	case ICMP_DEST_UNREACH:
275 		if (code > NR_ICMP_UNREACH)
276 			goto out;
277 
278 		if (code == ICMP_FRAG_NEEDED) { /* PMTU discovery (RFC1191) */
279 			if (!sock_owned_by_user(sk))
280 				dccp_do_pmtu_discovery(sk, iph, info);
281 			goto out;
282 		}
283 
284 		err = icmp_err_convert[code].errno;
285 		break;
286 	case ICMP_TIME_EXCEEDED:
287 		err = EHOSTUNREACH;
288 		break;
289 	default:
290 		goto out;
291 	}
292 
293 	switch (sk->sk_state) {
294 		struct request_sock *req , **prev;
295 	case DCCP_LISTEN:
296 		if (sock_owned_by_user(sk))
297 			goto out;
298 		req = inet_csk_search_req(sk, &prev, dh->dccph_dport,
299 					  iph->daddr, iph->saddr);
300 		if (!req)
301 			goto out;
302 
303 		/*
304 		 * ICMPs are not backlogged, hence we cannot get an established
305 		 * socket here.
306 		 */
307 		WARN_ON(req->sk);
308 
309 		if (!between48(seq, dccp_rsk(req)->dreq_iss,
310 				    dccp_rsk(req)->dreq_gss)) {
311 			NET_INC_STATS_BH(net, LINUX_MIB_OUTOFWINDOWICMPS);
312 			goto out;
313 		}
314 		/*
315 		 * Still in RESPOND, just remove it silently.
316 		 * There is no good way to pass the error to the newly
317 		 * created socket, and POSIX does not want network
318 		 * errors returned from accept().
319 		 */
320 		inet_csk_reqsk_queue_drop(sk, req, prev);
321 		goto out;
322 
323 	case DCCP_REQUESTING:
324 	case DCCP_RESPOND:
325 		if (!sock_owned_by_user(sk)) {
326 			DCCP_INC_STATS_BH(DCCP_MIB_ATTEMPTFAILS);
327 			sk->sk_err = err;
328 
329 			sk->sk_error_report(sk);
330 
331 			dccp_done(sk);
332 		} else
333 			sk->sk_err_soft = err;
334 		goto out;
335 	}
336 
337 	/* If we've already connected we will keep trying
338 	 * until we time out, or the user gives up.
339 	 *
340 	 * rfc1122 4.2.3.9 allows to consider as hard errors
341 	 * only PROTO_UNREACH and PORT_UNREACH (well, FRAG_FAILED too,
342 	 * but it is obsoleted by pmtu discovery).
343 	 *
344 	 * Note, that in modern internet, where routing is unreliable
345 	 * and in each dark corner broken firewalls sit, sending random
346 	 * errors ordered by their masters even this two messages finally lose
347 	 * their original sense (even Linux sends invalid PORT_UNREACHs)
348 	 *
349 	 * Now we are in compliance with RFCs.
350 	 *							--ANK (980905)
351 	 */
352 
353 	inet = inet_sk(sk);
354 	if (!sock_owned_by_user(sk) && inet->recverr) {
355 		sk->sk_err = err;
356 		sk->sk_error_report(sk);
357 	} else /* Only an error on timeout */
358 		sk->sk_err_soft = err;
359 out:
360 	bh_unlock_sock(sk);
361 	sock_put(sk);
362 }
363 
dccp_v4_csum_finish(struct sk_buff * skb,__be32 src,__be32 dst)364 static inline __sum16 dccp_v4_csum_finish(struct sk_buff *skb,
365 				      __be32 src, __be32 dst)
366 {
367 	return csum_tcpudp_magic(src, dst, skb->len, IPPROTO_DCCP, skb->csum);
368 }
369 
dccp_v4_send_check(struct sock * sk,struct sk_buff * skb)370 void dccp_v4_send_check(struct sock *sk, struct sk_buff *skb)
371 {
372 	const struct inet_sock *inet = inet_sk(sk);
373 	struct dccp_hdr *dh = dccp_hdr(skb);
374 
375 	dccp_csum_outgoing(skb);
376 	dh->dccph_checksum = dccp_v4_csum_finish(skb,
377 						 inet->inet_saddr,
378 						 inet->inet_daddr);
379 }
380 
381 EXPORT_SYMBOL_GPL(dccp_v4_send_check);
382 
dccp_v4_init_sequence(const struct sk_buff * skb)383 static inline u64 dccp_v4_init_sequence(const struct sk_buff *skb)
384 {
385 	return secure_dccp_sequence_number(ip_hdr(skb)->daddr,
386 					   ip_hdr(skb)->saddr,
387 					   dccp_hdr(skb)->dccph_dport,
388 					   dccp_hdr(skb)->dccph_sport);
389 }
390 
391 /*
392  * The three way handshake has completed - we got a valid ACK or DATAACK -
393  * now create the new socket.
394  *
395  * This is the equivalent of TCP's tcp_v4_syn_recv_sock
396  */
dccp_v4_request_recv_sock(struct sock * sk,struct sk_buff * skb,struct request_sock * req,struct dst_entry * dst)397 struct sock *dccp_v4_request_recv_sock(struct sock *sk, struct sk_buff *skb,
398 				       struct request_sock *req,
399 				       struct dst_entry *dst)
400 {
401 	struct inet_request_sock *ireq;
402 	struct inet_sock *newinet;
403 	struct sock *newsk;
404 
405 	if (sk_acceptq_is_full(sk))
406 		goto exit_overflow;
407 
408 	newsk = dccp_create_openreq_child(sk, req, skb);
409 	if (newsk == NULL)
410 		goto exit_nonewsk;
411 
412 	newinet		   = inet_sk(newsk);
413 	ireq		   = inet_rsk(req);
414 	newinet->inet_daddr	= ireq->ir_rmt_addr;
415 	newinet->inet_rcv_saddr = ireq->ir_loc_addr;
416 	newinet->inet_saddr	= ireq->ir_loc_addr;
417 	newinet->inet_opt	= ireq->opt;
418 	ireq->opt	   = NULL;
419 	newinet->mc_index  = inet_iif(skb);
420 	newinet->mc_ttl	   = ip_hdr(skb)->ttl;
421 	newinet->inet_id   = jiffies;
422 
423 	if (dst == NULL && (dst = inet_csk_route_child_sock(sk, newsk, req)) == NULL)
424 		goto put_and_exit;
425 
426 	sk_setup_caps(newsk, dst);
427 
428 	dccp_sync_mss(newsk, dst_mtu(dst));
429 
430 	if (__inet_inherit_port(sk, newsk) < 0)
431 		goto put_and_exit;
432 	__inet_hash_nolisten(newsk, NULL);
433 
434 	return newsk;
435 
436 exit_overflow:
437 	NET_INC_STATS_BH(sock_net(sk), LINUX_MIB_LISTENOVERFLOWS);
438 exit_nonewsk:
439 	dst_release(dst);
440 exit:
441 	NET_INC_STATS_BH(sock_net(sk), LINUX_MIB_LISTENDROPS);
442 	return NULL;
443 put_and_exit:
444 	inet_csk_prepare_forced_close(newsk);
445 	dccp_done(newsk);
446 	goto exit;
447 }
448 
449 EXPORT_SYMBOL_GPL(dccp_v4_request_recv_sock);
450 
dccp_v4_hnd_req(struct sock * sk,struct sk_buff * skb)451 static struct sock *dccp_v4_hnd_req(struct sock *sk, struct sk_buff *skb)
452 {
453 	const struct dccp_hdr *dh = dccp_hdr(skb);
454 	const struct iphdr *iph = ip_hdr(skb);
455 	struct sock *nsk;
456 	struct request_sock **prev;
457 	/* Find possible connection requests. */
458 	struct request_sock *req = inet_csk_search_req(sk, &prev,
459 						       dh->dccph_sport,
460 						       iph->saddr, iph->daddr);
461 	if (req != NULL)
462 		return dccp_check_req(sk, skb, req, prev);
463 
464 	nsk = inet_lookup_established(sock_net(sk), &dccp_hashinfo,
465 				      iph->saddr, dh->dccph_sport,
466 				      iph->daddr, dh->dccph_dport,
467 				      inet_iif(skb));
468 	if (nsk != NULL) {
469 		if (nsk->sk_state != DCCP_TIME_WAIT) {
470 			bh_lock_sock(nsk);
471 			return nsk;
472 		}
473 		inet_twsk_put(inet_twsk(nsk));
474 		return NULL;
475 	}
476 
477 	return sk;
478 }
479 
dccp_v4_route_skb(struct net * net,struct sock * sk,struct sk_buff * skb)480 static struct dst_entry* dccp_v4_route_skb(struct net *net, struct sock *sk,
481 					   struct sk_buff *skb)
482 {
483 	struct rtable *rt;
484 	const struct iphdr *iph = ip_hdr(skb);
485 	struct flowi4 fl4 = {
486 		.flowi4_oif = inet_iif(skb),
487 		.daddr = iph->saddr,
488 		.saddr = iph->daddr,
489 		.flowi4_tos = RT_CONN_FLAGS(sk),
490 		.flowi4_proto = sk->sk_protocol,
491 		.fl4_sport = dccp_hdr(skb)->dccph_dport,
492 		.fl4_dport = dccp_hdr(skb)->dccph_sport,
493 	};
494 
495 	security_skb_classify_flow(skb, flowi4_to_flowi(&fl4));
496 	rt = ip_route_output_flow(net, &fl4, sk);
497 	if (IS_ERR(rt)) {
498 		IP_INC_STATS_BH(net, IPSTATS_MIB_OUTNOROUTES);
499 		return NULL;
500 	}
501 
502 	return &rt->dst;
503 }
504 
dccp_v4_send_response(struct sock * sk,struct request_sock * req)505 static int dccp_v4_send_response(struct sock *sk, struct request_sock *req)
506 {
507 	int err = -1;
508 	struct sk_buff *skb;
509 	struct dst_entry *dst;
510 	struct flowi4 fl4;
511 
512 	dst = inet_csk_route_req(sk, &fl4, req);
513 	if (dst == NULL)
514 		goto out;
515 
516 	skb = dccp_make_response(sk, dst, req);
517 	if (skb != NULL) {
518 		const struct inet_request_sock *ireq = inet_rsk(req);
519 		struct dccp_hdr *dh = dccp_hdr(skb);
520 
521 		dh->dccph_checksum = dccp_v4_csum_finish(skb, ireq->ir_loc_addr,
522 							      ireq->ir_rmt_addr);
523 		err = ip_build_and_send_pkt(skb, sk, ireq->ir_loc_addr,
524 					    ireq->ir_rmt_addr,
525 					    ireq->opt);
526 		err = net_xmit_eval(err);
527 	}
528 
529 out:
530 	dst_release(dst);
531 	return err;
532 }
533 
dccp_v4_ctl_send_reset(struct sock * sk,struct sk_buff * rxskb)534 static void dccp_v4_ctl_send_reset(struct sock *sk, struct sk_buff *rxskb)
535 {
536 	int err;
537 	const struct iphdr *rxiph;
538 	struct sk_buff *skb;
539 	struct dst_entry *dst;
540 	struct net *net = dev_net(skb_dst(rxskb)->dev);
541 	struct sock *ctl_sk = net->dccp.v4_ctl_sk;
542 
543 	/* Never send a reset in response to a reset. */
544 	if (dccp_hdr(rxskb)->dccph_type == DCCP_PKT_RESET)
545 		return;
546 
547 	if (skb_rtable(rxskb)->rt_type != RTN_LOCAL)
548 		return;
549 
550 	dst = dccp_v4_route_skb(net, ctl_sk, rxskb);
551 	if (dst == NULL)
552 		return;
553 
554 	skb = dccp_ctl_make_reset(ctl_sk, rxskb);
555 	if (skb == NULL)
556 		goto out;
557 
558 	rxiph = ip_hdr(rxskb);
559 	dccp_hdr(skb)->dccph_checksum = dccp_v4_csum_finish(skb, rxiph->saddr,
560 								 rxiph->daddr);
561 	skb_dst_set(skb, dst_clone(dst));
562 
563 	bh_lock_sock(ctl_sk);
564 	err = ip_build_and_send_pkt(skb, ctl_sk,
565 				    rxiph->daddr, rxiph->saddr, NULL);
566 	bh_unlock_sock(ctl_sk);
567 
568 	if (net_xmit_eval(err) == 0) {
569 		DCCP_INC_STATS_BH(DCCP_MIB_OUTSEGS);
570 		DCCP_INC_STATS_BH(DCCP_MIB_OUTRSTS);
571 	}
572 out:
573 	 dst_release(dst);
574 }
575 
dccp_v4_reqsk_destructor(struct request_sock * req)576 static void dccp_v4_reqsk_destructor(struct request_sock *req)
577 {
578 	dccp_feat_list_purge(&dccp_rsk(req)->dreq_featneg);
579 	kfree(inet_rsk(req)->opt);
580 }
581 
dccp_syn_ack_timeout(struct sock * sk,struct request_sock * req)582 void dccp_syn_ack_timeout(struct sock *sk, struct request_sock *req)
583 {
584 }
585 EXPORT_SYMBOL(dccp_syn_ack_timeout);
586 
587 static struct request_sock_ops dccp_request_sock_ops __read_mostly = {
588 	.family		= PF_INET,
589 	.obj_size	= sizeof(struct dccp_request_sock),
590 	.rtx_syn_ack	= dccp_v4_send_response,
591 	.send_ack	= dccp_reqsk_send_ack,
592 	.destructor	= dccp_v4_reqsk_destructor,
593 	.send_reset	= dccp_v4_ctl_send_reset,
594 	.syn_ack_timeout = dccp_syn_ack_timeout,
595 };
596 
dccp_v4_conn_request(struct sock * sk,struct sk_buff * skb)597 int dccp_v4_conn_request(struct sock *sk, struct sk_buff *skb)
598 {
599 	struct inet_request_sock *ireq;
600 	struct request_sock *req;
601 	struct dccp_request_sock *dreq;
602 	const __be32 service = dccp_hdr_request(skb)->dccph_req_service;
603 	struct dccp_skb_cb *dcb = DCCP_SKB_CB(skb);
604 
605 	/* Never answer to DCCP_PKT_REQUESTs send to broadcast or multicast */
606 	if (skb_rtable(skb)->rt_flags & (RTCF_BROADCAST | RTCF_MULTICAST))
607 		return 0;	/* discard, don't send a reset here */
608 
609 	if (dccp_bad_service_code(sk, service)) {
610 		dcb->dccpd_reset_code = DCCP_RESET_CODE_BAD_SERVICE_CODE;
611 		goto drop;
612 	}
613 	/*
614 	 * TW buckets are converted to open requests without
615 	 * limitations, they conserve resources and peer is
616 	 * evidently real one.
617 	 */
618 	dcb->dccpd_reset_code = DCCP_RESET_CODE_TOO_BUSY;
619 	if (inet_csk_reqsk_queue_is_full(sk))
620 		goto drop;
621 
622 	/*
623 	 * Accept backlog is full. If we have already queued enough
624 	 * of warm entries in syn queue, drop request. It is better than
625 	 * clogging syn queue with openreqs with exponentially increasing
626 	 * timeout.
627 	 */
628 	if (sk_acceptq_is_full(sk) && inet_csk_reqsk_queue_young(sk) > 1)
629 		goto drop;
630 
631 	req = inet_reqsk_alloc(&dccp_request_sock_ops);
632 	if (req == NULL)
633 		goto drop;
634 
635 	if (dccp_reqsk_init(req, dccp_sk(sk), skb))
636 		goto drop_and_free;
637 
638 	dreq = dccp_rsk(req);
639 	if (dccp_parse_options(sk, dreq, skb))
640 		goto drop_and_free;
641 
642 	if (security_inet_conn_request(sk, skb, req))
643 		goto drop_and_free;
644 
645 	ireq = inet_rsk(req);
646 	ireq->ir_loc_addr = ip_hdr(skb)->daddr;
647 	ireq->ir_rmt_addr = ip_hdr(skb)->saddr;
648 
649 	/*
650 	 * Step 3: Process LISTEN state
651 	 *
652 	 * Set S.ISR, S.GSR, S.SWL, S.SWH from packet or Init Cookie
653 	 *
654 	 * Setting S.SWL/S.SWH to is deferred to dccp_create_openreq_child().
655 	 */
656 	dreq->dreq_isr	   = dcb->dccpd_seq;
657 	dreq->dreq_gsr	   = dreq->dreq_isr;
658 	dreq->dreq_iss	   = dccp_v4_init_sequence(skb);
659 	dreq->dreq_gss     = dreq->dreq_iss;
660 	dreq->dreq_service = service;
661 
662 	if (dccp_v4_send_response(sk, req))
663 		goto drop_and_free;
664 
665 	inet_csk_reqsk_queue_hash_add(sk, req, DCCP_TIMEOUT_INIT);
666 	return 0;
667 
668 drop_and_free:
669 	reqsk_free(req);
670 drop:
671 	DCCP_INC_STATS_BH(DCCP_MIB_ATTEMPTFAILS);
672 	return -1;
673 }
674 
675 EXPORT_SYMBOL_GPL(dccp_v4_conn_request);
676 
dccp_v4_do_rcv(struct sock * sk,struct sk_buff * skb)677 int dccp_v4_do_rcv(struct sock *sk, struct sk_buff *skb)
678 {
679 	struct dccp_hdr *dh = dccp_hdr(skb);
680 
681 	if (sk->sk_state == DCCP_OPEN) { /* Fast path */
682 		if (dccp_rcv_established(sk, skb, dh, skb->len))
683 			goto reset;
684 		return 0;
685 	}
686 
687 	/*
688 	 *  Step 3: Process LISTEN state
689 	 *	 If P.type == Request or P contains a valid Init Cookie option,
690 	 *	      (* Must scan the packet's options to check for Init
691 	 *		 Cookies.  Only Init Cookies are processed here,
692 	 *		 however; other options are processed in Step 8.  This
693 	 *		 scan need only be performed if the endpoint uses Init
694 	 *		 Cookies *)
695 	 *	      (* Generate a new socket and switch to that socket *)
696 	 *	      Set S := new socket for this port pair
697 	 *	      S.state = RESPOND
698 	 *	      Choose S.ISS (initial seqno) or set from Init Cookies
699 	 *	      Initialize S.GAR := S.ISS
700 	 *	      Set S.ISR, S.GSR, S.SWL, S.SWH from packet or Init Cookies
701 	 *	      Continue with S.state == RESPOND
702 	 *	      (* A Response packet will be generated in Step 11 *)
703 	 *	 Otherwise,
704 	 *	      Generate Reset(No Connection) unless P.type == Reset
705 	 *	      Drop packet and return
706 	 *
707 	 * NOTE: the check for the packet types is done in
708 	 *	 dccp_rcv_state_process
709 	 */
710 	if (sk->sk_state == DCCP_LISTEN) {
711 		struct sock *nsk = dccp_v4_hnd_req(sk, skb);
712 
713 		if (nsk == NULL)
714 			goto discard;
715 
716 		if (nsk != sk) {
717 			if (dccp_child_process(sk, nsk, skb))
718 				goto reset;
719 			return 0;
720 		}
721 	}
722 
723 	if (dccp_rcv_state_process(sk, skb, dh, skb->len))
724 		goto reset;
725 	return 0;
726 
727 reset:
728 	dccp_v4_ctl_send_reset(sk, skb);
729 discard:
730 	kfree_skb(skb);
731 	return 0;
732 }
733 
734 EXPORT_SYMBOL_GPL(dccp_v4_do_rcv);
735 
736 /**
737  *	dccp_invalid_packet  -  check for malformed packets
738  *	Implements RFC 4340, 8.5:  Step 1: Check header basics
739  *	Packets that fail these checks are ignored and do not receive Resets.
740  */
dccp_invalid_packet(struct sk_buff * skb)741 int dccp_invalid_packet(struct sk_buff *skb)
742 {
743 	const struct dccp_hdr *dh;
744 	unsigned int cscov;
745 
746 	if (skb->pkt_type != PACKET_HOST)
747 		return 1;
748 
749 	/* If the packet is shorter than 12 bytes, drop packet and return */
750 	if (!pskb_may_pull(skb, sizeof(struct dccp_hdr))) {
751 		DCCP_WARN("pskb_may_pull failed\n");
752 		return 1;
753 	}
754 
755 	dh = dccp_hdr(skb);
756 
757 	/* If P.type is not understood, drop packet and return */
758 	if (dh->dccph_type >= DCCP_PKT_INVALID) {
759 		DCCP_WARN("invalid packet type\n");
760 		return 1;
761 	}
762 
763 	/*
764 	 * If P.Data Offset is too small for packet type, drop packet and return
765 	 */
766 	if (dh->dccph_doff < dccp_hdr_len(skb) / sizeof(u32)) {
767 		DCCP_WARN("P.Data Offset(%u) too small\n", dh->dccph_doff);
768 		return 1;
769 	}
770 	/*
771 	 * If P.Data Offset is too too large for packet, drop packet and return
772 	 */
773 	if (!pskb_may_pull(skb, dh->dccph_doff * sizeof(u32))) {
774 		DCCP_WARN("P.Data Offset(%u) too large\n", dh->dccph_doff);
775 		return 1;
776 	}
777 
778 	/*
779 	 * If P.type is not Data, Ack, or DataAck and P.X == 0 (the packet
780 	 * has short sequence numbers), drop packet and return
781 	 */
782 	if ((dh->dccph_type < DCCP_PKT_DATA    ||
783 	    dh->dccph_type > DCCP_PKT_DATAACK) && dh->dccph_x == 0)  {
784 		DCCP_WARN("P.type (%s) not Data || [Data]Ack, while P.X == 0\n",
785 			  dccp_packet_name(dh->dccph_type));
786 		return 1;
787 	}
788 
789 	/*
790 	 * If P.CsCov is too large for the packet size, drop packet and return.
791 	 * This must come _before_ checksumming (not as RFC 4340 suggests).
792 	 */
793 	cscov = dccp_csum_coverage(skb);
794 	if (cscov > skb->len) {
795 		DCCP_WARN("P.CsCov %u exceeds packet length %d\n",
796 			  dh->dccph_cscov, skb->len);
797 		return 1;
798 	}
799 
800 	/* If header checksum is incorrect, drop packet and return.
801 	 * (This step is completed in the AF-dependent functions.) */
802 	skb->csum = skb_checksum(skb, 0, cscov, 0);
803 
804 	return 0;
805 }
806 
807 EXPORT_SYMBOL_GPL(dccp_invalid_packet);
808 
809 /* this is called when real data arrives */
dccp_v4_rcv(struct sk_buff * skb)810 static int dccp_v4_rcv(struct sk_buff *skb)
811 {
812 	const struct dccp_hdr *dh;
813 	const struct iphdr *iph;
814 	struct sock *sk;
815 	int min_cov;
816 
817 	/* Step 1: Check header basics */
818 
819 	if (dccp_invalid_packet(skb))
820 		goto discard_it;
821 
822 	iph = ip_hdr(skb);
823 	/* Step 1: If header checksum is incorrect, drop packet and return */
824 	if (dccp_v4_csum_finish(skb, iph->saddr, iph->daddr)) {
825 		DCCP_WARN("dropped packet with invalid checksum\n");
826 		goto discard_it;
827 	}
828 
829 	dh = dccp_hdr(skb);
830 
831 	DCCP_SKB_CB(skb)->dccpd_seq  = dccp_hdr_seq(dh);
832 	DCCP_SKB_CB(skb)->dccpd_type = dh->dccph_type;
833 
834 	dccp_pr_debug("%8.8s src=%pI4@%-5d dst=%pI4@%-5d seq=%llu",
835 		      dccp_packet_name(dh->dccph_type),
836 		      &iph->saddr, ntohs(dh->dccph_sport),
837 		      &iph->daddr, ntohs(dh->dccph_dport),
838 		      (unsigned long long) DCCP_SKB_CB(skb)->dccpd_seq);
839 
840 	if (dccp_packet_without_ack(skb)) {
841 		DCCP_SKB_CB(skb)->dccpd_ack_seq = DCCP_PKT_WITHOUT_ACK_SEQ;
842 		dccp_pr_debug_cat("\n");
843 	} else {
844 		DCCP_SKB_CB(skb)->dccpd_ack_seq = dccp_hdr_ack_seq(skb);
845 		dccp_pr_debug_cat(", ack=%llu\n", (unsigned long long)
846 				  DCCP_SKB_CB(skb)->dccpd_ack_seq);
847 	}
848 
849 	/* Step 2:
850 	 *	Look up flow ID in table and get corresponding socket */
851 	sk = __inet_lookup_skb(&dccp_hashinfo, skb,
852 			       dh->dccph_sport, dh->dccph_dport);
853 	/*
854 	 * Step 2:
855 	 *	If no socket ...
856 	 */
857 	if (sk == NULL) {
858 		dccp_pr_debug("failed to look up flow ID in table and "
859 			      "get corresponding socket\n");
860 		goto no_dccp_socket;
861 	}
862 
863 	/*
864 	 * Step 2:
865 	 *	... or S.state == TIMEWAIT,
866 	 *		Generate Reset(No Connection) unless P.type == Reset
867 	 *		Drop packet and return
868 	 */
869 	if (sk->sk_state == DCCP_TIME_WAIT) {
870 		dccp_pr_debug("sk->sk_state == DCCP_TIME_WAIT: do_time_wait\n");
871 		inet_twsk_put(inet_twsk(sk));
872 		goto no_dccp_socket;
873 	}
874 
875 	/*
876 	 * RFC 4340, sec. 9.2.1: Minimum Checksum Coverage
877 	 *	o if MinCsCov = 0, only packets with CsCov = 0 are accepted
878 	 *	o if MinCsCov > 0, also accept packets with CsCov >= MinCsCov
879 	 */
880 	min_cov = dccp_sk(sk)->dccps_pcrlen;
881 	if (dh->dccph_cscov && (min_cov == 0 || dh->dccph_cscov < min_cov))  {
882 		dccp_pr_debug("Packet CsCov %d does not satisfy MinCsCov %d\n",
883 			      dh->dccph_cscov, min_cov);
884 		/* FIXME: "Such packets SHOULD be reported using Data Dropped
885 		 *         options (Section 11.7) with Drop Code 0, Protocol
886 		 *         Constraints."                                     */
887 		goto discard_and_relse;
888 	}
889 
890 	if (!xfrm4_policy_check(sk, XFRM_POLICY_IN, skb))
891 		goto discard_and_relse;
892 	nf_reset(skb);
893 
894 	return sk_receive_skb(sk, skb, 1);
895 
896 no_dccp_socket:
897 	if (!xfrm4_policy_check(NULL, XFRM_POLICY_IN, skb))
898 		goto discard_it;
899 	/*
900 	 * Step 2:
901 	 *	If no socket ...
902 	 *		Generate Reset(No Connection) unless P.type == Reset
903 	 *		Drop packet and return
904 	 */
905 	if (dh->dccph_type != DCCP_PKT_RESET) {
906 		DCCP_SKB_CB(skb)->dccpd_reset_code =
907 					DCCP_RESET_CODE_NO_CONNECTION;
908 		dccp_v4_ctl_send_reset(sk, skb);
909 	}
910 
911 discard_it:
912 	kfree_skb(skb);
913 	return 0;
914 
915 discard_and_relse:
916 	sock_put(sk);
917 	goto discard_it;
918 }
919 
920 static const struct inet_connection_sock_af_ops dccp_ipv4_af_ops = {
921 	.queue_xmit	   = ip_queue_xmit,
922 	.send_check	   = dccp_v4_send_check,
923 	.rebuild_header	   = inet_sk_rebuild_header,
924 	.conn_request	   = dccp_v4_conn_request,
925 	.syn_recv_sock	   = dccp_v4_request_recv_sock,
926 	.net_header_len	   = sizeof(struct iphdr),
927 	.setsockopt	   = ip_setsockopt,
928 	.getsockopt	   = ip_getsockopt,
929 	.addr2sockaddr	   = inet_csk_addr2sockaddr,
930 	.sockaddr_len	   = sizeof(struct sockaddr_in),
931 	.bind_conflict	   = inet_csk_bind_conflict,
932 #ifdef CONFIG_COMPAT
933 	.compat_setsockopt = compat_ip_setsockopt,
934 	.compat_getsockopt = compat_ip_getsockopt,
935 #endif
936 };
937 
dccp_v4_init_sock(struct sock * sk)938 static int dccp_v4_init_sock(struct sock *sk)
939 {
940 	static __u8 dccp_v4_ctl_sock_initialized;
941 	int err = dccp_init_sock(sk, dccp_v4_ctl_sock_initialized);
942 
943 	if (err == 0) {
944 		if (unlikely(!dccp_v4_ctl_sock_initialized))
945 			dccp_v4_ctl_sock_initialized = 1;
946 		inet_csk(sk)->icsk_af_ops = &dccp_ipv4_af_ops;
947 	}
948 
949 	return err;
950 }
951 
952 static struct timewait_sock_ops dccp_timewait_sock_ops = {
953 	.twsk_obj_size	= sizeof(struct inet_timewait_sock),
954 };
955 
956 static struct proto dccp_v4_prot = {
957 	.name			= "DCCP",
958 	.owner			= THIS_MODULE,
959 	.close			= dccp_close,
960 	.connect		= dccp_v4_connect,
961 	.disconnect		= dccp_disconnect,
962 	.ioctl			= dccp_ioctl,
963 	.init			= dccp_v4_init_sock,
964 	.setsockopt		= dccp_setsockopt,
965 	.getsockopt		= dccp_getsockopt,
966 	.sendmsg		= dccp_sendmsg,
967 	.recvmsg		= dccp_recvmsg,
968 	.backlog_rcv		= dccp_v4_do_rcv,
969 	.hash			= inet_hash,
970 	.unhash			= inet_unhash,
971 	.accept			= inet_csk_accept,
972 	.get_port		= inet_csk_get_port,
973 	.shutdown		= dccp_shutdown,
974 	.destroy		= dccp_destroy_sock,
975 	.orphan_count		= &dccp_orphan_count,
976 	.max_header		= MAX_DCCP_HEADER,
977 	.obj_size		= sizeof(struct dccp_sock),
978 	.slab_flags		= SLAB_DESTROY_BY_RCU,
979 	.rsk_prot		= &dccp_request_sock_ops,
980 	.twsk_prot		= &dccp_timewait_sock_ops,
981 	.h.hashinfo		= &dccp_hashinfo,
982 #ifdef CONFIG_COMPAT
983 	.compat_setsockopt	= compat_dccp_setsockopt,
984 	.compat_getsockopt	= compat_dccp_getsockopt,
985 #endif
986 };
987 
988 static const struct net_protocol dccp_v4_protocol = {
989 	.handler	= dccp_v4_rcv,
990 	.err_handler	= dccp_v4_err,
991 	.no_policy	= 1,
992 	.netns_ok	= 1,
993 	.icmp_strict_tag_validation = 1,
994 };
995 
996 static const struct proto_ops inet_dccp_ops = {
997 	.family		   = PF_INET,
998 	.owner		   = THIS_MODULE,
999 	.release	   = inet_release,
1000 	.bind		   = inet_bind,
1001 	.connect	   = inet_stream_connect,
1002 	.socketpair	   = sock_no_socketpair,
1003 	.accept		   = inet_accept,
1004 	.getname	   = inet_getname,
1005 	/* FIXME: work on tcp_poll to rename it to inet_csk_poll */
1006 	.poll		   = dccp_poll,
1007 	.ioctl		   = inet_ioctl,
1008 	/* FIXME: work on inet_listen to rename it to sock_common_listen */
1009 	.listen		   = inet_dccp_listen,
1010 	.shutdown	   = inet_shutdown,
1011 	.setsockopt	   = sock_common_setsockopt,
1012 	.getsockopt	   = sock_common_getsockopt,
1013 	.sendmsg	   = inet_sendmsg,
1014 	.recvmsg	   = sock_common_recvmsg,
1015 	.mmap		   = sock_no_mmap,
1016 	.sendpage	   = sock_no_sendpage,
1017 #ifdef CONFIG_COMPAT
1018 	.compat_setsockopt = compat_sock_common_setsockopt,
1019 	.compat_getsockopt = compat_sock_common_getsockopt,
1020 #endif
1021 };
1022 
1023 static struct inet_protosw dccp_v4_protosw = {
1024 	.type		= SOCK_DCCP,
1025 	.protocol	= IPPROTO_DCCP,
1026 	.prot		= &dccp_v4_prot,
1027 	.ops		= &inet_dccp_ops,
1028 	.flags		= INET_PROTOSW_ICSK,
1029 };
1030 
dccp_v4_init_net(struct net * net)1031 static int __net_init dccp_v4_init_net(struct net *net)
1032 {
1033 	if (dccp_hashinfo.bhash == NULL)
1034 		return -ESOCKTNOSUPPORT;
1035 
1036 	return inet_ctl_sock_create(&net->dccp.v4_ctl_sk, PF_INET,
1037 				    SOCK_DCCP, IPPROTO_DCCP, net);
1038 }
1039 
dccp_v4_exit_net(struct net * net)1040 static void __net_exit dccp_v4_exit_net(struct net *net)
1041 {
1042 	inet_ctl_sock_destroy(net->dccp.v4_ctl_sk);
1043 }
1044 
1045 static struct pernet_operations dccp_v4_ops = {
1046 	.init	= dccp_v4_init_net,
1047 	.exit	= dccp_v4_exit_net,
1048 };
1049 
dccp_v4_init(void)1050 static int __init dccp_v4_init(void)
1051 {
1052 	int err = proto_register(&dccp_v4_prot, 1);
1053 
1054 	if (err != 0)
1055 		goto out;
1056 
1057 	err = inet_add_protocol(&dccp_v4_protocol, IPPROTO_DCCP);
1058 	if (err != 0)
1059 		goto out_proto_unregister;
1060 
1061 	inet_register_protosw(&dccp_v4_protosw);
1062 
1063 	err = register_pernet_subsys(&dccp_v4_ops);
1064 	if (err)
1065 		goto out_destroy_ctl_sock;
1066 out:
1067 	return err;
1068 out_destroy_ctl_sock:
1069 	inet_unregister_protosw(&dccp_v4_protosw);
1070 	inet_del_protocol(&dccp_v4_protocol, IPPROTO_DCCP);
1071 out_proto_unregister:
1072 	proto_unregister(&dccp_v4_prot);
1073 	goto out;
1074 }
1075 
dccp_v4_exit(void)1076 static void __exit dccp_v4_exit(void)
1077 {
1078 	unregister_pernet_subsys(&dccp_v4_ops);
1079 	inet_unregister_protosw(&dccp_v4_protosw);
1080 	inet_del_protocol(&dccp_v4_protocol, IPPROTO_DCCP);
1081 	proto_unregister(&dccp_v4_prot);
1082 }
1083 
1084 module_init(dccp_v4_init);
1085 module_exit(dccp_v4_exit);
1086 
1087 /*
1088  * __stringify doesn't likes enums, so use SOCK_DCCP (6) and IPPROTO_DCCP (33)
1089  * values directly, Also cover the case where the protocol is not specified,
1090  * i.e. net-pf-PF_INET-proto-0-type-SOCK_DCCP
1091  */
1092 MODULE_ALIAS_NET_PF_PROTO_TYPE(PF_INET, 33, 6);
1093 MODULE_ALIAS_NET_PF_PROTO_TYPE(PF_INET, 0, 6);
1094 MODULE_LICENSE("GPL");
1095 MODULE_AUTHOR("Arnaldo Carvalho de Melo <acme@mandriva.com>");
1096 MODULE_DESCRIPTION("DCCP - Datagram Congestion Controlled Protocol");
1097