udp_usrreq.c revision 1.232 1 1.232 ozaki /* $NetBSD: udp_usrreq.c,v 1.232 2017/04/20 08:45:09 ozaki-r Exp $ */
2 1.48 itojun
3 1.48 itojun /*
4 1.48 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.48 itojun * All rights reserved.
6 1.94 itojun *
7 1.48 itojun * Redistribution and use in source and binary forms, with or without
8 1.48 itojun * modification, are permitted provided that the following conditions
9 1.48 itojun * are met:
10 1.48 itojun * 1. Redistributions of source code must retain the above copyright
11 1.48 itojun * notice, this list of conditions and the following disclaimer.
12 1.48 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.48 itojun * notice, this list of conditions and the following disclaimer in the
14 1.48 itojun * documentation and/or other materials provided with the distribution.
15 1.48 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.48 itojun * may be used to endorse or promote products derived from this software
17 1.48 itojun * without specific prior written permission.
18 1.94 itojun *
19 1.48 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.48 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.48 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.48 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.48 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.48 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.48 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.48 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.48 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.48 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.48 itojun * SUCH DAMAGE.
30 1.48 itojun */
31 1.14 cgd
32 1.1 cgd /*
33 1.44 thorpej * Copyright (c) 1982, 1986, 1988, 1990, 1993, 1995
34 1.13 mycroft * The Regents of the University of California. All rights reserved.
35 1.1 cgd *
36 1.1 cgd * Redistribution and use in source and binary forms, with or without
37 1.1 cgd * modification, are permitted provided that the following conditions
38 1.1 cgd * are met:
39 1.1 cgd * 1. Redistributions of source code must retain the above copyright
40 1.1 cgd * notice, this list of conditions and the following disclaimer.
41 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 cgd * notice, this list of conditions and the following disclaimer in the
43 1.1 cgd * documentation and/or other materials provided with the distribution.
44 1.104 agc * 3. Neither the name of the University nor the names of its contributors
45 1.1 cgd * may be used to endorse or promote products derived from this software
46 1.1 cgd * without specific prior written permission.
47 1.1 cgd *
48 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.1 cgd * SUCH DAMAGE.
59 1.1 cgd *
60 1.44 thorpej * @(#)udp_usrreq.c 8.6 (Berkeley) 5/23/95
61 1.1 cgd */
62 1.91 lukem
63 1.198 rmind /*
64 1.198 rmind * UDP protocol implementation.
65 1.198 rmind * Per RFC 768, August, 1980.
66 1.198 rmind */
67 1.198 rmind
68 1.91 lukem #include <sys/cdefs.h>
69 1.232 ozaki __KERNEL_RCSID(0, "$NetBSD: udp_usrreq.c,v 1.232 2017/04/20 08:45:09 ozaki-r Exp $");
70 1.50 thorpej
71 1.222 pooka #ifdef _KERNEL_OPT
72 1.77 soda #include "opt_inet.h"
73 1.174 christos #include "opt_compat_netbsd.h"
74 1.50 thorpej #include "opt_ipsec.h"
75 1.78 thorpej #include "opt_inet_csum.h"
76 1.64 ws #include "opt_ipkdb.h"
77 1.101 martin #include "opt_mbuftrace.h"
78 1.229 knakahar #include "opt_net_mpsafe.h"
79 1.222 pooka #endif
80 1.1 cgd
81 1.5 mycroft #include <sys/param.h>
82 1.5 mycroft #include <sys/mbuf.h>
83 1.192 pooka #include <sys/once.h>
84 1.5 mycroft #include <sys/protosw.h>
85 1.5 mycroft #include <sys/socket.h>
86 1.5 mycroft #include <sys/socketvar.h>
87 1.27 christos #include <sys/systm.h>
88 1.27 christos #include <sys/proc.h>
89 1.53 itojun #include <sys/domain.h>
90 1.27 christos #include <sys/sysctl.h>
91 1.1 cgd
92 1.5 mycroft #include <net/if.h>
93 1.1 cgd
94 1.5 mycroft #include <netinet/in.h>
95 1.5 mycroft #include <netinet/in_systm.h>
96 1.15 cgd #include <netinet/in_var.h>
97 1.5 mycroft #include <netinet/ip.h>
98 1.5 mycroft #include <netinet/in_pcb.h>
99 1.5 mycroft #include <netinet/ip_var.h>
100 1.5 mycroft #include <netinet/ip_icmp.h>
101 1.5 mycroft #include <netinet/udp.h>
102 1.5 mycroft #include <netinet/udp_var.h>
103 1.166 thorpej #include <netinet/udp_private.h>
104 1.1 cgd
105 1.53 itojun #ifdef INET6
106 1.53 itojun #include <netinet/ip6.h>
107 1.53 itojun #include <netinet/icmp6.h>
108 1.53 itojun #include <netinet6/ip6_var.h>
109 1.167 thorpej #include <netinet6/ip6_private.h>
110 1.53 itojun #include <netinet6/in6_pcb.h>
111 1.53 itojun #include <netinet6/udp6_var.h>
112 1.168 thorpej #include <netinet6/udp6_private.h>
113 1.53 itojun #endif
114 1.53 itojun
115 1.53 itojun #ifndef INET6
116 1.53 itojun /* always need ip6.h for IP6_EXTHDR_GET */
117 1.53 itojun #include <netinet/ip6.h>
118 1.53 itojun #endif
119 1.53 itojun
120 1.190 christos #ifdef IPSEC
121 1.105 jonathan #include <netipsec/ipsec.h>
122 1.169 thorpej #include <netipsec/ipsec_var.h>
123 1.169 thorpej #include <netipsec/ipsec_private.h>
124 1.147 christos #include <netipsec/esp.h>
125 1.105 jonathan #ifdef INET6
126 1.105 jonathan #include <netipsec/ipsec6.h>
127 1.105 jonathan #endif
128 1.190 christos #endif /* IPSEC */
129 1.105 jonathan
130 1.174 christos #ifdef COMPAT_50
131 1.174 christos #include <compat/sys/socket.h>
132 1.174 christos #endif
133 1.174 christos
134 1.64 ws #ifdef IPKDB
135 1.64 ws #include <ipkdb/ipkdb.h>
136 1.64 ws #endif
137 1.64 ws
138 1.8 mycroft int udpcksum = 1;
139 1.141 yamt int udp_do_loopback_cksum = 0;
140 1.93 matt
141 1.93 matt struct inpcbtable udbtable;
142 1.164 thorpej
143 1.166 thorpej percpu_t *udpstat_percpu;
144 1.8 mycroft
145 1.72 itojun #ifdef INET
146 1.190 christos #ifdef IPSEC
147 1.144 manu static int udp4_espinudp (struct mbuf **, int, struct sockaddr *,
148 1.130 manu struct socket *);
149 1.189 christos #endif
150 1.119 matt static void udp4_sendup (struct mbuf *, int, struct sockaddr *,
151 1.119 matt struct socket *);
152 1.119 matt static int udp4_realinput (struct sockaddr_in *, struct sockaddr_in *,
153 1.144 manu struct mbuf **, int);
154 1.129 yamt static int udp4_input_checksum(struct mbuf *, const struct udphdr *, int, int);
155 1.72 itojun #endif
156 1.72 itojun #ifdef INET
157 1.119 matt static void udp_notify (struct inpcb *, int);
158 1.72 itojun #endif
159 1.7 mycroft
160 1.26 mycroft #ifndef UDBHASHSIZE
161 1.26 mycroft #define UDBHASHSIZE 128
162 1.26 mycroft #endif
163 1.26 mycroft int udbhashsize = UDBHASHSIZE;
164 1.26 mycroft
165 1.196 rmind /*
166 1.196 rmind * For send - really max datagram size; for receive - 40 1K datagrams.
167 1.196 rmind */
168 1.196 rmind static int udp_sendspace = 9216;
169 1.196 rmind static int udp_recvspace = 40 * (1024 + sizeof(struct sockaddr_in));
170 1.196 rmind
171 1.98 matt #ifdef MBUFTRACE
172 1.150 dogcow struct mowner udp_mowner = MOWNER_INIT("udp", "");
173 1.150 dogcow struct mowner udp_rx_mowner = MOWNER_INIT("udp", "rx");
174 1.150 dogcow struct mowner udp_tx_mowner = MOWNER_INIT("udp", "tx");
175 1.98 matt #endif
176 1.98 matt
177 1.78 thorpej #ifdef UDP_CSUM_COUNTERS
178 1.78 thorpej #include <sys/device.h>
179 1.78 thorpej
180 1.140 yamt #if defined(INET)
181 1.78 thorpej struct evcnt udp_hwcsum_bad = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
182 1.78 thorpej NULL, "udp", "hwcsum bad");
183 1.78 thorpej struct evcnt udp_hwcsum_ok = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
184 1.78 thorpej NULL, "udp", "hwcsum ok");
185 1.78 thorpej struct evcnt udp_hwcsum_data = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
186 1.78 thorpej NULL, "udp", "hwcsum data");
187 1.78 thorpej struct evcnt udp_swcsum = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
188 1.78 thorpej NULL, "udp", "swcsum");
189 1.78 thorpej
190 1.120 matt EVCNT_ATTACH_STATIC(udp_hwcsum_bad);
191 1.120 matt EVCNT_ATTACH_STATIC(udp_hwcsum_ok);
192 1.120 matt EVCNT_ATTACH_STATIC(udp_hwcsum_data);
193 1.120 matt EVCNT_ATTACH_STATIC(udp_swcsum);
194 1.140 yamt #endif /* defined(INET) */
195 1.140 yamt
196 1.140 yamt #define UDP_CSUM_COUNTER_INCR(ev) (ev)->ev_count++
197 1.78 thorpej #else
198 1.78 thorpej #define UDP_CSUM_COUNTER_INCR(ev) /* nothing */
199 1.78 thorpej #endif /* UDP_CSUM_COUNTERS */
200 1.78 thorpej
201 1.179 pooka static void sysctl_net_inet_udp_setup(struct sysctllog **);
202 1.179 pooka
203 1.192 pooka static int
204 1.192 pooka do_udpinit(void)
205 1.1 cgd {
206 1.18 mycroft
207 1.35 mycroft in_pcbinit(&udbtable, udbhashsize, udbhashsize);
208 1.193 pooka udpstat_percpu = percpu_alloc(sizeof(uint64_t) * UDP_NSTATS);
209 1.78 thorpej
210 1.98 matt MOWNER_ATTACH(&udp_tx_mowner);
211 1.98 matt MOWNER_ATTACH(&udp_rx_mowner);
212 1.98 matt MOWNER_ATTACH(&udp_mowner);
213 1.166 thorpej
214 1.192 pooka return 0;
215 1.192 pooka }
216 1.192 pooka
217 1.192 pooka void
218 1.192 pooka udp_init_common(void)
219 1.192 pooka {
220 1.192 pooka static ONCE_DECL(doudpinit);
221 1.192 pooka
222 1.192 pooka RUN_ONCE(&doudpinit, do_udpinit);
223 1.192 pooka }
224 1.192 pooka
225 1.192 pooka void
226 1.192 pooka udp_init(void)
227 1.192 pooka {
228 1.192 pooka
229 1.192 pooka sysctl_net_inet_udp_setup(NULL);
230 1.192 pooka
231 1.192 pooka udp_init_common();
232 1.1 cgd }
233 1.1 cgd
234 1.129 yamt /*
235 1.129 yamt * Checksum extended UDP header and data.
236 1.129 yamt */
237 1.129 yamt
238 1.129 yamt int
239 1.129 yamt udp_input_checksum(int af, struct mbuf *m, const struct udphdr *uh,
240 1.129 yamt int iphlen, int len)
241 1.129 yamt {
242 1.129 yamt
243 1.129 yamt switch (af) {
244 1.72 itojun #ifdef INET
245 1.129 yamt case AF_INET:
246 1.129 yamt return udp4_input_checksum(m, uh, iphlen, len);
247 1.129 yamt #endif
248 1.129 yamt #ifdef INET6
249 1.129 yamt case AF_INET6:
250 1.129 yamt return udp6_input_checksum(m, uh, iphlen, len);
251 1.129 yamt #endif
252 1.129 yamt }
253 1.129 yamt #ifdef DIAGNOSTIC
254 1.129 yamt panic("udp_input_checksum: unknown af %d", af);
255 1.129 yamt #endif
256 1.129 yamt /* NOTREACHED */
257 1.129 yamt return -1;
258 1.129 yamt }
259 1.129 yamt
260 1.129 yamt #ifdef INET
261 1.129 yamt
262 1.129 yamt /*
263 1.129 yamt * Checksum extended UDP header and data.
264 1.129 yamt */
265 1.129 yamt
266 1.129 yamt static int
267 1.129 yamt udp4_input_checksum(struct mbuf *m, const struct udphdr *uh,
268 1.129 yamt int iphlen, int len)
269 1.129 yamt {
270 1.129 yamt
271 1.129 yamt /*
272 1.129 yamt * XXX it's better to record and check if this mbuf is
273 1.129 yamt * already checked.
274 1.129 yamt */
275 1.129 yamt
276 1.129 yamt if (uh->uh_sum == 0)
277 1.129 yamt return 0;
278 1.129 yamt
279 1.129 yamt switch (m->m_pkthdr.csum_flags &
280 1.226 ozaki ((m_get_rcvif_NOMPSAFE(m)->if_csum_flags_rx & M_CSUM_UDPv4) |
281 1.129 yamt M_CSUM_TCP_UDP_BAD | M_CSUM_DATA)) {
282 1.129 yamt case M_CSUM_UDPv4|M_CSUM_TCP_UDP_BAD:
283 1.129 yamt UDP_CSUM_COUNTER_INCR(&udp_hwcsum_bad);
284 1.129 yamt goto badcsum;
285 1.129 yamt
286 1.129 yamt case M_CSUM_UDPv4|M_CSUM_DATA: {
287 1.129 yamt u_int32_t hw_csum = m->m_pkthdr.csum_data;
288 1.129 yamt
289 1.129 yamt UDP_CSUM_COUNTER_INCR(&udp_hwcsum_data);
290 1.129 yamt if (m->m_pkthdr.csum_flags & M_CSUM_NO_PSEUDOHDR) {
291 1.129 yamt const struct ip *ip =
292 1.129 yamt mtod(m, const struct ip *);
293 1.129 yamt
294 1.129 yamt hw_csum = in_cksum_phdr(ip->ip_src.s_addr,
295 1.129 yamt ip->ip_dst.s_addr,
296 1.129 yamt htons(hw_csum + len + IPPROTO_UDP));
297 1.129 yamt }
298 1.129 yamt if ((hw_csum ^ 0xffff) != 0)
299 1.129 yamt goto badcsum;
300 1.129 yamt break;
301 1.129 yamt }
302 1.129 yamt
303 1.129 yamt case M_CSUM_UDPv4:
304 1.129 yamt /* Checksum was okay. */
305 1.129 yamt UDP_CSUM_COUNTER_INCR(&udp_hwcsum_ok);
306 1.129 yamt break;
307 1.129 yamt
308 1.129 yamt default:
309 1.129 yamt /*
310 1.129 yamt * Need to compute it ourselves. Maybe skip checksum
311 1.129 yamt * on loopback interfaces.
312 1.129 yamt */
313 1.226 ozaki if (__predict_true(!(m_get_rcvif_NOMPSAFE(m)->if_flags &
314 1.129 yamt IFF_LOOPBACK) ||
315 1.129 yamt udp_do_loopback_cksum)) {
316 1.129 yamt UDP_CSUM_COUNTER_INCR(&udp_swcsum);
317 1.129 yamt if (in4_cksum(m, IPPROTO_UDP, iphlen, len) != 0)
318 1.129 yamt goto badcsum;
319 1.129 yamt }
320 1.129 yamt break;
321 1.129 yamt }
322 1.129 yamt
323 1.129 yamt return 0;
324 1.129 yamt
325 1.129 yamt badcsum:
326 1.166 thorpej UDP_STATINC(UDP_STAT_BADSUM);
327 1.129 yamt return -1;
328 1.129 yamt }
329 1.129 yamt
330 1.7 mycroft void
331 1.27 christos udp_input(struct mbuf *m, ...)
332 1.1 cgd {
333 1.53 itojun va_list ap;
334 1.53 itojun struct sockaddr_in src, dst;
335 1.53 itojun struct ip *ip;
336 1.53 itojun struct udphdr *uh;
337 1.97 simonb int iphlen;
338 1.53 itojun int len;
339 1.53 itojun int n;
340 1.96 itojun u_int16_t ip_len;
341 1.53 itojun
342 1.53 itojun va_start(ap, m);
343 1.53 itojun iphlen = va_arg(ap, int);
344 1.97 simonb (void)va_arg(ap, int); /* ignore value, advance ap */
345 1.53 itojun va_end(ap);
346 1.53 itojun
347 1.98 matt MCLAIM(m, &udp_rx_mowner);
348 1.166 thorpej UDP_STATINC(UDP_STAT_IPACKETS);
349 1.53 itojun
350 1.53 itojun /*
351 1.53 itojun * Get IP and UDP header together in first mbuf.
352 1.53 itojun */
353 1.53 itojun ip = mtod(m, struct ip *);
354 1.53 itojun IP6_EXTHDR_GET(uh, struct udphdr *, m, iphlen, sizeof(struct udphdr));
355 1.53 itojun if (uh == NULL) {
356 1.166 thorpej UDP_STATINC(UDP_STAT_HDROPS);
357 1.53 itojun return;
358 1.53 itojun }
359 1.228 mlelstv /*
360 1.228 mlelstv * Enforce alignment requirements that are violated in
361 1.228 mlelstv * some cases, see kern/50766 for details.
362 1.228 mlelstv */
363 1.228 mlelstv if (UDP_HDR_ALIGNED_P(uh) == 0) {
364 1.228 mlelstv m = m_copyup(m, iphlen + sizeof(struct udphdr), 0);
365 1.228 mlelstv if (m == NULL) {
366 1.228 mlelstv UDP_STATINC(UDP_STAT_HDROPS);
367 1.228 mlelstv return;
368 1.228 mlelstv }
369 1.228 mlelstv ip = mtod(m, struct ip *);
370 1.228 mlelstv uh = (struct udphdr *)(mtod(m, char *) + iphlen);
371 1.228 mlelstv }
372 1.95 thorpej KASSERT(UDP_HDR_ALIGNED_P(uh));
373 1.53 itojun
374 1.57 itojun /* destination port of 0 is illegal, based on RFC768. */
375 1.57 itojun if (uh->uh_dport == 0)
376 1.57 itojun goto bad;
377 1.57 itojun
378 1.53 itojun /*
379 1.53 itojun * Make mbuf data length reflect UDP length.
380 1.53 itojun * If not enough data to reflect UDP length, drop.
381 1.53 itojun */
382 1.96 itojun ip_len = ntohs(ip->ip_len);
383 1.53 itojun len = ntohs((u_int16_t)uh->uh_ulen);
384 1.96 itojun if (ip_len != iphlen + len) {
385 1.96 itojun if (ip_len < iphlen + len || len < sizeof(struct udphdr)) {
386 1.166 thorpej UDP_STATINC(UDP_STAT_BADLEN);
387 1.53 itojun goto bad;
388 1.53 itojun }
389 1.96 itojun m_adj(m, iphlen + len - ip_len);
390 1.53 itojun }
391 1.53 itojun
392 1.53 itojun /*
393 1.53 itojun * Checksum extended UDP header and data.
394 1.53 itojun */
395 1.129 yamt if (udp4_input_checksum(m, uh, iphlen, len))
396 1.129 yamt goto badcsum;
397 1.53 itojun
398 1.53 itojun /* construct source and dst sockaddrs. */
399 1.159 dyoung sockaddr_in_init(&src, &ip->ip_src, uh->uh_sport);
400 1.159 dyoung sockaddr_in_init(&dst, &ip->ip_dst, uh->uh_dport);
401 1.53 itojun
402 1.144 manu if ((n = udp4_realinput(&src, &dst, &m, iphlen)) == -1) {
403 1.166 thorpej UDP_STATINC(UDP_STAT_HDROPS);
404 1.144 manu return;
405 1.144 manu }
406 1.188 christos if (m == NULL) {
407 1.188 christos /*
408 1.188 christos * packet has been processed by ESP stuff -
409 1.188 christos * e.g. dropped NAT-T-keep-alive-packet ...
410 1.188 christos */
411 1.188 christos return;
412 1.188 christos }
413 1.188 christos ip = mtod(m, struct ip *);
414 1.53 itojun #ifdef INET6
415 1.53 itojun if (IN_MULTICAST(ip->ip_dst.s_addr) || n == 0) {
416 1.53 itojun struct sockaddr_in6 src6, dst6;
417 1.53 itojun
418 1.175 cegger memset(&src6, 0, sizeof(src6));
419 1.53 itojun src6.sin6_family = AF_INET6;
420 1.53 itojun src6.sin6_len = sizeof(struct sockaddr_in6);
421 1.224 rtr in6_in_2_v4mapin6(&ip->ip_src, &src6.sin6_addr);
422 1.53 itojun src6.sin6_port = uh->uh_sport;
423 1.175 cegger memset(&dst6, 0, sizeof(dst6));
424 1.53 itojun dst6.sin6_family = AF_INET6;
425 1.53 itojun dst6.sin6_len = sizeof(struct sockaddr_in6);
426 1.224 rtr in6_in_2_v4mapin6(&ip->ip_dst, &dst6.sin6_addr);
427 1.53 itojun dst6.sin6_port = uh->uh_dport;
428 1.53 itojun
429 1.53 itojun n += udp6_realinput(AF_INET, &src6, &dst6, m, iphlen);
430 1.53 itojun }
431 1.53 itojun #endif
432 1.53 itojun
433 1.53 itojun if (n == 0) {
434 1.53 itojun if (m->m_flags & (M_BCAST | M_MCAST)) {
435 1.166 thorpej UDP_STATINC(UDP_STAT_NOPORTBCAST);
436 1.53 itojun goto bad;
437 1.53 itojun }
438 1.166 thorpej UDP_STATINC(UDP_STAT_NOPORT);
439 1.64 ws #ifdef IPKDB
440 1.53 itojun if (checkipkdb(&ip->ip_src, uh->uh_sport, uh->uh_dport,
441 1.53 itojun m, iphlen + sizeof(struct udphdr),
442 1.53 itojun m->m_pkthdr.len - iphlen - sizeof(struct udphdr))) {
443 1.53 itojun /*
444 1.53 itojun * It was a debugger connect packet,
445 1.53 itojun * just drop it now
446 1.53 itojun */
447 1.53 itojun goto bad;
448 1.53 itojun }
449 1.53 itojun #endif
450 1.53 itojun icmp_error(m, ICMP_UNREACH, ICMP_UNREACH_PORT, 0, 0);
451 1.53 itojun m = NULL;
452 1.53 itojun }
453 1.53 itojun
454 1.53 itojun bad:
455 1.53 itojun if (m)
456 1.53 itojun m_freem(m);
457 1.78 thorpej return;
458 1.78 thorpej
459 1.78 thorpej badcsum:
460 1.78 thorpej m_freem(m);
461 1.53 itojun }
462 1.72 itojun #endif
463 1.53 itojun
464 1.72 itojun #ifdef INET
465 1.53 itojun static void
466 1.119 matt udp4_sendup(struct mbuf *m, int off /* offset of data portion */,
467 1.119 matt struct sockaddr *src, struct socket *so)
468 1.53 itojun {
469 1.53 itojun struct mbuf *opts = NULL;
470 1.53 itojun struct mbuf *n;
471 1.232 ozaki struct inpcb *inp;
472 1.53 itojun
473 1.53 itojun if (!so)
474 1.53 itojun return;
475 1.232 ozaki KASSERT(so->so_proto->pr_domain->dom_family == AF_INET);
476 1.232 ozaki inp = sotoinpcb(so);
477 1.232 ozaki KASSERT(inp != NULL);
478 1.53 itojun
479 1.190 christos #if defined(IPSEC)
480 1.53 itojun /* check AH/ESP integrity. */
481 1.199 christos if (ipsec_used && so != NULL && ipsec4_in_reject_so(m, so)) {
482 1.169 thorpej IPSEC_STATINC(IPSEC_STAT_IN_POLVIO);
483 1.162 dyoung if ((n = m_copypacket(m, M_DONTWAIT)) != NULL)
484 1.110 itojun icmp_error(n, ICMP_UNREACH, ICMP_UNREACH_ADMIN_PROHIBIT,
485 1.110 itojun 0, 0);
486 1.53 itojun return;
487 1.53 itojun }
488 1.53 itojun #endif /*IPSEC*/
489 1.53 itojun
490 1.162 dyoung if ((n = m_copypacket(m, M_DONTWAIT)) != NULL) {
491 1.232 ozaki if (inp->inp_flags & INP_CONTROLOPTS
492 1.174 christos #ifdef SO_OTIMESTAMP
493 1.174 christos || so->so_options & SO_OTIMESTAMP
494 1.174 christos #endif
495 1.232 ozaki || so->so_options & SO_TIMESTAMP) {
496 1.53 itojun struct ip *ip = mtod(n, struct ip *);
497 1.53 itojun ip_savecontrol(inp, &opts, ip, n);
498 1.53 itojun }
499 1.53 itojun
500 1.53 itojun m_adj(n, off);
501 1.53 itojun if (sbappendaddr(&so->so_rcv, src, n,
502 1.53 itojun opts) == 0) {
503 1.53 itojun m_freem(n);
504 1.53 itojun if (opts)
505 1.53 itojun m_freem(opts);
506 1.124 darrenr so->so_rcv.sb_overflowed++;
507 1.166 thorpej UDP_STATINC(UDP_STAT_FULLSOCK);
508 1.53 itojun } else
509 1.53 itojun sorwakeup(so);
510 1.53 itojun }
511 1.53 itojun }
512 1.72 itojun #endif
513 1.53 itojun
514 1.72 itojun #ifdef INET
515 1.53 itojun static int
516 1.119 matt udp4_realinput(struct sockaddr_in *src, struct sockaddr_in *dst,
517 1.144 manu struct mbuf **mp, int off /* offset of udphdr */)
518 1.53 itojun {
519 1.53 itojun u_int16_t *sport, *dport;
520 1.53 itojun int rcvcnt;
521 1.53 itojun struct in_addr *src4, *dst4;
522 1.109 itojun struct inpcb_hdr *inph;
523 1.53 itojun struct inpcb *inp;
524 1.144 manu struct mbuf *m = *mp;
525 1.53 itojun
526 1.53 itojun rcvcnt = 0;
527 1.53 itojun off += sizeof(struct udphdr); /* now, offset of payload */
528 1.53 itojun
529 1.53 itojun if (src->sin_family != AF_INET || dst->sin_family != AF_INET)
530 1.53 itojun goto bad;
531 1.53 itojun
532 1.53 itojun src4 = &src->sin_addr;
533 1.53 itojun sport = &src->sin_port;
534 1.53 itojun dst4 = &dst->sin_addr;
535 1.53 itojun dport = &dst->sin_port;
536 1.53 itojun
537 1.73 itojun if (IN_MULTICAST(dst4->s_addr) ||
538 1.226 ozaki in_broadcast(*dst4, m_get_rcvif_NOMPSAFE(m))) {
539 1.53 itojun /*
540 1.53 itojun * Deliver a multicast or broadcast datagram to *all* sockets
541 1.53 itojun * for which the local and remote addresses and ports match
542 1.53 itojun * those of the incoming datagram. This allows more than
543 1.53 itojun * one process to receive multi/broadcasts on the same port.
544 1.53 itojun * (This really ought to be done for unicast datagrams as
545 1.53 itojun * well, but that would cause problems with existing
546 1.53 itojun * applications that open both address-specific sockets and
547 1.53 itojun * a wildcard socket listening to the same port -- they would
548 1.53 itojun * end up receiving duplicates of every unicast datagram.
549 1.53 itojun * Those applications open the multiple sockets to overcome an
550 1.53 itojun * inadequacy of the UDP socket interface, but for backwards
551 1.53 itojun * compatibility we avoid the problem here rather than
552 1.53 itojun * fixing the interface. Maybe 4.5BSD will remedy this?)
553 1.53 itojun */
554 1.53 itojun
555 1.53 itojun /*
556 1.92 itojun * KAME note: traditionally we dropped udpiphdr from mbuf here.
557 1.71 itojun * we need udpiphdr for IPsec processing so we do that later.
558 1.53 itojun */
559 1.53 itojun /*
560 1.53 itojun * Locate pcb(s) for datagram.
561 1.53 itojun */
562 1.191 christos TAILQ_FOREACH(inph, &udbtable.inpt_queue, inph_queue) {
563 1.109 itojun inp = (struct inpcb *)inph;
564 1.109 itojun if (inp->inp_af != AF_INET)
565 1.109 itojun continue;
566 1.109 itojun
567 1.53 itojun if (inp->inp_lport != *dport)
568 1.53 itojun continue;
569 1.53 itojun if (!in_nullhost(inp->inp_laddr)) {
570 1.53 itojun if (!in_hosteq(inp->inp_laddr, *dst4))
571 1.53 itojun continue;
572 1.53 itojun }
573 1.53 itojun if (!in_nullhost(inp->inp_faddr)) {
574 1.53 itojun if (!in_hosteq(inp->inp_faddr, *src4) ||
575 1.53 itojun inp->inp_fport != *sport)
576 1.53 itojun continue;
577 1.53 itojun }
578 1.53 itojun
579 1.53 itojun udp4_sendup(m, off, (struct sockaddr *)src,
580 1.53 itojun inp->inp_socket);
581 1.53 itojun rcvcnt++;
582 1.53 itojun
583 1.53 itojun /*
584 1.53 itojun * Don't look for additional matches if this one does
585 1.53 itojun * not have either the SO_REUSEPORT or SO_REUSEADDR
586 1.53 itojun * socket options set. This heuristic avoids searching
587 1.53 itojun * through all pcbs in the common case of a non-shared
588 1.53 itojun * port. It assumes that an application will never
589 1.53 itojun * clear these options after setting them.
590 1.53 itojun */
591 1.53 itojun if ((inp->inp_socket->so_options &
592 1.53 itojun (SO_REUSEPORT|SO_REUSEADDR)) == 0)
593 1.53 itojun break;
594 1.53 itojun }
595 1.53 itojun } else {
596 1.53 itojun /*
597 1.53 itojun * Locate pcb for datagram.
598 1.53 itojun */
599 1.180 dyoung inp = in_pcblookup_connect(&udbtable, *src4, *sport, *dst4,
600 1.180 dyoung *dport, 0);
601 1.53 itojun if (inp == 0) {
602 1.166 thorpej UDP_STATINC(UDP_STAT_PCBHASHMISS);
603 1.53 itojun inp = in_pcblookup_bind(&udbtable, *dst4, *dport);
604 1.82 itojun if (inp == 0)
605 1.53 itojun return rcvcnt;
606 1.53 itojun }
607 1.53 itojun
608 1.190 christos #ifdef IPSEC
609 1.130 manu /* Handle ESP over UDP */
610 1.130 manu if (inp->inp_flags & INP_ESPINUDP_ALL) {
611 1.130 manu struct sockaddr *sa = (struct sockaddr *)src;
612 1.130 manu
613 1.144 manu switch(udp4_espinudp(mp, off, sa, inp->inp_socket)) {
614 1.144 manu case -1: /* Error, m was freeed */
615 1.144 manu rcvcnt = -1;
616 1.144 manu goto bad;
617 1.144 manu break;
618 1.144 manu
619 1.144 manu case 1: /* ESP over UDP */
620 1.130 manu rcvcnt++;
621 1.130 manu goto bad;
622 1.144 manu break;
623 1.144 manu
624 1.144 manu case 0: /* plain UDP */
625 1.144 manu default: /* Unexpected */
626 1.144 manu /*
627 1.144 manu * Normal UDP processing will take place
628 1.144 manu * m may have changed.
629 1.144 manu */
630 1.144 manu m = *mp;
631 1.144 manu break;
632 1.130 manu }
633 1.130 manu }
634 1.189 christos #endif
635 1.130 manu
636 1.178 minskim /*
637 1.178 minskim * Check the minimum TTL for socket.
638 1.178 minskim */
639 1.178 minskim if (mtod(m, struct ip *)->ip_ttl < inp->inp_ip_minttl)
640 1.178 minskim goto bad;
641 1.178 minskim
642 1.53 itojun udp4_sendup(m, off, (struct sockaddr *)src, inp->inp_socket);
643 1.53 itojun rcvcnt++;
644 1.53 itojun }
645 1.53 itojun
646 1.53 itojun bad:
647 1.53 itojun return rcvcnt;
648 1.53 itojun }
649 1.72 itojun #endif
650 1.53 itojun
651 1.72 itojun #ifdef INET
652 1.1 cgd /*
653 1.1 cgd * Notify a udp user of an asynchronous error;
654 1.1 cgd * just wake up so that he can collect error status.
655 1.1 cgd */
656 1.7 mycroft static void
657 1.119 matt udp_notify(struct inpcb *inp, int errno)
658 1.1 cgd {
659 1.1 cgd inp->inp_socket->so_error = errno;
660 1.1 cgd sorwakeup(inp->inp_socket);
661 1.1 cgd sowwakeup(inp->inp_socket);
662 1.1 cgd }
663 1.1 cgd
664 1.27 christos void *
665 1.157 dyoung udp_ctlinput(int cmd, const struct sockaddr *sa, void *v)
666 1.1 cgd {
667 1.66 augustss struct ip *ip = v;
668 1.66 augustss struct udphdr *uh;
669 1.119 matt void (*notify)(struct inpcb *, int) = udp_notify;
670 1.21 mycroft int errno;
671 1.1 cgd
672 1.53 itojun if (sa->sa_family != AF_INET
673 1.53 itojun || sa->sa_len != sizeof(struct sockaddr_in))
674 1.51 itojun return NULL;
675 1.20 mycroft if ((unsigned)cmd >= PRC_NCMDS)
676 1.27 christos return NULL;
677 1.20 mycroft errno = inetctlerrmap[cmd];
678 1.18 mycroft if (PRC_IS_REDIRECT(cmd))
679 1.19 mycroft notify = in_rtchange, ip = 0;
680 1.18 mycroft else if (cmd == PRC_HOSTDEAD)
681 1.19 mycroft ip = 0;
682 1.23 cgd else if (errno == 0)
683 1.27 christos return NULL;
684 1.19 mycroft if (ip) {
685 1.158 christos uh = (struct udphdr *)((char *)ip + (ip->ip_hl << 2));
686 1.157 dyoung in_pcbnotify(&udbtable, satocsin(sa)->sin_addr, uh->uh_dport,
687 1.34 mycroft ip->ip_src, uh->uh_sport, errno, notify);
688 1.53 itojun
689 1.53 itojun /* XXX mapped address case */
690 1.19 mycroft } else
691 1.157 dyoung in_pcbnotifyall(&udbtable, satocsin(sa)->sin_addr, errno,
692 1.34 mycroft notify);
693 1.27 christos return NULL;
694 1.1 cgd }
695 1.1 cgd
696 1.7 mycroft int
697 1.173 plunky udp_ctloutput(int op, struct socket *so, struct sockopt *sopt)
698 1.130 manu {
699 1.130 manu int s;
700 1.130 manu int error = 0;
701 1.130 manu struct inpcb *inp;
702 1.130 manu int family;
703 1.173 plunky int optval;
704 1.130 manu
705 1.130 manu family = so->so_proto->pr_domain->dom_family;
706 1.130 manu
707 1.130 manu s = splsoftnet();
708 1.130 manu switch (family) {
709 1.130 manu #ifdef INET
710 1.130 manu case PF_INET:
711 1.173 plunky if (sopt->sopt_level != IPPROTO_UDP) {
712 1.173 plunky error = ip_ctloutput(op, so, sopt);
713 1.130 manu goto end;
714 1.130 manu }
715 1.130 manu break;
716 1.130 manu #endif
717 1.130 manu #ifdef INET6
718 1.130 manu case PF_INET6:
719 1.173 plunky if (sopt->sopt_level != IPPROTO_UDP) {
720 1.173 plunky error = ip6_ctloutput(op, so, sopt);
721 1.130 manu goto end;
722 1.130 manu }
723 1.130 manu break;
724 1.130 manu #endif
725 1.130 manu default:
726 1.130 manu error = EAFNOSUPPORT;
727 1.130 manu goto end;
728 1.130 manu }
729 1.130 manu
730 1.130 manu
731 1.130 manu switch (op) {
732 1.130 manu case PRCO_SETOPT:
733 1.130 manu inp = sotoinpcb(so);
734 1.130 manu
735 1.173 plunky switch (sopt->sopt_name) {
736 1.130 manu case UDP_ENCAP:
737 1.173 plunky error = sockopt_getint(sopt, &optval);
738 1.173 plunky if (error)
739 1.153 yamt break;
740 1.131 perry
741 1.173 plunky switch(optval) {
742 1.130 manu case 0:
743 1.130 manu inp->inp_flags &= ~INP_ESPINUDP_ALL;
744 1.130 manu break;
745 1.130 manu
746 1.130 manu case UDP_ENCAP_ESPINUDP:
747 1.130 manu inp->inp_flags &= ~INP_ESPINUDP_ALL;
748 1.130 manu inp->inp_flags |= INP_ESPINUDP;
749 1.130 manu break;
750 1.131 perry
751 1.130 manu case UDP_ENCAP_ESPINUDP_NON_IKE:
752 1.130 manu inp->inp_flags &= ~INP_ESPINUDP_ALL;
753 1.130 manu inp->inp_flags |= INP_ESPINUDP_NON_IKE;
754 1.130 manu break;
755 1.130 manu default:
756 1.130 manu error = EINVAL;
757 1.130 manu break;
758 1.130 manu }
759 1.130 manu break;
760 1.183 christos
761 1.130 manu default:
762 1.130 manu error = ENOPROTOOPT;
763 1.130 manu break;
764 1.130 manu }
765 1.130 manu break;
766 1.130 manu
767 1.130 manu default:
768 1.130 manu error = EINVAL;
769 1.130 manu break;
770 1.131 perry }
771 1.131 perry
772 1.130 manu end:
773 1.130 manu splx(s);
774 1.130 manu return error;
775 1.130 manu }
776 1.131 perry
777 1.130 manu
778 1.130 manu int
779 1.223 riastrad udp_output(struct mbuf *m, struct inpcb *inp)
780 1.27 christos {
781 1.66 augustss struct udpiphdr *ui;
782 1.125 thorpej struct route *ro;
783 1.66 augustss int len = m->m_pkthdr.len;
784 1.31 mycroft int error = 0;
785 1.27 christos
786 1.98 matt MCLAIM(m, &udp_tx_mowner);
787 1.1 cgd
788 1.1 cgd /*
789 1.1 cgd * Calculate data length and get a mbuf
790 1.1 cgd * for UDP and IP headers.
791 1.1 cgd */
792 1.13 mycroft M_PREPEND(m, sizeof(struct udpiphdr), M_DONTWAIT);
793 1.13 mycroft if (m == 0) {
794 1.13 mycroft error = ENOBUFS;
795 1.39 thorpej goto release;
796 1.39 thorpej }
797 1.39 thorpej
798 1.39 thorpej /*
799 1.39 thorpej * Compute the packet length of the IP header, and
800 1.39 thorpej * punt if the length looks bogus.
801 1.39 thorpej */
802 1.96 itojun if (len + sizeof(struct udpiphdr) > IP_MAXPACKET) {
803 1.39 thorpej error = EMSGSIZE;
804 1.13 mycroft goto release;
805 1.13 mycroft }
806 1.1 cgd
807 1.1 cgd /*
808 1.1 cgd * Fill in mbuf with extended UDP header
809 1.1 cgd * and addresses and length put into network format.
810 1.1 cgd */
811 1.1 cgd ui = mtod(m, struct udpiphdr *);
812 1.1 cgd ui->ui_pr = IPPROTO_UDP;
813 1.1 cgd ui->ui_src = inp->inp_laddr;
814 1.1 cgd ui->ui_dst = inp->inp_faddr;
815 1.1 cgd ui->ui_sport = inp->inp_lport;
816 1.1 cgd ui->ui_dport = inp->inp_fport;
817 1.78 thorpej ui->ui_ulen = htons((u_int16_t)len + sizeof(struct udphdr));
818 1.1 cgd
819 1.125 thorpej ro = &inp->inp_route;
820 1.125 thorpej
821 1.1 cgd /*
822 1.78 thorpej * Set up checksum and output datagram.
823 1.1 cgd */
824 1.1 cgd if (udpcksum) {
825 1.78 thorpej /*
826 1.78 thorpej * XXX Cache pseudo-header checksum part for
827 1.78 thorpej * XXX "connected" UDP sockets.
828 1.78 thorpej */
829 1.78 thorpej ui->ui_sum = in_cksum_phdr(ui->ui_src.s_addr,
830 1.78 thorpej ui->ui_dst.s_addr, htons((u_int16_t)len +
831 1.78 thorpej sizeof(struct udphdr) + IPPROTO_UDP));
832 1.135 yamt m->m_pkthdr.csum_flags = M_CSUM_UDPv4;
833 1.78 thorpej m->m_pkthdr.csum_data = offsetof(struct udphdr, uh_sum);
834 1.78 thorpej } else
835 1.78 thorpej ui->ui_sum = 0;
836 1.96 itojun ((struct ip *)ui)->ip_len = htons(sizeof (struct udpiphdr) + len);
837 1.1 cgd ((struct ip *)ui)->ip_ttl = inp->inp_ip.ip_ttl; /* XXX */
838 1.1 cgd ((struct ip *)ui)->ip_tos = inp->inp_ip.ip_tos; /* XXX */
839 1.166 thorpej UDP_STATINC(UDP_STAT_OPACKETS);
840 1.48 itojun
841 1.125 thorpej return (ip_output(m, inp->inp_options, ro,
842 1.12 mycroft inp->inp_socket->so_options & (SO_DONTROUTE | SO_BROADCAST),
843 1.231 ozaki inp->inp_moptions, inp));
844 1.1 cgd
845 1.1 cgd release:
846 1.1 cgd m_freem(m);
847 1.1 cgd return (error);
848 1.1 cgd }
849 1.1 cgd
850 1.196 rmind static int
851 1.196 rmind udp_attach(struct socket *so, int proto)
852 1.196 rmind {
853 1.196 rmind struct inpcb *inp;
854 1.196 rmind int error;
855 1.196 rmind
856 1.196 rmind KASSERT(sotoinpcb(so) == NULL);
857 1.196 rmind
858 1.196 rmind /* Assign the lock (must happen even if we will error out). */
859 1.196 rmind sosetlock(so);
860 1.196 rmind
861 1.196 rmind #ifdef MBUFTRACE
862 1.196 rmind so->so_mowner = &udp_mowner;
863 1.196 rmind so->so_rcv.sb_mowner = &udp_rx_mowner;
864 1.196 rmind so->so_snd.sb_mowner = &udp_tx_mowner;
865 1.196 rmind #endif
866 1.196 rmind if (so->so_snd.sb_hiwat == 0 || so->so_rcv.sb_hiwat == 0) {
867 1.196 rmind error = soreserve(so, udp_sendspace, udp_recvspace);
868 1.196 rmind if (error) {
869 1.196 rmind return error;
870 1.196 rmind }
871 1.196 rmind }
872 1.196 rmind
873 1.196 rmind error = in_pcballoc(so, &udbtable);
874 1.196 rmind if (error) {
875 1.196 rmind return error;
876 1.196 rmind }
877 1.196 rmind inp = sotoinpcb(so);
878 1.196 rmind inp->inp_ip.ip_ttl = ip_defttl;
879 1.196 rmind KASSERT(solocked(so));
880 1.196 rmind
881 1.196 rmind return error;
882 1.196 rmind }
883 1.196 rmind
884 1.196 rmind static void
885 1.196 rmind udp_detach(struct socket *so)
886 1.196 rmind {
887 1.196 rmind struct inpcb *inp;
888 1.196 rmind
889 1.196 rmind KASSERT(solocked(so));
890 1.196 rmind inp = sotoinpcb(so);
891 1.196 rmind KASSERT(inp != NULL);
892 1.196 rmind in_pcbdetach(inp);
893 1.196 rmind }
894 1.1 cgd
895 1.195 rmind static int
896 1.219 rtr udp_accept(struct socket *so, struct sockaddr *nam)
897 1.208 rtr {
898 1.208 rtr KASSERT(solocked(so));
899 1.208 rtr
900 1.208 rtr panic("udp_accept");
901 1.210 rtr
902 1.208 rtr return EOPNOTSUPP;
903 1.208 rtr }
904 1.208 rtr
905 1.208 rtr static int
906 1.218 rtr udp_bind(struct socket *so, struct sockaddr *nam, struct lwp *l)
907 1.210 rtr {
908 1.210 rtr struct inpcb *inp = sotoinpcb(so);
909 1.218 rtr struct sockaddr_in *sin = (struct sockaddr_in *)nam;
910 1.210 rtr int error = 0;
911 1.210 rtr int s;
912 1.210 rtr
913 1.210 rtr KASSERT(solocked(so));
914 1.210 rtr KASSERT(inp != NULL);
915 1.210 rtr KASSERT(nam != NULL);
916 1.210 rtr
917 1.210 rtr s = splsoftnet();
918 1.218 rtr error = in_pcbbind(inp, sin, l);
919 1.210 rtr splx(s);
920 1.210 rtr
921 1.210 rtr return error;
922 1.210 rtr }
923 1.210 rtr
924 1.210 rtr static int
925 1.214 rtr udp_listen(struct socket *so, struct lwp *l)
926 1.210 rtr {
927 1.210 rtr KASSERT(solocked(so));
928 1.210 rtr
929 1.210 rtr return EOPNOTSUPP;
930 1.210 rtr }
931 1.210 rtr
932 1.211 rtr static int
933 1.221 rtr udp_connect(struct socket *so, struct sockaddr *nam, struct lwp *l)
934 1.211 rtr {
935 1.211 rtr struct inpcb *inp = sotoinpcb(so);
936 1.211 rtr int error = 0;
937 1.211 rtr int s;
938 1.211 rtr
939 1.211 rtr KASSERT(solocked(so));
940 1.211 rtr KASSERT(inp != NULL);
941 1.211 rtr KASSERT(nam != NULL);
942 1.211 rtr
943 1.211 rtr s = splsoftnet();
944 1.221 rtr error = in_pcbconnect(inp, (struct sockaddr_in *)nam, l);
945 1.211 rtr if (! error)
946 1.211 rtr soisconnected(so);
947 1.211 rtr splx(s);
948 1.211 rtr return error;
949 1.211 rtr }
950 1.210 rtr
951 1.210 rtr static int
952 1.217 rtr udp_connect2(struct socket *so, struct socket *so2)
953 1.217 rtr {
954 1.217 rtr KASSERT(solocked(so));
955 1.217 rtr
956 1.217 rtr return EOPNOTSUPP;
957 1.217 rtr }
958 1.217 rtr
959 1.217 rtr static int
960 1.212 rtr udp_disconnect(struct socket *so)
961 1.212 rtr {
962 1.212 rtr struct inpcb *inp = sotoinpcb(so);
963 1.212 rtr int s;
964 1.212 rtr
965 1.212 rtr KASSERT(solocked(so));
966 1.212 rtr KASSERT(inp != NULL);
967 1.212 rtr
968 1.212 rtr s = splsoftnet();
969 1.212 rtr /*soisdisconnected(so);*/
970 1.212 rtr so->so_state &= ~SS_ISCONNECTED; /* XXX */
971 1.212 rtr in_pcbdisconnect(inp);
972 1.212 rtr inp->inp_laddr = zeroin_addr; /* XXX */
973 1.212 rtr in_pcbstate(inp, INP_BOUND); /* XXX */
974 1.212 rtr splx(s);
975 1.212 rtr
976 1.212 rtr return 0;
977 1.212 rtr }
978 1.212 rtr
979 1.212 rtr static int
980 1.212 rtr udp_shutdown(struct socket *so)
981 1.212 rtr {
982 1.212 rtr int s;
983 1.212 rtr
984 1.212 rtr KASSERT(solocked(so));
985 1.212 rtr
986 1.212 rtr s = splsoftnet();
987 1.212 rtr socantsendmore(so);
988 1.212 rtr splx(s);
989 1.212 rtr
990 1.212 rtr return 0;
991 1.212 rtr }
992 1.212 rtr
993 1.212 rtr static int
994 1.212 rtr udp_abort(struct socket *so)
995 1.212 rtr {
996 1.212 rtr KASSERT(solocked(so));
997 1.212 rtr
998 1.212 rtr panic("udp_abort");
999 1.212 rtr
1000 1.212 rtr return EOPNOTSUPP;
1001 1.212 rtr }
1002 1.212 rtr
1003 1.212 rtr static int
1004 1.202 rtr udp_ioctl(struct socket *so, u_long cmd, void *nam, struct ifnet *ifp)
1005 1.200 rtr {
1006 1.202 rtr return in_control(so, cmd, nam, ifp);
1007 1.200 rtr }
1008 1.200 rtr
1009 1.200 rtr static int
1010 1.203 rtr udp_stat(struct socket *so, struct stat *ub)
1011 1.203 rtr {
1012 1.206 rtr KASSERT(solocked(so));
1013 1.206 rtr
1014 1.205 rtr /* stat: don't bother with a blocksize. */
1015 1.205 rtr return 0;
1016 1.203 rtr }
1017 1.203 rtr
1018 1.203 rtr static int
1019 1.219 rtr udp_peeraddr(struct socket *so, struct sockaddr *nam)
1020 1.207 rtr {
1021 1.213 rtr int s;
1022 1.213 rtr
1023 1.207 rtr KASSERT(solocked(so));
1024 1.207 rtr KASSERT(sotoinpcb(so) != NULL);
1025 1.207 rtr KASSERT(nam != NULL);
1026 1.207 rtr
1027 1.213 rtr s = splsoftnet();
1028 1.219 rtr in_setpeeraddr(sotoinpcb(so), (struct sockaddr_in *)nam);
1029 1.213 rtr splx(s);
1030 1.213 rtr
1031 1.207 rtr return 0;
1032 1.207 rtr }
1033 1.207 rtr
1034 1.207 rtr static int
1035 1.219 rtr udp_sockaddr(struct socket *so, struct sockaddr *nam)
1036 1.207 rtr {
1037 1.213 rtr int s;
1038 1.213 rtr
1039 1.207 rtr KASSERT(solocked(so));
1040 1.207 rtr KASSERT(sotoinpcb(so) != NULL);
1041 1.207 rtr KASSERT(nam != NULL);
1042 1.207 rtr
1043 1.213 rtr s = splsoftnet();
1044 1.219 rtr in_setsockaddr(sotoinpcb(so), (struct sockaddr_in *)nam);
1045 1.213 rtr splx(s);
1046 1.213 rtr
1047 1.207 rtr return 0;
1048 1.207 rtr }
1049 1.207 rtr
1050 1.207 rtr static int
1051 1.216 rtr udp_rcvd(struct socket *so, int flags, struct lwp *l)
1052 1.216 rtr {
1053 1.216 rtr KASSERT(solocked(so));
1054 1.216 rtr
1055 1.216 rtr return EOPNOTSUPP;
1056 1.216 rtr }
1057 1.216 rtr
1058 1.216 rtr static int
1059 1.209 rtr udp_recvoob(struct socket *so, struct mbuf *m, int flags)
1060 1.209 rtr {
1061 1.209 rtr KASSERT(solocked(so));
1062 1.209 rtr
1063 1.209 rtr return EOPNOTSUPP;
1064 1.209 rtr }
1065 1.209 rtr
1066 1.209 rtr static int
1067 1.221 rtr udp_send(struct socket *so, struct mbuf *m, struct sockaddr *nam,
1068 1.215 rtr struct mbuf *control, struct lwp *l)
1069 1.215 rtr {
1070 1.215 rtr struct inpcb *inp = sotoinpcb(so);
1071 1.215 rtr int error = 0;
1072 1.215 rtr struct in_addr laddr; /* XXX */
1073 1.215 rtr int s;
1074 1.215 rtr
1075 1.215 rtr KASSERT(solocked(so));
1076 1.215 rtr KASSERT(inp != NULL);
1077 1.215 rtr KASSERT(m != NULL);
1078 1.215 rtr
1079 1.215 rtr if (control && control->m_len) {
1080 1.215 rtr m_freem(control);
1081 1.215 rtr m_freem(m);
1082 1.215 rtr return EINVAL;
1083 1.215 rtr }
1084 1.215 rtr
1085 1.215 rtr memset(&laddr, 0, sizeof laddr);
1086 1.215 rtr
1087 1.215 rtr s = splsoftnet();
1088 1.215 rtr if (nam) {
1089 1.215 rtr laddr = inp->inp_laddr; /* XXX */
1090 1.215 rtr if ((so->so_state & SS_ISCONNECTED) != 0) {
1091 1.215 rtr error = EISCONN;
1092 1.215 rtr goto die;
1093 1.215 rtr }
1094 1.221 rtr error = in_pcbconnect(inp, (struct sockaddr_in *)nam, l);
1095 1.215 rtr if (error)
1096 1.215 rtr goto die;
1097 1.215 rtr } else {
1098 1.215 rtr if ((so->so_state & SS_ISCONNECTED) == 0) {
1099 1.215 rtr error = ENOTCONN;
1100 1.215 rtr goto die;
1101 1.215 rtr }
1102 1.215 rtr }
1103 1.215 rtr error = udp_output(m, inp);
1104 1.215 rtr m = NULL;
1105 1.215 rtr if (nam) {
1106 1.215 rtr in_pcbdisconnect(inp);
1107 1.215 rtr inp->inp_laddr = laddr; /* XXX */
1108 1.215 rtr in_pcbstate(inp, INP_BOUND); /* XXX */
1109 1.215 rtr }
1110 1.215 rtr die:
1111 1.215 rtr if (m)
1112 1.215 rtr m_freem(m);
1113 1.215 rtr
1114 1.215 rtr splx(s);
1115 1.215 rtr return error;
1116 1.215 rtr }
1117 1.215 rtr
1118 1.215 rtr static int
1119 1.209 rtr udp_sendoob(struct socket *so, struct mbuf *m, struct mbuf *control)
1120 1.209 rtr {
1121 1.209 rtr KASSERT(solocked(so));
1122 1.209 rtr
1123 1.209 rtr m_freem(m);
1124 1.209 rtr m_freem(control);
1125 1.209 rtr
1126 1.209 rtr return EOPNOTSUPP;
1127 1.209 rtr }
1128 1.209 rtr
1129 1.209 rtr static int
1130 1.217 rtr udp_purgeif(struct socket *so, struct ifnet *ifp)
1131 1.217 rtr {
1132 1.217 rtr int s;
1133 1.217 rtr
1134 1.217 rtr s = splsoftnet();
1135 1.217 rtr mutex_enter(softnet_lock);
1136 1.230 ozaki in_pcbpurgeif0(&udbtable, ifp);
1137 1.230 ozaki #ifdef NET_MPSAFE
1138 1.230 ozaki mutex_exit(softnet_lock);
1139 1.229 knakahar #endif
1140 1.217 rtr in_purgeif(ifp);
1141 1.230 ozaki #ifdef NET_MPSAFE
1142 1.230 ozaki mutex_enter(softnet_lock);
1143 1.230 ozaki #endif
1144 1.217 rtr in_pcbpurgeif(&udbtable, ifp);
1145 1.217 rtr mutex_exit(softnet_lock);
1146 1.217 rtr splx(s);
1147 1.217 rtr
1148 1.217 rtr return 0;
1149 1.217 rtr }
1150 1.217 rtr
1151 1.217 rtr static int
1152 1.166 thorpej sysctl_net_inet_udp_stats(SYSCTLFN_ARGS)
1153 1.166 thorpej {
1154 1.166 thorpej
1155 1.172 thorpej return (NETSTAT_SYSCTL(udpstat_percpu, UDP_NSTATS));
1156 1.166 thorpej }
1157 1.166 thorpej
1158 1.13 mycroft /*
1159 1.13 mycroft * Sysctl for udp variables.
1160 1.13 mycroft */
1161 1.179 pooka static void
1162 1.179 pooka sysctl_net_inet_udp_setup(struct sysctllog **clog)
1163 1.13 mycroft {
1164 1.194 pooka
1165 1.116 atatat sysctl_createv(clog, 0, NULL, NULL,
1166 1.116 atatat CTLFLAG_PERMANENT,
1167 1.114 atatat CTLTYPE_NODE, "inet", NULL,
1168 1.114 atatat NULL, 0, NULL, 0,
1169 1.114 atatat CTL_NET, PF_INET, CTL_EOL);
1170 1.116 atatat sysctl_createv(clog, 0, NULL, NULL,
1171 1.116 atatat CTLFLAG_PERMANENT,
1172 1.122 atatat CTLTYPE_NODE, "udp",
1173 1.122 atatat SYSCTL_DESCR("UDPv4 related settings"),
1174 1.114 atatat NULL, 0, NULL, 0,
1175 1.114 atatat CTL_NET, PF_INET, IPPROTO_UDP, CTL_EOL);
1176 1.114 atatat
1177 1.116 atatat sysctl_createv(clog, 0, NULL, NULL,
1178 1.116 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1179 1.122 atatat CTLTYPE_INT, "checksum",
1180 1.123 heas SYSCTL_DESCR("Compute UDP checksums"),
1181 1.114 atatat NULL, 0, &udpcksum, 0,
1182 1.114 atatat CTL_NET, PF_INET, IPPROTO_UDP, UDPCTL_CHECKSUM,
1183 1.114 atatat CTL_EOL);
1184 1.116 atatat sysctl_createv(clog, 0, NULL, NULL,
1185 1.116 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1186 1.122 atatat CTLTYPE_INT, "sendspace",
1187 1.122 atatat SYSCTL_DESCR("Default UDP send buffer size"),
1188 1.114 atatat NULL, 0, &udp_sendspace, 0,
1189 1.114 atatat CTL_NET, PF_INET, IPPROTO_UDP, UDPCTL_SENDSPACE,
1190 1.114 atatat CTL_EOL);
1191 1.116 atatat sysctl_createv(clog, 0, NULL, NULL,
1192 1.116 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1193 1.122 atatat CTLTYPE_INT, "recvspace",
1194 1.122 atatat SYSCTL_DESCR("Default UDP receive buffer size"),
1195 1.114 atatat NULL, 0, &udp_recvspace, 0,
1196 1.114 atatat CTL_NET, PF_INET, IPPROTO_UDP, UDPCTL_RECVSPACE,
1197 1.114 atatat CTL_EOL);
1198 1.125 thorpej sysctl_createv(clog, 0, NULL, NULL,
1199 1.125 thorpej CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1200 1.125 thorpej CTLTYPE_INT, "do_loopback_cksum",
1201 1.125 thorpej SYSCTL_DESCR("Perform UDP checksum on loopback"),
1202 1.125 thorpej NULL, 0, &udp_do_loopback_cksum, 0,
1203 1.125 thorpej CTL_NET, PF_INET, IPPROTO_UDP, UDPCTL_LOOPBACKCKSUM,
1204 1.125 thorpej CTL_EOL);
1205 1.132 atatat sysctl_createv(clog, 0, NULL, NULL,
1206 1.132 atatat CTLFLAG_PERMANENT,
1207 1.134 atatat CTLTYPE_STRUCT, "pcblist",
1208 1.132 atatat SYSCTL_DESCR("UDP protocol control block list"),
1209 1.132 atatat sysctl_inpcblist, 0, &udbtable, 0,
1210 1.132 atatat CTL_NET, PF_INET, IPPROTO_UDP, CTL_CREATE,
1211 1.132 atatat CTL_EOL);
1212 1.139 elad sysctl_createv(clog, 0, NULL, NULL,
1213 1.139 elad CTLFLAG_PERMANENT,
1214 1.139 elad CTLTYPE_STRUCT, "stats",
1215 1.139 elad SYSCTL_DESCR("UDP statistics"),
1216 1.166 thorpej sysctl_net_inet_udp_stats, 0, NULL, 0,
1217 1.139 elad CTL_NET, PF_INET, IPPROTO_UDP, UDPCTL_STATS,
1218 1.139 elad CTL_EOL);
1219 1.1 cgd }
1220 1.72 itojun #endif
1221 1.130 manu
1222 1.166 thorpej void
1223 1.166 thorpej udp_statinc(u_int stat)
1224 1.166 thorpej {
1225 1.166 thorpej
1226 1.166 thorpej KASSERT(stat < UDP_NSTATS);
1227 1.166 thorpej UDP_STATINC(stat);
1228 1.166 thorpej }
1229 1.166 thorpej
1230 1.190 christos #if defined(INET) && defined(IPSEC)
1231 1.130 manu /*
1232 1.130 manu * Returns:
1233 1.130 manu * 1 if the packet was processed
1234 1.130 manu * 0 if normal UDP processing should take place
1235 1.144 manu * -1 if an error occurent and m was freed
1236 1.130 manu */
1237 1.130 manu static int
1238 1.154 yamt udp4_espinudp(struct mbuf **mp, int off, struct sockaddr *src,
1239 1.151 christos struct socket *so)
1240 1.130 manu {
1241 1.130 manu size_t len;
1242 1.158 christos void *data;
1243 1.130 manu struct inpcb *inp;
1244 1.130 manu size_t skip = 0;
1245 1.130 manu size_t minlen;
1246 1.130 manu size_t iphdrlen;
1247 1.130 manu struct ip *ip;
1248 1.136 manu struct m_tag *tag;
1249 1.136 manu struct udphdr *udphdr;
1250 1.136 manu u_int16_t sport, dport;
1251 1.144 manu struct mbuf *m = *mp;
1252 1.130 manu
1253 1.131 perry /*
1254 1.130 manu * Collapse the mbuf chain if the first mbuf is too short
1255 1.130 manu * The longest case is: UDP + non ESP marker + ESP
1256 1.130 manu */
1257 1.130 manu minlen = off + sizeof(u_int64_t) + sizeof(struct esp);
1258 1.130 manu if (minlen > m->m_pkthdr.len)
1259 1.130 manu minlen = m->m_pkthdr.len;
1260 1.130 manu
1261 1.130 manu if (m->m_len < minlen) {
1262 1.144 manu if ((*mp = m_pullup(m, minlen)) == NULL) {
1263 1.130 manu printf("udp4_espinudp: m_pullup failed\n");
1264 1.144 manu return -1;
1265 1.130 manu }
1266 1.144 manu m = *mp;
1267 1.130 manu }
1268 1.130 manu
1269 1.131 perry len = m->m_len - off;
1270 1.158 christos data = mtod(m, char *) + off;
1271 1.130 manu inp = sotoinpcb(so);
1272 1.130 manu
1273 1.130 manu /* Ignore keepalive packets */
1274 1.158 christos if ((len == 1) && (*(unsigned char *)data == 0xff)) {
1275 1.188 christos m_free(m);
1276 1.188 christos *mp = NULL; /* avoid any further processiong by caller ... */
1277 1.130 manu return 1;
1278 1.130 manu }
1279 1.130 manu
1280 1.131 perry /*
1281 1.131 perry * Check that the payload is long enough to hold
1282 1.130 manu * an ESP header and compute the length of encapsulation
1283 1.131 perry * header to remove
1284 1.130 manu */
1285 1.130 manu if (inp->inp_flags & INP_ESPINUDP) {
1286 1.130 manu u_int32_t *st = (u_int32_t *)data;
1287 1.130 manu
1288 1.130 manu if ((len <= sizeof(struct esp)) || (*st == 0))
1289 1.130 manu return 0; /* Normal UDP processing */
1290 1.130 manu
1291 1.130 manu skip = sizeof(struct udphdr);
1292 1.130 manu }
1293 1.130 manu
1294 1.130 manu if (inp->inp_flags & INP_ESPINUDP_NON_IKE) {
1295 1.142 kleink u_int32_t *st = (u_int32_t *)data;
1296 1.130 manu
1297 1.130 manu if ((len <= sizeof(u_int64_t) + sizeof(struct esp))
1298 1.142 kleink || ((st[0] | st[1]) != 0))
1299 1.130 manu return 0; /* Normal UDP processing */
1300 1.131 perry
1301 1.130 manu skip = sizeof(struct udphdr) + sizeof(u_int64_t);
1302 1.130 manu }
1303 1.130 manu
1304 1.130 manu /*
1305 1.136 manu * Get the UDP ports. They are handled in network
1306 1.136 manu * order everywhere in IPSEC_NAT_T code.
1307 1.136 manu */
1308 1.158 christos udphdr = (struct udphdr *)((char *)data - skip);
1309 1.136 manu sport = udphdr->uh_sport;
1310 1.136 manu dport = udphdr->uh_dport;
1311 1.136 manu
1312 1.136 manu /*
1313 1.130 manu * Remove the UDP header (and possibly the non ESP marker)
1314 1.130 manu * IP header lendth is iphdrlen
1315 1.131 perry * Before:
1316 1.130 manu * <--- off --->
1317 1.130 manu * +----+------+-----+
1318 1.130 manu * | IP | UDP | ESP |
1319 1.130 manu * +----+------+-----+
1320 1.130 manu * <-skip->
1321 1.130 manu * After:
1322 1.130 manu * +----+-----+
1323 1.130 manu * | IP | ESP |
1324 1.130 manu * +----+-----+
1325 1.130 manu * <-skip->
1326 1.130 manu */
1327 1.130 manu iphdrlen = off - sizeof(struct udphdr);
1328 1.158 christos memmove(mtod(m, char *) + skip, mtod(m, void *), iphdrlen);
1329 1.130 manu m_adj(m, skip);
1330 1.130 manu
1331 1.130 manu ip = mtod(m, struct ip *);
1332 1.130 manu ip->ip_len = htons(ntohs(ip->ip_len) - skip);
1333 1.130 manu ip->ip_p = IPPROTO_ESP;
1334 1.130 manu
1335 1.130 manu /*
1336 1.188 christos * We have modified the packet - it is now ESP, so we should not
1337 1.188 christos * return to UDP processing ...
1338 1.188 christos *
1339 1.136 manu * Add a PACKET_TAG_IPSEC_NAT_T_PORT tag to remember
1340 1.136 manu * the source UDP port. This is required if we want
1341 1.136 manu * to select the right SPD for multiple hosts behind
1342 1.136 manu * same NAT
1343 1.136 manu */
1344 1.137 manu if ((tag = m_tag_get(PACKET_TAG_IPSEC_NAT_T_PORTS,
1345 1.137 manu sizeof(sport) + sizeof(dport), M_DONTWAIT)) == NULL) {
1346 1.137 manu printf("udp4_espinudp: m_tag_get failed\n");
1347 1.188 christos m_freem(m);
1348 1.188 christos return -1;
1349 1.137 manu }
1350 1.136 manu ((u_int16_t *)(tag + 1))[0] = sport;
1351 1.136 manu ((u_int16_t *)(tag + 1))[1] = dport;
1352 1.188 christos m_tag_prepend(m, tag);
1353 1.136 manu
1354 1.199 christos if (ipsec_used)
1355 1.199 christos ipsec4_common_input(m, iphdrlen, IPPROTO_ESP);
1356 1.199 christos /* XXX: else */
1357 1.130 manu
1358 1.185 liamjfoy /* We handled it, it shouldn't be handled by UDP */
1359 1.188 christos *mp = NULL; /* avoid free by caller ... */
1360 1.130 manu return 1;
1361 1.130 manu }
1362 1.130 manu #endif
1363 1.195 rmind
1364 1.197 rmind PR_WRAP_USRREQS(udp)
1365 1.197 rmind #define udp_attach udp_attach_wrapper
1366 1.197 rmind #define udp_detach udp_detach_wrapper
1367 1.208 rtr #define udp_accept udp_accept_wrapper
1368 1.210 rtr #define udp_bind udp_bind_wrapper
1369 1.210 rtr #define udp_listen udp_listen_wrapper
1370 1.211 rtr #define udp_connect udp_connect_wrapper
1371 1.217 rtr #define udp_connect2 udp_connect2_wrapper
1372 1.212 rtr #define udp_disconnect udp_disconnect_wrapper
1373 1.212 rtr #define udp_shutdown udp_shutdown_wrapper
1374 1.212 rtr #define udp_abort udp_abort_wrapper
1375 1.200 rtr #define udp_ioctl udp_ioctl_wrapper
1376 1.203 rtr #define udp_stat udp_stat_wrapper
1377 1.207 rtr #define udp_peeraddr udp_peeraddr_wrapper
1378 1.207 rtr #define udp_sockaddr udp_sockaddr_wrapper
1379 1.216 rtr #define udp_rcvd udp_rcvd_wrapper
1380 1.209 rtr #define udp_recvoob udp_recvoob_wrapper
1381 1.215 rtr #define udp_send udp_send_wrapper
1382 1.209 rtr #define udp_sendoob udp_sendoob_wrapper
1383 1.217 rtr #define udp_purgeif udp_purgeif_wrapper
1384 1.195 rmind
1385 1.195 rmind const struct pr_usrreqs udp_usrreqs = {
1386 1.196 rmind .pr_attach = udp_attach,
1387 1.196 rmind .pr_detach = udp_detach,
1388 1.208 rtr .pr_accept = udp_accept,
1389 1.210 rtr .pr_bind = udp_bind,
1390 1.210 rtr .pr_listen = udp_listen,
1391 1.211 rtr .pr_connect = udp_connect,
1392 1.217 rtr .pr_connect2 = udp_connect2,
1393 1.212 rtr .pr_disconnect = udp_disconnect,
1394 1.212 rtr .pr_shutdown = udp_shutdown,
1395 1.212 rtr .pr_abort = udp_abort,
1396 1.200 rtr .pr_ioctl = udp_ioctl,
1397 1.203 rtr .pr_stat = udp_stat,
1398 1.207 rtr .pr_peeraddr = udp_peeraddr,
1399 1.207 rtr .pr_sockaddr = udp_sockaddr,
1400 1.216 rtr .pr_rcvd = udp_rcvd,
1401 1.209 rtr .pr_recvoob = udp_recvoob,
1402 1.215 rtr .pr_send = udp_send,
1403 1.209 rtr .pr_sendoob = udp_sendoob,
1404 1.217 rtr .pr_purgeif = udp_purgeif,
1405 1.195 rmind };
1406