1 /**
2 * @file
3 * User Datagram Protocol module\n
4 * The code for the User Datagram Protocol UDP & UDPLite (RFC 3828).\n
5 * See also @ref udp_raw
6 *
7 * @defgroup udp_raw UDP
8 * @ingroup callbackstyle_api
9 * User Datagram Protocol module\n
10 * @see @ref raw_api and @ref netconn
11 */
12
13 /*
14 * Copyright (c) 2001-2004 Swedish Institute of Computer Science.
15 * All rights reserved.
16 *
17 * Redistribution and use in source and binary forms, with or without modification,
18 * are permitted provided that the following conditions are met:
19 *
20 * 1. Redistributions of source code must retain the above copyright notice,
21 * this list of conditions and the following disclaimer.
22 * 2. Redistributions in binary form must reproduce the above copyright notice,
23 * this list of conditions and the following disclaimer in the documentation
24 * and/or other materials provided with the distribution.
25 * 3. The name of the author may not be used to endorse or promote products
26 * derived from this software without specific prior written permission.
27 *
28 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
29 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
30 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
31 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
32 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
33 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
36 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
37 * OF SUCH DAMAGE.
38 *
39 * This file is part of the lwIP TCP/IP stack.
40 *
41 * Author: Adam Dunkels <adam@sics.se>
42 *
43 */
44
45 /* @todo Check the use of '(struct udp_pcb).chksum_len_rx'!
46 */
47
48 #include "lwip/opt.h"
49
50 #if LWIP_UDP /* don't build if not configured for use in lwipopts.h */
51
52 #include "lwip/udp.h"
53 #include "lwip/def.h"
54 #include "lwip/memp.h"
55 #include "lwip/inet_chksum.h"
56 #include "lwip/ip_addr.h"
57 #include "lwip/ip6.h"
58 #include "lwip/ip6_addr.h"
59 #include "lwip/netif.h"
60 #include "lwip/icmp.h"
61 #include "lwip/icmp6.h"
62 #include "lwip/stats.h"
63 #include "lwip/snmp.h"
64 #include "lwip/dhcp.h"
65
66 #include <string.h>
67
68 #ifndef UDP_LOCAL_PORT_RANGE_START
69 /* From http://www.iana.org/assignments/port-numbers:
70 "The Dynamic and/or Private Ports are those from 49152 through 65535" */
71 #define UDP_LOCAL_PORT_RANGE_START 0xc000
72 #define UDP_LOCAL_PORT_RANGE_END 0xffff
73 #define UDP_ENSURE_LOCAL_PORT_RANGE(port) ((u16_t)(((port) & ~UDP_LOCAL_PORT_RANGE_START) + UDP_LOCAL_PORT_RANGE_START))
74 #endif
75
76 /* last local UDP port */
77 static u16_t udp_port = UDP_LOCAL_PORT_RANGE_START;
78
79 /* The list of UDP PCBs */
80 /* exported in udp.h (was static) */
81 struct udp_pcb *udp_pcbs;
82
83 /**
84 * Initialize this module.
85 */
86 void
udp_init(void)87 udp_init(void)
88 {
89 #if LWIP_RANDOMIZE_INITIAL_LOCAL_PORTS && defined(LWIP_RAND)
90 udp_port = UDP_ENSURE_LOCAL_PORT_RANGE(LWIP_RAND());
91 #endif /* LWIP_RANDOMIZE_INITIAL_LOCAL_PORTS && defined(LWIP_RAND) */
92 }
93
94 /**
95 * Allocate a new local UDP port.
96 *
97 * @return a new (free) local UDP port number
98 */
99 static u16_t
udp_new_port(void)100 udp_new_port(void)
101 {
102 u16_t n = 0;
103 struct udp_pcb *pcb;
104
105 again:
106 if (udp_port++ == UDP_LOCAL_PORT_RANGE_END) {
107 udp_port = UDP_LOCAL_PORT_RANGE_START;
108 }
109 /* Check all PCBs. */
110 for (pcb = udp_pcbs; pcb != NULL; pcb = pcb->next) {
111 if (pcb->local_port == udp_port) {
112 if (++n > (UDP_LOCAL_PORT_RANGE_END - UDP_LOCAL_PORT_RANGE_START)) {
113 return 0;
114 }
115 goto again;
116 }
117 }
118 return udp_port;
119 }
120
121 /** Common code to see if the current input packet matches the pcb
122 * (current input packet is accessed via ip(4/6)_current_* macros)
123 *
124 * @param pcb pcb to check
125 * @param inp network interface on which the datagram was received (only used for IPv4)
126 * @param broadcast 1 if his is an IPv4 broadcast (global or subnet-only), 0 otherwise (only used for IPv4)
127 * @return 1 on match, 0 otherwise
128 */
129 static u8_t
udp_input_local_match(struct udp_pcb * pcb,struct netif * inp,u8_t broadcast)130 udp_input_local_match(struct udp_pcb *pcb, struct netif *inp, u8_t broadcast)
131 {
132 LWIP_UNUSED_ARG(inp); /* in IPv6 only case */
133 LWIP_UNUSED_ARG(broadcast); /* in IPv6 only case */
134
135 /* Dual-stack: PCBs listening to any IP type also listen to any IP address */
136 if (IP_IS_ANY_TYPE_VAL(pcb->local_ip)) {
137 #if LWIP_IPV4 && IP_SOF_BROADCAST_RECV
138 if ((broadcast != 0) && !ip_get_option(pcb, SOF_BROADCAST)) {
139 return 0;
140 }
141 #endif /* LWIP_IPV4 && IP_SOF_BROADCAST_RECV */
142 return 1;
143 }
144
145 /* Only need to check PCB if incoming IP version matches PCB IP version */
146 if (IP_ADDR_PCB_VERSION_MATCH_EXACT(pcb, ip_current_dest_addr())) {
147 #if LWIP_IPV4
148 /* Special case: IPv4 broadcast: all or broadcasts in my subnet
149 * Note: broadcast variable can only be 1 if it is an IPv4 broadcast */
150 if (broadcast != 0) {
151 #if IP_SOF_BROADCAST_RECV
152 if (ip_get_option(pcb, SOF_BROADCAST))
153 #endif /* IP_SOF_BROADCAST_RECV */
154 {
155 if (ip4_addr_isany(ip_2_ip4(&pcb->local_ip)) ||
156 ((ip4_current_dest_addr()->addr == IPADDR_BROADCAST)) ||
157 ip4_addr_netcmp(ip_2_ip4(&pcb->local_ip), ip4_current_dest_addr(), netif_ip4_netmask(inp))) {
158 return 1;
159 }
160 }
161 } else
162 #endif /* LWIP_IPV4 */
163 /* Handle IPv4 and IPv6: all or exact match */
164 if (ip_addr_isany(&pcb->local_ip) || ip_addr_cmp(&pcb->local_ip, ip_current_dest_addr())) {
165 return 1;
166 }
167 }
168
169 return 0;
170 }
171
172 /**
173 * Process an incoming UDP datagram.
174 *
175 * Given an incoming UDP datagram (as a chain of pbufs) this function
176 * finds a corresponding UDP PCB and hands over the pbuf to the pcbs
177 * recv function. If no pcb is found or the datagram is incorrect, the
178 * pbuf is freed.
179 *
180 * @param p pbuf to be demultiplexed to a UDP PCB (p->payload pointing to the UDP header)
181 * @param inp network interface on which the datagram was received.
182 *
183 */
184 void
udp_input(struct pbuf * p,struct netif * inp)185 udp_input(struct pbuf *p, struct netif *inp)
186 {
187 struct udp_hdr *udphdr;
188 struct udp_pcb *pcb, *prev;
189 struct udp_pcb *uncon_pcb;
190 u16_t src, dest;
191 u8_t broadcast;
192 u8_t for_us = 0;
193
194 LWIP_UNUSED_ARG(inp);
195
196 PERF_START;
197
198 UDP_STATS_INC(udp.recv);
199
200 /* Check minimum length (UDP header) */
201 if (p->len < UDP_HLEN) {
202 /* drop short packets */
203 LWIP_DEBUGF(UDP_DEBUG,
204 ("udp_input: short UDP datagram (%"U16_F" bytes) discarded\n", p->tot_len));
205 UDP_STATS_INC(udp.lenerr);
206 UDP_STATS_INC(udp.drop);
207 MIB2_STATS_INC(mib2.udpinerrors);
208 pbuf_free(p);
209 goto end;
210 }
211
212 udphdr = (struct udp_hdr *)p->payload;
213
214 /* is broadcast packet ? */
215 broadcast = ip_addr_isbroadcast(ip_current_dest_addr(), ip_current_netif());
216
217 LWIP_DEBUGF(UDP_DEBUG, ("udp_input: received datagram of length %"U16_F"\n", p->tot_len));
218
219 /* convert src and dest ports to host byte order */
220 src = lwip_ntohs(udphdr->src);
221 dest = lwip_ntohs(udphdr->dest);
222
223 udp_debug_print(udphdr);
224
225 /* print the UDP source and destination */
226 LWIP_DEBUGF(UDP_DEBUG, ("udp ("));
227 ip_addr_debug_print(UDP_DEBUG, ip_current_dest_addr());
228 LWIP_DEBUGF(UDP_DEBUG, (", %"U16_F") <-- (", lwip_ntohs(udphdr->dest)));
229 ip_addr_debug_print(UDP_DEBUG, ip_current_src_addr());
230 LWIP_DEBUGF(UDP_DEBUG, (", %"U16_F")\n", lwip_ntohs(udphdr->src)));
231
232 pcb = NULL;
233 prev = NULL;
234 uncon_pcb = NULL;
235 /* Iterate through the UDP pcb list for a matching pcb.
236 * 'Perfect match' pcbs (connected to the remote port & ip address) are
237 * preferred. If no perfect match is found, the first unconnected pcb that
238 * matches the local port and ip address gets the datagram. */
239 for (pcb = udp_pcbs; pcb != NULL; pcb = pcb->next) {
240 /* print the PCB local and remote address */
241 LWIP_DEBUGF(UDP_DEBUG, ("pcb ("));
242 ip_addr_debug_print(UDP_DEBUG, &pcb->local_ip);
243 LWIP_DEBUGF(UDP_DEBUG, (", %"U16_F") <-- (", pcb->local_port));
244 ip_addr_debug_print(UDP_DEBUG, &pcb->remote_ip);
245 LWIP_DEBUGF(UDP_DEBUG, (", %"U16_F")\n", pcb->remote_port));
246
247 /* compare PCB local addr+port to UDP destination addr+port */
248 if ((pcb->local_port == dest) &&
249 (udp_input_local_match(pcb, inp, broadcast) != 0)) {
250 if (((pcb->flags & UDP_FLAGS_CONNECTED) == 0) &&
251 ((uncon_pcb == NULL)
252 #if SO_REUSE
253 /* prefer specific IPs over cath-all */
254 || !ip_addr_isany(&pcb->local_ip)
255 #endif /* SO_REUSE */
256 )) {
257 /* the first unconnected matching PCB */
258 uncon_pcb = pcb;
259 }
260
261 /* compare PCB remote addr+port to UDP source addr+port */
262 if ((pcb->remote_port == src) &&
263 (ip_addr_isany_val(pcb->remote_ip) ||
264 ip_addr_cmp(&pcb->remote_ip, ip_current_src_addr()))) {
265 /* the first fully matching PCB */
266 if (prev != NULL) {
267 /* move the pcb to the front of udp_pcbs so that is
268 found faster next time */
269 prev->next = pcb->next;
270 pcb->next = udp_pcbs;
271 udp_pcbs = pcb;
272 } else {
273 UDP_STATS_INC(udp.cachehit);
274 }
275 break;
276 }
277 }
278
279 prev = pcb;
280 }
281 /* no fully matching pcb found? then look for an unconnected pcb */
282 if (pcb == NULL) {
283 pcb = uncon_pcb;
284 }
285
286 /* Check checksum if this is a match or if it was directed at us. */
287 if (pcb != NULL) {
288 for_us = 1;
289 } else {
290 #if LWIP_IPV6
291 if (ip_current_is_v6()) {
292 for_us = netif_get_ip6_addr_match(inp, ip6_current_dest_addr()) >= 0;
293 }
294 #endif /* LWIP_IPV6 */
295 #if LWIP_IPV4
296 if (!ip_current_is_v6()) {
297 for_us = ip4_addr_cmp(netif_ip4_addr(inp), ip4_current_dest_addr());
298 }
299 #endif /* LWIP_IPV4 */
300 }
301
302 if (for_us) {
303 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, ("udp_input: calculating checksum\n"));
304 #if CHECKSUM_CHECK_UDP
305 IF__NETIF_CHECKSUM_ENABLED(inp, CHECKSUM_CHECK_UDP) {
306 #if LWIP_UDPLITE
307 if (ip_current_header_proto() == IP_PROTO_UDPLITE) {
308 /* Do the UDP Lite checksum */
309 u16_t chklen = lwip_ntohs(udphdr->len);
310 if (chklen < sizeof(struct udp_hdr)) {
311 if (chklen == 0) {
312 /* For UDP-Lite, checksum length of 0 means checksum
313 over the complete packet (See RFC 3828 chap. 3.1) */
314 chklen = p->tot_len;
315 } else {
316 /* At least the UDP-Lite header must be covered by the
317 checksum! (Again, see RFC 3828 chap. 3.1) */
318 goto chkerr;
319 }
320 }
321 if (ip_chksum_pseudo_partial(p, IP_PROTO_UDPLITE,
322 p->tot_len, chklen,
323 ip_current_src_addr(), ip_current_dest_addr()) != 0) {
324 goto chkerr;
325 }
326 } else
327 #endif /* LWIP_UDPLITE */
328 {
329 if (udphdr->chksum != 0) {
330 if (ip_chksum_pseudo(p, IP_PROTO_UDP, p->tot_len,
331 ip_current_src_addr(),
332 ip_current_dest_addr()) != 0) {
333 goto chkerr;
334 }
335 }
336 }
337 }
338 #endif /* CHECKSUM_CHECK_UDP */
339 if (pbuf_header(p, -UDP_HLEN)) {
340 /* Can we cope with this failing? Just assert for now */
341 LWIP_ASSERT("pbuf_header failed\n", 0);
342 UDP_STATS_INC(udp.drop);
343 MIB2_STATS_INC(mib2.udpinerrors);
344 pbuf_free(p);
345 goto end;
346 }
347
348 if (pcb != NULL) {
349 MIB2_STATS_INC(mib2.udpindatagrams);
350 #if SO_REUSE && SO_REUSE_RXTOALL
351 if (ip_get_option(pcb, SOF_REUSEADDR) &&
352 (broadcast || ip_addr_ismulticast(ip_current_dest_addr()))) {
353 /* pass broadcast- or multicast packets to all multicast pcbs
354 if SOF_REUSEADDR is set on the first match */
355 struct udp_pcb *mpcb;
356 u8_t p_header_changed = 0;
357 s16_t hdrs_len = (s16_t)(ip_current_header_tot_len() + UDP_HLEN);
358 for (mpcb = udp_pcbs; mpcb != NULL; mpcb = mpcb->next) {
359 if (mpcb != pcb) {
360 /* compare PCB local addr+port to UDP destination addr+port */
361 if ((mpcb->local_port == dest) &&
362 (udp_input_local_match(mpcb, inp, broadcast) != 0)) {
363 /* pass a copy of the packet to all local matches */
364 if (mpcb->recv != NULL) {
365 struct pbuf *q;
366 /* for that, move payload to IP header again */
367 if (p_header_changed == 0) {
368 pbuf_header_force(p, hdrs_len);
369 p_header_changed = 1;
370 }
371 #if defined(__minix)
372 q = pchain_alloc(PBUF_RAW, p->tot_len);
373 #else /* !defined(__minix) */
374 q = pbuf_alloc(PBUF_RAW, p->tot_len, PBUF_RAM);
375 #endif /* !defined(__minix) */
376 if (q != NULL) {
377 err_t err = pbuf_copy(q, p);
378 if (err == ERR_OK) {
379 /* move payload to UDP data */
380 pbuf_header(q, -hdrs_len);
381 mpcb->recv(mpcb->recv_arg, mpcb, q, ip_current_src_addr(), src);
382 }
383 }
384 }
385 }
386 }
387 }
388 if (p_header_changed) {
389 /* and move payload to UDP data again */
390 pbuf_header(p, -hdrs_len);
391 }
392 }
393 #endif /* SO_REUSE && SO_REUSE_RXTOALL */
394 /* callback */
395 if (pcb->recv != NULL) {
396 /* now the recv function is responsible for freeing p */
397 pcb->recv(pcb->recv_arg, pcb, p, ip_current_src_addr(), src);
398 } else {
399 /* no recv function registered? then we have to free the pbuf! */
400 pbuf_free(p);
401 goto end;
402 }
403 } else {
404 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, ("udp_input: not for us.\n"));
405
406 #if LWIP_ICMP || LWIP_ICMP6
407 /* No match was found, send ICMP destination port unreachable unless
408 destination address was broadcast/multicast. */
409 if (!broadcast && !ip_addr_ismulticast(ip_current_dest_addr())) {
410 /* move payload pointer back to ip header */
411 pbuf_header_force(p, (s16_t)(ip_current_header_tot_len() + UDP_HLEN));
412 icmp_port_unreach(ip_current_is_v6(), p);
413 }
414 #endif /* LWIP_ICMP || LWIP_ICMP6 */
415 UDP_STATS_INC(udp.proterr);
416 UDP_STATS_INC(udp.drop);
417 MIB2_STATS_INC(mib2.udpnoports);
418 pbuf_free(p);
419 }
420 } else {
421 pbuf_free(p);
422 }
423 end:
424 PERF_STOP("udp_input");
425 return;
426 #if CHECKSUM_CHECK_UDP
427 chkerr:
428 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_LEVEL_SERIOUS,
429 ("udp_input: UDP (or UDP Lite) datagram discarded due to failing checksum\n"));
430 UDP_STATS_INC(udp.chkerr);
431 UDP_STATS_INC(udp.drop);
432 MIB2_STATS_INC(mib2.udpinerrors);
433 pbuf_free(p);
434 PERF_STOP("udp_input");
435 #endif /* CHECKSUM_CHECK_UDP */
436 }
437
438 /**
439 * @ingroup udp_raw
440 * Send data using UDP.
441 *
442 * @param pcb UDP PCB used to send the data.
443 * @param p chain of pbuf's to be sent.
444 *
445 * The datagram will be sent to the current remote_ip & remote_port
446 * stored in pcb. If the pcb is not bound to a port, it will
447 * automatically be bound to a random port.
448 *
449 * @return lwIP error code.
450 * - ERR_OK. Successful. No error occurred.
451 * - ERR_MEM. Out of memory.
452 * - ERR_RTE. Could not find route to destination address.
453 * - ERR_VAL. No PCB or PCB is dual-stack
454 * - More errors could be returned by lower protocol layers.
455 *
456 * @see udp_disconnect() udp_sendto()
457 */
458 err_t
udp_send(struct udp_pcb * pcb,struct pbuf * p)459 udp_send(struct udp_pcb *pcb, struct pbuf *p)
460 {
461 if ((pcb == NULL) || IP_IS_ANY_TYPE_VAL(pcb->remote_ip)) {
462 return ERR_VAL;
463 }
464
465 /* send to the packet using remote ip and port stored in the pcb */
466 return udp_sendto(pcb, p, &pcb->remote_ip, pcb->remote_port);
467 }
468
469 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
470 /** @ingroup udp_raw
471 * Same as udp_send() but with checksum
472 */
473 err_t
udp_send_chksum(struct udp_pcb * pcb,struct pbuf * p,u8_t have_chksum,u16_t chksum)474 udp_send_chksum(struct udp_pcb *pcb, struct pbuf *p,
475 u8_t have_chksum, u16_t chksum)
476 {
477 if ((pcb == NULL) || IP_IS_ANY_TYPE_VAL(pcb->remote_ip)) {
478 return ERR_VAL;
479 }
480
481 /* send to the packet using remote ip and port stored in the pcb */
482 return udp_sendto_chksum(pcb, p, &pcb->remote_ip, pcb->remote_port,
483 have_chksum, chksum);
484 }
485 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
486
487 /**
488 * @ingroup udp_raw
489 * Send data to a specified address using UDP.
490 *
491 * @param pcb UDP PCB used to send the data.
492 * @param p chain of pbuf's to be sent.
493 * @param dst_ip Destination IP address.
494 * @param dst_port Destination UDP port.
495 *
496 * dst_ip & dst_port are expected to be in the same byte order as in the pcb.
497 *
498 * If the PCB already has a remote address association, it will
499 * be restored after the data is sent.
500 *
501 * @return lwIP error code (@see udp_send for possible error codes)
502 *
503 * @see udp_disconnect() udp_send()
504 */
505 err_t
udp_sendto(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port)506 udp_sendto(struct udp_pcb *pcb, struct pbuf *p,
507 const ip_addr_t *dst_ip, u16_t dst_port)
508 {
509 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
510 return udp_sendto_chksum(pcb, p, dst_ip, dst_port, 0, 0);
511 }
512
513 /** @ingroup udp_raw
514 * Same as udp_sendto(), but with checksum */
515 err_t
udp_sendto_chksum(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port,u8_t have_chksum,u16_t chksum)516 udp_sendto_chksum(struct udp_pcb *pcb, struct pbuf *p, const ip_addr_t *dst_ip,
517 u16_t dst_port, u8_t have_chksum, u16_t chksum)
518 {
519 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
520 struct netif *netif;
521 const ip_addr_t *src_ip_route;
522
523 if ((pcb == NULL) || (dst_ip == NULL) || !IP_ADDR_PCB_VERSION_MATCH(pcb, dst_ip)) {
524 return ERR_VAL;
525 }
526
527 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, ("udp_send\n"));
528
529 if (IP_IS_ANY_TYPE_VAL(pcb->local_ip)) {
530 /* Don't call ip_route() with IP_ANY_TYPE */
531 src_ip_route = IP46_ADDR_ANY(IP_GET_TYPE(dst_ip));
532 } else {
533 src_ip_route = &pcb->local_ip;
534 }
535 LWIP_UNUSED_ARG(src_ip_route); /* IPv4 only and no source based routing */
536
537 #if LWIP_MULTICAST_TX_OPTIONS
538 netif = NULL;
539 if (ip_addr_ismulticast(dst_ip)) {
540 /* For IPv6, the interface to use for packets with a multicast destination
541 * is specified using an interface index. The same approach may be used for
542 * IPv4 as well, in which case it overrides the IPv4 multicast override
543 * address below. Here we have to look up the netif by going through the
544 * list, but by doing so we skip a route lookup. If the interface index has
545 * gone stale, we fall through and do the regular route lookup after all. */
546 if (pcb->mcast_ifindex != NETIF_NO_INDEX) {
547 netif = netif_get_by_index(pcb->mcast_ifindex);
548 }
549 #if LWIP_IPV4
550 else
551 #if LWIP_IPV6
552 if (IP_IS_V4(dst_ip))
553 #endif /* LWIP_IPV6 */
554 {
555 /* IPv4 does not use source-based routing by default, so we use an
556 administratively selected interface for multicast by default.
557 However, this can be overridden by setting an interface address
558 in pcb->mcast_ip4 that is used for routing. If this routing lookup
559 fails, we try regular routing as though no override was set. */
560 if (!ip4_addr_isany_val(pcb->mcast_ip4) &&
561 !ip4_addr_cmp(&pcb->mcast_ip4, IP4_ADDR_BROADCAST)) {
562 netif = ip4_route_src(ip_2_ip4(src_ip_route), &pcb->mcast_ip4);
563 }
564 }
565 #endif /* LWIP_IPV4 */
566 }
567
568 if (netif == NULL)
569 #endif /* LWIP_MULTICAST_TX_OPTIONS */
570 {
571 /* find the outgoing network interface for this packet */
572 netif = ip_route(src_ip_route, dst_ip);
573 }
574
575 /* no outgoing network interface could be found? */
576 if (netif == NULL) {
577 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_LEVEL_SERIOUS, ("udp_send: No route to "));
578 ip_addr_debug_print(UDP_DEBUG | LWIP_DBG_LEVEL_SERIOUS, dst_ip);
579 LWIP_DEBUGF(UDP_DEBUG, ("\n"));
580 UDP_STATS_INC(udp.rterr);
581 return ERR_RTE;
582 }
583 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
584 return udp_sendto_if_chksum(pcb, p, dst_ip, dst_port, netif, have_chksum, chksum);
585 #else /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
586 return udp_sendto_if(pcb, p, dst_ip, dst_port, netif);
587 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
588 }
589
590 /**
591 * @ingroup udp_raw
592 * Send data to a specified address using UDP.
593 * The netif used for sending can be specified.
594 *
595 * This function exists mainly for DHCP, to be able to send UDP packets
596 * on a netif that is still down.
597 *
598 * @param pcb UDP PCB used to send the data.
599 * @param p chain of pbuf's to be sent.
600 * @param dst_ip Destination IP address.
601 * @param dst_port Destination UDP port.
602 * @param netif the netif used for sending.
603 *
604 * dst_ip & dst_port are expected to be in the same byte order as in the pcb.
605 *
606 * @return lwIP error code (@see udp_send for possible error codes)
607 *
608 * @see udp_disconnect() udp_send()
609 */
610 err_t
udp_sendto_if(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port,struct netif * netif)611 udp_sendto_if(struct udp_pcb *pcb, struct pbuf *p,
612 const ip_addr_t *dst_ip, u16_t dst_port, struct netif *netif)
613 {
614 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
615 return udp_sendto_if_chksum(pcb, p, dst_ip, dst_port, netif, 0, 0);
616 }
617
618 /** Same as udp_sendto_if(), but with checksum */
619 err_t
udp_sendto_if_chksum(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port,struct netif * netif,u8_t have_chksum,u16_t chksum)620 udp_sendto_if_chksum(struct udp_pcb *pcb, struct pbuf *p, const ip_addr_t *dst_ip,
621 u16_t dst_port, struct netif *netif, u8_t have_chksum,
622 u16_t chksum)
623 {
624 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
625 const ip_addr_t *src_ip;
626
627 if ((pcb == NULL) || (dst_ip == NULL) || !IP_ADDR_PCB_VERSION_MATCH(pcb, dst_ip)) {
628 return ERR_VAL;
629 }
630
631 /* PCB local address is IP_ANY_ADDR or multicast? */
632 #if LWIP_IPV6
633 if (IP_IS_V6(dst_ip)) {
634 if (ip6_addr_isany(ip_2_ip6(&pcb->local_ip)) ||
635 ip6_addr_ismulticast(ip_2_ip6(&pcb->local_ip))) {
636 src_ip = ip6_select_source_address(netif, ip_2_ip6(dst_ip));
637 if (src_ip == NULL) {
638 /* No suitable source address was found. */
639 return ERR_RTE;
640 }
641 } else {
642 /* use UDP PCB local IPv6 address as source address, if still valid. */
643 if (netif_get_ip6_addr_match(netif, ip_2_ip6(&pcb->local_ip)) < 0) {
644 /* Address isn't valid anymore. */
645 return ERR_RTE;
646 }
647 src_ip = &pcb->local_ip;
648 }
649 }
650 #endif /* LWIP_IPV6 */
651 #if LWIP_IPV4 && LWIP_IPV6
652 else
653 #endif /* LWIP_IPV4 && LWIP_IPV6 */
654 #if LWIP_IPV4
655 if (ip4_addr_isany(ip_2_ip4(&pcb->local_ip)) ||
656 ip4_addr_ismulticast(ip_2_ip4(&pcb->local_ip))) {
657 /* if the local_ip is any or multicast
658 * use the outgoing network interface IP address as source address */
659 src_ip = netif_ip_addr4(netif);
660 } else {
661 /* check if UDP PCB local IP address is correct
662 * this could be an old address if netif->ip_addr has changed */
663 if (!ip4_addr_cmp(ip_2_ip4(&(pcb->local_ip)), netif_ip4_addr(netif))) {
664 /* local_ip doesn't match, drop the packet */
665 return ERR_RTE;
666 }
667 /* use UDP PCB local IP address as source address */
668 src_ip = &pcb->local_ip;
669 }
670 #endif /* LWIP_IPV4 */
671 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
672 return udp_sendto_if_src_chksum(pcb, p, dst_ip, dst_port, netif, have_chksum, chksum, src_ip);
673 #else /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
674 return udp_sendto_if_src(pcb, p, dst_ip, dst_port, netif, src_ip);
675 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
676 }
677
678 /** @ingroup udp_raw
679 * Same as @ref udp_sendto_if, but with source address */
680 err_t
udp_sendto_if_src(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port,struct netif * netif,const ip_addr_t * src_ip)681 udp_sendto_if_src(struct udp_pcb *pcb, struct pbuf *p,
682 const ip_addr_t *dst_ip, u16_t dst_port, struct netif *netif, const ip_addr_t *src_ip)
683 {
684 #if LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP
685 return udp_sendto_if_src_chksum(pcb, p, dst_ip, dst_port, netif, 0, 0, src_ip);
686 }
687
688 /** Same as udp_sendto_if_src(), but with checksum */
689 err_t
udp_sendto_if_src_chksum(struct udp_pcb * pcb,struct pbuf * p,const ip_addr_t * dst_ip,u16_t dst_port,struct netif * netif,u8_t have_chksum,u16_t chksum,const ip_addr_t * src_ip)690 udp_sendto_if_src_chksum(struct udp_pcb *pcb, struct pbuf *p, const ip_addr_t *dst_ip,
691 u16_t dst_port, struct netif *netif, u8_t have_chksum,
692 u16_t chksum, const ip_addr_t *src_ip)
693 {
694 #endif /* LWIP_CHECKSUM_ON_COPY && CHECKSUM_GEN_UDP */
695 struct udp_hdr *udphdr;
696 err_t err;
697 struct pbuf *q; /* q will be sent down the stack */
698 u8_t ip_proto;
699 u8_t ttl;
700
701 if ((pcb == NULL) || (dst_ip == NULL) || !IP_ADDR_PCB_VERSION_MATCH(pcb, src_ip) ||
702 !IP_ADDR_PCB_VERSION_MATCH(pcb, dst_ip)) {
703 return ERR_VAL;
704 }
705
706 #if LWIP_IPV4 && IP_SOF_BROADCAST
707 /* broadcast filter? */
708 if (!ip_get_option(pcb, SOF_BROADCAST) &&
709 #if LWIP_IPV6
710 IP_IS_V4(dst_ip) &&
711 #endif /* LWIP_IPV6 */
712 ip_addr_isbroadcast(dst_ip, netif)) {
713 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_LEVEL_SERIOUS,
714 ("udp_sendto_if: SOF_BROADCAST not enabled on pcb %p\n", (void *)pcb));
715 return ERR_VAL;
716 }
717 #endif /* LWIP_IPV4 && IP_SOF_BROADCAST */
718
719 /* if the PCB is not yet bound to a port, bind it here */
720 if (pcb->local_port == 0) {
721 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, ("udp_send: not yet bound to a port, binding now\n"));
722 err = udp_bind(pcb, &pcb->local_ip, pcb->local_port);
723 if (err != ERR_OK) {
724 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_LEVEL_SERIOUS, ("udp_send: forced port bind failed\n"));
725 return err;
726 }
727 }
728
729 /* packet too large to add a UDP header without causing an overflow? */
730 if ((u16_t)(p->tot_len + UDP_HLEN) < p->tot_len) {
731 return ERR_MEM;
732 }
733 /* not enough space to add an UDP header to first pbuf in given p chain? */
734 if (pbuf_header(p, UDP_HLEN)) {
735 /* allocate header in a separate new pbuf */
736 q = pbuf_alloc(PBUF_IP, UDP_HLEN, PBUF_RAM);
737 /* new header pbuf could not be allocated? */
738 if (q == NULL) {
739 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_LEVEL_SERIOUS, ("udp_send: could not allocate header\n"));
740 return ERR_MEM;
741 }
742 if (p->tot_len != 0) {
743 /* chain header q in front of given pbuf p (only if p contains data) */
744 pbuf_chain(q, p);
745 }
746 /* first pbuf q points to header pbuf */
747 LWIP_DEBUGF(UDP_DEBUG,
748 ("udp_send: added header pbuf %p before given pbuf %p\n", (void *)q, (void *)p));
749 } else {
750 /* adding space for header within p succeeded */
751 /* first pbuf q equals given pbuf */
752 q = p;
753 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: added header in given pbuf %p\n", (void *)p));
754 }
755 LWIP_ASSERT("check that first pbuf can hold struct udp_hdr",
756 (q->len >= sizeof(struct udp_hdr)));
757 /* q now represents the packet to be sent */
758 udphdr = (struct udp_hdr *)q->payload;
759 udphdr->src = lwip_htons(pcb->local_port);
760 udphdr->dest = lwip_htons(dst_port);
761 /* in UDP, 0 checksum means 'no checksum' */
762 udphdr->chksum = 0x0000;
763
764 /* Multicast Loop? */
765 #if LWIP_MULTICAST_TX_OPTIONS
766 if (((pcb->flags & UDP_FLAGS_MULTICAST_LOOP) != 0) && ip_addr_ismulticast(dst_ip)) {
767 q->flags |= PBUF_FLAG_MCASTLOOP;
768 }
769 #endif /* LWIP_MULTICAST_TX_OPTIONS */
770
771 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: sending datagram of length %"U16_F"\n", q->tot_len));
772
773 #if LWIP_UDPLITE
774 /* UDP Lite protocol? */
775 if (pcb->flags & UDP_FLAGS_UDPLITE) {
776 u16_t chklen, chklen_hdr;
777 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: UDP LITE packet length %"U16_F"\n", q->tot_len));
778 /* set UDP message length in UDP header */
779 chklen_hdr = chklen = pcb->chksum_len_tx;
780 if ((chklen < sizeof(struct udp_hdr)) || (chklen > q->tot_len)) {
781 if (chklen != 0) {
782 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: UDP LITE pcb->chksum_len is illegal: %"U16_F"\n", chklen));
783 }
784 /* For UDP-Lite, checksum length of 0 means checksum
785 over the complete packet. (See RFC 3828 chap. 3.1)
786 At least the UDP-Lite header must be covered by the
787 checksum, therefore, if chksum_len has an illegal
788 value, we generate the checksum over the complete
789 packet to be safe. */
790 chklen_hdr = 0;
791 chklen = q->tot_len;
792 }
793 udphdr->len = lwip_htons(chklen_hdr);
794 /* calculate checksum */
795 #if CHECKSUM_GEN_UDP
796 IF__NETIF_CHECKSUM_ENABLED(netif, NETIF_CHECKSUM_GEN_UDP) {
797 #if LWIP_CHECKSUM_ON_COPY
798 if (have_chksum) {
799 chklen = UDP_HLEN;
800 }
801 #endif /* LWIP_CHECKSUM_ON_COPY */
802 udphdr->chksum = ip_chksum_pseudo_partial(q, IP_PROTO_UDPLITE,
803 q->tot_len, chklen, src_ip, dst_ip);
804 #if LWIP_CHECKSUM_ON_COPY
805 if (have_chksum) {
806 u32_t acc;
807 acc = udphdr->chksum + (u16_t)~(chksum);
808 udphdr->chksum = FOLD_U32T(acc);
809 }
810 #endif /* LWIP_CHECKSUM_ON_COPY */
811
812 /* chksum zero must become 0xffff, as zero means 'no checksum' */
813 if (udphdr->chksum == 0x0000) {
814 udphdr->chksum = 0xffff;
815 }
816 }
817 #endif /* CHECKSUM_GEN_UDP */
818
819 ip_proto = IP_PROTO_UDPLITE;
820 } else
821 #endif /* LWIP_UDPLITE */
822 { /* UDP */
823 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: UDP packet length %"U16_F"\n", q->tot_len));
824 udphdr->len = lwip_htons(q->tot_len);
825 /* calculate checksum */
826 #if CHECKSUM_GEN_UDP
827 IF__NETIF_CHECKSUM_ENABLED(netif, NETIF_CHECKSUM_GEN_UDP) {
828 /* Checksum is mandatory over IPv6. */
829 if (IP_IS_V6(dst_ip) || (pcb->flags & UDP_FLAGS_NOCHKSUM) == 0) {
830 u16_t udpchksum;
831 #if LWIP_CHECKSUM_ON_COPY
832 if (have_chksum) {
833 u32_t acc;
834 udpchksum = ip_chksum_pseudo_partial(q, IP_PROTO_UDP,
835 q->tot_len, UDP_HLEN, src_ip, dst_ip);
836 acc = udpchksum + (u16_t)~(chksum);
837 udpchksum = FOLD_U32T(acc);
838 } else
839 #endif /* LWIP_CHECKSUM_ON_COPY */
840 {
841 udpchksum = ip_chksum_pseudo(q, IP_PROTO_UDP, q->tot_len,
842 src_ip, dst_ip);
843 }
844
845 /* chksum zero must become 0xffff, as zero means 'no checksum' */
846 if (udpchksum == 0x0000) {
847 udpchksum = 0xffff;
848 }
849 udphdr->chksum = udpchksum;
850 }
851 }
852 #endif /* CHECKSUM_GEN_UDP */
853 ip_proto = IP_PROTO_UDP;
854 }
855
856 /* Determine TTL to use */
857 #if LWIP_MULTICAST_TX_OPTIONS
858 ttl = (ip_addr_ismulticast(dst_ip) ? udp_get_multicast_ttl(pcb) : pcb->ttl);
859 #else /* LWIP_MULTICAST_TX_OPTIONS */
860 ttl = pcb->ttl;
861 #endif /* LWIP_MULTICAST_TX_OPTIONS */
862
863 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: UDP checksum 0x%04"X16_F"\n", udphdr->chksum));
864 LWIP_DEBUGF(UDP_DEBUG, ("udp_send: ip_output_if (,,,,0x%02"X16_F",)\n", (u16_t)ip_proto));
865 /* output to IP */
866 NETIF_SET_HWADDRHINT(netif, &(pcb->addr_hint));
867 err = ip_output_if_src(q, src_ip, dst_ip, ttl, pcb->tos, ip_proto, netif);
868 NETIF_SET_HWADDRHINT(netif, NULL);
869
870 /* @todo: must this be increased even if error occurred? */
871 MIB2_STATS_INC(mib2.udpoutdatagrams);
872
873 /* did we chain a separate header pbuf earlier? */
874 if (q != p) {
875 /* free the header pbuf */
876 pbuf_free(q);
877 q = NULL;
878 /* p is still referenced by the caller, and will live on */
879 }
880
881 UDP_STATS_INC(udp.xmit);
882 return err;
883 }
884
885 /**
886 * @ingroup udp_raw
887 * Bind an UDP PCB.
888 *
889 * @param pcb UDP PCB to be bound with a local address ipaddr and port.
890 * @param ipaddr local IP address to bind with. Use IP4_ADDR_ANY to
891 * bind to all local interfaces.
892 * @param port local UDP port to bind with. Use 0 to automatically bind
893 * to a random port between UDP_LOCAL_PORT_RANGE_START and
894 * UDP_LOCAL_PORT_RANGE_END.
895 *
896 * ipaddr & port are expected to be in the same byte order as in the pcb.
897 *
898 * @return lwIP error code.
899 * - ERR_OK. Successful. No error occurred.
900 * - ERR_USE. The specified ipaddr and port are already bound to by
901 * another UDP PCB.
902 *
903 * @see udp_disconnect()
904 */
905 err_t
udp_bind(struct udp_pcb * pcb,const ip_addr_t * ipaddr,u16_t port)906 udp_bind(struct udp_pcb *pcb, const ip_addr_t *ipaddr, u16_t port)
907 {
908 struct udp_pcb *ipcb;
909 u8_t rebind;
910 #if LWIP_IPV6 && LWIP_IPV6_SCOPES
911 ip_addr_t zoned_ipaddr;
912 #endif /* LWIP_IPV6 && LWIP_IPV6_SCOPES */
913
914 #if LWIP_IPV4
915 /* Don't propagate NULL pointer (IPv4 ANY) to subsequent functions */
916 if (ipaddr == NULL) {
917 ipaddr = IP4_ADDR_ANY;
918 }
919 #endif /* LWIP_IPV4 */
920
921 /* still need to check for ipaddr == NULL in IPv6 only case */
922 if ((pcb == NULL) || (ipaddr == NULL)) {
923 return ERR_VAL;
924 }
925
926 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, ("udp_bind(ipaddr = "));
927 ip_addr_debug_print(UDP_DEBUG | LWIP_DBG_TRACE, ipaddr);
928 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE, (", port = %"U16_F")\n", port));
929
930 rebind = 0;
931 /* Check for double bind and rebind of the same pcb */
932 for (ipcb = udp_pcbs; ipcb != NULL; ipcb = ipcb->next) {
933 /* is this UDP PCB already on active list? */
934 if (pcb == ipcb) {
935 rebind = 1;
936 break;
937 }
938 }
939
940 #if LWIP_IPV6 && LWIP_IPV6_SCOPES
941 /* If the given IP address should have a zone but doesn't, assign one now.
942 * This is legacy support: scope-aware callers should always provide properly
943 * zoned source addresses. Do the zone selection before the address-in-use
944 * check below; as such we have to make a temporary copy of the address. */
945 if (IP_IS_V6(ipaddr) && ip6_addr_lacks_zone(ip_2_ip6(ipaddr), IP6_UNKNOWN)) {
946 ip_addr_copy(zoned_ipaddr, *ipaddr);
947 ip6_addr_select_zone(ip_2_ip6(&zoned_ipaddr), ip_2_ip6(&zoned_ipaddr));
948 ipaddr = &zoned_ipaddr;
949 }
950 #endif /* LWIP_IPV6 && LWIP_IPV6_SCOPES */
951
952 /* no port specified? */
953 if (port == 0) {
954 port = udp_new_port();
955 if (port == 0) {
956 /* no more ports available in local range */
957 LWIP_DEBUGF(UDP_DEBUG, ("udp_bind: out of free UDP ports\n"));
958 return ERR_USE;
959 }
960 } else {
961 for (ipcb = udp_pcbs; ipcb != NULL; ipcb = ipcb->next) {
962 if (pcb != ipcb) {
963 /* By default, we don't allow to bind to a port that any other udp
964 PCB is already bound to, unless *all* PCBs with that port have tha
965 REUSEADDR flag set. */
966 #if SO_REUSE
967 if (!ip_get_option(pcb, SOF_REUSEADDR) ||
968 !ip_get_option(ipcb, SOF_REUSEADDR))
969 #endif /* SO_REUSE */
970 {
971 /* port matches that of PCB in list and REUSEADDR not set -> reject */
972 if ((ipcb->local_port == port) &&
973 /* IP address matches? */
974 ip_addr_cmp(&ipcb->local_ip, ipaddr)) {
975 /* other PCB already binds to this local IP and port */
976 LWIP_DEBUGF(UDP_DEBUG,
977 ("udp_bind: local port %"U16_F" already bound by another pcb\n", port));
978 return ERR_USE;
979 }
980 }
981 }
982 }
983 }
984
985 ip_addr_set_ipaddr(&pcb->local_ip, ipaddr);
986
987 pcb->local_port = port;
988 mib2_udp_bind(pcb);
989 /* pcb not active yet? */
990 if (rebind == 0) {
991 /* place the PCB on the active list if not already there */
992 pcb->next = udp_pcbs;
993 udp_pcbs = pcb;
994 }
995 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE, ("udp_bind: bound to "));
996 ip_addr_debug_print(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE, &pcb->local_ip);
997 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE, (", port %"U16_F")\n", pcb->local_port));
998 return ERR_OK;
999 }
1000
1001 /**
1002 * @ingroup udp_raw
1003 * Connect an UDP PCB.
1004 *
1005 * This will associate the UDP PCB with the remote address.
1006 *
1007 * @param pcb UDP PCB to be connected with remote address ipaddr and port.
1008 * @param ipaddr remote IP address to connect with.
1009 * @param port remote UDP port to connect with.
1010 *
1011 * @return lwIP error code
1012 *
1013 * ipaddr & port are expected to be in the same byte order as in the pcb.
1014 *
1015 * The udp pcb is bound to a random local port if not already bound.
1016 *
1017 * @see udp_disconnect()
1018 */
1019 err_t
udp_connect(struct udp_pcb * pcb,const ip_addr_t * ipaddr,u16_t port)1020 udp_connect(struct udp_pcb *pcb, const ip_addr_t *ipaddr, u16_t port)
1021 {
1022 struct udp_pcb *ipcb;
1023
1024 if ((pcb == NULL) || (ipaddr == NULL)) {
1025 return ERR_VAL;
1026 }
1027
1028 if (pcb->local_port == 0) {
1029 err_t err = udp_bind(pcb, &pcb->local_ip, pcb->local_port);
1030 if (err != ERR_OK) {
1031 return err;
1032 }
1033 }
1034
1035 ip_addr_set_ipaddr(&pcb->remote_ip, ipaddr);
1036 #if LWIP_IPV6 && LWIP_IPV6_SCOPES
1037 /* If the given IP address should have a zone but doesn't, assign one now,
1038 * using the bound address to make a more informed decision when possible. */
1039 if (IP_IS_V6(&pcb->remote_ip) &&
1040 ip6_addr_lacks_zone(ip_2_ip6(&pcb->remote_ip), IP6_UNKNOWN)) {
1041 ip6_addr_select_zone(ip_2_ip6(&pcb->remote_ip), ip_2_ip6(&pcb->local_ip));
1042 }
1043 #endif /* LWIP_IPV6 && LWIP_IPV6_SCOPES */
1044
1045 pcb->remote_port = port;
1046 pcb->flags |= UDP_FLAGS_CONNECTED;
1047
1048 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE, ("udp_connect: connected to "));
1049 ip_addr_debug_print(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE,
1050 &pcb->remote_ip);
1051 LWIP_DEBUGF(UDP_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_STATE, (", port %"U16_F")\n", pcb->remote_port));
1052
1053 /* Insert UDP PCB into the list of active UDP PCBs. */
1054 for (ipcb = udp_pcbs; ipcb != NULL; ipcb = ipcb->next) {
1055 if (pcb == ipcb) {
1056 /* already on the list, just return */
1057 return ERR_OK;
1058 }
1059 }
1060 /* PCB not yet on the list, add PCB now */
1061 pcb->next = udp_pcbs;
1062 udp_pcbs = pcb;
1063 return ERR_OK;
1064 }
1065
1066 /**
1067 * @ingroup udp_raw
1068 * Disconnect a UDP PCB
1069 *
1070 * @param pcb the udp pcb to disconnect.
1071 */
1072 void
udp_disconnect(struct udp_pcb * pcb)1073 udp_disconnect(struct udp_pcb *pcb)
1074 {
1075 /* reset remote address association */
1076 #if LWIP_IPV4 && LWIP_IPV6
1077 if (IP_IS_ANY_TYPE_VAL(pcb->local_ip)) {
1078 ip_addr_copy(pcb->remote_ip, *IP_ANY_TYPE);
1079 } else {
1080 #endif
1081 ip_addr_set_any(IP_IS_V6_VAL(pcb->remote_ip), &pcb->remote_ip);
1082 #if LWIP_IPV4 && LWIP_IPV6
1083 }
1084 #endif
1085 pcb->remote_port = 0;
1086 /* mark PCB as unconnected */
1087 pcb->flags &= ~UDP_FLAGS_CONNECTED;
1088 }
1089
1090 /**
1091 * @ingroup udp_raw
1092 * Set a receive callback for a UDP PCB
1093 *
1094 * This callback will be called when receiving a datagram for the pcb.
1095 *
1096 * @param pcb the pcb for which to set the recv callback
1097 * @param recv function pointer of the callback function
1098 * @param recv_arg additional argument to pass to the callback function
1099 */
1100 void
udp_recv(struct udp_pcb * pcb,udp_recv_fn recv,void * recv_arg)1101 udp_recv(struct udp_pcb *pcb, udp_recv_fn recv, void *recv_arg)
1102 {
1103 /* remember recv() callback and user data */
1104 pcb->recv = recv;
1105 pcb->recv_arg = recv_arg;
1106 }
1107
1108 /**
1109 * @ingroup udp_raw
1110 * Remove an UDP PCB.
1111 *
1112 * @param pcb UDP PCB to be removed. The PCB is removed from the list of
1113 * UDP PCB's and the data structure is freed from memory.
1114 *
1115 * @see udp_new()
1116 */
1117 void
udp_remove(struct udp_pcb * pcb)1118 udp_remove(struct udp_pcb *pcb)
1119 {
1120 struct udp_pcb *pcb2;
1121
1122 mib2_udp_unbind(pcb);
1123 /* pcb to be removed is first in list? */
1124 if (udp_pcbs == pcb) {
1125 /* make list start at 2nd pcb */
1126 udp_pcbs = udp_pcbs->next;
1127 /* pcb not 1st in list */
1128 } else {
1129 for (pcb2 = udp_pcbs; pcb2 != NULL; pcb2 = pcb2->next) {
1130 /* find pcb in udp_pcbs list */
1131 if (pcb2->next != NULL && pcb2->next == pcb) {
1132 /* remove pcb from list */
1133 pcb2->next = pcb->next;
1134 break;
1135 }
1136 }
1137 }
1138 memp_free(MEMP_UDP_PCB, pcb);
1139 }
1140
1141 /**
1142 * @ingroup udp_raw
1143 * Create a UDP PCB.
1144 *
1145 * @return The UDP PCB which was created. NULL if the PCB data structure
1146 * could not be allocated.
1147 *
1148 * @see udp_remove()
1149 */
1150 struct udp_pcb *
udp_new(void)1151 udp_new(void)
1152 {
1153 struct udp_pcb *pcb;
1154 pcb = (struct udp_pcb *)memp_malloc(MEMP_UDP_PCB);
1155 /* could allocate UDP PCB? */
1156 if (pcb != NULL) {
1157 /* UDP Lite: by initializing to all zeroes, chksum_len is set to 0
1158 * which means checksum is generated over the whole datagram per default
1159 * (recommended as default by RFC 3828). */
1160 /* initialize PCB to all zeroes */
1161 memset(pcb, 0, sizeof(struct udp_pcb));
1162 pcb->ttl = UDP_TTL;
1163 #if LWIP_MULTICAST_TX_OPTIONS
1164 udp_set_multicast_ttl(pcb, UDP_TTL);
1165 #endif /* LWIP_MULTICAST_TX_OPTIONS */
1166 }
1167 return pcb;
1168 }
1169
1170 /**
1171 * @ingroup udp_raw
1172 * Create a UDP PCB for specific IP type.
1173 *
1174 * @param type IP address type, see @ref lwip_ip_addr_type definitions.
1175 * If you want to listen to IPv4 and IPv6 (dual-stack) packets,
1176 * supply @ref IPADDR_TYPE_ANY as argument and bind to @ref IP_ANY_TYPE.
1177 * @return The UDP PCB which was created. NULL if the PCB data structure
1178 * could not be allocated.
1179 *
1180 * @see udp_remove()
1181 */
1182 struct udp_pcb *
udp_new_ip_type(u8_t type)1183 udp_new_ip_type(u8_t type)
1184 {
1185 struct udp_pcb *pcb;
1186 pcb = udp_new();
1187 #if LWIP_IPV4 && LWIP_IPV6
1188 if (pcb != NULL) {
1189 IP_SET_TYPE_VAL(pcb->local_ip, type);
1190 IP_SET_TYPE_VAL(pcb->remote_ip, type);
1191 }
1192 #else
1193 LWIP_UNUSED_ARG(type);
1194 #endif /* LWIP_IPV4 && LWIP_IPV6 */
1195 return pcb;
1196 }
1197
1198 /** This function is called from netif.c when address is changed
1199 *
1200 * @param old_addr IP address of the netif before change
1201 * @param new_addr IP address of the netif after change
1202 */
udp_netif_ip_addr_changed(const ip_addr_t * old_addr,const ip_addr_t * new_addr)1203 void udp_netif_ip_addr_changed(const ip_addr_t* old_addr, const ip_addr_t* new_addr)
1204 {
1205 struct udp_pcb* upcb;
1206
1207 if (!ip_addr_isany(old_addr) && !ip_addr_isany(new_addr)) {
1208 for (upcb = udp_pcbs; upcb != NULL; upcb = upcb->next) {
1209 /* PCB bound to current local interface address? */
1210 if (ip_addr_cmp(&upcb->local_ip, old_addr)) {
1211 /* The PCB is bound to the old ipaddr and
1212 * is set to bound to the new one instead */
1213 ip_addr_copy(upcb->local_ip, *new_addr);
1214 }
1215 }
1216 }
1217 }
1218
1219 #if UDP_DEBUG
1220 /**
1221 * Print UDP header information for debug purposes.
1222 *
1223 * @param udphdr pointer to the udp header in memory.
1224 */
1225 void
udp_debug_print(struct udp_hdr * udphdr)1226 udp_debug_print(struct udp_hdr *udphdr)
1227 {
1228 LWIP_DEBUGF(UDP_DEBUG, ("UDP header:\n"));
1229 LWIP_DEBUGF(UDP_DEBUG, ("+-------------------------------+\n"));
1230 LWIP_DEBUGF(UDP_DEBUG, ("| %5"U16_F" | %5"U16_F" | (src port, dest port)\n",
1231 lwip_ntohs(udphdr->src), lwip_ntohs(udphdr->dest)));
1232 LWIP_DEBUGF(UDP_DEBUG, ("+-------------------------------+\n"));
1233 LWIP_DEBUGF(UDP_DEBUG, ("| %5"U16_F" | 0x%04"X16_F" | (len, chksum)\n",
1234 lwip_ntohs(udphdr->len), lwip_ntohs(udphdr->chksum)));
1235 LWIP_DEBUGF(UDP_DEBUG, ("+-------------------------------+\n"));
1236 }
1237 #endif /* UDP_DEBUG */
1238
1239 #endif /* LWIP_UDP */
1240