The Pedigree Project 0.1
modules/system/lwip/core/raw.c
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1/*
2 * Copyright (c) 2008-2014, Pedigree Developers
3 *
4 * Please see the CONTRIB file in the root of the source tree for a full
5 * list of contributors.
6 *
7 * Permission to use, copy, modify, and distribute this software for any
8 * purpose with or without fee is hereby granted, provided that the above
9 * copyright notice and this permission notice appear in all copies.
10 *
11 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 */
19
35/*
36 * Copyright (c) 2001-2004 Swedish Institute of Computer Science.
37 * All rights reserved.
38 *
39 * Redistribution and use in source and binary forms, with or without modification,
40 * are permitted provided that the following conditions are met:
41 *
42 * 1. Redistributions of source code must retain the above copyright notice,
43 * this list of conditions and the following disclaimer.
44 * 2. Redistributions in binary form must reproduce the above copyright notice,
45 * this list of conditions and the following disclaimer in the documentation
46 * and/or other materials provided with the distribution.
47 * 3. The name of the author may not be used to endorse or promote products
48 * derived from this software without specific prior written permission.
49 *
50 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
51 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
52 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
53 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
54 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
55 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
56 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
57 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
58 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
59 * OF SUCH DAMAGE.
60 *
61 * This file is part of the lwIP TCP/IP stack.
62 *
63 * Author: Adam Dunkels <adam@sics.se>
64 *
65 */
66
67#include "lwip/opt.h"
68
69#if LWIP_RAW /* don't build if not configured for use in lwipopts.h */
70
71#include "lwip/def.h"
72#include "lwip/memp.h"
73#include "lwip/ip_addr.h"
74#include "lwip/netif.h"
75#include "lwip/raw.h"
76#include "lwip/stats.h"
77#include "lwip/ip6.h"
78#include "lwip/ip6_addr.h"
79#include "lwip/inet_chksum.h"
80
81#include <string.h>
82
84static struct raw_pcb *raw_pcbs;
85
86static u8_t
87raw_input_match(struct raw_pcb *pcb, u8_t broadcast)
88{
89 LWIP_UNUSED_ARG(broadcast); /* in IPv6 only case */
90
91#if LWIP_IPV4 && LWIP_IPV6
92 /* Dual-stack: PCBs listening to any IP type also listen to any IP address */
93 if (IP_IS_ANY_TYPE_VAL(pcb->local_ip)) {
94#if IP_SOF_BROADCAST_RECV
95 if ((broadcast != 0) && !ip_get_option(pcb, SOF_BROADCAST)) {
96 return 0;
97 }
98#endif /* IP_SOF_BROADCAST_RECV */
99 return 1;
100 }
101#endif /* LWIP_IPV4 && LWIP_IPV6 */
102
103 /* Only need to check PCB if incoming IP version matches PCB IP version */
104 if (IP_ADDR_PCB_VERSION_MATCH_EXACT(pcb, ip_current_dest_addr())) {
105#if LWIP_IPV4
106 /* Special case: IPv4 broadcast: receive all broadcasts
107 * Note: broadcast variable can only be 1 if it is an IPv4 broadcast */
108 if (broadcast != 0) {
109#if IP_SOF_BROADCAST_RECV
110 if (ip_get_option(pcb, SOF_BROADCAST))
111#endif /* IP_SOF_BROADCAST_RECV */
112 {
113 if (ip4_addr_isany(ip_2_ip4(&pcb->local_ip))) {
114 return 1;
115 }
116 }
117 } else
118#endif /* LWIP_IPV4 */
119 /* Handle IPv4 and IPv6: catch all or exact match */
120 if (ip_addr_isany(&pcb->local_ip) ||
121 ip_addr_cmp(&pcb->local_ip, ip_current_dest_addr())) {
122 return 1;
123 }
124 }
125
126 return 0;
127}
128
146u8_t
147raw_input(struct pbuf *p, struct netif *inp)
148{
149 struct raw_pcb *pcb, *prev;
150 s16_t proto;
151 u8_t eaten = 0;
152 u8_t broadcast = ip_addr_isbroadcast(ip_current_dest_addr(), ip_current_netif());
153
154 LWIP_UNUSED_ARG(inp);
155
156#if LWIP_IPV6
157#if LWIP_IPV4
158 if (IP_HDR_GET_VERSION(p->payload) == 6)
159#endif /* LWIP_IPV4 */
160 {
161 struct ip6_hdr *ip6hdr = (struct ip6_hdr *)p->payload;
162 proto = IP6H_NEXTH(ip6hdr);
163 }
164#if LWIP_IPV4
165 else
166#endif /* LWIP_IPV4 */
167#endif /* LWIP_IPV6 */
168#if LWIP_IPV4
169 {
170 proto = IPH_PROTO((struct ip_hdr *)p->payload);
171 }
172#endif /* LWIP_IPV4 */
173
174 prev = NULL;
175 pcb = raw_pcbs;
176 /* loop through all raw pcbs until the packet is eaten by one */
177 /* this allows multiple pcbs to match against the packet by design */
178 while ((eaten == 0) && (pcb != NULL)) {
179 if ((pcb->protocol == proto) && raw_input_match(pcb, broadcast)) {
180 /* receive callback function available? */
181 if (pcb->recv != NULL) {
182#ifndef LWIP_NOASSERT
183 void* old_payload = p->payload;
184#endif
185 /* the receive callback function did not eat the packet? */
186 eaten = pcb->recv(pcb->recv_arg, pcb, p, ip_current_src_addr());
187 if (eaten != 0) {
188 /* receive function ate the packet */
189 p = NULL;
190 eaten = 1;
191 if (prev != NULL) {
192 /* move the pcb to the front of raw_pcbs so that is
193 found faster next time */
194 prev->next = pcb->next;
195 pcb->next = raw_pcbs;
196 raw_pcbs = pcb;
197 }
198 } else {
199 /* sanity-check that the receive callback did not alter the pbuf */
200 LWIP_ASSERT("raw pcb recv callback altered pbuf payload pointer without eating packet",
201 p->payload == old_payload);
202 }
203 }
204 /* no receive callback function was set for this raw PCB */
205 }
206 /* drop the packet */
207 prev = pcb;
208 pcb = pcb->next;
209 }
210 return eaten;
211}
212
228err_t
229raw_bind(struct raw_pcb *pcb, const ip_addr_t *ipaddr)
230{
231 if ((pcb == NULL) || (ipaddr == NULL)) {
232 return ERR_VAL;
233 }
234 ip_addr_set_ipaddr(&pcb->local_ip, ipaddr);
235 return ERR_OK;
236}
237
252err_t
253raw_connect(struct raw_pcb *pcb, const ip_addr_t *ipaddr)
254{
255 if ((pcb == NULL) || (ipaddr == NULL)) {
256 return ERR_VAL;
257 }
258 ip_addr_set_ipaddr(&pcb->remote_ip, ipaddr);
259 return ERR_OK;
260}
261
273void
274raw_recv(struct raw_pcb *pcb, raw_recv_fn recv, void *recv_arg)
275{
276 /* remember recv() callback and user data */
277 pcb->recv = recv;
278 pcb->recv_arg = recv_arg;
279}
280
294err_t
295raw_sendto(struct raw_pcb *pcb, struct pbuf *p, const ip_addr_t *ipaddr)
296{
297 err_t err;
298 struct netif *netif;
299 const ip_addr_t *src_ip;
300 struct pbuf *q; /* q will be sent down the stack */
301 s16_t header_size;
302
303 if ((pcb == NULL) || (ipaddr == NULL) || !IP_ADDR_PCB_VERSION_MATCH(pcb, ipaddr)) {
304 return ERR_VAL;
305 }
306
307 LWIP_DEBUGF(RAW_DEBUG | LWIP_DBG_TRACE, ("raw_sendto\n"));
308
309 header_size = (
310#if LWIP_IPV4 && LWIP_IPV6
311 IP_IS_V6(ipaddr) ? IP6_HLEN : IP_HLEN);
312#elif LWIP_IPV4
313 IP_HLEN);
314#else
315 IP6_HLEN);
316#endif
317
318 /* not enough space to add an IP header to first pbuf in given p chain? */
319 if (pbuf_header(p, header_size)) {
320 /* allocate header in new pbuf */
321 q = pbuf_alloc(PBUF_IP, 0, PBUF_RAM);
322 /* new header pbuf could not be allocated? */
323 if (q == NULL) {
324 LWIP_DEBUGF(RAW_DEBUG | LWIP_DBG_TRACE | LWIP_DBG_LEVEL_SERIOUS, ("raw_sendto: could not allocate header\n"));
325 return ERR_MEM;
326 }
327 if (p->tot_len != 0) {
328 /* chain header q in front of given pbuf p */
329 pbuf_chain(q, p);
330 }
331 /* { first pbuf q points to header pbuf } */
332 LWIP_DEBUGF(RAW_DEBUG, ("raw_sendto: added header pbuf %p before given pbuf %p\n", (void *)q, (void *)p));
333 } else {
334 /* first pbuf q equals given pbuf */
335 q = p;
336 if (pbuf_header(q, -header_size)) {
337 LWIP_ASSERT("Can't restore header we just removed!", 0);
338 return ERR_MEM;
339 }
340 }
341
342 if(IP_IS_ANY_TYPE_VAL(pcb->local_ip)) {
343 /* Don't call ip_route() with IP_ANY_TYPE */
344 netif = ip_route(IP46_ADDR_ANY(IP_GET_TYPE(ipaddr)), ipaddr);
345 } else {
346 netif = ip_route(&pcb->local_ip, ipaddr);
347 }
348
349 if (netif == NULL) {
350 LWIP_DEBUGF(RAW_DEBUG | LWIP_DBG_LEVEL_WARNING, ("raw_sendto: No route to "));
351 ip_addr_debug_print(RAW_DEBUG | LWIP_DBG_LEVEL_WARNING, ipaddr);
352 /* free any temporary header pbuf allocated by pbuf_header() */
353 if (q != p) {
354 pbuf_free(q);
355 }
356 return ERR_RTE;
357 }
358
359#if IP_SOF_BROADCAST
360 if (IP_IS_V4(ipaddr))
361 {
362 /* broadcast filter? */
363 if (!ip_get_option(pcb, SOF_BROADCAST) && ip_addr_isbroadcast(ipaddr, netif)) {
364 LWIP_DEBUGF(RAW_DEBUG | LWIP_DBG_LEVEL_WARNING, ("raw_sendto: SOF_BROADCAST not enabled on pcb %p\n", (void *)pcb));
365 /* free any temporary header pbuf allocated by pbuf_header() */
366 if (q != p) {
367 pbuf_free(q);
368 }
369 return ERR_VAL;
370 }
371 }
372#endif /* IP_SOF_BROADCAST */
373
374 if (ip_addr_isany(&pcb->local_ip)) {
375 /* use outgoing network interface IP address as source address */
376 src_ip = ip_netif_get_local_ip(netif, ipaddr);
377#if LWIP_IPV6
378 if (src_ip == NULL) {
379 if (q != p) {
380 pbuf_free(q);
381 }
382 return ERR_RTE;
383 }
384#endif /* LWIP_IPV6 */
385 } else {
386 /* use RAW PCB local IP address as source address */
387 src_ip = &pcb->local_ip;
388 }
389
390#if LWIP_IPV6
391 /* If requested, based on the IPV6_CHECKSUM socket option per RFC3542,
392 compute the checksum and update the checksum in the payload. */
393 if (IP_IS_V6(ipaddr) && pcb->chksum_reqd) {
394 u16_t chksum = ip6_chksum_pseudo(p, pcb->protocol, p->tot_len, ip_2_ip6(src_ip), ip_2_ip6(ipaddr));
395 LWIP_ASSERT("Checksum must fit into first pbuf", p->len >= (pcb->chksum_offset + 2));
396 SMEMCPY(((u8_t *)p->payload) + pcb->chksum_offset, &chksum, sizeof(u16_t));
397 }
398#endif
399
400 NETIF_SET_HWADDRHINT(netif, &pcb->addr_hint);
401 err = ip_output_if(q, src_ip, ipaddr, pcb->ttl, pcb->tos, pcb->protocol, netif);
402 NETIF_SET_HWADDRHINT(netif, NULL);
403
404 /* did we chain a header earlier? */
405 if (q != p) {
406 /* free the header */
407 pbuf_free(q);
408 }
409 return err;
410}
411
420err_t
421raw_send(struct raw_pcb *pcb, struct pbuf *p)
422{
423 return raw_sendto(pcb, p, &pcb->remote_ip);
424}
425
435void
436raw_remove(struct raw_pcb *pcb)
437{
438 struct raw_pcb *pcb2;
439 /* pcb to be removed is first in list? */
440 if (raw_pcbs == pcb) {
441 /* make list start at 2nd pcb */
442 raw_pcbs = raw_pcbs->next;
443 /* pcb not 1st in list */
444 } else {
445 for (pcb2 = raw_pcbs; pcb2 != NULL; pcb2 = pcb2->next) {
446 /* find pcb in raw_pcbs list */
447 if (pcb2->next != NULL && pcb2->next == pcb) {
448 /* remove pcb from list */
449 pcb2->next = pcb->next;
450 break;
451 }
452 }
453 }
454 memp_free(MEMP_RAW_PCB, pcb);
455}
456
468struct raw_pcb *
469raw_new(u8_t proto)
470{
471 struct raw_pcb *pcb;
472
473 LWIP_DEBUGF(RAW_DEBUG | LWIP_DBG_TRACE, ("raw_new\n"));
474
475 pcb = (struct raw_pcb *)memp_malloc(MEMP_RAW_PCB);
476 /* could allocate RAW PCB? */
477 if (pcb != NULL) {
478 /* initialize PCB to all zeroes */
479 memset(pcb, 0, sizeof(struct raw_pcb));
480 pcb->protocol = proto;
481 pcb->ttl = RAW_TTL;
482 pcb->next = raw_pcbs;
483 raw_pcbs = pcb;
484 }
485 return pcb;
486}
487
503struct raw_pcb *
504raw_new_ip_type(u8_t type, u8_t proto)
505{
506 struct raw_pcb *pcb;
507 pcb = raw_new(proto);
508#if LWIP_IPV4 && LWIP_IPV6
509 if (pcb != NULL) {
510 IP_SET_TYPE_VAL(pcb->local_ip, type);
511 IP_SET_TYPE_VAL(pcb->remote_ip, type);
512 }
513#else /* LWIP_IPV4 && LWIP_IPV6 */
514 LWIP_UNUSED_ARG(type);
515#endif /* LWIP_IPV4 && LWIP_IPV6 */
516 return pcb;
517}
518
524void raw_netif_ip_addr_changed(const ip_addr_t* old_addr, const ip_addr_t* new_addr)
525{
526 struct raw_pcb* rpcb;
527
528 if (!ip_addr_isany(old_addr) && !ip_addr_isany(new_addr)) {
529 for (rpcb = raw_pcbs; rpcb != NULL; rpcb = rpcb->next) {
530 /* PCB bound to current local interface address? */
531 if (ip_addr_cmp(&rpcb->local_ip, old_addr)) {
532 /* The PCB is bound to the old ipaddr and
533 * is set to bound to the new one instead */
534 ip_addr_copy(rpcb->local_ip, *new_addr);
535 }
536 }
537 }
538}
539
540#endif /* LWIP_RAW */
#define LWIP_DEBUGF(debug, message)
Definition debug.h:183
#define LWIP_UNUSED_ARG(x)
Definition arch.h:327
#define LWIP_DBG_LEVEL_SERIOUS
Definition debug.h:76
#define LWIP_DBG_LEVEL_WARNING
Definition debug.h:74
#define LWIP_DBG_TRACE
Definition debug.h:102
s8_t err_t
Definition err.h:76
@ ERR_RTE
Definition err.h:90
@ ERR_OK
Definition err.h:82
@ ERR_VAL
Definition err.h:94
@ ERR_MEM
Definition err.h:84
#define RAW_DEBUG
Definition opt.h:2727
#define RAW_TTL
Definition opt.h:837
void pbuf_chain(struct pbuf *h, struct pbuf *t)
Definition pbuf.c:901
struct pbuf * pbuf_alloc(pbuf_layer layer, u16_t length, pbuf_type type)
Definition pbuf.c:267
u8_t pbuf_free(struct pbuf *p)
Definition pbuf.c:734
@ PBUF_RAM
Definition pbuf.h:127
@ PBUF_IP
Definition pbuf.h:99
#define ip_get_option(pcb, opt)
Definition ip.h:234
#define ip_current_src_addr()
Definition ip.h:160
#define ip_current_dest_addr()
Definition ip.h:162
#define ip_current_netif()
Definition ip.h:152
void * memp_malloc(memp_t type)
Definition memp.c:404
void memp_free(memp_t type, void *mem)
Definition memp.c:488
u8_t pbuf_header(struct pbuf *p, s16_t header_size_increment)
Definition pbuf.c:684
#define IP_HDR_GET_VERSION(ptr)
Definition prot/ip.h:68
Definition netif.h:244
Definition pbuf.h:161
u16_t tot_len
Definition pbuf.h:175
u16_t len
Definition pbuf.h:178
void * payload
Definition pbuf.h:166