transform: Discard previously-received packets
[secnet] / udp.c
1 /* UDP send/receive module for secnet */
2
3 /* This module enables sites to communicate by sending UDP
4 * packets. When an instance of the module is created we can
5 * optionally bind to a particular local IP address (not implemented
6 * yet).
7 *
8 * Packets are offered to registered receivers in turn. Once one
9 * accepts it, it isn't offered to any more. */
10
11 #include "secnet.h"
12 #include <stdio.h>
13 #include <unistd.h>
14 #include <fcntl.h>
15 #include <string.h>
16 #include <errno.h>
17 #include <sys/socket.h>
18 #include <sys/wait.h>
19 #include <netinet/in.h>
20 #include <arpa/inet.h>
21 #include "util.h"
22 #include "magic.h"
23 #include "unaligned.h"
24 #include "ipaddr.h"
25 #include "magic.h"
26 #include "comm-common.h"
27
28 static comm_sendmsg_fn udp_sendmsg;
29
30 struct udp {
31 struct udpcommon uc;
32 struct udpsocks socks;
33 };
34
35 /*
36 * Re comm_addr.ix: This field allows us to note in the comm_addr
37 * which socket an incoming packet was received on. This is required
38 * for conveniently logging the actual source of a packet. But the ix
39 * does not formally form part of the address: it is not used when
40 * sending, nor when comparing two comm_addrs.
41 *
42 * The special value -1 means that the comm_addr was constructed by
43 * another module in secnet (eg the resolver), rather than being a
44 * description of the source of an incoming packet.
45 */
46
47 static const char *udp_addr_to_string(void *commst, const struct comm_addr *ca)
48 {
49 struct udp *st=commst;
50 struct udpsocks *socks=&st->socks;
51 static char sbuf[100];
52 int ix=ca->ix>=0 ? ca->ix : 0;
53
54 assert(ix>=0 && ix<socks->n_socks);
55 snprintf(sbuf, sizeof(sbuf), "udp:%s%s-%s",
56 iaddr_to_string(&socks->socks[ix].addr),
57 ca->ix<0 ? "&" : "",
58 iaddr_to_string(&ca->ia));
59 return sbuf;
60 }
61
62 static int udp_socks_beforepoll(void *state, struct pollfd *fds, int *nfds_io,
63 int *timeout_io)
64 {
65 struct udpsocks *socks=state;
66 int i;
67 BEFOREPOLL_WANT_FDS(socks->n_socks);
68 for (i=0; i<socks->n_socks; i++) {
69 fds[i].fd=socks->socks[i].fd;
70 fds[i].events=POLLIN;
71 }
72 return 0;
73 }
74
75 const char *af_name(int af)
76 {
77 switch (af) {
78 case AF_INET6: return "IPv6";
79 case AF_INET: return "IPv4";
80 case 0: return "(any)";
81 default: abort();
82 }
83 }
84
85 void udp_sock_experienced(struct log_if *lg, struct udpcommon *uc,
86 const char *socksdesc, struct udpsock *us,
87 bool_t recvsend, int af,
88 int r, int errnoval)
89 {
90 bool_t success=r>=0;
91 if (us->experienced[recvsend][af][success]++)
92 return;
93 lg_perror(lg, uc->cc.cl.description, &uc->cc.loc,
94 success ? M_INFO : M_WARNING,
95 success ? 0 : errnoval,
96 "%s %s experiencing some %s %s%s%s",
97 socksdesc,iaddr_to_string(&us->addr),
98 success?"success":"trouble",
99 recvsend?"transmitting":"receiving",
100 af?" ":"", af?af_name(af):"");
101 }
102
103 static void udp_socks_afterpoll(void *state, struct pollfd *fds, int nfds)
104 {
105 struct udpsocks *socks=state;
106 struct udpcommon *uc=socks->uc;
107 union iaddr from;
108 socklen_t fromlen;
109 bool_t done;
110 int rv;
111 int i;
112
113 struct commcommon *cc=&uc->cc;
114
115 for (i=0; i<socks->n_socks; i++) {
116 struct udpsock *us=&socks->socks[i];
117 if (i>=nfds) continue;
118 if (!(fds[i].revents & POLLIN)) continue;
119 assert(fds[i].fd == us->fd);
120 int fd=us->fd;
121 do {
122 fromlen=sizeof(from);
123 BUF_ASSERT_FREE(cc->rbuf);
124 BUF_ALLOC(cc->rbuf,"udp_afterpoll");
125 buffer_init(cc->rbuf,calculate_max_start_pad());
126 rv=recvfrom(fd, cc->rbuf->start,
127 buf_remaining_space(cc->rbuf),
128 0, &from.sa, &fromlen);
129 if (rv>0) {
130 cc->rbuf->size=rv;
131 if (uc->use_proxy) {
132 /* Check that the packet came from our poxy server;
133 we shouldn't be contacted directly by anybody else
134 (since they can trivially forge source addresses) */
135 if (!iaddr_equal(&from,&uc->proxy)) {
136 Message(M_INFO,"udp: received packet that's not "
137 "from the proxy\n");
138 BUF_FREE(cc->rbuf);
139 continue;
140 }
141 /* proxy protocol supports ipv4 transport only */
142 from.sa.sa_family=AF_INET;
143 BUF_GET_BYTES(unprepend,cc->rbuf,&from.sin.sin_addr,4);
144 buf_unprepend(cc->rbuf,2);
145 BUF_GET_BYTES(unprepend,cc->rbuf,&from.sin.sin_port,2);
146 }
147 struct comm_addr ca;
148 ca.comm=&cc->ops;
149 ca.ia=from;
150 ca.ix=i;
151 done=comm_notify(&cc->notify, cc->rbuf, &ca);
152 if (!done) {
153 uint32_t msgtype;
154 if (cc->rbuf->size>12 /* prevents traffic amplification */
155 && ((msgtype=get_uint32(cc->rbuf->start+8))
156 != LABEL_NAK)) {
157 uint32_t source,dest;
158 /* Manufacture and send NAK packet */
159 source=get_uint32(cc->rbuf->start); /* Us */
160 dest=get_uint32(cc->rbuf->start+4); /* Them */
161 send_nak(&ca,source,dest,msgtype,cc->rbuf,"unwanted");
162 }
163 BUF_FREE(cc->rbuf);
164 }
165 BUF_ASSERT_FREE(cc->rbuf);
166 } else { /* rv<=0 */
167 if (errno!=EINTR && !iswouldblock(errno))
168 udp_sock_experienced(0,uc, "socket",us, 0,0, rv,errno);
169 BUF_FREE(cc->rbuf);
170 }
171 } while (rv>=0);
172 }
173 }
174
175 static bool_t udp_sendmsg(void *commst, struct buffer_if *buf,
176 const struct comm_addr *dest)
177 {
178 struct udp *st=commst;
179 struct udpcommon *uc=&st->uc;
180 struct udpsocks *socks=&st->socks;
181 uint8_t *sa;
182
183 if (uc->use_proxy) {
184 struct udpsock *us=&socks->socks[0];
185 sa=buf_prepend(buf,8);
186 if (dest->ia.sa.sa_family != AF_INET) {
187 Message(M_INFO,
188 "udp: proxy means dropping outgoing non-IPv4 packet to %s\n",
189 iaddr_to_string(&dest->ia));
190 return False;
191 }
192 memcpy(sa,&dest->ia.sin.sin_addr,4);
193 memset(sa+4,0,4);
194 memcpy(sa+6,&dest->ia.sin.sin_port,2);
195 int r=sendto(us->fd,sa,buf->size+8,0,&uc->proxy.sa,
196 iaddr_socklen(&uc->proxy));
197 udp_sock_experienced(0,uc, "proxy",us, 1,0, r,errno);
198 buf_unprepend(buf,8);
199 } else {
200 int i,r;
201 bool_t allunsupported=True;
202 int af=dest->ia.sa.sa_family;
203 for (i=0; i<socks->n_socks; i++) {
204 struct udpsock *us=&socks->socks[i];
205 if (us->addr.sa.sa_family != af)
206 /* no point even trying */
207 continue;
208 r=sendto(us->fd, buf->start, buf->size, 0,
209 &dest->ia.sa, iaddr_socklen(&dest->ia));
210 udp_sock_experienced(0,uc, "socket",us, 1,af, r,errno);
211 if (r>=0) return True;
212 if (!(errno==EAFNOSUPPORT || errno==ENETUNREACH))
213 /* who knows what that error means? */
214 allunsupported=False;
215 }
216 return !allunsupported; /* see doc for comm_sendmsg_fn in secnet.h */
217 }
218
219 return True;
220 }
221
222 void udp_destroy_socket(struct udpcommon *uc, struct udpsock *us)
223 {
224 if (us->fd>=0) {
225 close(us->fd);
226 us->fd=-1;
227 }
228 }
229
230 bool_t udp_make_socket(struct udpcommon *uc, struct udpsock *us,
231 int failmsgclass)
232 {
233 const union iaddr *addr=&us->addr;
234 struct commcommon *cc=&uc->cc;
235 us->fd=-1;
236
237 #define FAIL_LG 0, cc->cl.description, &cc->loc, failmsgclass
238 #define FAIL(...) do{ \
239 lg_perror(FAIL_LG,errno,__VA_ARGS__); \
240 goto failed; \
241 }while(0)
242
243 FILLZERO(us->experienced);
244 us->fd=socket(addr->sa.sa_family, SOCK_DGRAM, IPPROTO_UDP);
245 if (us->fd<0) FAIL("socket");
246 setnonblock(us->fd);
247 setcloexec(us->fd);
248 #ifdef CONFIG_IPV6
249 if (addr->sa.sa_family==AF_INET6) {
250 int r;
251 int optval=1;
252 socklen_t optlen=sizeof(optval);
253 r=setsockopt(us->fd,IPPROTO_IPV6,IPV6_V6ONLY,&optval,optlen);
254 if (r) FAIL("setsockopt(,IPV6_V6ONLY,&1,)");
255 }
256 #endif
257
258 if (uc->authbind) {
259 pid_t c;
260 int status;
261
262 /* XXX this fork() and waitpid() business needs to be hidden
263 in some system-specific library functions. */
264 c=fork();
265 if (c==-1)
266 FAIL("fork() for authbind");
267 if (c==0) {
268 char *argv[5], addrstr[33], portstr[5];
269 const char *addrfam;
270 int port;
271 afterfork();
272 switch (addr->sa.sa_family) {
273 case AF_INET:
274 sprintf(addrstr,"%08lX",(long)addr->sin.sin_addr.s_addr);
275 port=addr->sin.sin_port;
276 addrfam=NULL;
277 break;
278 #ifdef CONFIG_IPV6
279 case AF_INET6: {
280 int i;
281 for (i=0; i<16; i++)
282 sprintf(addrstr+i*2,"%02X",addr->sin6.sin6_addr.s6_addr[i]);
283 port=addr->sin6.sin6_port;
284 addrfam="6";
285 break;
286 }
287 #endif /*CONFIG_IPV6*/
288 default:
289 fatal("udp (%s:%d): unsupported address family for authbind",
290 cc->loc.file,cc->loc.line);
291 }
292 sprintf(portstr,"%04X",port);
293 argv[0]=uc->authbind;
294 argv[1]=addrstr;
295 argv[2]=portstr;
296 argv[3]=(char*)addrfam;
297 argv[4]=NULL;
298 dup2(us->fd,0);
299 execvp(uc->authbind,argv);
300 _exit(255);
301 }
302 while (waitpid(c,&status,0)==-1) {
303 if (errno==EINTR) continue;
304 FAIL("waitpid for authbind");
305 }
306 if (status) {
307 if (WIFEXITED(status) && WEXITSTATUS(status)<127) {
308 int es=WEXITSTATUS(status);
309 lg_perror(FAIL_LG,es,
310 "authbind exited with error exit status %d;"
311 " indicates error",es);
312 } else {
313 lg_exitstatus(FAIL_LG,status,"authbind");
314 }
315 goto failed;
316 }
317 } else {
318 if (bind(us->fd, &addr->sa, iaddr_socklen(addr))!=0)
319 FAIL("bind (%s)",iaddr_to_string(addr));
320 }
321 return True;
322
323 failed:
324 udp_destroy_socket(uc,us);
325 return False;
326
327 #undef FAIL
328 }
329
330 void udp_socks_register(struct udpcommon *uc, struct udpsocks *socks)
331 {
332 socks->uc=uc;
333 socks->interest=
334 register_for_poll(socks,udp_socks_beforepoll,udp_socks_afterpoll,"udp");
335 }
336
337 void udp_socks_deregister(struct udpcommon *uc, struct udpsocks *socks)
338 {
339 socks->uc=uc;
340 deregister_for_poll(socks->interest);
341 }
342
343 static void udp_phase_hook(void *sst, uint32_t new_phase)
344 {
345 struct udp *st=sst;
346 struct udpsocks *socks=&st->socks;
347 struct udpcommon *uc=&st->uc;
348 int i;
349 for (i=0; i<socks->n_socks; i++)
350 udp_make_socket(uc,&socks->socks[i],M_FATAL);
351
352 udp_socks_register(uc,socks);
353 }
354
355 static list_t *udp_apply(closure_t *self, struct cloc loc, dict_t *context,
356 list_t *args)
357 {
358 struct udp *st;
359 list_t *caddrl;
360 list_t *l;
361 uint32_t a;
362 int i;
363
364 COMM_APPLY(st,&st->uc.cc,udp_,"udp",loc);
365 COMM_APPLY_STANDARD(st,&st->uc.cc,"udp",args);
366 UDP_APPLY_STANDARD(st,&st->uc,"udp");
367
368 struct udpcommon *uc=&st->uc;
369 struct udpsocks *socks=&st->socks;
370 struct commcommon *cc=&uc->cc;
371
372 union iaddr defaultaddrs[] = {
373 #ifdef CONFIG_IPV6
374 { .sin6 = { .sin6_family=AF_INET6,
375 .sin6_port=htons(uc->port),
376 .sin6_addr=IN6ADDR_ANY_INIT } },
377 #endif
378 { .sin = { .sin_family=AF_INET,
379 .sin_port=htons(uc->port),
380 .sin_addr= { .s_addr=INADDR_ANY } } }
381 };
382
383 caddrl=dict_lookup(d,"address");
384 socks->n_socks=caddrl ? list_length(caddrl) : (int)ARRAY_SIZE(defaultaddrs);
385 if (socks->n_socks<=0 || socks->n_socks>UDP_MAX_SOCKETS)
386 cfgfatal(cc->loc,"udp","`address' must be 1..%d addresses",
387 UDP_MAX_SOCKETS);
388
389 for (i=0; i<socks->n_socks; i++) {
390 struct udpsock *us=&socks->socks[i];
391 if (!list_length(caddrl)) {
392 us->addr=defaultaddrs[i];
393 } else {
394 string_item_to_iaddr(list_elem(caddrl,i),uc->port,&us->addr,"udp");
395 }
396 us->fd=-1;
397 }
398
399 l=dict_lookup(d,"proxy");
400 if (l) {
401 uc->use_proxy=True;
402 uc->proxy.sa.sa_family=AF_INET;
403 item=list_elem(l,0);
404 if (!item || item->type!=t_string) {
405 cfgfatal(cc->loc,"udp","proxy must supply ""addr"",port\n");
406 }
407 a=string_item_to_ipaddr(item,"proxy");
408 uc->proxy.sin.sin_addr.s_addr=htonl(a);
409 item=list_elem(l,1);
410 if (!item || item->type!=t_number) {
411 cfgfatal(cc->loc,"udp","proxy must supply ""addr"",port\n");
412 }
413 uc->proxy.sin.sin_port=htons(item->data.number);
414 }
415
416 update_max_start_pad(&comm_max_start_pad, uc->use_proxy ? 8 : 0);
417
418 add_hook(PHASE_GETRESOURCES,udp_phase_hook,st);
419
420 return new_closure(&cc->cl);
421 }
422
423 void udp_module(dict_t *dict)
424 {
425 add_closure(dict,"udp",udp_apply);
426 }