chiark / gitweb /
ipv6: introduce union iaddr
[secnet.git] / 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
27 static beforepoll_fn udp_beforepoll;
28 static afterpoll_fn udp_afterpoll;
29 static comm_request_notify_fn request_notify;
30 static comm_release_notify_fn release_notify;
31 static comm_sendmsg_fn udp_sendmsg;
32
33 struct notify_list {
34     comm_notify_fn *fn;
35     void *state;
36     struct notify_list *next;
37 };
38
39 struct udp {
40     closure_t cl;
41     struct comm_if ops;
42     struct cloc loc;
43     union iaddr addr;
44     int fd;
45     string_t authbind;
46     struct buffer_if *rbuf;
47     struct notify_list *notify;
48     bool_t use_proxy;
49     union iaddr proxy;
50 };
51
52 static const char *addr_to_string(void *commst, const struct comm_addr *ca) {
53     struct udp *st=commst;
54     static char sbuf[100];
55
56     snprintf(sbuf, sizeof(sbuf), "udp:%s-%s",
57             iaddr_to_string(&st->addr), iaddr_to_string(&ca->ia));
58     return sbuf;
59 }
60
61 static int udp_beforepoll(void *state, struct pollfd *fds, int *nfds_io,
62                           int *timeout_io)
63 {
64     struct udp *st=state;
65     if (*nfds_io<1) {
66         *nfds_io=1;
67         return ERANGE;
68     }
69     *nfds_io=1;
70     fds->fd=st->fd;
71     fds->events=POLLIN;
72     return 0;
73 }
74
75 static void udp_afterpoll(void *state, struct pollfd *fds, int nfds)
76 {
77     struct udp *st=state;
78     union iaddr from;
79     socklen_t fromlen;
80     struct notify_list *n;
81     bool_t done;
82     int rv;
83
84     if (nfds && (fds->revents & POLLIN)) {
85         do {
86             FILLZERO(from);
87             fromlen=sizeof(from);
88             BUF_ASSERT_FREE(st->rbuf);
89             BUF_ALLOC(st->rbuf,"udp_afterpoll");
90             buffer_init(st->rbuf,calculate_max_start_pad());
91             rv=recvfrom(st->fd, st->rbuf->start,
92                         buf_remaining_space(st->rbuf),
93                         0, &from.sa, &fromlen);
94             if (rv>0) {
95                 st->rbuf->size=rv;
96                 if (st->use_proxy) {
97                     /* Check that the packet came from our poxy server;
98                        we shouldn't be contacted directly by anybody else
99                        (since they can trivially forge source addresses) */
100                     if (!iaddr_equal(&from,&st->proxy)) {
101                         Message(M_INFO,"udp: received packet that's not "
102                                 "from the proxy\n");
103                         BUF_FREE(st->rbuf);
104                         continue;
105                     }
106                     /* proxy protocol supports ipv4 transport only */
107                     from.sa.sa_family=AF_INET;
108                     memcpy(&from.sin.sin_addr,buf_unprepend(st->rbuf,4),4);
109                     buf_unprepend(st->rbuf,2);
110                     memcpy(&from.sin.sin_port,buf_unprepend(st->rbuf,2),2);
111                 }
112                 struct comm_addr ca;
113                 FILLZERO(ca);
114                 ca.comm=&st->ops;
115                 ca.ia=from;
116                 done=False;
117                 for (n=st->notify; n; n=n->next) {
118                     if (n->fn(n->state, st->rbuf, &ca)) {
119                         done=True;
120                         break;
121                     }
122                 }
123                 if (!done) {
124                     uint32_t msgtype;
125                     if (st->rbuf->size>12 /* prevents traffic amplification */
126                         && ((msgtype=get_uint32(st->rbuf->start+8))
127                             != LABEL_NAK)) {
128                         uint32_t source,dest;
129                         /* Manufacture and send NAK packet */
130                         source=get_uint32(st->rbuf->start); /* Us */
131                         dest=get_uint32(st->rbuf->start+4); /* Them */
132                         send_nak(&ca,source,dest,msgtype,st->rbuf,"unwanted");
133                     }
134                     BUF_FREE(st->rbuf);
135                 }
136                 BUF_ASSERT_FREE(st->rbuf);
137             } else {
138                 BUF_FREE(st->rbuf);
139             }
140         } while (rv>=0);
141     }
142 }
143
144 static void request_notify(void *commst, void *nst, comm_notify_fn *fn)
145 {
146     struct udp *st=commst;
147     struct notify_list *n;
148     
149     n=safe_malloc(sizeof(*n),"request_notify");
150     n->fn=fn;
151     n->state=nst;
152     n->next=st->notify;
153     st->notify=n;
154 }
155
156 static void release_notify(void *commst, void *nst, comm_notify_fn *fn)
157 {
158     struct udp *st=commst;
159     struct notify_list *n, **p, *t;
160
161     /* XXX untested */
162     p=&st->notify;
163     for (n=st->notify; n; )
164     {
165         if (n->state==nst && n->fn==fn) {
166             t=n;
167             *p=n->next;
168             n=n->next;
169             free(t);
170         } else {
171             p=&n->next;
172             n=n->next;
173         }
174     }
175 }
176
177 static bool_t udp_sendmsg(void *commst, struct buffer_if *buf,
178                           const struct comm_addr *dest)
179 {
180     struct udp *st=commst;
181     uint8_t *sa;
182
183     if (st->use_proxy) {
184         sa=buf_prepend(buf,8);
185         if (dest->ia.sa.sa_family != AF_INET) {
186             Message(M_INFO,
187                "udp: proxy means dropping outgoing non-IPv4 packet to %s\n",
188                     iaddr_to_string(&dest->ia));
189             return False;
190         }
191         memcpy(sa,&dest->ia.sin.sin_addr,4);
192         memset(sa+4,0,4);
193         memcpy(sa+6,&dest->ia.sin.sin_port,2);
194         sendto(st->fd,sa,buf->size+8,0,&st->proxy.sa,
195                iaddr_socklen(&st->proxy));
196         buf_unprepend(buf,8);
197     } else {
198         sendto(st->fd, buf->start, buf->size, 0,
199                &dest->ia.sa, iaddr_socklen(&dest->ia));
200     }
201
202     return True;
203 }
204
205 static void udp_phase_hook(void *sst, uint32_t new_phase)
206 {
207     struct udp *st=sst;
208     union iaddr addr;
209
210     st->fd=socket(PF_INET, SOCK_DGRAM, IPPROTO_UDP);
211     if (st->fd<0) {
212         fatal_perror("udp (%s:%d): socket",st->loc.file,st->loc.line);
213     }
214     if (fcntl(st->fd, F_SETFL, fcntl(st->fd, F_GETFL)|O_NONBLOCK)==-1) {
215         fatal_perror("udp (%s:%d): fcntl(set O_NONBLOCK)",
216                      st->loc.file,st->loc.line);
217     }
218     setcloexec(st->fd);
219
220     addr=st->addr;
221     if (st->authbind) {
222         pid_t c;
223         int status;
224
225         /* XXX this fork() and waitpid() business needs to be hidden
226            in some system-specific library functions. */
227         c=fork();
228         if (c==-1) {
229             fatal_perror("udp_phase_hook: fork() for authbind");
230         }
231         if (c==0) {
232             char *argv[4], addrstr[9], portstr[5];
233             switch (addr.sa.sa_family) {
234             case AF_INET:
235                 sprintf(addrstr,"%08lX",(long)addr.sin.sin_addr.s_addr);
236                 sprintf(portstr,"%04X",addr.sin.sin_port);
237                 break;
238             default:
239                 fatal("udp (%s:%d): unsupported address family for authbind",
240                       st->loc.file,st->loc.line);
241             }
242             argv[0]=st->authbind;
243             argv[1]=addrstr;
244             argv[2]=portstr;
245             argv[3]=NULL;
246             dup2(st->fd,0);
247             execvp(st->authbind,argv);
248             _exit(255);
249         }
250         while (waitpid(c,&status,0)==-1) {
251             if (errno==EINTR) continue;
252             fatal_perror("udp (%s:%d): authbind",st->loc.file,st->loc.line);
253         }
254         if (WIFSIGNALED(status)) {
255             fatal("udp (%s:%d): authbind died on signal %d",st->loc.file,
256                   st->loc.line, WTERMSIG(status));
257         }
258         if (WIFEXITED(status) && WEXITSTATUS(status)!=0) {
259             fatal("udp (%s:%d): authbind died with status %d",st->loc.file,
260                   st->loc.line, WEXITSTATUS(status));
261         }
262     } else {
263         if (bind(st->fd, &addr.sa, iaddr_socklen(&addr))!=0) {
264             fatal_perror("udp (%s:%d): bind",st->loc.file,st->loc.line);
265         }
266     }
267
268     register_for_poll(st,udp_beforepoll,udp_afterpoll,1,"udp");
269 }
270
271 static list_t *udp_apply(closure_t *self, struct cloc loc, dict_t *context,
272                          list_t *args)
273 {
274     struct udp *st;
275     item_t *i,*j;
276     dict_t *d;
277     list_t *l;
278     uint32_t a;
279
280     st=safe_malloc(sizeof(*st),"udp_apply(st)");
281     st->loc=loc;
282     st->cl.description="udp";
283     st->cl.type=CL_COMM;
284     st->cl.apply=NULL;
285     st->cl.interface=&st->ops;
286     st->ops.st=st;
287     st->ops.request_notify=request_notify;
288     st->ops.release_notify=release_notify;
289     st->ops.sendmsg=udp_sendmsg;
290     st->ops.addr_to_string=addr_to_string;
291     FILLZERO(st->addr);
292     st->use_proxy=False;
293
294     i=list_elem(args,0);
295     if (!i || i->type!=t_dict) {
296         cfgfatal(st->loc,"udp","first argument must be a dictionary\n");
297     }
298     d=i->data.dict;
299
300     st->addr.sa.sa_family=AF_INET;
301     j=dict_find_item(d,"address",False,"udp",st->loc);
302     st->addr.sin.sin_addr.s_addr=j?string_item_to_ipaddr(j, "udp"):INADDR_ANY;
303     st->addr.sin.sin_port=dict_read_number(d,"port",True,"udp",st->loc,0);
304     st->rbuf=find_cl_if(d,"buffer",CL_BUFFER,True,"udp",st->loc);
305     st->authbind=dict_read_string(d,"authbind",False,"udp",st->loc);
306     l=dict_lookup(d,"proxy");
307     if (l) {
308         st->use_proxy=True;
309         FILLZERO(st->proxy);
310         st->proxy.sa.sa_family=AF_INET;
311         i=list_elem(l,0);
312         if (!i || i->type!=t_string) {
313             cfgfatal(st->loc,"udp","proxy must supply ""addr"",port\n");
314         }
315         a=string_item_to_ipaddr(i,"proxy");
316         st->proxy.sin.sin_addr.s_addr=htonl(a);
317         i=list_elem(l,1);
318         if (!i || i->type!=t_number) {
319             cfgfatal(st->loc,"udp","proxy must supply ""addr"",port\n");
320         }
321         st->proxy.sin.sin_port=htons(i->data.number);
322     }
323
324     update_max_start_pad(&comm_max_start_pad, st->use_proxy ? 8 : 0);
325
326     add_hook(PHASE_GETRESOURCES,udp_phase_hook,st);
327
328     return new_closure(&st->cl);
329 }
330
331 void udp_module(dict_t *dict)
332 {
333     add_closure(dict,"udp",udp_apply);
334 }