Import release 0.03
[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 * Sites register an interest in local port numbers for receiving
9 * packets, and can also send packets. We don't care about the source
10 * port number for sending packets.
11 *
12 * Packets are offered to registered receivers in turn. Once one
13 * accepts it, it isn't offered to any more. */
14
15 #include <stdio.h>
16 #include <unistd.h>
17 #include <fcntl.h>
18 #include <string.h>
19 #include <errno.h>
20 #include <sys/types.h>
21 #include <sys/socket.h>
22 #include <netinet/in.h>
23
24 #include "secnet.h"
25 #include "util.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 /* The UDP module exports a pure closure which can be used to construct a
34 * UDP send/receive module. Arguments:
35 */
36
37 struct notify_list {
38 comm_notify_fn *fn;
39 void *state;
40 struct notify_list *next;
41 };
42
43 struct udp {
44 closure_t cl;
45 struct comm_if ops;
46 struct cloc loc;
47 int fd;
48 struct buffer_if *rbuf;
49 struct notify_list *notify;
50 };
51
52 static int udp_beforepoll(void *state, struct pollfd *fds, int *nfds_io,
53 int *timeout_io, const struct timeval *tv,
54 uint64_t *now)
55 {
56 struct udp *st=state;
57 if (*nfds_io<1) {
58 *nfds_io=1;
59 return ERANGE;
60 }
61 *nfds_io=1;
62 fds->fd=st->fd;
63 fds->events=POLLIN;
64 return 0;
65 }
66
67 static void udp_afterpoll(void *state, struct pollfd *fds, int nfds,
68 const struct timeval *tv, uint64_t *now)
69 {
70 struct udp *st=state;
71 struct sockaddr_in from;
72 int fromlen;
73 struct notify_list *n;
74 bool_t done;
75 int rv;
76
77 if (nfds && (fds->revents & POLLIN)) {
78 do {
79 fromlen=sizeof(from);
80 BUF_ASSERT_FREE(st->rbuf);
81 BUF_ALLOC(st->rbuf,"udp_afterpoll");
82 rv=recvfrom(st->fd, st->rbuf->start, st->rbuf->len, 0,
83 (struct sockaddr *)&from, &fromlen);
84 if (rv>0) {
85 st->rbuf->size=rv;
86 done=False;
87 for (n=st->notify; n; n=n->next) {
88 if (n->fn(n->state, st->rbuf, &from)) {
89 done=True;
90 break;
91 }
92 }
93 if (!done) {
94 /* XXX manufacture and send NAK packet */
95 Message(M_WARNING,"Need to send NAK\n");
96 BUF_FREE(st->rbuf);
97 }
98 BUF_ASSERT_FREE(st->rbuf);
99 } else {
100 BUF_FREE(st->rbuf);
101 }
102 } while (rv>=0);
103 }
104 }
105
106 static void request_notify(void *commst, void *nst, comm_notify_fn *fn)
107 {
108 struct udp *st=commst;
109 struct notify_list *n;
110
111 n=safe_malloc(sizeof(*n),"request_notify");
112 n->fn=fn;
113 n->state=nst;
114 n->next=st->notify;
115 st->notify=n;
116 }
117
118 static void release_notify(void *commst, void *nst, comm_notify_fn *fn)
119 {
120 struct udp *st=commst;
121 struct notify_list *n, **p, *t;
122
123 /* XXX untested */
124 p=&st->notify;
125 for (n=st->notify; n; )
126 {
127 if (n->state==nst && n->fn==fn) {
128 t=n;
129 *p=n->next;
130 n=n->next;
131 free(t);
132 } else {
133 p=&n->next;
134 n=n->next;
135 }
136 }
137 }
138
139 static bool_t udp_sendmsg(void *commst, struct buffer_if *buf,
140 struct sockaddr_in *dest)
141 {
142 struct udp *st=commst;
143
144 /* XXX fix error reporting */
145 sendto(st->fd, buf->start, buf->size, 0,
146 (struct sockaddr *)dest, sizeof(*dest));
147
148 return True;
149 }
150
151 static list_t *udp_apply(closure_t *self, struct cloc loc, dict_t *context,
152 list_t *args)
153 {
154 struct udp *st;
155 item_t *i;
156 dict_t *d;
157 uint16_t local_port=0;
158 struct sockaddr_in addr;
159
160 st=safe_malloc(sizeof(*st),"udp_apply(st)");
161 st->loc=loc;
162 st->cl.description="udp";
163 st->cl.type=CL_COMM;
164 st->cl.apply=NULL;
165 st->cl.interface=&st->ops;
166 st->ops.st=st;
167 st->ops.request_notify=request_notify;
168 st->ops.release_notify=release_notify;
169 st->ops.sendmsg=udp_sendmsg;
170
171 i=list_elem(args,0);
172 if (!i || i->type!=t_dict) {
173 cfgfatal(st->loc,"udp","first argument must be a dictionary\n");
174 }
175 d=i->data.dict;
176
177 local_port=dict_read_number(d,"port",False,"udp",st->loc,0);
178 st->rbuf=find_cl_if(d,"buffer",CL_BUFFER,True,"udp",st->loc);
179
180 st->fd=socket(AF_INET, SOCK_DGRAM, 0);
181 if (st->fd<0) {
182 fatal_perror("udp_apply (%s:%d): socket",loc.file,loc.line);
183 }
184 if (fcntl(st->fd, F_SETFL, fcntl(st->fd, F_GETFL)|O_NONBLOCK)==-1) {
185 fatal_perror("udp_apply (%s:%d): fcntl(set O_NONBLOCK)",
186 loc.file,loc.line);
187 }
188 if (fcntl(st->fd, F_SETFD, FD_CLOEXEC)==-1) {
189 fatal_perror("udp_apply (%s:%d): fcntl(set FD_CLOEXEC)",
190 loc.file,loc.line);
191 }
192
193 memset(&addr, 0, sizeof(addr));
194 addr.sin_family=AF_INET;
195 if (local_port) {
196 addr.sin_port=htons(local_port);
197 }
198 if (bind(st->fd, (struct sockaddr *)&addr, sizeof(addr))!=0) {
199 fatal_perror("udp_apply (%s:%d): bind",loc.file,loc.line);
200 }
201
202 register_for_poll(st,udp_beforepoll,udp_afterpoll,1,"udp");
203
204 return new_closure(&st->cl);
205 }
206
207 init_module udp_module;
208 void udp_module(dict_t *dict)
209 {
210 add_closure(dict,"udp",udp_apply);
211 }