Merge branch 'master' into next
[paraslash.git] / udp_recv.c
1 /*
2  * Copyright (C) 2005-2009 Andre Noll <maan@systemlinux.org>
3  *
4  * Licensed under the GPL v2. For licencing details see COPYING.
5  */
6 /** \file udp_recv.c Paraslash's udp receiver */
7
8 #include <regex.h>
9 #include <dirent.h>
10 #include <sys/socket.h>
11 #include <net/if.h>
12
13 #include "para.h"
14 #include "error.h"
15 #include "portable_io.h"
16 #include "list.h"
17 #include "sched.h"
18 #include "ggo.h"
19 #include "recv.h"
20 #include "udp_recv.cmdline.h"
21 #include "string.h"
22 #include "net.h"
23 #include "fd.h"
24 #include "buffer_tree.h"
25
26 /**
27  * Data specific to the udp receiver.
28  *
29  * \sa \ref receiver, \ref receiver_node.
30  */
31 struct private_udp_recv_data {
32         /** The socket file descriptor. */
33         int fd;
34         struct btr_pool *btrp;
35 };
36
37 static void udp_recv_pre_select(struct sched *s, struct task *t)
38 {
39         struct receiver_node *rn = container_of(t, struct receiver_node, task);
40         struct private_udp_recv_data *purd = rn->private_data;
41
42         if (generic_recv_pre_select(s, t) <= 0)
43                 return;
44         para_fd_set(purd->fd, &s->rfds, &s->max_fileno);
45 }
46
47 static void udp_recv_post_select(__a_unused struct sched *s, struct task *t)
48 {
49         struct receiver_node *rn = container_of(t, struct receiver_node, task);
50         struct private_udp_recv_data *purd = rn->private_data;
51         struct btr_node *btrn = rn->btrn;
52         int ret;
53         char *buf = NULL;
54         size_t packet_size, bufsize;
55
56         t->error = 0;
57         ret = btr_node_status(btrn, 0, BTR_NT_ROOT);
58         if (ret < 0)
59                 goto err;
60         if (ret == 0)
61                 return;
62         if (!FD_ISSET(purd->fd, &s->rfds))
63                 return;
64         bufsize = btr_pool_get_buffer(purd->btrp, &buf);
65         ret = -E_UDP_OVERRUN;
66         if (bufsize == 0)
67                 goto err;
68         ret = recv_bin_buffer(purd->fd, buf, bufsize);
69         if (ret == 0)
70                 ret = -E_RECV_EOF;
71         if (ret < 0)
72                 goto err;
73         packet_size = ret;
74         if (packet_size >= FEC_EOF_PACKET_LEN) {
75                 if (!memcmp(buf, FEC_EOF_PACKET, FEC_EOF_PACKET_LEN)) {
76                         PARA_INFO_LOG("received eof packet\n");
77                         ret = -E_RECV_EOF;
78                         goto err;
79                 }
80         }
81         btr_add_output_pool(purd->btrp, packet_size, btrn);
82         return;
83 err:
84         btr_remove_node(btrn);
85         t->error = ret;
86         close(purd->fd);
87         purd->fd = -1;
88 }
89
90 static void udp_recv_close(struct receiver_node *rn)
91 {
92         struct private_udp_recv_data *purd = rn->private_data;
93
94         if (purd->fd >= 0)
95                 close(purd->fd);
96         btr_pool_free(purd->btrp);
97         free(rn->private_data);
98 }
99
100 static void *udp_recv_parse_config(int argc, char **argv)
101 {
102         int ret;
103         struct udp_recv_args_info *tmp =
104                 para_calloc(sizeof(struct udp_recv_args_info));
105
106         ret = udp_recv_cmdline_parser(argc, argv, tmp)? -E_UDP_SYNTAX : 1;
107         if (ret >= 0)
108                 return tmp;
109         free(tmp);
110         return NULL;
111 }
112
113 /*
114  * Perform AF-independent joining of multicast receive addresses.
115  *
116  * \param fd    Bound socket descriptor.
117  * \param iface The receiving multicast interface, or NULL for the default.
118  *
119  * \return Zero if okay, negative on error.
120  */
121 static int mcast_receiver_setup(int fd, const char *iface)
122 {
123         struct sockaddr_storage ss;
124         socklen_t sslen = sizeof(ss);
125         int id = iface == NULL ? 0 : if_nametoindex(iface);
126
127         if (getsockname(fd, (struct sockaddr *)&ss, &sslen) < 0)
128                 goto err;
129
130         if (iface != NULL && id == 0)
131                 PARA_WARNING_LOG("could not resolve interface %s, using default", iface);
132
133         switch (ss.ss_family) {
134         case AF_INET:
135                 if (IN_MULTICAST(htonl(((struct sockaddr_in *)&ss)->sin_addr.s_addr))) {
136 #ifdef HAVE_IP_MREQN
137                         struct ip_mreqn m4;
138
139                         m4.imr_address.s_addr   = INADDR_ANY;
140                         m4.imr_ifindex          = id;
141 #else
142                         struct ip_mreq m4;
143
144                         m4.imr_interface.s_addr = INADDR_ANY;
145                         if (id != 0)
146                                 PARA_ERROR_LOG("Setting IPv4 receiver mcast interface not supported.");
147
148 #endif
149                         m4.imr_multiaddr        = ((struct sockaddr_in *)&ss)->sin_addr;
150
151                         if (setsockopt(fd, IPPROTO_IP, IP_ADD_MEMBERSHIP, &m4, sizeof(m4)) < 0)
152                                 break;
153                 }
154                 return 0;
155         case AF_INET6:
156                 if (IN6_IS_ADDR_MULTICAST(&((struct sockaddr_in6 *)&ss)->sin6_addr)) {
157                         struct ipv6_mreq m6;
158
159                         memset(&m6, 0, sizeof(m6));
160                         memcpy(&m6.ipv6mr_multiaddr, &((struct sockaddr_in6 *)&ss)->sin6_addr, 16);
161                         m6.ipv6mr_interface = id;
162                         if (setsockopt(fd, IPPROTO_IPV6, IPV6_JOIN_GROUP, &m6, sizeof(m6)) < 0)
163                                 break;
164                 }
165                 return 0;
166         default:
167                 PARA_ERROR_LOG("address family %d not supported", ss.ss_family);
168                 return -E_ADDRESS_LOOKUP;
169         }
170 err:
171         return -ERRNO_TO_PARA_ERROR(errno);
172 }
173
174 static int udp_recv_open(struct receiver_node *rn)
175 {
176         struct private_udp_recv_data *purd;
177         struct udp_recv_args_info *c = rn->conf;
178         char  *iface = c->iface_given ? c->iface_arg : NULL;
179         int ret;
180
181         rn->private_data = para_calloc(sizeof(struct private_udp_recv_data));
182         purd = rn->private_data;
183
184         ret = makesock(AF_UNSPEC, IPPROTO_UDP, 1, c->host_arg, c->port_arg);
185         if (ret < 0)
186                 goto err;
187         purd->fd = ret;
188
189         ret = mcast_receiver_setup(purd->fd, iface);
190         if (ret < 0) {
191                 close(purd->fd);
192                 return ret;
193         }
194
195         ret = mark_fd_nonblocking(purd->fd);
196         if (ret < 0) {
197                 close(purd->fd);
198                 goto err;
199         }
200         PARA_INFO_LOG("receiving from %s:%d, fd=%d\n", c->host_arg,
201                 c->port_arg, purd->fd);
202         purd->btrp = btr_pool_new("udp_recv", 320 * 1024);
203         return purd->fd;
204 err:
205         free(rn->private_data);
206         return ret;
207 }
208
209 static void udp_recv_free_config(void *conf)
210 {
211         udp_recv_cmdline_parser_free(conf);
212 }
213
214 /**
215  * The init function of the udp receiver.
216  *
217  * \param r Pointer to the receiver struct to initialize.
218  *
219  * Initialize all function pointers of \a r.
220  */
221 void udp_recv_init(struct receiver *r)
222 {
223         struct udp_recv_args_info dummy;
224
225         udp_recv_cmdline_parser_init(&dummy);
226         r->open = udp_recv_open;
227         r->close = udp_recv_close;
228         r->pre_select = udp_recv_pre_select;
229         r->post_select = udp_recv_post_select;
230         r->parse_config = udp_recv_parse_config;
231         r->free_config = udp_recv_free_config;
232         r->help = (struct ggo_help) {
233                 .short_help = udp_recv_args_info_help,
234                 .detailed_help = udp_recv_args_info_detailed_help
235         };
236         udp_recv_cmdline_parser_free(&dummy);
237 }