2014-12-05 12:30:48 +01:00
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/** Various socket related functions
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*
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* Parse and print addresses, connect, close, etc...
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*
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* S2SS uses these functions to setup the network emulation feature.
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*
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* @author Steffen Vogel <stvogel@eonerc.rwth-aachen.de>
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* @copyright 2014, Institute for Automation of Complex Power Systems, EONERC
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*/
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <linux/if_packet.h>
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#include <net/if.h>
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#include <net/ethernet.h>
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#include <arpa/inet.h>
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#include <netinet/ip.h>
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#include <netinet/ether.h>
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#include <sys/types.h>
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#include <sys/socket.h>
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#include <netdb.h>
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#include "config.h"
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#include "utils.h"
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#include "socket.h"
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#include "if.h"
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int socket_print(struct node *n, char *buf, int len)
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{
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struct socket *s = n->socket;
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char local[INET6_ADDRSTRLEN + 16];
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char remote[INET6_ADDRSTRLEN + 16];
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socket_print_addr(local, sizeof(local), (struct sockaddr*) &s->local);
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socket_print_addr(remote, sizeof(remote), (struct sockaddr*) &s->remote);
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return snprintf(buf, len, "local=%s, remote=%s", local, remote);
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}
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int socket_open(struct node *n)
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{
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struct socket *s = n->socket;
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2014-12-09 17:19:07 +00:00
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struct sockaddr_in *sin = (struct sockaddr_in *) &s->local;
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struct sockaddr_ll *sll = (struct sockaddr_ll *) &s->local;
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int ret;
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2015-03-18 16:16:44 +01:00
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2014-12-05 12:30:48 +01:00
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/* Create socket */
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switch (node_type(n)) {
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case TCPD:
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2014-12-09 17:19:07 +00:00
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case TCP: s->sd = socket(sin->sin_family, SOCK_STREAM, IPPROTO_TCP); break;
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case UDP: s->sd = socket(sin->sin_family, SOCK_DGRAM, IPPROTO_UDP); break;
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case IP: s->sd = socket(sin->sin_family, SOCK_RAW, ntohs(sin->sin_port)); break;
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case IEEE_802_3:s->sd = socket(sin->sin_family, SOCK_DGRAM, sll->sll_protocol); break;
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2014-12-05 12:30:48 +01:00
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default:
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error("Invalid socket type!");
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}
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if (s->sd < 0)
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2014-12-09 15:39:17 +00:00
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serror("Failed to create socket");
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2014-12-05 12:30:48 +01:00
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/* Bind socket for receiving */
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2014-12-09 17:19:07 +00:00
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ret = bind(s->sd, (struct sockaddr *) &s->local, sizeof(s->local));
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if (ret < 0)
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2014-12-09 15:39:17 +00:00
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serror("Failed to bind socket");
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2014-12-09 17:19:07 +00:00
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/* Connect socket for sending */
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if (node_type(n) == TCPD) {
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/* Listening TCP sockets will be connected later by calling accept() */
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s->sd2 = s->sd;
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}
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else if (node_type(n) != IEEE_802_3) {
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ret = connect(s->sd, (struct sockaddr *) &s->remote, sizeof(s->remote));
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if (ret < 0)
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serror("Failed to connect socket");
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}
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2014-12-05 12:30:48 +01:00
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/* Determine outgoing interface */
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int index = if_getegress((struct sockaddr *) &s->remote);
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if (index < 0)
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error("Failed to get egress interface for node '%s'", n->name);
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struct interface *i = if_lookup_index(index);
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if (!i)
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i = if_create(index);
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list_add(i->sockets, s);
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i->refcnt++;
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/* Set socket priority, QoS or TOS IP options */
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int prio;
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switch (node_type(n)) {
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case TCPD:
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case TCP:
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case UDP:
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case IP:
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prio = IPTOS_LOWDELAY;
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if (setsockopt(s->sd, IPPROTO_IP, IP_TOS, &prio, sizeof(prio)))
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2014-12-09 15:39:17 +00:00
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serror("Failed to set type of service (QoS)");
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2014-12-05 12:30:48 +01:00
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else
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debug(4, "Set QoS/TOS IP option for node '%s' to %#x", n->name, prio);
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break;
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default:
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prio = SOCKET_PRIO;
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if (setsockopt(s->sd, SOL_SOCKET, SO_PRIORITY, &prio, sizeof(prio)))
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2014-12-09 15:39:17 +00:00
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serror("Failed to set socket priority");
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2014-12-05 12:30:48 +01:00
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else
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debug(4, "Set socket priority for node '%s' to %u", n->name, prio);
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break;
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}
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return 0;
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}
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int socket_close(struct node *n)
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{
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2014-12-09 17:19:07 +00:00
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struct socket *s = n->socket;
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2014-12-09 17:48:33 +00:00
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if (s->sd >= 0)
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2014-12-09 17:19:07 +00:00
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close(s->sd);
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2014-12-09 17:48:33 +00:00
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if (s->sd2 >= 0)
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2014-12-09 17:19:07 +00:00
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close(s->sd2);
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return 0;
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2014-12-05 12:30:48 +01:00
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}
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2015-01-20 10:52:05 +00:00
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int socket_read(struct node *n, struct msg *m)
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2014-12-05 12:30:48 +01:00
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{
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/* Receive message from socket */
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2014-12-09 17:19:07 +00:00
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int ret = recv(n->socket->sd, m, sizeof(struct msg), 0);
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if (ret == 0)
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error("Remote node '%s' closed the connection", n->name);
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else if (ret < 0)
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2014-12-09 15:39:17 +00:00
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serror("Failed recv");
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2014-12-05 12:30:48 +01:00
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/* Convert headers to host byte order */
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m->sequence = ntohs(m->sequence);
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/* Convert message to host endianess */
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if (m->endian != MSG_ENDIAN_HOST)
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msg_swap(m);
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debug(10, "Message received from node '%s': version=%u, type=%u, endian=%u, length=%u, sequence=%u",
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n->name, m->version, m->type, m->endian, m->length, m->sequence);
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return 0;
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}
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2015-01-20 10:52:05 +00:00
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int socket_write(struct node *n, struct msg *m)
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2014-12-05 12:30:48 +01:00
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{
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2014-12-09 17:19:07 +00:00
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struct socket *s = n->socket;
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int ret;
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2014-12-05 12:30:48 +01:00
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/* Convert headers to network byte order */
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m->sequence = htons(m->sequence);
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2014-12-09 17:19:07 +00:00
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if (node_type(n) == IEEE_802_3)
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ret = sendto(s->sd, m, MSG_LEN(m->length), 0, (struct sockaddr *) &s->remote, sizeof(s->remote));
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else
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ret = send(s->sd, m, MSG_LEN(m->length), 0);
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if (ret < 0)
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2015-03-18 16:16:44 +01:00
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serror("Failed send(to)");
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2014-12-05 12:30:48 +01:00
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debug(10, "Message sent to node '%s': version=%u, type=%u, endian=%u, length=%u, sequence=%u",
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n->name, m->version, m->type, m->endian, m->length, ntohs(m->sequence));
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return 0;
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}
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int socket_print_addr(char *buf, int len, struct sockaddr *sa)
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{
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switch (sa->sa_family) {
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case AF_INET: {
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struct sockaddr_in *sin = (struct sockaddr_in *) sa;
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inet_ntop(sin->sin_family, &sin->sin_addr, buf, len);
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return snprintf(buf+strlen(buf), len-strlen(buf), ":%hu", ntohs(sin->sin_port));
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}
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case AF_PACKET: {
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struct sockaddr_ll *sll = (struct sockaddr_ll *) sa;
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char ifname[IF_NAMESIZE];
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2014-12-09 17:19:07 +00:00
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return snprintf(buf, len, "%s%%%s:%#hx",
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2014-12-05 12:30:48 +01:00
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ether_ntoa((struct ether_addr *) &sll->sll_addr),
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if_indextoname(sll->sll_ifindex, ifname),
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ntohs(sll->sll_protocol));
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}
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default:
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2014-12-09 15:39:17 +00:00
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error("Unsupported address family: %u", sa->sa_family);
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2014-12-05 12:30:48 +01:00
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}
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return 0;
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}
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int socket_parse_addr(const char *addr, struct sockaddr *sa, enum node_type type, int flags)
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{
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/** @todo: Add support for IPv6 */
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char *copy = strdup(addr);
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int ret;
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if (type == IEEE_802_3) { /* Format: "ab:cd:ef:12:34:56%ifname:protocol" */
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struct sockaddr_ll *sll = (struct sockaddr_ll *) sa;
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/* Split string */
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char *node = strtok(copy, "%");
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2014-12-09 17:19:07 +00:00
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char *ifname = strtok(NULL, ":");
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char *proto = strtok(NULL, "\0");
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2014-12-05 12:30:48 +01:00
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/* Parse link layer (MAC) address */
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struct ether_addr *mac = ether_aton(node);
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if (!mac)
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error("Failed to parse mac address: %s", node);
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memcpy(&sll->sll_addr, &mac->ether_addr_octet, 6);
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2014-12-09 17:19:07 +00:00
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sll->sll_protocol = htons((proto) ? strtol(proto, NULL, 0) : ETH_P_S2SS);
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2014-12-05 12:30:48 +01:00
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sll->sll_halen = 6;
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sll->sll_family = AF_PACKET;
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sll->sll_ifindex = if_nametoindex(ifname);
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ret = 0;
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}
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2014-12-09 17:19:07 +00:00
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else { /* Format: "192.168.0.10:12001" */
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2014-12-05 12:30:48 +01:00
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struct addrinfo hint = {
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.ai_flags = flags,
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2015-03-20 18:55:14 +01:00
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.ai_family = AF_INET
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2014-12-05 12:30:48 +01:00
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};
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/* Split string */
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char *node = strtok(copy, ":");
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char *service = strtok(NULL, "\0");
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if (node && !strcmp(node, "*"))
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node = NULL;
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if (service && !strcmp(service, "*"))
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service = NULL;
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switch (type) {
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case IP:
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2014-12-09 17:19:07 +00:00
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hint.ai_socktype = SOCK_RAW;
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hint.ai_protocol = (service) ? strtol(service, NULL, 0) : IPPROTO_S2SS;
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hint.ai_flags |= AI_NUMERICSERV;
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2014-12-05 12:30:48 +01:00
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break;
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case TCPD:
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case TCP:
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hint.ai_socktype = SOCK_STREAM;
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hint.ai_protocol = IPPROTO_TCP;
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break;
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case UDP:
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hint.ai_socktype = SOCK_DGRAM;
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hint.ai_protocol = IPPROTO_UDP;
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break;
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default:
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error("Invalid address type");
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}
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/* Lookup address */
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struct addrinfo *result;
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2014-12-09 17:19:07 +00:00
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ret = getaddrinfo(node, (type == IP) ? NULL : service, &hint, &result);
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2014-12-05 12:30:48 +01:00
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if (!ret) {
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2014-12-09 17:19:07 +00:00
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if (type == IP) {
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/* We mis-use the sin_port field to store the IP protocol number on RAW sockets */
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struct sockaddr_in *sin = (struct sockaddr_in *) result->ai_addr;
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sin->sin_port = htons(result->ai_protocol);
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}
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memcpy(sa, result->ai_addr, result->ai_addrlen);
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2014-12-05 12:30:48 +01:00
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freeaddrinfo(result);
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}
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}
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free(copy);
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return ret;
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}
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