tinc/src/net_packet.c

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/*
net_packet.c -- Handles in- and outgoing VPN packets
Copyright (C) 1998-2005 Ivo Timmermans,
2000-2009 Guus Sliepen <guus@tinc-vpn.org>
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
$Id$
*/
#include "system.h"
#include <zlib.h>
#include LZO1X_H
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#include "splay_tree.h"
#include "cipher.h"
#include "conf.h"
#include "connection.h"
#include "crypto.h"
#include "digest.h"
#include "device.h"
#include "ethernet.h"
#include "graph.h"
#include "list.h"
#include "logger.h"
#include "net.h"
#include "netutl.h"
#include "protocol.h"
#include "process.h"
#include "route.h"
#include "utils.h"
#include "xalloc.h"
#ifdef WSAEMSGSIZE
#define EMSGSIZE WSAEMSGSIZE
#endif
int keylifetime = 0;
int keyexpires = 0;
static char lzo_wrkmem[LZO1X_999_MEM_COMPRESS > LZO1X_1_MEM_COMPRESS ? LZO1X_999_MEM_COMPRESS : LZO1X_1_MEM_COMPRESS];
static void send_udppacket(node_t *, vpn_packet_t *);
#define MAX_SEQNO 1073741824
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static void send_mtu_probe_handler(int fd, short events, void *data) {
node_t *n = data;
vpn_packet_t packet;
int len, i;
cp();
n->mtuprobes++;
if(n->mtuprobes >= 10 && !n->minmtu) {
ifdebug(TRAFFIC) logger(LOG_INFO, _("No response to MTU probes from %s (%s)"), n->name, n->hostname);
return;
}
for(i = 0; i < 3; i++) {
if(n->mtuprobes >= 30 || n->minmtu >= n->maxmtu) {
n->mtu = n->minmtu;
ifdebug(TRAFFIC) logger(LOG_INFO, _("Fixing MTU of %s (%s) to %d after %d probes"), n->name, n->hostname, n->mtu, n->mtuprobes);
return;
}
len = n->minmtu + 1 + random() % (n->maxmtu - n->minmtu);
if(len < 64)
len = 64;
memset(packet.data, 0, 14);
randomize(packet.data + 14, len - 14);
packet.len = len;
packet.priority = 0;
ifdebug(TRAFFIC) logger(LOG_INFO, _("Sending MTU probe length %d to %s (%s)"), len, n->name, n->hostname);
send_udppacket(n, &packet);
}
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event_add(&n->mtuevent, &(struct timeval){1, 0});
}
void send_mtu_probe(node_t *n) {
if(!timeout_initialized(&n->mtuevent))
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timeout_set(&n->mtuevent, send_mtu_probe_handler, n);
send_mtu_probe_handler(0, 0, n);
}
void mtu_probe_h(node_t *n, vpn_packet_t *packet, length_t len) {
ifdebug(TRAFFIC) logger(LOG_INFO, _("Got MTU probe length %d from %s (%s)"), packet->len, n->name, n->hostname);
if(!packet->data[0]) {
packet->data[0] = 1;
send_packet(n, packet);
} else {
if(n->minmtu < len)
n->minmtu = len;
}
}
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static length_t compress_packet(uint8_t *dest, const uint8_t *source, length_t len, int level) {
if(level == 10) {
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lzo_uint lzolen = MAXSIZE;
lzo1x_1_compress(source, len, dest, &lzolen, lzo_wrkmem);
return lzolen;
} else if(level < 10) {
unsigned long destlen = MAXSIZE;
if(compress2(dest, &destlen, source, len, level) == Z_OK)
return destlen;
else
return -1;
} else {
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lzo_uint lzolen = MAXSIZE;
lzo1x_999_compress(source, len, dest, &lzolen, lzo_wrkmem);
return lzolen;
}
return -1;
}
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static length_t uncompress_packet(uint8_t *dest, const uint8_t *source, length_t len, int level) {
if(level > 9) {
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lzo_uint lzolen = MAXSIZE;
if(lzo1x_decompress_safe(source, len, dest, &lzolen, NULL) == LZO_E_OK)
return lzolen;
else
return -1;
} else {
unsigned long destlen = MAXSIZE;
if(uncompress(dest, &destlen, source, len) == Z_OK)
return destlen;
else
return -1;
}
return -1;
}
/* VPN packet I/O */
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static void receive_packet(node_t *n, vpn_packet_t *packet) {
cp();
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Received packet of %d bytes from %s (%s)"),
packet->len, n->name, n->hostname);
route(n, packet);
}
static bool try_mac(node_t *n, const vpn_packet_t *inpkt)
{
if(!digest_active(&n->indigest) || !n->inmaclength || inpkt->len < sizeof inpkt->seqno + n->inmaclength)
return false;
return digest_verify(&n->indigest, &inpkt->seqno, inpkt->len, &inpkt->seqno + inpkt->len);
}
static void receive_udppacket(node_t *n, vpn_packet_t *inpkt)
{
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vpn_packet_t pkt1, pkt2;
vpn_packet_t *pkt[] = { &pkt1, &pkt2, &pkt1, &pkt2 };
int nextpkt = 0;
vpn_packet_t *outpkt = pkt[0];
size_t outlen;
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int i;
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cp();
if(!cipher_active(&n->incipher)) {
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Got packet from %s (%s) but he hasn't got our key yet"),
n->name, n->hostname);
return;
}
/* Check packet length */
if(inpkt->len < sizeof inpkt->seqno + digest_length(&n->indigest)) {
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Got too short packet from %s (%s)"),
n->name, n->hostname);
return;
}
/* Check the message authentication code */
if(digest_active(&n->indigest) && !digest_verify(&n->indigest, &inpkt->seqno, inpkt->len, &inpkt->seqno + inpkt->len)) {
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Got unauthenticated packet from %s (%s)"), n->name, n->hostname);
return;
}
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/* Decrypt the packet */
if(cipher_active(&n->incipher)) {
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outpkt = pkt[nextpkt++];
outlen = MAXSIZE;
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if(!cipher_decrypt(&n->incipher, &inpkt->seqno, inpkt->len, &outpkt->seqno, &outlen, true)) {
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Error decrypting packet from %s (%s)"), n->name, n->hostname);
return;
}
outpkt->len = outlen;
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inpkt = outpkt;
}
/* Check the sequence number */
inpkt->len -= sizeof inpkt->seqno;
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inpkt->seqno = ntohl(inpkt->seqno);
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if(inpkt->seqno != n->received_seqno + 1) {
if(inpkt->seqno >= n->received_seqno + sizeof n->late * 8) {
logger(LOG_WARNING, _("Lost %d packets from %s (%s)"),
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inpkt->seqno - n->received_seqno - 1, n->name, n->hostname);
memset(n->late, 0, sizeof n->late);
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} else if (inpkt->seqno <= n->received_seqno) {
if((n->received_seqno >= sizeof n->late * 8 && inpkt->seqno <= n->received_seqno - sizeof n->late * 8) || !(n->late[(inpkt->seqno / 8) % sizeof n->late] & (1 << inpkt->seqno % 8))) {
logger(LOG_WARNING, _("Got late or replayed packet from %s (%s), seqno %d, last received %d"),
n->name, n->hostname, inpkt->seqno, n->received_seqno);
return;
}
} else {
for(i = n->received_seqno + 1; i < inpkt->seqno; i++)
n->late[(i / 8) % sizeof n->late] |= 1 << i % 8;
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}
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}
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n->late[(inpkt->seqno / 8) % sizeof n->late] &= ~(1 << inpkt->seqno % 8);
if(inpkt->seqno > n->received_seqno)
n->received_seqno = inpkt->seqno;
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if(n->received_seqno > MAX_SEQNO)
regenerate_key();
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/* Decompress the packet */
length_t origlen = inpkt->len;
if(n->incompression) {
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outpkt = pkt[nextpkt++];
if((outpkt->len = uncompress_packet(outpkt->data, inpkt->data, inpkt->len, n->incompression)) < 0) {
ifdebug(TRAFFIC) logger(LOG_ERR, _("Error while uncompressing packet from %s (%s)"),
n->name, n->hostname);
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return;
}
inpkt = outpkt;
origlen -= MTU/64 + 20;
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}
inpkt->priority = 0;
if(!inpkt->data[12] && !inpkt->data[13])
mtu_probe_h(n, inpkt, origlen);
else
receive_packet(n, inpkt);
}
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void receive_tcppacket(connection_t *c, char *buffer, int len) {
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vpn_packet_t outpkt;
cp();
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outpkt.len = len;
if(c->options & OPTION_TCPONLY)
outpkt.priority = 0;
else
outpkt.priority = -1;
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memcpy(outpkt.data, buffer, len);
receive_packet(c->node, &outpkt);
}
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static void send_udppacket(node_t *n, vpn_packet_t *origpkt) {
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vpn_packet_t pkt1, pkt2;
vpn_packet_t *pkt[] = { &pkt1, &pkt2, &pkt1, &pkt2 };
vpn_packet_t *inpkt = origpkt;
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int nextpkt = 0;
vpn_packet_t *outpkt;
int origlen;
size_t outlen;
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static int priority = 0;
int origpriority;
int sock;
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cp();
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/* Make sure we have a valid key */
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if(!n->status.validkey) {
ifdebug(TRAFFIC) logger(LOG_INFO,
_("No valid key known yet for %s (%s), forwarding via TCP"),
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n->name, n->hostname);
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if(!n->status.waitingforkey)
send_req_key(n);
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n->status.waitingforkey = true;
send_tcppacket(n->nexthop->connection, origpkt);
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return;
}
if(n->options & OPTION_PMTU_DISCOVERY && !n->minmtu && (inpkt->data[12] | inpkt->data[13])) {
ifdebug(TRAFFIC) logger(LOG_INFO,
_("No minimum MTU established yet for %s (%s), forwarding via TCP"),
n->name, n->hostname);
send_tcppacket(n->nexthop->connection, origpkt);
return;
}
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origlen = inpkt->len;
origpriority = inpkt->priority;
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/* Compress the packet */
if(n->outcompression) {
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outpkt = pkt[nextpkt++];
if((outpkt->len = compress_packet(outpkt->data, inpkt->data, inpkt->len, n->outcompression)) < 0) {
ifdebug(TRAFFIC) logger(LOG_ERR, _("Error while compressing packet to %s (%s)"),
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n->name, n->hostname);
return;
}
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inpkt = outpkt;
}
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/* Add sequence number */
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inpkt->seqno = htonl(++(n->sent_seqno));
inpkt->len += sizeof inpkt->seqno;
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/* Encrypt the packet */
if(cipher_active(&n->outcipher)) {
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outpkt = pkt[nextpkt++];
outlen = MAXSIZE;
if(!cipher_encrypt(&n->outcipher, &inpkt->seqno, inpkt->len, &outpkt->seqno, &outlen, true)) {
ifdebug(TRAFFIC) logger(LOG_ERR, _("Error while encrypting packet to %s (%s)"), n->name, n->hostname);
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goto end;
}
outpkt->len = outlen;
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inpkt = outpkt;
}
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/* Add the message authentication code */
if(digest_active(&n->outdigest)) {
digest_create(&n->outdigest, &inpkt->seqno, inpkt->len, &inpkt->seqno + inpkt->len);
inpkt->len += digest_length(&n->outdigest);
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}
/* Determine which socket we have to use */
for(sock = 0; sock < listen_sockets; sock++)
if(n->address.sa.sa_family == listen_socket[sock].sa.sa.sa_family)
break;
if(sock >= listen_sockets)
sock = 0; /* If none is available, just use the first and hope for the best. */
/* Send the packet */
#if defined(SOL_IP) && defined(IP_TOS)
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if(priorityinheritance && origpriority != priority
&& listen_socket[sock].sa.sa.sa_family == AF_INET) {
priority = origpriority;
ifdebug(TRAFFIC) logger(LOG_DEBUG, _("Setting outgoing packet priority to %d"), priority);
if(setsockopt(listen_socket[sock].udp, SOL_IP, IP_TOS, &priority, sizeof priority)) /* SO_PRIORITY doesn't seem to work */
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logger(LOG_ERR, _("System call `%s' failed: %s"), "setsockopt", strerror(errno));
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}
#endif
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if((sendto(listen_socket[sock].udp, (char *) &inpkt->seqno, inpkt->len, 0, &(n->address.sa), SALEN(n->address.sa))) < 0) {
if(errno == EMSGSIZE) {
if(n->maxmtu >= origlen)
n->maxmtu = origlen - 1;
if(n->mtu >= origlen)
n->mtu = origlen - 1;
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} else
logger(LOG_ERR, _("Error sending packet to %s (%s): %s"), n->name, n->hostname, strerror(errno));
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}
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end:
origpkt->len = origlen;
}
/*
send a packet to the given vpn ip.
*/
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void send_packet(const node_t *n, vpn_packet_t *packet) {
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node_t *via;
cp();
if(n == myself) {
if(overwrite_mac)
memcpy(packet->data, mymac.x, ETH_ALEN);
write_packet(packet);
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return;
}
ifdebug(TRAFFIC) logger(LOG_ERR, _("Sending packet of %d bytes to %s (%s)"),
packet->len, n->name, n->hostname);
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if(!n->status.reachable) {
ifdebug(TRAFFIC) logger(LOG_INFO, _("Node %s (%s) is not reachable"),
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n->name, n->hostname);
return;
}
via = (packet->priority == -1 || n->via == myself) ? n->nexthop : n->via;
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if(via != n)
ifdebug(TRAFFIC) logger(LOG_INFO, _("Sending packet to %s via %s (%s)"),
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n->name, via->name, n->via->hostname);
if(packet->priority == -1 || ((myself->options | via->options) & OPTION_TCPONLY)) {
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if(!send_tcppacket(via->connection, packet))
terminate_connection(via->connection, true);
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} else
send_udppacket(via, packet);
}
/* Broadcast a packet using the minimum spanning tree */
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void broadcast_packet(const node_t *from, vpn_packet_t *packet) {
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splay_node_t *node;
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connection_t *c;
cp();
ifdebug(TRAFFIC) logger(LOG_INFO, _("Broadcasting packet of %d bytes from %s (%s)"),
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packet->len, from->name, from->hostname);
if(from != myself) {
send_packet(myself, packet);
// In TunnelServer mode, do not forward broadcast packets.
// The MST might not be valid and create loops.
if(tunnelserver)
return;
}
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for(node = connection_tree->head; node; node = node->next) {
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c = node->data;
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if(c->status.active && c->status.mst && c != from->nexthop->connection)
send_packet(c->node, packet);
}
}
static node_t *try_harder(const sockaddr_t *from, const vpn_packet_t *pkt) {
splay_node_t *node;
edge_t *e;
node_t *n = NULL;
for(node = edge_weight_tree->head; node; node = node->next) {
e = node->data;
if(sockaddrcmp_noport(from, &e->address))
continue;
if(!n)
n = e->to;
if(!try_mac(e->to, pkt))
continue;
n = e->to;
break;
}
return n;
}
void handle_incoming_vpn_data(int sock, short events, void *data)
{
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vpn_packet_t pkt;
char *hostname;
sockaddr_t from;
socklen_t fromlen = sizeof from;
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node_t *n;
cp();
pkt.len = recvfrom(sock, (char *) &pkt.seqno, MAXSIZE, 0, &from.sa, &fromlen);
if(pkt.len < 0) {
logger(LOG_ERR, _("Receiving packet failed: %s"), strerror(errno));
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return;
}
sockaddrunmap(&from); /* Some braindead IPv6 implementations do stupid things. */
n = lookup_node_udp(&from);
if(!n) {
n = try_harder(&from, &pkt);
if(n)
update_node_udp(n, &from);
else ifdebug(PROTOCOL) {
hostname = sockaddr2hostname(&from);
logger(LOG_WARNING, _("Received UDP packet from unknown source %s"), hostname);
free(hostname);
return;
}
else
return;
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}
receive_udppacket(n, &pkt);
}
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void handle_device_data(int sock, short events, void *data) {
vpn_packet_t packet;
if(read_packet(&packet))
route(myself, &packet);
}