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466 lines
16 KiB
466 lines
16 KiB
/**
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* (C) 2007-20 - ntop.org and contributors
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not see see <http://www.gnu.org/licenses/>
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*
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*/
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#ifndef _N2N_H_
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#define _N2N_H_
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/*
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tunctl -t tun0
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tunctl -t tun1
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ifconfig tun0 1.2.3.4 up
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ifconfig tun1 1.2.3.5 up
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./edge -d tun0 -l 2000 -r 127.0.0.1:3000 -c hello
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./edge -d tun1 -l 3000 -r 127.0.0.1:2000 -c hello
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tunctl -u UID -t tunX
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*/
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/* #define N2N_CAN_NAME_IFACE */
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/* Moved here to define _CRT_SECURE_NO_WARNINGS before all the including takes place */
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#ifdef WIN32
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#include "win32/n2n_win32.h"
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#include "win32/winconfig.h"
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#define N2N_CAN_NAME_IFACE 1
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#undef N2N_HAVE_DAEMON
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#undef N2N_HAVE_SETUID
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#else
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#ifndef CMAKE_BUILD
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#include "config.h"
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#endif
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#endif
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#define PACKAGE_BUILDDATE (__DATE__ " " __TIME__)
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#include <time.h>
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#include <ctype.h>
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#include <stdlib.h>
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#ifndef WIN32
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#include <netdb.h>
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#endif
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#ifndef _MSC_VER
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#include <getopt.h>
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#endif /* #ifndef _MSC_VER */
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#include <stdio.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <stdint.h>
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#include <time.h>
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#ifndef WIN32
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#include <unistd.h>
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#include <sys/ioctl.h>
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#include <sys/socket.h>
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#include <sys/param.h>
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#include <pthread.h>
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#ifdef __linux__
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#define N2N_CAN_NAME_IFACE 1
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#include <linux/netlink.h>
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#include <linux/rtnetlink.h>
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#include <sys/syscall.h>
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#include <unistd.h>
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#include <net/if_arp.h>
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#include <net/if.h>
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#include <linux/if_tun.h>
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#include <linux/netlink.h>
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#include <linux/rtnetlink.h>
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#define GRND_NONBLOCK 1
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#endif /* #ifdef __linux__ */
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#ifdef __FreeBSD__
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#include <netinet/in_systm.h>
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#endif /* #ifdef __FreeBSD__ */
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#include <syslog.h>
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#include <sys/wait.h>
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#if defined (__RDRND__) || defined (__RDSEED__)
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#include <immintrin.h>
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#endif
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#define ETH_ADDR_LEN 6
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struct ether_hdr
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{
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uint8_t dhost[ETH_ADDR_LEN];
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uint8_t shost[ETH_ADDR_LEN];
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uint16_t type; /* higher layer protocol encapsulated */
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} __attribute__ ((__packed__));
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typedef struct ether_hdr ether_hdr_t;
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#ifdef HAVE_LIBZSTD
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#include <zstd.h>
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#endif
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#ifdef __ANDROID_NDK__
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#define ARP_PERIOD_INTERVAL (10) /* sec */
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#endif /* #ifdef __ANDROID_NDK__ */
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#include <netinet/in.h>
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#include <netinet/ip.h>
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#include <netinet/udp.h>
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#include <arpa/inet.h>
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#include <sys/types.h>
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#include <sys/time.h>
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#include <unistd.h>
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#include <string.h>
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#include <assert.h>
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#include <sys/stat.h>
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#include <stdint.h>
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#ifdef N2N_HAVE_AES
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#include <openssl/opensslv.h>
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#include <openssl/crypto.h>
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#endif
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#define closesocket(a) close(a)
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#endif /* #ifndef WIN32 */
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#include "minilzo.h"
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#include "n2n_define.h"
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#include <signal.h>
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#include <string.h>
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#include <stdarg.h>
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#include "uthash.h"
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#include "lzoconf.h"
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#ifdef WIN32
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#include "win32/wintap.h"
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#include <sys/stat.h>
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#else
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#include <pwd.h>
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#endif /* #ifdef WIN32 */
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#include "n2n_wire.h"
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#include "n2n_transforms.h"
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#include "random_numbers.h"
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#include "pearson.h"
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#include "portable_endian.h"
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#include "speck.h"
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#ifdef WIN32
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#define N2N_IFNAMSIZ 64
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#else
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#define N2N_IFNAMSIZ 16 /* 15 chars * NULL */
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#endif
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#ifndef WIN32
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typedef struct tuntap_dev {
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int fd;
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int if_idx;
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uint8_t mac_addr[6];
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uint32_t ip_addr, device_mask;
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uint16_t mtu;
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char dev_name[N2N_IFNAMSIZ];
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} tuntap_dev;
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#define SOCKET int
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#endif /* #ifndef WIN32 */
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/** Uncomment this to enable the MTU check, then try to ssh to generate a fragmented packet. */
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/** NOTE: see doc/MTU.md for an explanation on the 1400 value */
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//#define MTU_ASSERT_VALUE 1400
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/** Common type used to hold stringified IP addresses. */
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typedef char ipstr_t[32];
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/** Common type used to hold stringified MAC addresses. */
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#define N2N_MACSTR_SIZE 32
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typedef char macstr_t[N2N_MACSTR_SIZE];
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struct peer_info {
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n2n_mac_t mac_addr;
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n2n_sock_t sock;
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int timeout;
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time_t last_seen;
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time_t last_p2p;
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time_t last_sent_query;
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UT_hash_handle hh; /* makes this structure hashable */
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};
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typedef struct speck_context_t he_context_t;
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typedef char n2n_sn_name_t[N2N_EDGE_SN_HOST_SIZE];
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typedef struct n2n_route {
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in_addr_t net_addr;
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int net_bitlen;
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in_addr_t gateway;
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} n2n_route_t;
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typedef struct n2n_edge n2n_edge_t;
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/* *************************************************** */
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typedef enum {
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N2N_ACCEPT = 0,
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N2N_DROP = 1
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} n2n_verdict;
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/* *************************************************** */
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/* Callbacks allow external programs to attach functions in response to
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* N2N events. */
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typedef struct n2n_edge_callbacks {
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/* The supernode registration has been updated */
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void (*sn_registration_updated)(n2n_edge_t *eee, time_t now, const n2n_sock_t *sn);
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/* A packet has been received from a peer. N2N_DROP can be returned to
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* drop the packet. The packet payload can be modified. This only allows
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* the packet size to be reduced */
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n2n_verdict (*packet_from_peer)(n2n_edge_t *eee, const n2n_sock_t *peer, uint8_t *payload, uint16_t *payload_size);
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/* A packet has been received from the TAP interface. N2N_DROP can be
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* returned to drop the packet. The packet payload can be modified.
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* This only allows the packet size to be reduced */
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n2n_verdict (*packet_from_tap)(n2n_edge_t *eee, uint8_t *payload, uint16_t *payload_size);
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/* Called whenever the IP address of the TAP interface changes. */
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void (*ip_address_changed)(n2n_edge_t *eee, uint32_t old_ip, uint32_t new_ip);
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} n2n_edge_callbacks_t;
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/* ***************************************************** */
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typedef struct n2n_tuntap_priv_config {
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char tuntap_dev_name[N2N_IFNAMSIZ];
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char ip_mode[N2N_IF_MODE_SIZE];
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char ip_addr[N2N_NETMASK_STR_SIZE];
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char netmask[N2N_NETMASK_STR_SIZE];
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char device_mac[N2N_MACNAMSIZ];
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int mtu;
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uint8_t got_s;
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uint8_t daemon;
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#ifndef WIN32
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uid_t userid;
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gid_t groupid;
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#endif
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} n2n_tuntap_priv_config_t;
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/* *************************************************** */
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typedef struct n2n_edge_conf {
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n2n_sn_name_t sn_ip_array[N2N_EDGE_NUM_SUPERNODES];
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n2n_route_t *routes; /**< Networks to route through n2n */
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n2n_community_t community_name; /**< The community. 16 full octets. */
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uint8_t header_encryption; /**< Header encryption indicator. */
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he_context_t *header_encryption_ctx; /**< Header encryption cipher context. */
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he_context_t *header_iv_ctx; /**< Header IV ecnryption cipher context, REMOVE as soon as seperte fileds for checksum and replay protection available */
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n2n_transform_t transop_id; /**< The transop to use. */
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uint16_t compression; /**< Compress outgoing data packets before encryption */
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uint16_t num_routes; /**< Number of routes in routes */
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uint8_t dyn_ip_mode; /**< Interface IP address is dynamically allocated, eg. DHCP. */
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uint8_t allow_routing; /**< Accept packet no to interface address. */
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uint8_t drop_multicast; /**< Multicast ethernet addresses. */
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uint8_t disable_pmtu_discovery; /**< Disable the Path MTU discovery. */
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uint8_t allow_p2p; /**< Allow P2P connection */
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uint8_t sn_num; /**< Number of supernode addresses defined. */
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uint8_t tos; /** TOS for sent packets */
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char *encrypt_key;
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int register_interval; /**< Interval for supernode registration, also used for UDP NAT hole punching. */
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int register_ttl; /**< TTL for registration packet when UDP NAT hole punching through supernode. */
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int local_port;
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int mgmt_port;
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} n2n_edge_conf_t;
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struct n2n_edge_stats {
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uint32_t tx_p2p;
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uint32_t rx_p2p;
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uint32_t tx_sup;
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uint32_t rx_sup;
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uint32_t tx_sup_broadcast;
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uint32_t rx_sup_broadcast;
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};
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struct n2n_edge {
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n2n_edge_conf_t conf;
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/* Status */
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uint8_t sn_idx; /**< Currently active supernode. */
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uint8_t sn_wait; /**< Whether we are waiting for a supernode response. */
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size_t sup_attempts; /**< Number of remaining attempts to this supernode. */
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tuntap_dev device; /**< All about the TUNTAP device */
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n2n_trans_op_t transop; /**< The transop to use when encoding */
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n2n_cookie_t last_cookie; /**< Cookie sent in last REGISTER_SUPER. */
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n2n_route_t *sn_route_to_clean; /**< Supernode route to clean */
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n2n_edge_callbacks_t cb; /**< API callbacks */
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void *user_data; /**< Can hold user data */
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/* Sockets */
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n2n_sock_t supernode;
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int udp_sock;
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int udp_mgmt_sock; /**< socket for status info. */
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#ifndef SKIP_MULTICAST_PEERS_DISCOVERY
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n2n_sock_t multicast_peer; /**< Multicast peer group (for local edges) */
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int udp_multicast_sock; /**< socket for local multicast registrations. */
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int multicast_joined; /**< 1 if the group has been joined.*/
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#endif
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/* Peers */
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struct peer_info * known_peers; /**< Edges we are connected to. */
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struct peer_info * pending_peers; /**< Edges we have tried to register with. */
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/* Timers */
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time_t last_register_req; /**< Check if time to re-register with super*/
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time_t last_p2p; /**< Last time p2p traffic was received. */
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time_t last_sup; /**< Last time a packet arrived from supernode. */
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time_t start_time; /**< For calculating uptime */
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/* Statistics */
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struct n2n_edge_stats stats;
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/* Tuntap config */
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n2n_tuntap_priv_config_t tuntap_priv_conf;
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};
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typedef struct sn_stats
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{
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size_t errors; /* Number of errors encountered. */
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size_t reg_super; /* Number of REGISTER_SUPER requests received. */
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size_t reg_super_nak; /* Number of REGISTER_SUPER requests declined. */
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size_t fwd; /* Number of messages forwarded. */
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size_t broadcast; /* Number of messages broadcast to a community. */
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time_t last_fwd; /* Time when last message was forwarded. */
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time_t last_reg_super; /* Time when last REGISTER_SUPER was received. */
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} sn_stats_t;
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struct sn_community
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{
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char community[N2N_COMMUNITY_SIZE];
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uint8_t header_encryption; /* Header encryption indicator. */
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he_context_t *header_encryption_ctx; /* Header encryption cipher context. */
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he_context_t *header_iv_ctx; /* Header IV ecnryption cipher context, REMOVE as soon as seperte fileds for checksum and replay protection available */
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struct peer_info *edges; /* Link list of registered edges. */
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UT_hash_handle hh; /* makes this structure hashable */
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};
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typedef struct n2n_sn
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{
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time_t start_time; /* Used to measure uptime. */
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sn_stats_t stats;
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int daemon; /* If non-zero then daemonise. */
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uint16_t lport; /* Local UDP port to bind to. */
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int sock; /* Main socket for UDP traffic with edges. */
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int mgmt_sock; /* management socket. */
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int lock_communities; /* If true, only loaded communities can be used. */
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struct sn_community *communities;
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} n2n_sn_t;
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/* ************************************** */
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#include "header_encryption.h"
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#include "twofish.h"
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#ifndef TRACE_ERROR
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#define TRACE_ERROR 0, __FILE__, __LINE__
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#define TRACE_WARNING 1, __FILE__, __LINE__
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#define TRACE_NORMAL 2, __FILE__, __LINE__
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#define TRACE_INFO 3, __FILE__, __LINE__
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#define TRACE_DEBUG 4, __FILE__, __LINE__
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#endif
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/* ************************************** */
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/* Transop Init Functions */
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int n2n_transop_null_init(const n2n_edge_conf_t *conf, n2n_trans_op_t *ttt);
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int n2n_transop_twofish_init(const n2n_edge_conf_t *conf, n2n_trans_op_t *ttt);
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#ifdef N2N_HAVE_AES
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int n2n_transop_aes_cbc_init(const n2n_edge_conf_t *conf, n2n_trans_op_t *ttt);
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#endif
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#ifdef HAVE_OPENSSL_1_1
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int n2n_transop_cc20_init(const n2n_edge_conf_t *conf, n2n_trans_op_t *ttt);
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#endif
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int n2n_transop_speck_init(const n2n_edge_conf_t *conf, n2n_trans_op_t *ttt);
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/* Log */
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void setTraceLevel(int level);
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void setUseSyslog(int use_syslog);
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void setTraceFile(FILE *f);
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int getTraceLevel();
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void closeTraceFile();
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void traceEvent(int eventTraceLevel, char* file, int line, char * format, ...);
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/* Tuntap API */
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int tuntap_open(tuntap_dev *device, char *dev, const char *address_mode, char *device_ip,
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char *device_mask, const char * device_mac, int mtu);
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int tuntap_read(struct tuntap_dev *tuntap, unsigned char *buf, int len);
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int tuntap_write(struct tuntap_dev *tuntap, unsigned char *buf, int len);
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void tuntap_close(struct tuntap_dev *tuntap);
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void tuntap_get_address(struct tuntap_dev *tuntap);
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/* Utils */
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char* intoa(uint32_t addr, char* buf, uint16_t buf_len);
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char* macaddr_str(macstr_t buf, const n2n_mac_t mac);
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int str2mac( uint8_t * outmac /* 6 bytes */, const char * s );
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uint8_t is_multi_broadcast(const uint8_t * dest_mac);
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char* msg_type2str(uint16_t msg_type);
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void hexdump(const uint8_t * buf, size_t len);
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void print_n2n_version();
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int is_empty_ip_address(const n2n_sock_t * sock);
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void print_edge_stats(const n2n_edge_t *eee);
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/* Sockets */
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char* sock_to_cstr( n2n_sock_str_t out,
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const n2n_sock_t * sock );
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SOCKET open_socket(int local_port, int bind_any);
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int sock_equal( const n2n_sock_t * a,
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const n2n_sock_t * b );
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/* Operations on peer_info lists. */
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size_t purge_peer_list( struct peer_info ** peer_list,
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time_t purge_before );
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size_t clear_peer_list( struct peer_info ** peer_list );
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size_t purge_expired_registrations( struct peer_info ** peer_list, time_t* p_last_purge );
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/* Edge conf */
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void edge_init_conf_defaults(n2n_edge_conf_t *conf);
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int edge_verify_conf(const n2n_edge_conf_t *conf);
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int edge_conf_add_supernode(n2n_edge_conf_t *conf, const char *ip_and_port);
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const n2n_edge_conf_t* edge_get_conf(const n2n_edge_t *eee);
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void edge_term_conf(n2n_edge_conf_t *conf);
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/* Public functions */
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n2n_edge_t* edge_init(const tuntap_dev *dev, const n2n_edge_conf_t *conf, int *rv);
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void edge_term(n2n_edge_t *eee);
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void edge_set_callbacks(n2n_edge_t *eee, const n2n_edge_callbacks_t *callbacks);
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void edge_set_userdata(n2n_edge_t *eee, void *user_data);
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void* edge_get_userdata(n2n_edge_t *eee);
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void edge_send_packet2net(n2n_edge_t *eee, uint8_t *tap_pkt, size_t len);
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void edge_read_from_tap(n2n_edge_t *eee);
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int edge_get_n2n_socket(n2n_edge_t *eee);
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int edge_get_management_socket(n2n_edge_t *eee);
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int run_edge_loop(n2n_edge_t *eee, int *keep_running);
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int quick_edge_init(char *device_name, char *community_name,
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char *encrypt_key, char *device_mac,
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char *local_ip_address,
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char *supernode_ip_address_port,
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int *keep_on_running);
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int sn_init(n2n_sn_t *sss);
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void sn_term(n2n_sn_t *sss);
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int run_sn_loop(n2n_sn_t *sss, int *keep_running);
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const char* compression_str(uint8_t cmpr);
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const char* transop_str(enum n2n_transform tr);
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#endif /* _N2N_H_ */
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