tinc/src/protocol_key.c

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/*
protocol_key.c -- handle the meta-protocol, key exchange
Copyright (C) 1999-2005 Ivo Timmermans,
2012-03-10 12:23:08 +00:00
2000-2012 Guus Sliepen <guus@tinc-vpn.org>
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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.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
#include "system.h"
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#include "splay_tree.h"
#include "cipher.h"
#include "connection.h"
#include "crypto.h"
#include "ecdh.h"
#include "logger.h"
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#include "net.h"
#include "netutl.h"
#include "node.h"
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#include "prf.h"
#include "protocol.h"
#include "utils.h"
#include "xalloc.h"
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static bool mykeyused = false;
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void send_key_changed(void) {
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splay_node_t *node;
connection_t *c;
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send_request(everyone, "%d %x %s", KEY_CHANGED, rand(), myself->name);
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/* Immediately send new keys to directly connected nodes to keep UDP mappings alive */
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for(node = connection_tree->head; node; node = node->next) {
c = node->data;
if(c->status.active && c->node && c->node->status.reachable)
send_ans_key(c->node);
}
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}
bool key_changed_h(connection_t *c, const char *request) {
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char name[MAX_STRING_SIZE];
node_t *n;
if(sscanf(request, "%*d %*x " MAX_STRING, name) != 1) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "KEY_CHANGED",
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c->name, c->hostname);
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return false;
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}
if(seen_request(request))
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return true;
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n = lookup_node(name);
if(!n) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got %s from %s (%s) origin %s which does not exist",
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"KEY_CHANGED", c->name, c->hostname, name);
return true;
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}
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n->status.validkey = false;
n->last_req_key = 0;
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/* Tell the others */
if(!tunnelserver)
forward_request(c, request);
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return true;
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}
bool send_req_key(node_t *to) {
return send_request(to->nexthop->connection, "%d %s %s %d", REQ_KEY, myself->name, to->name, experimental ? 1 : 0);
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}
bool req_key_h(connection_t *c, const char *request) {
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char from_name[MAX_STRING_SIZE];
char to_name[MAX_STRING_SIZE];
node_t *from, *to;
int kx_version = 0;
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if(sscanf(request, "%*d " MAX_STRING " " MAX_STRING " %d", from_name, to_name, &kx_version) < 2) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "REQ_KEY", c->name,
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c->hostname);
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return false;
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}
if(!check_id(from_name) || !check_id(to_name)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s): %s", "REQ_KEY", c->name, c->hostname, "invalid name");
return false;
}
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from = lookup_node(from_name);
if(!from) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got %s from %s (%s) origin %s which does not exist in our connection list",
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"REQ_KEY", c->name, c->hostname, from_name);
return true;
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}
to = lookup_node(to_name);
if(!to) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got %s from %s (%s) destination %s which does not exist in our connection list",
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"REQ_KEY", c->name, c->hostname, to_name);
return true;
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}
/* Check if this key request is for us */
if(to == myself) { /* Yes, send our own key back */
if(experimental && kx_version >= 1) {
logger(DEBUG_ALWAYS, LOG_DEBUG, "Got ECDH key request from %s", from->name);
from->status.ecdh = true;
}
send_ans_key(from);
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} else {
if(tunnelserver)
return true;
if(!to->status.reachable) {
logger(DEBUG_ALWAYS, LOG_WARNING, "Got %s from %s (%s) destination %s which is not reachable",
"REQ_KEY", c->name, c->hostname, to_name);
return true;
}
send_request(to->nexthop->connection, "%s", request);
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}
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return true;
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}
bool send_ans_key_ecdh(node_t *to) {
int siglen = ecdsa_size(&myself->connection->ecdsa);
char key[(ECDH_SIZE + siglen) * 2 + 1];
if(!ecdh_generate_public(&to->ecdh, key))
return false;
if(!ecdsa_sign(&myself->connection->ecdsa, key, ECDH_SIZE, key + ECDH_SIZE))
return false;
b64encode(key, key, ECDH_SIZE + siglen);
char *pubkey = ecdsa_get_base64_public_key(&myself->connection->ecdsa);
if(!pubkey)
return false;
int result = send_request(to->nexthop->connection, "%d %s %s ECDH:%s:%s %d %d %zu %d", ANS_KEY,
myself->name, to->name, key, pubkey,
cipher_get_nid(&myself->incipher),
digest_get_nid(&myself->indigest),
digest_length(&myself->indigest),
myself->incompression);
free(pubkey);
return result;
}
bool send_ans_key(node_t *to) {
if(experimental && to->status.ecdh)
return send_ans_key_ecdh(to);
size_t keylen = cipher_keylength(&myself->incipher);
char key[keylen * 2 + 1];
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cipher_open_by_nid(&to->incipher, cipher_get_nid(&myself->incipher));
digest_open_by_nid(&to->indigest, digest_get_nid(&myself->indigest), digest_length(&myself->indigest));
to->incompression = myself->incompression;
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randomize(key, keylen);
cipher_set_key(&to->incipher, key, false);
digest_set_key(&to->indigest, key, keylen);
bin2hex(key, key, keylen);
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// Reset sequence number and late packet window
mykeyused = true;
to->received_seqno = 0;
if(replaywin) memset(to->late, 0, replaywin);
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return send_request(to->nexthop->connection, "%d %s %s %s %d %d %zu %d", ANS_KEY,
myself->name, to->name, key,
cipher_get_nid(&to->incipher),
digest_get_nid(&to->indigest),
digest_length(&to->indigest),
to->incompression);
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}
bool ans_key_h(connection_t *c, const char *request) {
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char from_name[MAX_STRING_SIZE];
char to_name[MAX_STRING_SIZE];
char key[MAX_STRING_SIZE];
char address[MAX_STRING_SIZE] = "";
char port[MAX_STRING_SIZE] = "";
int cipher, digest, maclength, compression, keylen;
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node_t *from, *to;
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if(sscanf(request, "%*d "MAX_STRING" "MAX_STRING" "MAX_STRING" %d %d %d %d "MAX_STRING" "MAX_STRING,
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from_name, to_name, key, &cipher, &digest, &maclength,
&compression, address, port) < 7) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s)", "ANS_KEY", c->name,
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c->hostname);
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return false;
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}
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if(!check_id(from_name) || !check_id(to_name)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got bad %s from %s (%s): %s", "ANS_KEY", c->name, c->hostname, "invalid name");
return false;
}
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from = lookup_node(from_name);
if(!from) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got %s from %s (%s) origin %s which does not exist in our connection list",
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"ANS_KEY", c->name, c->hostname, from_name);
return true;
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}
to = lookup_node(to_name);
if(!to) {
logger(DEBUG_ALWAYS, LOG_ERR, "Got %s from %s (%s) destination %s which does not exist in our connection list",
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"ANS_KEY", c->name, c->hostname, to_name);
return true;
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}
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/* Forward it if necessary */
if(to != myself) {
if(tunnelserver)
return true;
if(!to->status.reachable) {
logger(DEBUG_ALWAYS, LOG_WARNING, "Got %s from %s (%s) destination %s which is not reachable",
"ANS_KEY", c->name, c->hostname, to_name);
return true;
}
if(!*address && from->address.sa.sa_family != AF_UNSPEC) {
char *address, *port;
logger(DEBUG_PROTOCOL, LOG_DEBUG, "Appending reflexive UDP address to ANS_KEY from %s to %s", from->name, to->name);
sockaddr2str(&from->address, &address, &port);
send_request(to->nexthop->connection, "%s %s %s", request, address, port);
free(address);
free(port);
return true;
}
return send_request(to->nexthop->connection, "%s", request);
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}
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/* Check and lookup cipher and digest algorithms */
if(!cipher_open_by_nid(&from->outcipher, cipher)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses unknown cipher!", from->name, from->hostname);
return false;
}
if(!digest_open_by_nid(&from->outdigest, digest, maclength)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses unknown digest!", from->name, from->hostname);
return false;
}
if(maclength != digest_length(&from->outdigest)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses bogus MAC length!", from->name, from->hostname);
return false;
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}
if(compression < 0 || compression > 11) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses bogus compression level!", from->name, from->hostname);
return true;
}
from->outcompression = compression;
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/* ECDH or old-style key exchange? */
if(experimental && !strncmp(key, "ECDH:", 5)) {
char *pubkey = strchr(key + 5, ':');
if(pubkey)
*pubkey++ = 0;
/* Check if we already have an ECDSA public key for this node.
* If not, use the one from the key exchange, and store it. */
if(!node_read_ecdsa_public_key(from)) {
if(!pubkey) {
logger(DEBUG_ALWAYS, LOG_ERR, "No ECDSA public key known for %s (%s), cannot verify ECDH key exchange!", from->name, from->hostname);
return true;
}
if(!ecdsa_set_base64_public_key(&from->ecdsa, pubkey))
return true;
append_config_file(from->name, "ECDSAPublicKey", pubkey);
}
int siglen = ecdsa_size(&from->ecdsa);
int keylen = b64decode(key + 5, key + 5, sizeof key - 5);
if(keylen != ECDH_SIZE + siglen) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses wrong keylength! %d != %d", from->name, from->hostname, keylen, ECDH_SIZE + siglen);
return true;
}
if(ECDH_SHARED_SIZE < cipher_keylength(&from->outcipher)) {
logger(DEBUG_ALWAYS, LOG_ERR, "ECDH key too short for cipher of %s!", from->name);
return true;
}
if(!ecdsa_verify(&from->ecdsa, key + 5, ECDH_SIZE, key + 5 + ECDH_SIZE)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Possible intruder %s (%s): %s", from->name, from->hostname, "invalid ECDSA signature");
return true;
}
if(!from->ecdh) {
from->status.ecdh = true;
if(!send_ans_key(from))
return true;
}
char shared[ECDH_SHARED_SIZE * 2 + 1];
if(!ecdh_compute_shared(&from->ecdh, key + 5, shared))
return true;
/* Update our crypto end */
size_t mykeylen = cipher_keylength(&myself->incipher);
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size_t hiskeylen = cipher_keylength(&from->outcipher);
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char *mykey;
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char *hiskey;
char *seed;
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if(strcmp(myself->name, from->name) < 0) {
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mykey = key;
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hiskey = key + mykeylen * 2;
xasprintf(&seed, "tinc UDP key expansion %s %s", myself->name, from->name);
} else {
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mykey = key + hiskeylen * 2;
hiskey = key;
xasprintf(&seed, "tinc UDP key expansion %s %s", from->name, myself->name);
}
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if(!prf(shared, ECDH_SHARED_SIZE, seed, strlen(seed), key, hiskeylen * 2 + mykeylen * 2))
return true;
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free(seed);
cipher_open_by_nid(&from->incipher, cipher_get_nid(&myself->incipher));
digest_open_by_nid(&from->indigest, digest_get_nid(&myself->indigest), digest_length(&myself->indigest));
from->incompression = myself->incompression;
cipher_set_key(&from->incipher, mykey, false);
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digest_set_key(&from->indigest, mykey + mykeylen, mykeylen);
cipher_set_key(&from->outcipher, hiskey, true);
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digest_set_key(&from->outdigest, hiskey + hiskeylen, hiskeylen);
// Reset sequence number and late packet window
mykeyused = true;
from->received_seqno = 0;
if(replaywin)
memset(from->late, 0, replaywin);
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if(strcmp(myself->name, from->name) < 0)
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memmove(key, key + mykeylen * 2, hiskeylen * 2);
} else {
keylen = hex2bin(key, key, sizeof key);
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if(keylen != cipher_keylength(&from->outcipher)) {
logger(DEBUG_ALWAYS, LOG_ERR, "Node %s (%s) uses wrong keylength!", from->name, from->hostname);
return true;
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}
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/* Update our copy of the origin's packet key */
cipher_set_key(&from->outcipher, key, true);
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digest_set_key(&from->outdigest, key, keylen);
}
from->status.validkey = true;
from->sent_seqno = 0;
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if(*address && *port) {
logger(DEBUG_PROTOCOL, LOG_DEBUG, "Using reflexive UDP address from %s: %s port %s", from->name, address, port);
sockaddr_t sa = str2sockaddr(address, port);
update_node_udp(from, &sa);
}
if(from->options & OPTION_PMTU_DISCOVERY)
send_mtu_probe(from);
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return true;
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}