tinc/src/meta.c

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/*
meta.c -- handle the meta communication
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Copyright (C) 2000-2013 Guus Sliepen <guus@tinc-vpn.org>,
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2000-2005 Ivo Timmermans
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2006 Scott Lamb <slamb@slamb.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.
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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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*/
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#include "system.h"
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#include "cipher.h"
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#include "connection.h"
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#include "logger.h"
#include "meta.h"
#include "net.h"
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#include "protocol.h"
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#include "utils.h"
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#include "xalloc.h"
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bool send_meta_sptps(void *handle, uint8_t type, const char *buffer, size_t length) {
connection_t *c = handle;
if(!c) {
logger(DEBUG_ALWAYS, LOG_ERR, "send_meta_sptps() called with NULL pointer!");
abort();
}
buffer_add(&c->outbuf, buffer, length);
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io_set(&c->io, IO_READ | IO_WRITE);
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return true;
}
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bool send_meta(connection_t *c, const char *buffer, int length) {
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if(!c) {
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logger(DEBUG_ALWAYS, LOG_ERR, "send_meta() called with NULL pointer!");
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abort();
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}
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logger(DEBUG_META, LOG_DEBUG, "Sending %d bytes of metadata to %s (%s)", length,
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c->name, c->hostname);
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if(c->protocol_minor >= 2)
return sptps_send_record(&c->sptps, 0, buffer, length);
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/* Add our data to buffer */
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if(c->status.encryptout) {
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size_t outlen = length;
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if(!cipher_encrypt(c->outcipher, buffer, length, buffer_prepare(&c->outbuf, length), &outlen, false) || outlen != length) {
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logger(DEBUG_ALWAYS, LOG_ERR, "Error while encrypting metadata to %s (%s)",
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c->name, c->hostname);
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return false;
}
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} else {
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buffer_add(&c->outbuf, buffer, length);
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}
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io_set(&c->io, IO_READ | IO_WRITE);
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return true;
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}
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void broadcast_meta(connection_t *from, const char *buffer, int length) {
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for list_each(connection_t, c, connection_list)
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if(c != from && c->status.active)
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send_meta(c, buffer, length);
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}
bool receive_meta_sptps(void *handle, uint8_t type, const char *data, uint16_t length) {
connection_t *c = handle;
if(!c) {
logger(DEBUG_ALWAYS, LOG_ERR, "receive_meta_sptps() called with NULL pointer!");
abort();
}
if(type == SPTPS_HANDSHAKE) {
if(c->allow_request == ACK)
return send_ack(c);
else
return true;
}
if(!data)
return true;
/* Are we receiving a TCPpacket? */
if(c->tcplen) {
if(length != c->tcplen)
return false;
receive_tcppacket(c, data, length);
c->tcplen = 0;
return true;
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}
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/* Change newline to null byte, just like non-SPTPS requests */
if(data[length - 1] == '\n')
((char *)data)[length - 1] = 0;
/* Otherwise we are waiting for a request */
return receive_request(c, data);
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}
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bool receive_meta(connection_t *c) {
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int inlen;
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char inbuf[MAXBUFSIZE];
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char *bufp = inbuf, *endp;
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/* Strategy:
- Read as much as possible from the TCP socket in one go.
- Decrypt it.
- Check if a full request is in the input buffer.
- If yes, process request and remove it from the buffer,
then check again.
- If not, keep stuff in buffer and exit.
*/
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buffer_compact(&c->inbuf, MAXBUFSIZE);
if(sizeof inbuf <= c->inbuf.len) {
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logger(DEBUG_ALWAYS, LOG_ERR, "Input buffer full for %s (%s)", c->name, c->hostname);
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return false;
}
inlen = recv(c->socket, inbuf, sizeof inbuf - c->inbuf.len, 0);
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if(inlen <= 0) {
if(!inlen || !errno) {
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logger(DEBUG_CONNECTIONS, LOG_NOTICE, "Connection closed by %s (%s)",
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c->name, c->hostname);
} else if(sockwouldblock(sockerrno))
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return true;
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else
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logger(DEBUG_ALWAYS, LOG_ERR, "Metadata socket read error for %s (%s): %s",
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c->name, c->hostname, sockstrerror(sockerrno));
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return false;
}
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do {
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if(c->protocol_minor >= 2)
return sptps_receive_data(&c->sptps, bufp, inlen);
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if(!c->status.decryptin) {
endp = memchr(bufp, '\n', inlen);
if(endp)
endp++;
else
endp = bufp + inlen;
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buffer_add(&c->inbuf, bufp, endp - bufp);
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inlen -= endp - bufp;
bufp = endp;
} else {
size_t outlen = inlen;
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if(!cipher_decrypt(c->incipher, bufp, inlen, buffer_prepare(&c->inbuf, inlen), &outlen, false) || inlen != outlen) {
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logger(DEBUG_ALWAYS, LOG_ERR, "Error while decrypting metadata from %s (%s)",
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c->name, c->hostname);
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return false;
}
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inlen = 0;
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}
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while(c->inbuf.len) {
/* Are we receiving a TCPpacket? */
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if(c->tcplen) {
char *tcpbuffer = buffer_read(&c->inbuf, c->tcplen);
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if(!tcpbuffer)
break;
if(!c->node) {
if(c->outgoing && proxytype == PROXY_SOCKS4 && c->allow_request == ID) {
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if(tcpbuffer[0] == 0 && tcpbuffer[1] == 0x5a) {
logger(DEBUG_CONNECTIONS, LOG_DEBUG, "Proxy request granted");
} else {
logger(DEBUG_CONNECTIONS, LOG_ERR, "Proxy request rejected");
return false;
}
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} else if(c->outgoing && proxytype == PROXY_SOCKS5 && c->allow_request == ID) {
if(tcpbuffer[0] != 5) {
logger(DEBUG_CONNECTIONS, LOG_ERR, "Invalid response from proxy server");
return false;
}
if(tcpbuffer[1] == (char)0xff) {
logger(DEBUG_CONNECTIONS, LOG_ERR, "Proxy request rejected: unsuitable authentication method");
return false;
}
if(tcpbuffer[2] != 5) {
logger(DEBUG_CONNECTIONS, LOG_ERR, "Invalid response from proxy server");
return false;
}
if(tcpbuffer[3] == 0) {
logger(DEBUG_CONNECTIONS, LOG_DEBUG, "Proxy request granted");
} else {
logger(DEBUG_CONNECTIONS, LOG_DEBUG, "Proxy request rejected");
return false;
}
} else {
logger(DEBUG_CONNECTIONS, LOG_ERR, "c->tcplen set but c->node is NULL!");
abort();
}
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} else {
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if(c->allow_request == ALL) {
receive_tcppacket(c, tcpbuffer, c->tcplen);
} else {
logger(DEBUG_CONNECTIONS, LOG_ERR, "Got unauthorized TCP packet from %s (%s)", c->name, c->hostname);
return false;
}
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}
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c->tcplen = 0;
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}
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/* Otherwise we are waiting for a request */
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char *request = buffer_readline(&c->inbuf);
if(request) {
bool result = receive_request(c, request);
if(!result)
return false;
continue;
} else {
break;
}
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}
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} while(inlen);
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return true;
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}