mirror of
https://gitlab.torproject.org/tpo/core/tor.git
synced 2024-11-11 13:43:47 +01:00
5414786cf1
svn:r78
715 lines
22 KiB
C
715 lines
22 KiB
C
/* Copyright 2001,2002 Roger Dingledine, Matej Pfajfar. */
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/* See LICENSE for licensing information */
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/* $Id$ */
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#include "or.h"
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/********* START VARIABLES **********/
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tracked_onion_t *tracked_onions = NULL; /* linked list of tracked onions */
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tracked_onion_t *last_tracked_onion = NULL;
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/********* END VARIABLES ************/
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int decide_aci_type(uint32_t local_addr, uint16_t local_port,
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uint32_t remote_addr, uint16_t remote_port) {
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if(local_addr > remote_addr)
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return ACI_TYPE_HIGHER;
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if(local_addr < remote_addr)
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return ACI_TYPE_LOWER;
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if(local_port > remote_port)
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return ACI_TYPE_HIGHER;
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/* else */
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return ACI_TYPE_LOWER;
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}
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int process_onion(circuit_t *circ, connection_t *conn) {
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aci_t aci_type;
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if(!decrypt_onion((onion_layer_t *)circ->onion,circ->onionlen,conn->prkey)) {
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log(LOG_DEBUG,"command_process_create_cell(): decrypt_onion() failed, closing circuit.");
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return -1;
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}
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log(LOG_DEBUG,"command_process_create_cell(): Onion decrypted.");
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/* check freshness */
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if (((onion_layer_t *)circ->onion)->expire < time(NULL)) /* expired onion */
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{
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log(LOG_NOTICE,"I have just received an expired onion. This could be a replay attack.");
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return -1;
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}
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aci_type = decide_aci_type(conn->local.sin_addr.s_addr, conn->local.sin_port,
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((onion_layer_t *)circ->onion)->addr,((onion_layer_t *)circ->onion)->port);
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if(circuit_init(circ, aci_type) < 0) {
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log(LOG_ERR,"process_onion(): init_circuit() failed.");
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return -1;
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}
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/* check for replay */
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if(id_tracked_onion(circ->onion, circ->onionlen, tracked_onions)) {
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log(LOG_NOTICE,"process_onion(): I have just received a replayed onion. This could be a replay attack.");
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return -1;
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}
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/* track the new onion */
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if(!new_tracked_onion(circ->onion,circ->onionlen, &tracked_onions, &last_tracked_onion)) {
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log(LOG_DEBUG,"process_onion(): Onion tracking failed. Will ignore.");
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}
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return 0;
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}
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/* uses a weighted coin with weight cw to choose a route length */
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int chooselen(double cw)
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{
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int len = 2;
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int retval = 0;
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unsigned char coin;
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if ((cw < 0) || (cw >= 1)) /* invalid parameter */
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return -1;
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while(1)
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{
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retval = crypto_pseudo_rand(1, &coin);
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if (retval)
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return -1;
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if (coin > cw*255) /* don't extend */
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break;
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else
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len++;
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}
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return len;
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}
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/* returns an array of pointers to routent that define a new route through the OR network
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* int cw is the coin weight to use when choosing the route
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* order of routers is from last to first
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*/
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unsigned int *new_route(double cw, routerinfo_t **rarray, size_t rarray_len, size_t *rlen)
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{
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int routelen = 0;
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int i, j;
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int num_acceptable_routers = 0;
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int retval = 0;
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unsigned int *route = NULL;
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unsigned int oldchoice, choice;
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assert((cw >= 0) && (cw < 1) && (rarray) && (rlen) ); /* valid parameters */
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routelen = chooselen(cw);
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if (routelen == -1) {
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log(LOG_ERR,"Choosing route length failed.");
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return NULL;
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}
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log(LOG_DEBUG,"new_route(): Chosen route length %d.",routelen);
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for(i=0;i<rarray_len;i++) {
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log(LOG_DEBUG,"Contemplating whether router %d is any good...",i);
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if(!connection_exact_get_by_addr_port(rarray[i]->addr, rarray[i]->or_port)) {
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log(LOG_DEBUG,"Nope, %d is not connected.",i);
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goto next_i_loop;
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}
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for(j=0;j<i;j++) {
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if(!pkey_cmp(rarray[i]->pkey, rarray[j]->pkey)) {
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/* these guys are twins. so we've already counted him. */
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log(LOG_DEBUG,"Nope, %d is a twin of %d.",i,j);
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goto next_i_loop;
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}
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}
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num_acceptable_routers++;
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log(LOG_DEBUG,"I like %d. num_acceptable_routers now %d.",i, num_acceptable_routers);
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next_i_loop:
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}
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if(num_acceptable_routers < routelen) {
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log(LOG_DEBUG,"new_route(): Cutting routelen from %d to %d.",routelen, num_acceptable_routers);
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routelen = num_acceptable_routers;
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}
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if(routelen < 1) {
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log(LOG_ERR,"new_route(): Didn't find any acceptable routers. Failing.");
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return NULL;
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}
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/* allocate memory for the new route */
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route = (unsigned int *)malloc(routelen * sizeof(unsigned int));
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if (!route) {
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log(LOG_ERR,"Memory allocation failed.");
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return NULL;
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}
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oldchoice = rarray_len;
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for(i=0;i<routelen;i++) {
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log(LOG_DEBUG,"new_route(): Choosing hop %u.",i);
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retval = crypto_pseudo_rand(sizeof(unsigned int),(unsigned char *)&choice);
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if (retval) {
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free((void *)route);
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return NULL;
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}
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choice = choice % (rarray_len);
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log(LOG_DEBUG,"new_route(): Contemplating router %u.",choice);
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if(choice == oldchoice ||
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(oldchoice < rarray_len && !pkey_cmp(rarray[choice]->pkey, rarray[oldchoice]->pkey)) ||
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!connection_twin_get_by_addr_port(rarray[choice]->addr, rarray[choice]->or_port)) {
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/* Same router as last choice, or router twin,
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* or no routers with that key are connected to us.
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* Try again. */
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log(LOG_DEBUG,"new_route(): Picked a router %d that won't work as next hop.",choice);
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i--;
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continue;
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}
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log(LOG_DEBUG,"new_route(): Chosen router %u for hop %u.",choice,i);
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oldchoice = choice;
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route[i] = choice;
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}
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*rlen = routelen;
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return route;
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}
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/* creates a new onion from route, stores it and its length into bufp and lenp respectively */
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unsigned char *create_onion(routerinfo_t **rarray, size_t rarray_len, unsigned int *route, size_t routelen, size_t *lenp, crypt_path_t **cpathp)
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{
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int i,j;
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int retval = 0;
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onion_layer_t *layer = NULL;
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crypt_path_t *hop = NULL;
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unsigned char *retbuf = NULL;
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unsigned char *bufp;
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routerinfo_t *router;
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unsigned char iv[16];
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assert(rarray && route && lenp && routelen);
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/* calculate the size of the onion */
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*lenp = routelen * 28 + 100; /* 28 bytes per layer + 100 bytes padding for the innermost layer */
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log(LOG_DEBUG,"create_onion() : Size of the onion is %u.",*lenp);
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/* allocate memory for the onion */
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bufp = (unsigned char *)malloc(*lenp);
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if (!bufp)
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{
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log(LOG_ERR,"Error allocating memory.");
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return NULL;
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}
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log(LOG_DEBUG,"create_onion() : Allocated memory for the onion.");
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for (retval=0; retval<routelen;retval++)
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{
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log(LOG_DEBUG,"create_onion() : %u : %s:%u, %u/%u",routelen-retval,inet_ntoa(*((struct in_addr *)&((rarray[route[retval]])->addr))),ntohs((rarray[route[retval]])->or_port),(rarray[route[retval]])->pkey,crypto_pk_keysize((rarray[route[retval]])->pkey));
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}
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layer = (onion_layer_t *)(bufp + *lenp - 128); /* pointer to innermost layer */
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/* create the onion layer by layer, starting with the innermost */
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for (i=0;i<routelen;i++)
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{
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router = rarray[route[i]];
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log(LOG_DEBUG,"create_onion() : %u",router);
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log(LOG_DEBUG,"create_onion() : This router is %s:%u",inet_ntoa(*((struct in_addr *)&router->addr)),ntohs(router->or_port));
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log(LOG_DEBUG,"create_onion() : Key pointer = %u.",router->pkey);
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log(LOG_DEBUG,"create_onion() : Key size = %u.",crypto_pk_keysize(router->pkey));
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/* 0 bit */
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layer->zero = 0;
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/* version */
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layer->version = VERSION;
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/* Back F + Forw F both use DES OFB*/
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layer->backf = ONION_DEFAULT_CIPHER;
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layer->forwf = ONION_DEFAULT_CIPHER;
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/* Dest Port */
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if (i) /* not last hop */
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layer->port = rarray[route[i-1]]->or_port;
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else
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layer->port = 0;
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/* Dest Addr */
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if (i) /* not last hop */
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layer->addr = rarray[route[i-1]]->addr;
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else
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layer->addr = 0;
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/* Expiration Time */
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layer->expire = time(NULL) + 3600; /* NOW + 1 hour */
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/* Key Seed Material */
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retval = crypto_rand(16, layer->keyseed);
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if (retval) /* error */
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{
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log(LOG_ERR,"Error generating random data.");
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free((void *)bufp);
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if (cpathp)
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{
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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}
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return NULL;
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}
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log(LOG_DEBUG,"create_onion() : Onion layer %u built : %u, %u, %u, %s, %u.",i+1,layer->zero,layer->backf,layer->forwf,inet_ntoa(*((struct in_addr *)&layer->addr)),ntohs(layer->port));
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/* build up the crypt_path */
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if (cpathp)
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{
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cpathp[i] = (crypt_path_t *)malloc(sizeof(crypt_path_t));
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if (!cpathp[i])
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{
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log(LOG_ERR,"Error allocating memory.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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}
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log(LOG_DEBUG,"create_onion() : Building hop %u of crypt path.",i+1);
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hop = cpathp[i];
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/* set crypto functions */
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hop->backf = layer->backf;
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hop->forwf = layer->forwf;
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/* calculate keys */
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crypto_SHA_digest(layer->keyseed,16,hop->digest3);
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log(LOG_DEBUG,"create_onion() : First SHA pass performed.");
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crypto_SHA_digest(hop->digest3,20,hop->digest2);
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log(LOG_DEBUG,"create_onion() : Second SHA pass performed.");
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crypto_SHA_digest(hop->digest2,20,hop->digest3);
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log(LOG_DEBUG,"create_onion() : Third SHA pass performed.");
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log(LOG_DEBUG,"create_onion() : Keys generated.");
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/* set IV to zero */
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memset((void *)iv,0,16);
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/* initialize cipher engines */
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switch(layer->forwf)
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{
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case ONION_CIPHER_DES :
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hop->f_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_DES);
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break;
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case ONION_CIPHER_RC4 :
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hop->f_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_RC4);
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break;
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case ONION_CIPHER_IDENTITY :
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hop->f_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_IDENTITY);
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break;
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}
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if (!hop->f_crypto) /* cipher initialization failed */
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{
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log(LOG_ERR,"Could not create a crypto environment.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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return NULL;
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}
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/* set the key and IV */
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if (crypto_cipher_set_key(hop->f_crypto, hop->digest3) ||
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crypto_cipher_set_iv(hop->f_crypto, iv)) {
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log(LOG_ERR,"Could not initialize the crypto engine.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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return NULL;
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}
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switch(layer->backf)
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{
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case ONION_CIPHER_DES :
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hop->b_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_DES);
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break;
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case ONION_CIPHER_RC4 :
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hop->b_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_RC4);
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break;
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case ONION_CIPHER_IDENTITY :
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hop->b_crypto = crypto_new_cipher_env(CRYPTO_CIPHER_IDENTITY);
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break;
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}
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if (!hop->b_crypto) /* cipher initialization failed */
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{
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log(LOG_ERR,"Could not create a crypto environment.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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return NULL;
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}
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/* set the key and IV */
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if (crypto_cipher_set_key(hop->b_crypto, hop->digest2) ||
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crypto_cipher_set_iv(hop->b_crypto, iv)) {
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log(LOG_ERR,"Could not initialize the crypto engine.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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return NULL;
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}
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/* initialize */
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if (crypto_cipher_encrypt_init_cipher(hop->f_crypto) || crypto_cipher_decrypt_init_cipher(hop->b_crypto)) {
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log(LOG_ERR,"Could not initialize the crypto engine.");
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free((void *)bufp);
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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return NULL;
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}
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log(LOG_DEBUG,"create_onion() : Built corresponding crypt path hop.");
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}
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/* padding if this is the innermost layer */
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if (!i)
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{
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retval=crypto_pseudo_rand(100, (unsigned char *)layer + 28);
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if (retval) /* error */
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{
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log(LOG_ERR,"Error generating pseudo-random data.");
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free((void *)bufp);
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if (cpathp)
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{
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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}
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return NULL;
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}
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log(LOG_DEBUG,"create_onion() : This is the innermost layer. Adding 100 bytes of padding.");
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}
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/* encrypt */
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retbuf = encrypt_onion(layer,128+(i*28),router->pkey);
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if (!retbuf)
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{
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log(LOG_ERR,"Error encrypting onion layer.");
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free((void *)bufp);
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if (cpathp)
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{
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for (j=0;j<i;j++) {
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if (cpathp[i]->f_crypto)
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crypto_free_cipher_env(cpathp[i]->f_crypto);
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if (cpathp[i]->b_crypto)
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crypto_free_cipher_env(cpathp[i]->b_crypto);
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free((void *)cpathp[i]);
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}
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}
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return NULL;
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}
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log(LOG_DEBUG,"create_onion() : Encrypted layer.");
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/* calculate pointer to next layer */
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layer = (onion_layer_t *)(bufp + (routelen-i-2)*sizeof(onion_layer_t));
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}
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return bufp;
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}
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/* encrypts 128 bytes of the onion with the specified public key, the rest with
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* DES OFB with the key as defined in the outter layer */
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unsigned char *encrypt_onion(onion_layer_t *onion, uint32_t onionlen, crypto_pk_env_t *pkey)
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{
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unsigned char *tmpbuf = NULL; /* temporary buffer for crypto operations */
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unsigned char digest[20]; /* stores SHA1 output - 160 bits */
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unsigned char iv[8];
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int retval = 0;
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crypto_cipher_env_t *crypt_env; /* crypto environment */
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if ( (onion) && (pkey) ) /* valid parameters */
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{
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memset((void *)iv,0,8);
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log(LOG_DEBUG,"Onion layer : %u, %u, %u, %s, %u.",onion->zero,onion->backf,onion->forwf,inet_ntoa(*((struct in_addr *)&onion->addr)),ntohs(onion->port));
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/* allocate space for tmpbuf */
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tmpbuf = (unsigned char *)malloc(onionlen);
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if (!tmpbuf)
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{
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log(LOG_ERR,"Could not allocate memory.");
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return NULL;
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}
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log(LOG_DEBUG,"encrypt_onion() : allocated %u bytes of memory for the encrypted onion (at %u).",onionlen,tmpbuf);
|
|
|
|
/* get key1 = SHA1(KeySeed) */
|
|
if (crypto_SHA_digest(((onion_layer_t *)onion)->keyseed,16,digest))
|
|
{
|
|
log(LOG_ERR,"Error computing SHA1 digest.");
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
log(LOG_DEBUG,"encrypt_onion() : Computed DES key.");
|
|
|
|
log(LOG_DEBUG,"encrypt_onion() : Trying to RSA encrypt.");
|
|
/* encrypt 128 bytes with RSA *pkey */
|
|
retval = crypto_pk_public_encrypt(pkey, (unsigned char *)onion, 128, tmpbuf, RSA_NO_PADDING);
|
|
if (retval == -1)
|
|
{
|
|
log(LOG_ERR,"Error RSA-encrypting data :%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
|
|
log(LOG_DEBUG,"encrypt_onion() : RSA encrypted first 128 bytes of the onion.");
|
|
|
|
/* now encrypt the rest with DES OFB */
|
|
crypt_env = crypto_new_cipher_env(CRYPTO_CIPHER_DES);
|
|
if (!crypt_env)
|
|
{
|
|
log(LOG_ERR,"Error creating the crypto environment.");
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_set_key(crypt_env, digest)) /* error */
|
|
{
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_set_iv(crypt_env, iv))
|
|
{
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_encrypt_init_cipher(crypt_env)) {
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
|
|
retval = crypto_cipher_encrypt(crypt_env,(unsigned char *)onion+128, onionlen-128, (unsigned char *)tmpbuf+128);
|
|
if (retval) /* error */
|
|
{
|
|
log(LOG_ERR,"Error performing DES encryption:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
log(LOG_DEBUG,"encrypt_onion() : DES OFB encrypted the rest of the onion.");
|
|
|
|
crypto_free_cipher_env(crypt_env);
|
|
|
|
/* now copy tmpbuf to onion */
|
|
memcpy((void *)onion,(void *)tmpbuf,onionlen);
|
|
log(LOG_DEBUG,"encrypt_onion() : Copied cipher to original onion buffer.");
|
|
free((void *)tmpbuf);
|
|
return (unsigned char *)onion;
|
|
} /* valid parameters */
|
|
else
|
|
return NULL;
|
|
}
|
|
|
|
/* decrypts the first 128 bytes using RSA and prkey, decrypts the rest with DES OFB with key1 */
|
|
unsigned char *decrypt_onion(onion_layer_t *onion, uint32_t onionlen, crypto_pk_env_t *prkey)
|
|
{
|
|
void *tmpbuf = NULL; /* temporary buffer for crypto operations */
|
|
unsigned char digest[20]; /* stores SHA1 output - 160 bits */
|
|
unsigned char iv[8];
|
|
int retval = 0;
|
|
|
|
crypto_cipher_env_t *crypt_env; /* crypto environment */
|
|
|
|
if ( (onion) && (prkey) ) /* valid parameters */
|
|
{
|
|
memset((void *)iv,0,8);
|
|
|
|
/* allocate space for tmpbuf */
|
|
tmpbuf = malloc(onionlen);
|
|
if (!tmpbuf)
|
|
{
|
|
log(LOG_ERR,"Could not allocate memory.");
|
|
return NULL;
|
|
}
|
|
log(LOG_DEBUG,"decrypt_onion() : Allocated memory for the temporary buffer.");
|
|
|
|
/* decrypt 128 bytes with RSA *prkey */
|
|
retval = crypto_pk_private_decrypt(prkey, (unsigned char*)onion, 128, (unsigned char *)tmpbuf, RSA_NO_PADDING);
|
|
if (retval == -1)
|
|
{
|
|
log(LOG_ERR,"Error RSA-decrypting data :%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
log(LOG_DEBUG,"decrypt_onion() : RSA decryption complete.");
|
|
|
|
/* get key1 = SHA1(KeySeed) */
|
|
retval = crypto_SHA_digest(((onion_layer_t *)tmpbuf)->keyseed,16,digest);
|
|
if (retval)
|
|
{
|
|
log(LOG_ERR,"Error computing SHA1 digest.");
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
log(LOG_DEBUG,"decrypt_onion() : Computed DES key.");
|
|
|
|
/* now decrypt the rest with DES OFB */
|
|
crypt_env = crypto_new_cipher_env(CRYPTO_CIPHER_DES);
|
|
if (!crypt_env)
|
|
{
|
|
log(LOG_ERR,"Error creating the crypto environment.");
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_set_key(crypt_env, digest)) /* error */
|
|
{
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_set_iv(crypt_env, iv))
|
|
{
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
if (crypto_cipher_decrypt_init_cipher(crypt_env)) {
|
|
log(LOG_ERR,"Error initializing DES engine:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
|
|
retval = crypto_cipher_decrypt(crypt_env,(unsigned char *)onion+128, onionlen-128,(unsigned char *)tmpbuf+128);
|
|
if (retval) /* error */
|
|
{
|
|
log(LOG_ERR,"Error performing DES decryption:%s",crypto_perror());
|
|
free((void *)tmpbuf);
|
|
return NULL;
|
|
}
|
|
|
|
crypto_free_cipher_env(crypt_env);
|
|
log(LOG_DEBUG,"decrypt_onion() : DES decryption complete.");
|
|
|
|
/* now copy tmpbuf to onion */
|
|
memcpy((void *)onion,(void *)tmpbuf,onionlen);
|
|
free((void *)tmpbuf);
|
|
return (unsigned char *)onion;
|
|
} /* valid parameters */
|
|
else
|
|
return NULL;
|
|
}
|
|
|
|
/* delete first n bytes of the onion and pads the end with n bytes of random data */
|
|
void pad_onion(unsigned char *onion, uint32_t onionlen, size_t n)
|
|
{
|
|
if (onion) /* valid parameter */
|
|
{
|
|
memmove((void *)onion,(void *)(onion+n),onionlen-n);
|
|
crypto_pseudo_rand(n, onion+onionlen-n);
|
|
}
|
|
}
|
|
|
|
/* create a new tracked_onion entry */
|
|
tracked_onion_t *new_tracked_onion(unsigned char *onion, uint32_t onionlen, tracked_onion_t **tracked_onions, tracked_onion_t **last_tracked_onion)
|
|
{
|
|
tracked_onion_t *to = NULL;
|
|
|
|
if (!onion || !tracked_onions || !last_tracked_onion) /* invalid parameters */
|
|
return NULL;
|
|
|
|
to = (tracked_onion_t *)malloc(sizeof(tracked_onion_t));
|
|
if (!to)
|
|
return NULL;
|
|
|
|
to->expire = ((onion_layer_t *)onion)->expire; /* set the expiration date */
|
|
/* compute the SHA digest */
|
|
if (crypto_SHA_digest(onion, onionlen, to->digest))
|
|
{
|
|
log(LOG_DEBUG,"new_tracked_onion() : Failed to compute a SHA1 digest of the onion.");
|
|
free((void *)to);
|
|
return NULL;
|
|
}
|
|
|
|
to->next = NULL;
|
|
|
|
if (!*tracked_onions)
|
|
{
|
|
to->prev = NULL;
|
|
*tracked_onions = to;
|
|
}
|
|
else
|
|
{
|
|
to->prev = (void *)*last_tracked_onion;
|
|
(*last_tracked_onion)->next = (void *)to;
|
|
}
|
|
*last_tracked_onion = to;
|
|
|
|
return to;
|
|
}
|
|
|
|
/* delete a tracked onion entry */
|
|
void remove_tracked_onion(tracked_onion_t *to, tracked_onion_t **tracked_onions, tracked_onion_t **last_tracked_onion)
|
|
{
|
|
if (!*tracked_onions || !*last_tracked_onion || !to)
|
|
return;
|
|
|
|
if (to->prev)
|
|
((tracked_onion_t *)to->prev)->next = to->next;
|
|
if (to->next)
|
|
((tracked_onion_t *)to->next)->prev = to->prev;
|
|
|
|
if (to == *tracked_onions)
|
|
*tracked_onions = (tracked_onion_t *)to->next;
|
|
|
|
if (to == *last_tracked_onion)
|
|
*last_tracked_onion = (tracked_onion_t *)to->prev;
|
|
|
|
free((void *)to);
|
|
|
|
return;
|
|
}
|
|
|
|
/* find a tracked onion in the linked list of tracked onions */
|
|
tracked_onion_t *id_tracked_onion(unsigned char *onion, uint32_t onionlen, tracked_onion_t *tracked_onions)
|
|
{
|
|
tracked_onion_t *to = tracked_onions;
|
|
unsigned char digest[20];
|
|
|
|
/* compute the SHA digest of the onion */
|
|
crypto_SHA_digest(onion,onionlen, digest);
|
|
|
|
while(to)
|
|
{
|
|
if (!memcmp((void *)digest, (void *)to->digest, 20))
|
|
return to;
|
|
to = (tracked_onion_t *)to->next;
|
|
}
|
|
|
|
return NULL;
|
|
}
|
|
|