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strongswan-ext/Source/charon/sa/states/ike_sa_init_responded.c
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2005-12-01 19:53:48 +00:00

290 lines
7.7 KiB
C

/**
* @file ike_sa_init_responded.c
*
* @brief State of a IKE_SA after responding to an IKE_SA_INIT request
*
*/
/*
* Copyright (C) 2005 Jan Hutter, Martin Willi
* Hochschule fuer Technik Rapperswil
*
* 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. See <http://www.fsf.org/copyleft/gpl.txt>.
*
* 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.
*/
#include "ike_sa_init_responded.h"
#include <daemon.h>
#include <utils/allocator.h>
#include <encoding/payloads/ts_payload.h>
#include <encoding/payloads/sa_payload.h>
#include <encoding/payloads/id_payload.h>
#include <encoding/payloads/auth_payload.h>
#include <transforms/signers/signer.h>
#include <transforms/crypters/crypter.h>
typedef struct private_ike_sa_init_responded_t private_ike_sa_init_responded_t;
/**
* Private data of a ike_sa_init_responded_t object.
*
*/
struct private_ike_sa_init_responded_t {
/**
* methods of the state_t interface
*/
ike_sa_init_responded_t public;
/**
* Shared secret from DH-Exchange
*
* All needed secrets are derived from this shared secret and then passed to the next
* state of type ike_sa_established_t
*/
chunk_t shared_secret;
/**
* Sent nonce used to calculate secrets
*/
chunk_t received_nonce;
/**
* Sent nonce used to calculate secrets
*/
chunk_t sent_nonce;
/**
* Assigned IKE_SA
*/
protected_ike_sa_t *ike_sa;
/**
* Logger used to log data
*
* Is logger of ike_sa!
*/
logger_t *logger;
};
/**
* Implements state_t.get_state
*/
static status_t process_message(private_ike_sa_init_responded_t *this, message_t *message)
{
status_t status;
signer_t *signer;
crypter_t *crypter;
iterator_t *payloads;
exchange_type_t exchange_type;
id_payload_t *idi_payload, *idr_payload;
auth_payload_t *auth_payload;
sa_payload_t *sa_payload;
ts_payload_t *tsi_payload, *tsr_payload;
exchange_type = message->get_exchange_type(message);
if (exchange_type != IKE_AUTH)
{
this->logger->log(this->logger, ERROR | MORE, "Message of type %s not supported in state ike_sa_init_responded",
mapping_find(exchange_type_m,exchange_type));
return FAILED;
}
if (!message->get_request(message))
{
this->logger->log(this->logger, ERROR | MORE, "Only requests of type IKE_AUTH supported in state ike_sa_init_responded");
return FAILED;
}
/* get signer for verification and crypter for decryption */
signer = this->ike_sa->get_signer_initiator(this->ike_sa);
crypter = this->ike_sa->get_crypter_initiator(this->ike_sa);
/* parse incoming message */
status = message->parse_body(message, crypter, signer);
if (status != SUCCESS)
{
this->logger->log(this->logger, ERROR | MORE, "Could not parse body of request message");
return status;
}
/* iterate over incoming payloads. Message is verified, we can be sure there are the required payloads */
payloads = message->get_payload_iterator(message);
while (payloads->has_next(payloads))
{
payload_t *payload;
payloads->current(payloads, (void**)&payload);
switch (payload->get_type(payload))
{
case ID_INITIATOR:
{
idi_payload = (id_payload_t*)payload;
break;
}
case AUTHENTICATION:
{
auth_payload = (auth_payload_t*)payload;
break;
}
case ID_RESPONDER:
{
/* TODO handle idr payloads */
break;
}
case SECURITY_ASSOCIATION:
{
sa_payload = (sa_payload_t*)payload;
break;
}
case CERTIFICATE:
{
/* TODO handle cert payloads */
break;
}
case CERTIFICATE_REQUEST:
{
/* TODO handle certrequest payloads */
break;
}
case TRAFFIC_SELECTOR_INITIATOR:
{
tsi_payload = (ts_payload_t*)payload;
break;
}
case TRAFFIC_SELECTOR_RESPONDER:
{
tsr_payload = (ts_payload_t*)payload;
break;
}
default:
{
/* can't happen, since message is verified */
break;
}
}
}
/* iterator can be destroyed */
payloads->destroy(payloads);
/*
* ID Payload
*/
this->logger->log(this->logger, CONTROL|MOST, "type of IDi is %s",
mapping_find(id_type_m, idi_payload->get_id_type(idi_payload)));
chunk_t data = idi_payload->get_data(idi_payload);
this->logger->log(this->logger, CONTROL|MOST, "data of IDi is %s",
data.ptr);
// charon->configuration_manager->get_my_default_id(charon->configuration_manager, id
//
//
//
//
// this->logger->log(this->logger, CONTROL|MOST, "type of AUTH is %s",
// mapping_find(auth_method_m, auth_payload->get_auth_method(auth_payload)));
//
// /* get the list of suggested proposals */
// suggested_proposals = sa_payload->create_proposal_substructure_iterator(sa_payload, TRUE);
//
// /* now let the configuration-manager select a subset of the proposals */
// status = charon->configuration_manager->select_proposals_for_host(charon->configuration_manager,
// this->ike_sa->get_other_host(this->ike_sa), suggested_proposals, accepted_proposals);
//
// iterator = tsi_payload->create_traffic_selector_substructure_iterator(tsi_payload, TRUE);
// while (iterator->has_next(iterator))
// {
// traffic_selector_substructure_t *ts;
// iterator->current(iterator, (void**)ts);
// this->logger->log(this->logger, CONTROL|MOST, "type of TSi is %s",
// mapping_find(ts_type_m, ts->get_ts_type(ts)));
//
// }
// iterator->destroy(iterator);
//
// iterator = tsr_payload->create_traffic_selector_substructure_iterator(tsr_payload, TRUE);
// while (iterator->has_next(iterator))
// {
// traffic_selector_substructure_t *ts;
// iterator->current(iterator, (void**)ts);
// this->logger->log(this->logger, CONTROL|MOST, "type of TSr is %s",
// mapping_find(ts_type_m, ts->get_ts_type(ts)));
//
// }
// iterator->destroy(iterator);
this->logger->log(this->logger, CONTROL | MORE, "Request successfully handled. Going to create reply.");
return SUCCESS;
}
static status_t build_id_payload(private_ike_sa_init_responded_t *this, id_payload_t *id_payload)
{
return SUCCESS;
}
/**
* Implements state_t.get_state
*/
static ike_sa_state_t get_state(private_ike_sa_init_responded_t *this)
{
return IKE_SA_INIT_RESPONDED;
}
/**
* Implements state_t.get_state
*/
static void destroy(private_ike_sa_init_responded_t *this)
{
this->logger->log(this->logger, CONTROL | MORE, "Going to destroy ike_sa_init_responded_t state object");
this->logger->log(this->logger, CONTROL | MOST, "Destroy shared_secret");
allocator_free(this->shared_secret.ptr);
this->logger->log(this->logger, CONTROL | MOST, "Destroy sent nonce");
allocator_free(this->sent_nonce.ptr);
this->logger->log(this->logger, CONTROL | MOST, "Destroy received nonce");
allocator_free(this->received_nonce.ptr);
allocator_free(this);
}
/*
* Described in header.
*/
ike_sa_init_responded_t *ike_sa_init_responded_create(protected_ike_sa_t *ike_sa, chunk_t shared_secret, chunk_t received_nonce, chunk_t sent_nonce)
{
private_ike_sa_init_responded_t *this = allocator_alloc_thing(private_ike_sa_init_responded_t);
/* interface functions */
this->public.state_interface.process_message = (status_t (*) (state_t *,message_t *)) process_message;
this->public.state_interface.get_state = (ike_sa_state_t (*) (state_t *)) get_state;
this->public.state_interface.destroy = (void (*) (state_t *)) destroy;
/* private data */
this->ike_sa = ike_sa;
this->logger = this->ike_sa->get_logger(this->ike_sa);
this->shared_secret = shared_secret;
this->received_nonce = received_nonce;
this->sent_nonce = sent_nonce;
return &(this->public);
}