merged tasking branch into trunk

This commit is contained in:
Martin Willi
2007-02-28 14:04:36 +00:00
parent a7a5e834e3
commit c60c7694d2
96 changed files with 8409 additions and 8332 deletions
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/**
* @file ike_rekey.c
*
* @brief Implementation of the ike_rekey task.
*
*/
/*
* Copyright (C) 2005-2007 Martin Willi
* Copyright (C) 2005 Jan Hutter
* 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_rekey.h"
#include <daemon.h>
#include <crypto/diffie_hellman.h>
#include <encoding/payloads/notify_payload.h>
#include <encoding/payloads/nonce_payload.h>
#include <sa/tasks/ike_init.h>
#include <queues/jobs/delete_ike_sa_job.h>
typedef struct private_ike_rekey_t private_ike_rekey_t;
/**
* Private members of a ike_rekey_t task.
*/
struct private_ike_rekey_t {
/**
* Public methods and task_t interface.
*/
ike_rekey_t public;
/**
* Assigned IKE_SA.
*/
ike_sa_t *ike_sa;
/**
* New IKE_SA which replaces the current one
*/
ike_sa_t *new_sa;
/**
* Are we the initiator?
*/
bool initiator;
/**
* the IKE_INIT task which is reused to simplify rekeying
*/
ike_init_t *ike_init;
};
/**
* Implementation of task_t.build for initiator
*/
static status_t build_i(private_ike_rekey_t *this, message_t *message)
{
connection_t *connection;
policy_t *policy;
ike_sa_id_t *id;
id = ike_sa_id_create(0, 0, TRUE);
this->new_sa = charon->ike_sa_manager->checkout(charon->ike_sa_manager, id);
id->destroy(id);
connection = this->ike_sa->get_connection(this->ike_sa);
policy = this->ike_sa->get_policy(this->ike_sa);
this->new_sa->set_connection(this->new_sa, connection);
this->new_sa->set_policy(this->new_sa, policy);
this->ike_init = ike_init_create(this->new_sa, TRUE, this->ike_sa);
this->ike_init->task.build(&this->ike_init->task, message);
this->ike_sa->set_state(this->ike_sa, IKE_REKEYING);
return NEED_MORE;
}
/**
* Implementation of task_t.process for initiator
*/
static status_t process_r(private_ike_rekey_t *this, message_t *message)
{
connection_t *connection;
policy_t *policy;
ike_sa_id_t *id;
id = ike_sa_id_create(0, 0, FALSE);
this->new_sa = charon->ike_sa_manager->checkout(charon->ike_sa_manager, id);
id->destroy(id);
connection = this->ike_sa->get_connection(this->ike_sa);
policy = this->ike_sa->get_policy(this->ike_sa);
this->new_sa->set_connection(this->new_sa, connection);
this->new_sa->set_policy(this->new_sa, policy);
this->ike_init = ike_init_create(this->new_sa, FALSE, this->ike_sa);
this->ike_init->task.process(&this->ike_init->task, message);
return NEED_MORE;
}
/**
* Implementation of task_t.build for responder
*/
static status_t build_r(private_ike_rekey_t *this, message_t *message)
{
if (this->ike_init->task.build(&this->ike_init->task, message) == FAILED)
{
return SUCCESS;
}
this->ike_sa->set_state(this->ike_sa, IKE_REKEYING);
this->new_sa->inherit(this->new_sa, this->ike_sa);
this->new_sa->set_state(this->new_sa, IKE_ESTABLISHED);
charon->ike_sa_manager->checkin(charon->ike_sa_manager, this->new_sa);
this->new_sa = NULL;
return SUCCESS;
}
/**
* Implementation of task_t.process for initiator
*/
static status_t process_i(private_ike_rekey_t *this, message_t *message)
{
job_t *job;
if (this->ike_init->task.process(&this->ike_init->task, message) == FAILED)
{
return SUCCESS;
}
this->new_sa->set_state(this->new_sa, IKE_ESTABLISHED);
this->new_sa->inherit(this->new_sa, this->ike_sa);
charon->ike_sa_manager->checkin(charon->ike_sa_manager, this->new_sa);
this->new_sa = NULL;
job = (job_t*)delete_ike_sa_job_create(this->ike_sa->get_id(this->ike_sa),
TRUE);
charon->job_queue->add(charon->job_queue, job);
return SUCCESS;
}
/**
* Implementation of task_t.get_type
*/
static task_type_t get_type(private_ike_rekey_t *this)
{
return IKE_REKEY;
}
/**
* Implementation of task_t.migrate
*/
static void migrate(private_ike_rekey_t *this, ike_sa_t *ike_sa)
{
if (this->ike_init)
{
this->ike_init->task.destroy(&this->ike_init->task);
}
if (this->new_sa)
{
charon->ike_sa_manager->checkin_and_destroy(charon->ike_sa_manager,
this->new_sa);
}
this->ike_sa = ike_sa;
this->new_sa = NULL;
this->ike_init = NULL;
}
/**
* Implementation of task_t.destroy
*/
static void destroy(private_ike_rekey_t *this)
{
if (this->ike_init)
{
this->ike_init->task.destroy(&this->ike_init->task);
}
if (this->new_sa)
{
charon->ike_sa_manager->checkin_and_destroy(charon->ike_sa_manager,
this->new_sa);
}
free(this);
}
/*
* Described in header.
*/
ike_rekey_t *ike_rekey_create(ike_sa_t *ike_sa, bool initiator)
{
private_ike_rekey_t *this = malloc_thing(private_ike_rekey_t);
this->public.task.get_type = (task_type_t(*)(task_t*))get_type;
this->public.task.migrate = (void(*)(task_t*,ike_sa_t*))migrate;
this->public.task.destroy = (void(*)(task_t*))destroy;
if (initiator)
{
this->public.task.build = (status_t(*)(task_t*,message_t*))build_i;
this->public.task.process = (status_t(*)(task_t*,message_t*))process_i;
}
else
{
this->public.task.build = (status_t(*)(task_t*,message_t*))build_r;
this->public.task.process = (status_t(*)(task_t*,message_t*))process_r;
}
this->ike_sa = ike_sa;
this->new_sa = NULL;
this->ike_init = NULL;
this->initiator = initiator;
return &this->public;
}