532 lines
13 KiB
C
532 lines
13 KiB
C
/*
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* Copyright (C) 2008 Martin Willi
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* Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at your
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* option) any later version. See <http://www.fsf.org/copyleft/gpl.txt>.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*
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* $Id$
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*/
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#include "stroke_attribute.h"
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#include <daemon.h>
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#include <utils/linked_list.h>
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#include <utils/hashtable.h>
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#include <utils/mutex.h>
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#define POOL_LIMIT (sizeof(uintptr_t)*8)
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typedef struct private_stroke_attribute_t private_stroke_attribute_t;
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/**
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* private data of stroke_attribute
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*/
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struct private_stroke_attribute_t {
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/**
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* public functions
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*/
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stroke_attribute_t public;
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/**
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* list of pools, contains pool_t
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*/
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linked_list_t *pools;
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/**
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* mutex to lock access to pools
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*/
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mutex_t *mutex;
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};
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typedef struct {
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/** name of the pool */
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char *name;
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/** base address of the pool */
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host_t *base;
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/** size of the pool */
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int size;
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/** next unused address */
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int unused;
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/** hashtable [identity => offset], for online leases */
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hashtable_t *online;
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/** hashtable [identity => offset], for offline leases */
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hashtable_t *offline;
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/** hashtable [identity => identity], handles identity references */
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hashtable_t *ids;
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} pool_t;
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/**
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* hashtable hash function for identities
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*/
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static u_int id_hash(identification_t *id)
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{
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return chunk_hash(id->get_encoding(id));
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}
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/**
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* hashtable equals function for identities
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*/
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static bool id_equals(identification_t *a, identification_t *b)
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{
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return a->equals(a, b);
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}
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/**
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* destroy a pool_t
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*/
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static void pool_destroy(pool_t *this)
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{
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enumerator_t *enumerator;
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identification_t *id;
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enumerator = this->ids->create_enumerator(this->ids);
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while (enumerator->enumerate(enumerator, &id, NULL))
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{
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id->destroy(id);
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}
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enumerator->destroy(enumerator);
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this->ids->destroy(this->ids);
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this->online->destroy(this->online);
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this->offline->destroy(this->offline);
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DESTROY_IF(this->base);
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free(this->name);
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free(this);
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}
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/**
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* find a pool by name
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*/
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static pool_t *find_pool(private_stroke_attribute_t *this, char *name)
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{
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enumerator_t *enumerator;
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pool_t *current, *found = NULL;
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enumerator = this->pools->create_enumerator(this->pools);
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while (enumerator->enumerate(enumerator, ¤t))
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{
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if (streq(name, current->name))
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{
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found = current;
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break;
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}
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}
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enumerator->destroy(enumerator);
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return found;
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}
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/**
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* convert an pool offset to an address
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*/
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host_t* offset2host(pool_t *pool, int offset)
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{
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chunk_t addr;
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host_t *host;
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u_int32_t *pos;
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offset--;
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if (offset > pool->size)
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{
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return NULL;
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}
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addr = chunk_clone(pool->base->get_address(pool->base));
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if (pool->base->get_family(pool->base) == AF_INET6)
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{
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pos = (u_int32_t*)(addr.ptr + 12);
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}
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else
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{
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pos = (u_int32_t*)addr.ptr;
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}
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*pos = htonl(offset + ntohl(*pos));
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host = host_create_from_chunk(pool->base->get_family(pool->base), addr, 0);
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free(addr.ptr);
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return host;
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}
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/**
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* convert a host to a pool offset
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*/
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int host2offset(pool_t *pool, host_t *addr)
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{
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chunk_t host, base;
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u_int32_t hosti, basei;
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if (addr->get_family(addr) != pool->base->get_family(pool->base))
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{
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return -1;
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}
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host = addr->get_address(addr);
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base = pool->base->get_address(pool->base);
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if (addr->get_family(addr) == AF_INET6)
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{
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/* only look at last /32 block */
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if (!memeq(host.ptr, base.ptr, 12))
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{
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return -1;
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}
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host = chunk_skip(host, 12);
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base = chunk_skip(base, 12);
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}
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hosti = ntohl(*(u_int32_t*)(host.ptr));
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basei = ntohl(*(u_int32_t*)(base.ptr));
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if (hosti > basei + pool->size)
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{
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return -1;
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}
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return hosti - basei + 1;
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}
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/**
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* Implementation of attribute_provider_t.acquire_address
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*/
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static host_t* acquire_address(private_stroke_attribute_t *this,
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char *name, identification_t *id,
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auth_info_t *auth, host_t *requested)
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{
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pool_t *pool;
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uintptr_t offset;
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enumerator_t *enumerator;
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identification_t *old_id;
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this->mutex->lock(this->mutex);
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pool = find_pool(this, name);
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while (pool)
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{
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/* check for a valid offline lease, refresh */
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offset = (uintptr_t)pool->offline->remove(pool->offline, id);
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if (offset)
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{
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id = pool->ids->get(pool->ids, id);
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if (id)
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{
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DBG1(DBG_CFG, "reassigning offline lease to %D", id);
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pool->online->put(pool->online, id, (void*)offset);
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break;
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}
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}
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/* check for a valid online lease, reassign */
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offset = (uintptr_t)pool->online->get(pool->online, id);
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if (offset && offset == host2offset(pool, requested))
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{
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DBG1(DBG_CFG, "reassigning online lease to %D", id);
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break;
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}
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if (pool->unused < pool->size)
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{
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/* assigning offset, starting by 1. Handling 0 in hashtable
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* is difficult. */
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offset = ++pool->unused;
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id = id->clone(id);
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pool->ids->put(pool->ids, id, id);
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pool->online->put(pool->online, id, (void*)offset);
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DBG1(DBG_CFG, "assigning new lease to %D", id);
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break;
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}
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/* no more addresses, replace the first found offline lease */
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enumerator = pool->offline->create_enumerator(pool->offline);
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if (enumerator->enumerate(enumerator, &old_id, &offset))
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{
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offset = (uintptr_t)pool->offline->remove(pool->offline, old_id);
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if (offset)
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{
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/* destroy reference to old ID */
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old_id = pool->ids->remove(pool->ids, old_id);
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DBG1(DBG_CFG, "reassigning existing offline lease of %D to %D",
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old_id, id);
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if (old_id)
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{
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old_id->destroy(old_id);
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}
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id = id->clone(id);
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pool->ids->put(pool->ids, id, id);
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pool->online->put(pool->online, id, (void*)offset);
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enumerator->destroy(enumerator);
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break;
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}
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}
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enumerator->destroy(enumerator);
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DBG1(DBG_CFG, "pool %s is full, unable to assign address", pool);
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break;
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}
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this->mutex->unlock(this->mutex);
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if (offset)
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{
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return offset2host(pool, offset);
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}
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return NULL;
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}
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/**
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* Implementation of attribute_provider_t.release_address
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*/
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static bool release_address(private_stroke_attribute_t *this,
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char *name, host_t *address, identification_t *id)
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{
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pool_t *pool;
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bool found = FALSE;
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uintptr_t offset;
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this->mutex->lock(this->mutex);
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pool = find_pool(this, name);
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if (pool)
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{
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if (pool->size != 0)
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{
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offset = (uintptr_t)pool->online->remove(pool->online, id);
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if (offset)
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{
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id = pool->ids->get(pool->ids, id);
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if (id)
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{
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DBG1(DBG_CFG, "lease %H of %D gone offline", address, id);
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pool->offline->put(pool->offline, id, (void*)offset);
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}
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}
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}
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}
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this->mutex->unlock(this->mutex);
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return found;
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}
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/**
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* Implementation of stroke_attribute_t.add_pool.
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*/
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static void add_pool(private_stroke_attribute_t *this, stroke_msg_t *msg)
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{
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if (msg->add_conn.other.sourceip_size)
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{
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pool_t *pool;
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pool = malloc_thing(pool_t);
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pool->base = NULL;
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pool->size = 0;
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pool->unused = 0;
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pool->name = strdup(msg->add_conn.name);
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pool->online = hashtable_create((hashtable_hash_t)id_hash,
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(hashtable_equals_t)id_equals, 16);
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pool->offline = hashtable_create((hashtable_hash_t)id_hash,
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(hashtable_equals_t)id_equals, 16);
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pool->ids = hashtable_create((hashtable_hash_t)id_hash,
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(hashtable_equals_t)id_equals, 16);
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/* if %config, add an empty pool, otherwise */
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if (msg->add_conn.other.sourceip)
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{
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u_int32_t bits;
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int family;
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DBG1(DBG_CFG, "adding virtual IP address pool '%s': %s/%d",
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msg->add_conn.name, msg->add_conn.other.sourceip,
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msg->add_conn.other.sourceip_size);
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pool->base = host_create_from_string(msg->add_conn.other.sourceip, 0);
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if (!pool->base)
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{
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pool_destroy(pool);
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DBG1(DBG_CFG, "virtual IP address invalid, discarded");
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return;
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}
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family = pool->base->get_family(pool->base);
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bits = (family == AF_INET ? 32 : 128) - msg->add_conn.other.sourceip_size;
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if (bits > POOL_LIMIT)
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{
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bits = POOL_LIMIT;
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DBG1(DBG_CFG, "virtual IP pool to large, limiting to %s/%d",
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msg->add_conn.other.sourceip,
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(family == AF_INET ? 32 : 128) - bits);
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}
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pool->size = 1 << (bits);
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if (pool->size > 2)
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{ /* do not use first and last addresses of a block */
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pool->unused++;
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pool->size--;
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}
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}
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this->mutex->lock(this->mutex);
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this->pools->insert_last(this->pools, pool);
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this->mutex->unlock(this->mutex);
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}
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}
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/**
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* Implementation of stroke_attribute_t.del_pool.
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*/
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static void del_pool(private_stroke_attribute_t *this, stroke_msg_t *msg)
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{
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enumerator_t *enumerator;
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pool_t *pool;
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this->mutex->lock(this->mutex);
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enumerator = this->pools->create_enumerator(this->pools);
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while (enumerator->enumerate(enumerator, &pool))
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{
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if (streq(msg->del_conn.name, pool->name))
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{
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this->pools->remove_at(this->pools, enumerator);
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pool_destroy(pool);
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break;
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}
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}
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enumerator->destroy(enumerator);
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this->mutex->unlock(this->mutex);
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}
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/**
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* Pool enumerator filter function, converts pool_t to name, size, ...
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*/
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static bool pool_filter(void *mutex, pool_t **poolp, char **name,
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void *d1, u_int *size, void *d2, u_int *online,
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void *d3, u_int *offline)
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{
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pool_t *pool = *poolp;
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*name = pool->name;
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*size = pool->size;
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*online = pool->online->get_count(pool->online);
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*offline = pool->offline->get_count(pool->offline);
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return TRUE;
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}
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/**
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* Implementation of stroke_attribute_t.create_pool_enumerator
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*/
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static enumerator_t* create_pool_enumerator(private_stroke_attribute_t *this)
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{
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this->mutex->lock(this->mutex);
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return enumerator_create_filter(this->pools->create_enumerator(this->pools),
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(void*)pool_filter,
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this->mutex, (void*)this->mutex->unlock);
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}
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/**
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* lease enumerator
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*/
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typedef struct {
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/** implemented enumerator interface */
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enumerator_t public;
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/** inner hash-table enumerator */
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enumerator_t *inner;
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/** enumerated pool */
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pool_t *pool;
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/** mutex to unlock on destruction */
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mutex_t *mutex;
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/** currently enumerated lease address */
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host_t *current;
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} lease_enumerator_t;
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/**
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* Implementation of lease_enumerator_t.enumerate
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*/
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static bool lease_enumerate(lease_enumerator_t *this, identification_t **id_out,
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host_t **addr_out, bool *online)
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{
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identification_t *id;
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uintptr_t offset;
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DESTROY_IF(this->current);
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this->current = NULL;
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if (this->inner->enumerate(this->inner, &id, NULL))
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{
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offset = (uintptr_t)this->pool->online->get(this->pool->online, id);
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if (offset)
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{
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*id_out = id;
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*addr_out = this->current = offset2host(this->pool, offset);
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*online = TRUE;
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return TRUE;
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}
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offset = (uintptr_t)this->pool->offline->get(this->pool->offline, id);
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if (offset)
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{
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*id_out = id;
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*addr_out = this->current = offset2host(this->pool, offset);
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*online = FALSE;
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return TRUE;
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}
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}
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return FALSE;
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}
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/**
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* Implementation of lease_enumerator_t.destroy
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*/
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static void lease_enumerator_destroy(lease_enumerator_t *this)
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{
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DESTROY_IF(this->current);
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this->inner->destroy(this->inner);
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this->mutex->unlock(this->mutex);
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free(this);
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}
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/**
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* Implementation of stroke_attribute_t.create_lease_enumerator
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*/
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static enumerator_t* create_lease_enumerator(private_stroke_attribute_t *this,
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char *pool)
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{
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lease_enumerator_t *enumerator;
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this->mutex->lock(this->mutex);
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enumerator = malloc_thing(lease_enumerator_t);
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enumerator->pool = find_pool(this, pool);
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if (!enumerator->pool)
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{
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this->mutex->unlock(this->mutex);
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free(enumerator);
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return NULL;
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}
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enumerator->public.enumerate = (void*)lease_enumerate;
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enumerator->public.destroy = (void*)lease_enumerator_destroy;
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enumerator->inner = enumerator->pool->ids->create_enumerator(enumerator->pool->ids);
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enumerator->mutex = this->mutex;
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enumerator->current = NULL;
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return &enumerator->public;
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}
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/**
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* Implementation of stroke_attribute_t.destroy
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*/
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static void destroy(private_stroke_attribute_t *this)
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{
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this->mutex->destroy(this->mutex);
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this->pools->destroy_function(this->pools, (void*)pool_destroy);
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free(this);
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}
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/*
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* see header file
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*/
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stroke_attribute_t *stroke_attribute_create()
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{
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private_stroke_attribute_t *this = malloc_thing(private_stroke_attribute_t);
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this->public.provider.acquire_address = (host_t*(*)(attribute_provider_t *this, char*, identification_t *,auth_info_t *, host_t *))acquire_address;
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this->public.provider.release_address = (bool(*)(attribute_provider_t *this, char*,host_t *, identification_t*))release_address;
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this->public.add_pool = (void(*)(stroke_attribute_t*, stroke_msg_t *msg))add_pool;
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this->public.del_pool = (void(*)(stroke_attribute_t*, stroke_msg_t *msg))del_pool;
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this->public.create_pool_enumerator = (enumerator_t*(*)(stroke_attribute_t*))create_pool_enumerator;
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this->public.create_lease_enumerator = (enumerator_t*(*)(stroke_attribute_t*, char *pool))create_lease_enumerator;
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this->public.destroy = (void(*)(stroke_attribute_t*))destroy;
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this->pools = linked_list_create();
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this->mutex = mutex_create(MUTEX_RECURSIVE);
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return &this->public;
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}
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