datatypes.c 30.5 KB
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/*
 * datatypes.h: management of structs for public data types
 *
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 * Copyright (C) 2006-2009 Red Hat, Inc.
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 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2.1 of the License, or (at your option) any later version.
 *
 * This library 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
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with this library; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307  USA
 *
 */

#include <config.h>

#include "datatypes.h"
#include "virterror_internal.h"
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#include "logging.h"
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#include "memory.h"

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#define VIR_FROM_THIS VIR_FROM_NONE

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#define virLibConnError(conn, code, fmt...)                       \
    virReportErrorHelper(conn, VIR_FROM_THIS, code, __FILE__,     \
                         __FUNCTION__, __LINE__, fmt)

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/************************************************************************
 *									*
 *			Domain and Connections allocations		*
 *									*
 ************************************************************************/

/**
 * virDomainFreeName:
 * @domain: a domain object
 *
 * Destroy the domain object, this is just used by the domain hash callback.
 *
 * Returns 0 in case of success and -1 in case of failure.
 */
static int
virDomainFreeName(virDomainPtr domain, const char *name ATTRIBUTE_UNUSED)
{
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    return (virUnrefDomain(domain));
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}

/**
 * virNetworkFreeName:
 * @network: a network object
 *
 * Destroy the network object, this is just used by the network hash callback.
 *
 * Returns 0 in case of success and -1 in case of failure.
 */
static int
virNetworkFreeName(virNetworkPtr network, const char *name ATTRIBUTE_UNUSED)
{
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    return (virUnrefNetwork(network));
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}

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/**
 * virInterfaceFreeName:
 * @interface: a interface object
 *
 * Destroy the interface object, this is just used by the interface hash callback.
 *
 * Returns 0 in case of success and -1 in case of failure.
 */
static int
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virInterfaceFreeName(virInterfacePtr iface, const char *name ATTRIBUTE_UNUSED)
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{
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    return (virUnrefInterface(iface));
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}

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/**
 * virStoragePoolFreeName:
 * @pool: a pool object
 *
 * Destroy the pool object, this is just used by the pool hash callback.
 *
 * Returns 0 in case of success and -1 in case of failure.
 */
static int
virStoragePoolFreeName(virStoragePoolPtr pool, const char *name ATTRIBUTE_UNUSED)
{
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    return (virUnrefStoragePool(pool));
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}

/**
 * virStorageVolFreeName:
 * @vol: a vol object
 *
 * Destroy the vol object, this is just used by the vol hash callback.
 *
 * Returns 0 in case of success and -1 in case of failure.
 */
static int
virStorageVolFreeName(virStorageVolPtr vol, const char *name ATTRIBUTE_UNUSED)
{
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    return (virUnrefStorageVol(vol));
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}

/**
 * virGetConnect:
 *
 * Allocates a new hypervisor connection structure
 *
 * Returns a new pointer or NULL in case of error.
 */
virConnectPtr
virGetConnect(void) {
    virConnectPtr ret;

    if (VIR_ALLOC(ret) < 0) {
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        virReportOOMError(NULL);
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        goto failed;
    }
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    if (virMutexInit(&ret->lock) < 0) {
        VIR_FREE(ret);
        goto failed;
    }

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    ret->magic = VIR_CONNECT_MAGIC;
    ret->driver = NULL;
    ret->networkDriver = NULL;
    ret->privateData = NULL;
    ret->networkPrivateData = NULL;
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    ret->interfacePrivateData = NULL;
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    ret->domains = virHashCreate(20);
    if (ret->domains == NULL)
        goto failed;
    ret->networks = virHashCreate(20);
    if (ret->networks == NULL)
        goto failed;
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    ret->interfaces = virHashCreate(20);
    if (ret->interfaces == NULL)
        goto failed;
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    ret->storagePools = virHashCreate(20);
    if (ret->storagePools == NULL)
        goto failed;
    ret->storageVols = virHashCreate(20);
    if (ret->storageVols == NULL)
        goto failed;
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    ret->nodeDevices = virHashCreate(256);
    if (ret->nodeDevices == NULL)
        goto failed;
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    ret->refs = 1;
    return(ret);

failed:
    if (ret != NULL) {
        if (ret->domains != NULL)
            virHashFree(ret->domains, (virHashDeallocator) virDomainFreeName);
        if (ret->networks != NULL)
            virHashFree(ret->networks, (virHashDeallocator) virNetworkFreeName);
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        if (ret->interfaces != NULL)
           virHashFree(ret->interfaces, (virHashDeallocator) virInterfaceFreeName);
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        if (ret->storagePools != NULL)
            virHashFree(ret->storagePools, (virHashDeallocator) virStoragePoolFreeName);
        if (ret->storageVols != NULL)
            virHashFree(ret->storageVols, (virHashDeallocator) virStorageVolFreeName);
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        if (ret->nodeDevices != NULL)
            virHashFree(ret->nodeDevices, (virHashDeallocator) virNodeDeviceFree);
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        virMutexDestroy(&ret->lock);
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        VIR_FREE(ret);
    }
    return(NULL);
}

/**
 * virReleaseConnect:
 * @conn: the hypervisor connection to release
 *
 * Unconditionally release all memory associated with a connection.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The connection obj must not
 * be used once this method returns.
 */
static void
virReleaseConnect(virConnectPtr conn) {
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    DEBUG("release connection %p", conn);
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    if (conn->domains != NULL)
        virHashFree(conn->domains, (virHashDeallocator) virDomainFreeName);
    if (conn->networks != NULL)
        virHashFree(conn->networks, (virHashDeallocator) virNetworkFreeName);
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    if (conn->interfaces != NULL)
        virHashFree(conn->interfaces, (virHashDeallocator) virInterfaceFreeName);
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    if (conn->storagePools != NULL)
        virHashFree(conn->storagePools, (virHashDeallocator) virStoragePoolFreeName);
    if (conn->storageVols != NULL)
        virHashFree(conn->storageVols, (virHashDeallocator) virStorageVolFreeName);
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    if (conn->nodeDevices != NULL)
        virHashFree(conn->nodeDevices, (virHashDeallocator) virNodeDeviceFree);
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    virResetError(&conn->err);

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    xmlFreeURI(conn->uri);
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    virMutexUnlock(&conn->lock);
    virMutexDestroy(&conn->lock);
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    VIR_FREE(conn);
}

/**
 * virUnrefConnect:
 * @conn: the hypervisor connection to unreference
 *
 * Unreference the connection. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefConnect(virConnectPtr conn) {
    int refs;

    if ((!VIR_IS_CONNECT(conn))) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(-1);
    }
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    virMutexLock(&conn->lock);
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    DEBUG("unref connection %p %d", conn, conn->refs);
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    conn->refs--;
    refs = conn->refs;
    if (refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return (0);
    }
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    virMutexUnlock(&conn->lock);
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    return (refs);
}

/**
 * virGetDomain:
 * @conn: the hypervisor connection
 * @name: pointer to the domain name
 * @uuid: pointer to the uuid
 *
 * Lookup if the domain is already registered for that connection,
 * if yes return a new pointer to it, if no allocate a new structure,
 * and register it in the table. In any case a corresponding call to
 * virUnrefDomain() is needed to not leak data.
 *
 * Returns a pointer to the domain, or NULL in case of failure
 */
virDomainPtr
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virGetDomain(virConnectPtr conn, const char *name, const unsigned char *uuid) {
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    virDomainPtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL) || (uuid == NULL)) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(NULL);
    }
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    virMutexLock(&conn->lock);
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    /* TODO search by UUID first as they are better differenciators */

    ret = (virDomainPtr) virHashLookup(conn->domains, name);
    /* TODO check the UUID */
    if (ret == NULL) {
        if (VIR_ALLOC(ret) < 0) {
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            virReportOOMError(conn);
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            goto error;
        }
        ret->name = strdup(name);
        if (ret->name == NULL) {
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            virReportOOMError(conn);
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            goto error;
        }
        ret->magic = VIR_DOMAIN_MAGIC;
        ret->conn = conn;
        ret->id = -1;
        if (uuid != NULL)
            memcpy(&(ret->uuid[0]), uuid, VIR_UUID_BUFLEN);

        if (virHashAddEntry(conn->domains, name, ret) < 0) {
            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add domain to connection hash table"));
            goto error;
        }
        conn->refs++;
        DEBUG("New hash entry %p", ret);
    } else {
        DEBUG("Existing hash entry %p: refs now %d", ret, ret->refs+1);
    }
    ret->refs++;
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    virMutexUnlock(&conn->lock);
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    return(ret);

 error:
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    virMutexUnlock(&conn->lock);
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    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret);
    }
    return(NULL);
}

/**
 * virReleaseDomain:
 * @domain: the domain to release
 *
 * Unconditionally release all memory associated with a domain.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The domain obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
virReleaseDomain(virDomainPtr domain) {
    virConnectPtr conn = domain->conn;
    DEBUG("release domain %p %s", domain, domain->name);

    /* TODO search by UUID first as they are better differenciators */
    if (virHashRemoveEntry(conn->domains, domain->name, NULL) < 0)
        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("domain missing from connection hash table"));

    domain->magic = -1;
    domain->id = -1;
    VIR_FREE(domain->name);
    VIR_FREE(domain);

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    DEBUG("unref connection %p %d", conn, conn->refs);
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    conn->refs--;
    if (conn->refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return;
    }

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    virMutexUnlock(&conn->lock);
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}


/**
 * virUnrefDomain:
 * @domain: the domain to unreference
 *
 * Unreference the domain. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefDomain(virDomainPtr domain) {
    int refs;

    if (!VIR_IS_CONNECTED_DOMAIN(domain)) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(-1);
    }
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    virMutexLock(&domain->conn->lock);
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    DEBUG("unref domain %p %s %d", domain, domain->name, domain->refs);
    domain->refs--;
    refs = domain->refs;
    if (refs == 0) {
        virReleaseDomain(domain);
        /* Already unlocked mutex */
        return (0);
    }

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    virMutexUnlock(&domain->conn->lock);
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    return (refs);
}

/**
 * virGetNetwork:
 * @conn: the hypervisor connection
 * @name: pointer to the network name
 * @uuid: pointer to the uuid
 *
 * Lookup if the network is already registered for that connection,
 * if yes return a new pointer to it, if no allocate a new structure,
 * and register it in the table. In any case a corresponding call to
 * virUnrefNetwork() is needed to not leak data.
 *
 * Returns a pointer to the network, or NULL in case of failure
 */
virNetworkPtr
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virGetNetwork(virConnectPtr conn, const char *name, const unsigned char *uuid) {
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    virNetworkPtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL) || (uuid == NULL)) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(NULL);
    }
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    virMutexLock(&conn->lock);
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    /* TODO search by UUID first as they are better differenciators */

    ret = (virNetworkPtr) virHashLookup(conn->networks, name);
    /* TODO check the UUID */
    if (ret == NULL) {
        if (VIR_ALLOC(ret) < 0) {
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            virReportOOMError(conn);
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            goto error;
        }
        ret->name = strdup(name);
        if (ret->name == NULL) {
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            virReportOOMError(conn);
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            goto error;
        }
        ret->magic = VIR_NETWORK_MAGIC;
        ret->conn = conn;
        if (uuid != NULL)
            memcpy(&(ret->uuid[0]), uuid, VIR_UUID_BUFLEN);

        if (virHashAddEntry(conn->networks, name, ret) < 0) {
            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add network to connection hash table"));
            goto error;
        }
        conn->refs++;
    }
    ret->refs++;
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    virMutexUnlock(&conn->lock);
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    return(ret);

 error:
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    virMutexUnlock(&conn->lock);
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    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret);
    }
    return(NULL);
}

/**
 * virReleaseNetwork:
 * @network: the network to release
 *
 * Unconditionally release all memory associated with a network.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The network obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
virReleaseNetwork(virNetworkPtr network) {
    virConnectPtr conn = network->conn;
    DEBUG("release network %p %s", network, network->name);

    /* TODO search by UUID first as they are better differenciators */
    if (virHashRemoveEntry(conn->networks, network->name, NULL) < 0)
        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("network missing from connection hash table"));

    network->magic = -1;
    VIR_FREE(network->name);
    VIR_FREE(network);

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    DEBUG("unref connection %p %d", conn, conn->refs);
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    conn->refs--;
    if (conn->refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return;
    }

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    virMutexUnlock(&conn->lock);
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}


/**
 * virUnrefNetwork:
 * @network: the network to unreference
 *
 * Unreference the network. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefNetwork(virNetworkPtr network) {
    int refs;

    if (!VIR_IS_CONNECTED_NETWORK(network)) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(-1);
    }
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    virMutexLock(&network->conn->lock);
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    DEBUG("unref network %p %s %d", network, network->name, network->refs);
    network->refs--;
    refs = network->refs;
    if (refs == 0) {
        virReleaseNetwork(network);
        /* Already unlocked mutex */
        return (0);
    }

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    virMutexUnlock(&network->conn->lock);
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    return (refs);
}


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/**
 * virGetInterface:
 * @conn: the hypervisor connection
 * @name: pointer to the interface name
 * @mac: pointer to the mac
 *
 * Lookup if the interface is already registered for that connection,
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 * if yes return a new pointer to it (possibly updating the MAC
 * address), if no allocate a new structure, and register it in the
 * table. In any case a corresponding call to virUnrefInterface() is
 * needed to not leak data.
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 *
 * Returns a pointer to the interface, or NULL in case of failure
 */
virInterfacePtr
virGetInterface(virConnectPtr conn, const char *name, const char *mac) {
    virInterfacePtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL) || (mac == NULL)) {
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
        return(NULL);
    }
    virMutexLock(&conn->lock);

    ret = (virInterfacePtr) virHashLookup(conn->interfaces, name);
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    if (ret != NULL) {
        if (STRCASENEQ(ret->mac, mac)) {
            /*
             * If the mac address has changed, try to modify it in
             * place, which will only work if the new mac is the
             * same length as, or shorter than, the old mac.
             */
            size_t newmaclen = strlen(mac);
            size_t oldmaclen = strlen(ret->mac);
            if (newmaclen <= oldmaclen) {
                strcpy(ret->mac, mac);
            } else {
                /*
                 * If it's longer, we're kind of screwed, because we
                 * can't add a new hashtable entry (it would clash
                 * with the existing entry of same name), and we can't
                 * free/re-alloc the existing entry's mac, as some
                 * other thread may already be using the existing mac
                 * pointer.  Fortunately, this should never happen,
                 * since the length of the mac address for any
                 * interface is determined by the type of the
                 * interface, and that is unlikely to change.
                 */
                virMutexUnlock(&conn->lock);
                virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
_("Failed to change interface mac address from %s to %s due to differing lengths."),
                                ret->mac, mac);
                ret = NULL;
                goto error;
            }
        }
    } else {
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        if (VIR_ALLOC(ret) < 0) {
571
            virMutexUnlock(&conn->lock);
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            virReportOOMError(conn);
            goto error;
        }
        ret->name = strdup(name);
        if (ret->name == NULL) {
577
            virMutexUnlock(&conn->lock);
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            virReportOOMError(conn);
            goto error;
        }
        ret->mac = strdup(mac);
        if (ret->mac == NULL) {
583
            virMutexUnlock(&conn->lock);
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            virReportOOMError(conn);
            goto error;
        }

        ret->magic = VIR_INTERFACE_MAGIC;
        ret->conn = conn;

        if (virHashAddEntry(conn->interfaces, name, ret) < 0) {
592
            virMutexUnlock(&conn->lock);
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            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add interface to connection hash table"));
            goto error;
        }
        conn->refs++;
    }
    ret->refs++;
    virMutexUnlock(&conn->lock);
    return(ret);

 error:
    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret->mac);
        VIR_FREE(ret);
    }
    return(NULL);
}

/**
 * virReleaseInterface:
 * @interface: the interface to release
 *
 * Unconditionally release all memory associated with a interface.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The interface obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
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virReleaseInterface(virInterfacePtr iface) {
    virConnectPtr conn = iface->conn;
    DEBUG("release interface %p %s", iface, iface->name);
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    if (virHashRemoveEntry(conn->interfaces, iface->name, NULL) < 0) {
        /* unlock before reporting error because error report grabs lock */
        virMutexUnlock(&conn->lock);
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        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("interface missing from connection hash table"));
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        /* don't decr the conn refct if we weren't connected to it */
        conn = NULL;
    }
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    iface->magic = -1;
    VIR_FREE(iface->name);
    VIR_FREE(iface->mac);
    VIR_FREE(iface);
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    if (conn) {
        DEBUG("unref connection %p %d", conn, conn->refs);
        conn->refs--;
        if (conn->refs == 0) {
            virReleaseConnect(conn);
            /* Already unlocked mutex */
            return;
        }
        virMutexUnlock(&conn->lock);
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    }
}


/**
 * virUnrefInterface:
 * @interface: the interface to unreference
 *
 * Unreference the interface. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
666
virUnrefInterface(virInterfacePtr iface) {
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    int refs;

669
    if (!VIR_IS_CONNECTED_INTERFACE(iface)) {
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        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
        return(-1);
    }
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    virMutexLock(&iface->conn->lock);
    DEBUG("unref interface %p %s %d", iface, iface->name, iface->refs);
    iface->refs--;
    refs = iface->refs;
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    if (refs == 0) {
678
        virReleaseInterface(iface);
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        /* Already unlocked mutex */
        return (0);
    }

683
    virMutexUnlock(&iface->conn->lock);
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    return (refs);
}


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/**
 * virGetStoragePool:
 * @conn: the hypervisor connection
 * @name: pointer to the storage pool name
 * @uuid: pointer to the uuid
 *
 * Lookup if the storage pool is already registered for that connection,
 * if yes return a new pointer to it, if no allocate a new structure,
 * and register it in the table. In any case a corresponding call to
 * virFreeStoragePool() is needed to not leak data.
 *
 * Returns a pointer to the network, or NULL in case of failure
 */
virStoragePoolPtr
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virGetStoragePool(virConnectPtr conn, const char *name, const unsigned char *uuid) {
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    virStoragePoolPtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL) || (uuid == NULL)) {
706
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
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        return(NULL);
    }
709
    virMutexLock(&conn->lock);
710 711 712 713 714 715 716

    /* TODO search by UUID first as they are better differenciators */

    ret = (virStoragePoolPtr) virHashLookup(conn->storagePools, name);
    /* TODO check the UUID */
    if (ret == NULL) {
        if (VIR_ALLOC(ret) < 0) {
717
            virReportOOMError(conn);
718 719 720 721
            goto error;
        }
        ret->name = strdup(name);
        if (ret->name == NULL) {
722
            virReportOOMError(conn);
723 724 725 726 727 728 729 730 731 732 733 734 735 736 737
            goto error;
        }
        ret->magic = VIR_STORAGE_POOL_MAGIC;
        ret->conn = conn;
        if (uuid != NULL)
            memcpy(&(ret->uuid[0]), uuid, VIR_UUID_BUFLEN);

        if (virHashAddEntry(conn->storagePools, name, ret) < 0) {
            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add storage pool to connection hash table"));
            goto error;
        }
        conn->refs++;
    }
    ret->refs++;
738
    virMutexUnlock(&conn->lock);
739 740 741
    return(ret);

error:
742
    virMutexUnlock(&conn->lock);
743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776
    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret);
    }
    return(NULL);
}


/**
 * virReleaseStoragePool:
 * @pool: the pool to release
 *
 * Unconditionally release all memory associated with a pool.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The pool obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
virReleaseStoragePool(virStoragePoolPtr pool) {
    virConnectPtr conn = pool->conn;
    DEBUG("release pool %p %s", pool, pool->name);

    /* TODO search by UUID first as they are better differenciators */
    if (virHashRemoveEntry(conn->storagePools, pool->name, NULL) < 0)
        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("pool missing from connection hash table"));

    pool->magic = -1;
    VIR_FREE(pool->name);
    VIR_FREE(pool);

777
    DEBUG("unref connection %p %d", conn, conn->refs);
778 779 780 781 782 783 784
    conn->refs--;
    if (conn->refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return;
    }

785
    virMutexUnlock(&conn->lock);
786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802
}


/**
 * virUnrefStoragePool:
 * @pool: the pool to unreference
 *
 * Unreference the pool. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefStoragePool(virStoragePoolPtr pool) {
    int refs;

    if (!VIR_IS_CONNECTED_STORAGE_POOL(pool)) {
803
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
804 805
        return(-1);
    }
806
    virMutexLock(&pool->conn->lock);
807 808 809 810 811 812 813 814 815
    DEBUG("unref pool %p %s %d", pool, pool->name, pool->refs);
    pool->refs--;
    refs = pool->refs;
    if (refs == 0) {
        virReleaseStoragePool(pool);
        /* Already unlocked mutex */
        return (0);
    }

816
    virMutexUnlock(&pool->conn->lock);
817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835
    return (refs);
}


/**
 * virGetStorageVol:
 * @conn: the hypervisor connection
 * @pool: pool owning the volume
 * @name: pointer to the storage vol name
 * @uuid: pointer to the uuid
 *
 * Lookup if the storage vol is already registered for that connection,
 * if yes return a new pointer to it, if no allocate a new structure,
 * and register it in the table. In any case a corresponding call to
 * virFreeStorageVol() is needed to not leak data.
 *
 * Returns a pointer to the storage vol, or NULL in case of failure
 */
virStorageVolPtr
D
Daniel P. Berrange 已提交
836
virGetStorageVol(virConnectPtr conn, const char *pool, const char *name, const char *key) {
837 838 839
    virStorageVolPtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL) || (key == NULL)) {
840
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
841 842
        return(NULL);
    }
843
    virMutexLock(&conn->lock);
844 845 846 847

    ret = (virStorageVolPtr) virHashLookup(conn->storageVols, key);
    if (ret == NULL) {
        if (VIR_ALLOC(ret) < 0) {
848
            virReportOOMError(conn);
849 850 851 852
            goto error;
        }
        ret->pool = strdup(pool);
        if (ret->pool == NULL) {
853
            virReportOOMError(conn);
854 855 856 857
            goto error;
        }
        ret->name = strdup(name);
        if (ret->name == NULL) {
858
            virReportOOMError(conn);
859 860 861 862 863 864 865 866 867 868 869 870 871 872 873
            goto error;
        }
        strncpy(ret->key, key, sizeof(ret->key)-1);
        ret->key[sizeof(ret->key)-1] = '\0';
        ret->magic = VIR_STORAGE_VOL_MAGIC;
        ret->conn = conn;

        if (virHashAddEntry(conn->storageVols, key, ret) < 0) {
            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add storage vol to connection hash table"));
            goto error;
        }
        conn->refs++;
    }
    ret->refs++;
874
    virMutexUnlock(&conn->lock);
875 876 877
    return(ret);

error:
878
    virMutexUnlock(&conn->lock);
879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914
    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret->pool);
        VIR_FREE(ret);
    }
    return(NULL);
}


/**
 * virReleaseStorageVol:
 * @vol: the vol to release
 *
 * Unconditionally release all memory associated with a vol.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The vol obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
virReleaseStorageVol(virStorageVolPtr vol) {
    virConnectPtr conn = vol->conn;
    DEBUG("release vol %p %s", vol, vol->name);

    /* TODO search by UUID first as they are better differenciators */
    if (virHashRemoveEntry(conn->storageVols, vol->key, NULL) < 0)
        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("vol missing from connection hash table"));

    vol->magic = -1;
    VIR_FREE(vol->name);
    VIR_FREE(vol->pool);
    VIR_FREE(vol);

915
    DEBUG("unref connection %p %d", conn, conn->refs);
916 917 918 919 920 921 922
    conn->refs--;
    if (conn->refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return;
    }

923
    virMutexUnlock(&conn->lock);
924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940
}


/**
 * virUnrefStorageVol:
 * @vol: the vol to unreference
 *
 * Unreference the vol. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefStorageVol(virStorageVolPtr vol) {
    int refs;

    if (!VIR_IS_CONNECTED_STORAGE_VOL(vol)) {
941
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
942 943
        return(-1);
    }
944
    virMutexLock(&vol->conn->lock);
945 946 947 948 949 950 951 952 953
    DEBUG("unref vol %p %s %d", vol, vol->name, vol->refs);
    vol->refs--;
    refs = vol->refs;
    if (refs == 0) {
        virReleaseStorageVol(vol);
        /* Already unlocked mutex */
        return (0);
    }

954
    virMutexUnlock(&vol->conn->lock);
955 956
    return (refs);
}
957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976


/**
 * virGetNodeDevice:
 * @conn: the hypervisor connection
 * @name: device name (unique on node)
 *
 * Lookup if the device is already registered for that connection,
 * if yes return a new pointer to it, if no allocate a new structure,
 * and register it in the table. In any case a corresponding call to
 * virFreeNodeDevice() is needed to not leak data.
 *
 * Returns a pointer to the node device, or NULL in case of failure
 */
virNodeDevicePtr
virGetNodeDevice(virConnectPtr conn, const char *name)
{
    virNodeDevicePtr ret = NULL;

    if ((!VIR_IS_CONNECT(conn)) || (name == NULL)) {
977
        virLibConnError(NULL, VIR_ERR_INVALID_ARG, __FUNCTION__);
978 979
        return(NULL);
    }
980
    virMutexLock(&conn->lock);
981 982 983 984

    ret = (virNodeDevicePtr) virHashLookup(conn->nodeDevices, name);
    if (ret == NULL) {
       if (VIR_ALLOC(ret) < 0) {
985
            virReportOOMError(conn);
986 987 988 989 990 991
            goto error;
        }
        ret->magic = VIR_NODE_DEVICE_MAGIC;
        ret->conn = conn;
        ret->name = strdup(name);
        if (ret->name == NULL) {
992
            virReportOOMError(conn);
993 994 995 996 997 998 999 1000 1001 1002 1003
            goto error;
        }

        if (virHashAddEntry(conn->nodeDevices, name, ret) < 0) {
            virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                            _("failed to add node dev to conn hash table"));
            goto error;
        }
        conn->refs++;
    }
    ret->refs++;
1004
    virMutexUnlock(&conn->lock);
1005 1006 1007
    return(ret);

error:
1008
    virMutexUnlock(&conn->lock);
1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
    if (ret != NULL) {
        VIR_FREE(ret->name);
        VIR_FREE(ret);
    }
    return(NULL);
}


/**
 * virReleaseNodeDevice:
 * @dev: the dev to release
 *
 * Unconditionally release all memory associated with a dev.
 * The conn.lock mutex must be held prior to calling this, and will
 * be released prior to this returning. The dev obj must not
 * be used once this method returns.
 *
 * It will also unreference the associated connection object,
 * which may also be released if its ref count hits zero.
 */
static void
virReleaseNodeDevice(virNodeDevicePtr dev) {
    virConnectPtr conn = dev->conn;
    DEBUG("release dev %p %s", dev, dev->name);

    if (virHashRemoveEntry(conn->nodeDevices, dev->name, NULL) < 0)
        virLibConnError(conn, VIR_ERR_INTERNAL_ERROR,
                        _("dev missing from connection hash table"));

    dev->magic = -1;
    VIR_FREE(dev->name);
1040
    VIR_FREE(dev->parent);
1041 1042 1043 1044 1045 1046 1047 1048 1049 1050
    VIR_FREE(dev);

    DEBUG("unref connection %p %d", conn, conn->refs);
    conn->refs--;
    if (conn->refs == 0) {
        virReleaseConnect(conn);
        /* Already unlocked mutex */
        return;
    }

1051
    virMutexUnlock(&conn->lock);
1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067
}


/**
 * virUnrefNodeDevice:
 * @dev: the dev to unreference
 *
 * Unreference the dev. If the use count drops to zero, the structure is
 * actually freed.
 *
 * Returns the reference count or -1 in case of failure.
 */
int
virUnrefNodeDevice(virNodeDevicePtr dev) {
    int refs;

1068
    virMutexLock(&dev->conn->lock);
1069 1070 1071 1072 1073 1074 1075 1076 1077
    DEBUG("unref dev %p %s %d", dev, dev->name, dev->refs);
    dev->refs--;
    refs = dev->refs;
    if (refs == 0) {
        virReleaseNodeDevice(dev);
        /* Already unlocked mutex */
        return (0);
    }

1078
    virMutexUnlock(&dev->conn->lock);
1079 1080
    return (refs);
}