calamares/src/modules/partition/PartitionCoreModule.cpp
2014-07-16 15:55:49 +02:00

286 lines
7.8 KiB
C++

/* === This file is part of Calamares - <http://github.com/calamares> ===
*
* Copyright 2014, Aurélien Gâteau <agateau@kde.org>
*
* Calamares 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 3 of the License, or
* (at your option) any later version.
*
* Calamares 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.
*
* You should have received a copy of the GNU General Public License
* along with Calamares. If not, see <http://www.gnu.org/licenses/>.
*/
#include <PartitionCoreModule.h>
#include <CreatePartitionJob.h>
#include <CreatePartitionTableJob.h>
#include <DeletePartitionJob.h>
#include <DeviceModel.h>
#include <PartitionModel.h>
#include <PMUtils.h>
#include <Typedefs.h>
#include <utils/Logger.h>
// CalaPM
#include <CalaPM.h>
#include <core/device.h>
#include <core/partition.h>
#include <backend/corebackend.h>
#include <backend/corebackendmanager.h>
//- DeviceInfo ---------------------------------------------
PartitionCoreModule::DeviceInfo::DeviceInfo( Device* _device )
: device( _device )
, partitionModel( new PartitionModel )
{}
PartitionCoreModule::DeviceInfo::~DeviceInfo()
{
qDeleteAll( m_partitionInfoHash );
}
PartitionInfo*
PartitionCoreModule::DeviceInfo::infoForPartition( Partition* partition ) const
{
return m_partitionInfoHash.value( partition );
}
bool
PartitionCoreModule::DeviceInfo::addInfoForPartition( PartitionInfo* partitionInfo )
{
Q_ASSERT( partitionInfo );
if ( infoForPartition( partitionInfo->partition ) )
return false;
m_partitionInfoHash.insert( partitionInfo->partition, partitionInfo );
return true;
}
void
PartitionCoreModule::DeviceInfo::removeInfoForPartition( Partition* partition )
{
m_partitionInfoHash.remove( partition );
}
bool
PartitionCoreModule::DeviceInfo::hasRootMountPoint() const
{
for ( auto info : m_partitionInfoHash )
{
if ( info->mountPoint == "/" )
return true;
}
return false;
}
void
PartitionCoreModule::DeviceInfo::forgetChanges()
{
jobs.clear();
qDeleteAll( m_partitionInfoHash );
m_partitionInfoHash.clear();
}
//- PartitionCoreModule ------------------------------------
PartitionCoreModule::PartitionCoreModule( QObject* parent )
: QObject( parent )
, m_deviceModel( new DeviceModel( this ) )
{
// FIXME: Should be done at startup
if ( !CalaPM::init() )
qFatal( "Failed to init CalaPM" );
CoreBackend* backend = CoreBackendManager::self()->backend();
auto devices = backend->scanDevices();
for ( auto device : devices )
{
auto deviceInfo = new DeviceInfo( device );
m_deviceInfos << deviceInfo;
deviceInfo->partitionModel->init( device, deviceInfo );
}
m_deviceModel->init( devices );
}
PartitionCoreModule::~PartitionCoreModule()
{
qDeleteAll( m_deviceInfos );
}
DeviceModel*
PartitionCoreModule::deviceModel() const
{
return m_deviceModel;
}
PartitionModel*
PartitionCoreModule::partitionModelForDevice( Device* device ) const
{
DeviceInfo* info = infoForDevice( device );
Q_ASSERT( info );
return info->partitionModel.data();
}
void
PartitionCoreModule::createPartitionTable( Device* device, PartitionTable::TableType type )
{
DeviceInfo* info = infoForDevice( device );
// Creating a partition table wipes all the disk, so there is no need to
// keep previous changes
info->forgetChanges();
CreatePartitionTableJob* job = new CreatePartitionTableJob( device, type );
job->updatePreview();
info->jobs << Calamares::job_ptr( job );
refreshPartitionModel( device );
updateHasRootMountPoint();
}
void
PartitionCoreModule::createPartition( Device* device, PartitionInfo* partitionInfo )
{
auto deviceInfo = infoForDevice( device );
Q_ASSERT( deviceInfo );
if ( !deviceInfo->addInfoForPartition( partitionInfo ) )
{
cDebug() << "Adding partition failed, there is already a PartitionInfo instance for it";
return;
}
auto partition = partitionInfo->partition;
CreatePartitionJob* job = new CreatePartitionJob( device, partition );
job->updatePreview();
refreshPartitionModel( device );
deviceInfo->jobs << Calamares::job_ptr( job );
updateHasRootMountPoint();
}
void
PartitionCoreModule::deletePartition( Device* device, Partition* partition )
{
auto deviceInfo = infoForDevice( device );
Q_ASSERT( deviceInfo );
deviceInfo->removeInfoForPartition( partition );
QList< Calamares::job_ptr >& jobs = deviceInfo->jobs;
if ( partition->state() == Partition::StateNew )
{
if ( partition->roles().has( PartitionRole::Extended ) )
{
// Delete all logical partitions first
// I am not sure if we can iterate on Partition::children() while
// deleting them, so let's play it safe and keep our own list.
QList< Partition* > lst;
for ( auto childPartition : partition->children() )
if ( !PMUtils::isPartitionFreeSpace( childPartition ) )
lst << childPartition;
for ( auto partition : lst )
deletePartition( device, partition );
}
// Find matching CreatePartitionJob
auto it = std::find_if( jobs.begin(), jobs.end(), [ partition ]( Calamares::job_ptr job )
{
CreatePartitionJob* createJob = qobject_cast< CreatePartitionJob* >( job.data() );
return createJob && createJob->partition() == partition;
} );
if ( it == jobs.end() )
{
cDebug() << "Failed to find a CreatePartitionJob matching the partition to remove";
return;
}
// Remove it
if ( ! partition->parent()->remove( partition ) )
{
cDebug() << "Failed to remove partition from preview";
return;
}
device->partitionTable()->updateUnallocated( *device );
jobs.erase( it );
// The partition is no longer referenced by either a job or the device
// partition list, so we have to delete it
delete partition;
}
else
{
DeletePartitionJob* job = new DeletePartitionJob( device, partition );
job->updatePreview();
jobs << Calamares::job_ptr( job );
}
refreshPartitionModel( device );
updateHasRootMountPoint();
}
QList< Calamares::job_ptr >
PartitionCoreModule::jobs() const
{
dumpQueue();
QList< Calamares::job_ptr > lst;
for ( auto info : m_deviceInfos )
lst << info->jobs;
return lst;
}
void
PartitionCoreModule::dumpQueue() const
{
cDebug() << "# Queue:";
for ( auto info : m_deviceInfos )
{
cDebug() << "## Device:" << info->device->name();
for ( auto job : info->jobs )
cDebug() << "-" << job->prettyName();
}
}
void
PartitionCoreModule::refreshPartitionModel( Device* device )
{
auto model = partitionModelForDevice( device );
Q_ASSERT( model );
model->reload();
}
void PartitionCoreModule::updateHasRootMountPoint()
{
bool oldValue = m_hasRootMountPoint;
m_hasRootMountPoint = false;
for ( auto deviceInfo : m_deviceInfos )
{
if ( deviceInfo->hasRootMountPoint() )
{
m_hasRootMountPoint = true;
break;
}
}
if ( oldValue != m_hasRootMountPoint )
hasRootMountPointChanged( m_hasRootMountPoint );
}
PartitionCoreModule::DeviceInfo*
PartitionCoreModule::infoForDevice( Device* device ) const
{
for ( auto deviceInfo : m_deviceInfos )
{
if ( deviceInfo->device.data() == device )
return deviceInfo;
}
return nullptr;
}