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simgear/simgear/hla/HLAArrayDataElement.cxx
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// Copyright (C) 2009 - 2010 Mathias Froehlich - Mathias.Froehlich@web.de
//
// This library is free software; you can redistribute it and/or
// modify it under the terms of the GNU Library General Public
// License as published by the Free Software Foundation; either
// version 2 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
// Library General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with this program; if not, write to the Free Software
// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
//
#include "HLAArrayDataElement.hxx"
#include <simgear/debug/logstream.hxx>
namespace simgear {
HLAAbstractArrayDataElement::HLAAbstractArrayDataElement(const HLAArrayDataType* dataType) :
_dataType(dataType)
{
}
HLAAbstractArrayDataElement::~HLAAbstractArrayDataElement()
{
}
bool
HLAAbstractArrayDataElement::decode(HLADecodeStream& stream)
{
if (!_dataType.valid())
return false;
return _dataType->decode(stream, *this);
}
bool
HLAAbstractArrayDataElement::encode(HLAEncodeStream& stream) const
{
if (!_dataType.valid())
return false;
return _dataType->encode(stream, *this);
}
const HLAArrayDataType*
HLAAbstractArrayDataElement::getDataType() const
{
return _dataType.get();
}
bool
HLAAbstractArrayDataElement::setDataType(const HLADataType* dataType)
{
const HLAArrayDataType* arrayDataType = dynamic_cast<const HLAArrayDataType*>(dataType);
if (!arrayDataType) {
SG_LOG(SG_NETWORK, SG_WARN, "HLAArrayDataType: unable to set data type!");
return false;
}
_dataType = arrayDataType;
return true;
}
const HLADataType*
HLAAbstractArrayDataElement::getElementDataType() const
{
if (!_dataType.valid())
return 0;
return _dataType->getElementDataType();
}
////////////////////////////////////////////////////////////////////////
HLAArrayDataElement::DataElementFactory::~DataElementFactory()
{
}
HLAArrayDataElement::HLAArrayDataElement(const HLAArrayDataType* dataType) :
HLAAbstractArrayDataElement(dataType)
{
}
HLAArrayDataElement::~HLAArrayDataElement()
{
}
bool
HLAArrayDataElement::setNumElements(unsigned size)
{
unsigned oldSize = _elementVector.size();
if (size == oldSize)
return true;
_elementVector.resize(size);
for (unsigned i = oldSize; i < size; ++i)
_elementVector[i] = newElement(i);
return true;
}
bool
HLAArrayDataElement::decodeElement(HLADecodeStream& stream, unsigned i)
{
HLADataElement* dataElement = getElement(i);
if (!dataElement)
return false;
return dataElement->decode(stream);
}
unsigned
HLAArrayDataElement::getNumElements() const
{
return _elementVector.size();
}
bool
HLAArrayDataElement::encodeElement(HLAEncodeStream& stream, unsigned i) const
{
const HLADataElement* dataElement = getElement(i);
if (!dataElement)
return false;
return dataElement->encode(stream);
}
const HLADataElement*
HLAArrayDataElement::getElement(unsigned index) const
{
if (_elementVector.size() <= index)
return 0;
return _elementVector[index].get();
}
HLADataElement*
HLAArrayDataElement::getElement(unsigned index)
{
if (_elementVector.size() <= index)
return 0;
return _elementVector[index].get();
}
HLADataElement*
HLAArrayDataElement::getOrCreateElement(unsigned index)
{
if (_elementVector.size() <= index)
if (!setNumElements(index + 1))
return 0;
return _elementVector[index].get();
}
void
HLAArrayDataElement::setElement(unsigned index, HLADataElement* value)
{
unsigned oldSize = _elementVector.size();
if (oldSize <= index) {
_elementVector.resize(index + 1);
for (unsigned j = oldSize; j < index; ++j)
_elementVector[j] = newElement(j);
}
_elementVector[index] = value;
}
void
HLAArrayDataElement::setDataElementFactory(HLAArrayDataElement::DataElementFactory* dataElementFactory)
{
_dataElementFactory = dataElementFactory;
}
HLAArrayDataElement::DataElementFactory*
HLAArrayDataElement::getDataElementFactory()
{
return _dataElementFactory.get();
}
HLADataElement*
HLAArrayDataElement::newElement(unsigned index)
{
if (!_dataElementFactory.valid())
return 0;
return _dataElementFactory->createElement(*this, index);
}
////////////////////////////////////////////////////////////////////////
HLAVariantArrayDataElement::HLAVariantArrayDataElement() :
HLAAbstractArrayDataElement(0)
{
}
HLAVariantArrayDataElement::~HLAVariantArrayDataElement()
{
}
bool
HLAVariantArrayDataElement::setDataType(const HLADataType* dataType)
{
const HLAArrayDataType* arrayDataType = dataType->toArrayDataType();
if (!arrayDataType) {
SG_LOG(SG_NETWORK, SG_WARN, "HLAVariantArrayDataType: unable to set data type, dataType is not an array data type!");
return false;
}
const HLAVariantDataType* variantDataType = arrayDataType->getElementDataType()->toVariantDataType();
if (!variantDataType) {
SG_LOG(SG_NETWORK, SG_WARN, "HLAVariantArrayDataType: unable to set data type: arrayDataTypes element data type is no a variant data type!");
return false;
}
_dataType = arrayDataType;
return true;
}
bool
HLAVariantArrayDataElement::setNumElements(unsigned size)
{
unsigned oldSize = _elementVector.size();
if (size == oldSize)
return true;
_elementVector.resize(size);
for (unsigned i = oldSize; i < size; ++i)
_elementVector[i] = newElement();
return true;
}
bool
HLAVariantArrayDataElement::decodeElement(HLADecodeStream& stream, unsigned i)
{
HLAVariantDataElement* dataElement = getElement(i);
if (!dataElement)
return false;
return dataElement->decode(stream);
}
unsigned
HLAVariantArrayDataElement::getNumElements() const
{
return _elementVector.size();
}
bool
HLAVariantArrayDataElement::encodeElement(HLAEncodeStream& stream, unsigned i) const
{
const HLADataElement* dataElement = getElement(i);
if (!dataElement)
return false;
return dataElement->encode(stream);
}
const HLAVariantDataElement*
HLAVariantArrayDataElement::getElement(unsigned index) const
{
if (_elementVector.size() <= index)
return 0;
return _elementVector[index].get();
}
HLAVariantDataElement*
HLAVariantArrayDataElement::getElement(unsigned index)
{
if (_elementVector.size() <= index)
return 0;
return _elementVector[index].get();
}
HLAVariantDataElement*
HLAVariantArrayDataElement::getOrCreateElement(unsigned index)
{
if (_elementVector.size() <= index)
if (!setNumElements(index + 1))
return 0;
return _elementVector[index].get();
}
void
HLAVariantArrayDataElement::setElement(unsigned index, HLAVariantDataElement* value)
{
unsigned oldSize = _elementVector.size();
if (oldSize <= index) {
_elementVector.resize(index + 1);
for (unsigned j = oldSize; j < index; ++j)
_elementVector[j] = newElement();
}
_elementVector[index] = value;
}
void
HLAVariantArrayDataElement::setAlternativeDataElementFactory(HLAVariantArrayDataElement::AlternativeDataElementFactory* alternativeDataElementFactory)
{
_alternativeDataElementFactory = alternativeDataElementFactory;
}
HLAVariantArrayDataElement::AlternativeDataElementFactory*
HLAVariantArrayDataElement::getAlternativeDataElementFactory()
{
return _alternativeDataElementFactory.get();
}
HLAVariantDataElement*
HLAVariantArrayDataElement::newElement()
{
const HLAArrayDataType* arrayDataType = getDataType();
if (!arrayDataType)
return 0;
const HLADataType* elementDataType = arrayDataType->getElementDataType();
if (!elementDataType)
return 0;
const HLAVariantDataType* variantDataType = elementDataType->toVariantDataType();
if (!variantDataType)
return 0;
HLAVariantDataElement* variantDataElement = new HLAVariantDataElement(variantDataType);
variantDataElement->setDataElementFactory(_alternativeDataElementFactory.get());
return variantDataElement;
}
}