/*
*
*
* INTEL CONFIDENTIAL
* Copyright © 2011 Intel
* Corporation All Rights Reserved.
*
* The source code contained or described herein and all documents related to
* the source code ("Material") are owned by Intel Corporation or its suppliers
* or licensors. Title to the Material remains with Intel Corporation or its
* suppliers and licensors. The Material contains trade secrets and proprietary
* and confidential information of Intel or its suppliers and licensors. The
* Material is protected by worldwide copyright and trade secret laws and
* treaty provisions. No part of the Material may be used, copied, reproduced,
* modified, published, uploaded, posted, transmitted, distributed, or
* disclosed in any way without Intel’s prior express written permission.
*
* No license under any patent, copyright, trade secret or other intellectual
* property right is granted to or conferred upon you by disclosure or delivery
* of the Materials, either expressly, by implication, inducement, estoppel or
* otherwise. Any license under such intellectual property rights must be
* express and approved by Intel in writing.
*
* AUTHOR: Patrick Benavoli (patrickx.benavoli@intel.com)
* CREATED: 2011-06-01
* UPDATED: 2011-07-27
*
*
*
*/
#include "InstanceConfigurableElement.h"
#include "Mapper.h"
#include "SyncerSet.h"
#include "Syncer.h"
#include "TypeElement.h"
#include "ParameterAccessContext.h"
#include
#define base CConfigurableElement
CInstanceConfigurableElement::CInstanceConfigurableElement(const string& strName, const CTypeElement* pTypeElement) : base(strName), _pTypeElement(pTypeElement), _pSyncer(NULL)
{
}
string CInstanceConfigurableElement::getKind() const
{
// Delegate
return _pTypeElement->getKind();
}
// Type element
const CTypeElement* CInstanceConfigurableElement::getTypeElement() const
{
return _pTypeElement;
}
// Mapping
bool CInstanceConfigurableElement::getMappingData(const string& strKey, const string*& pStrValue) const
{
// Delegate
return getTypeElement()->getMappingData(strKey, pStrValue);
}
bool CInstanceConfigurableElement::map(IMapper& mapper, string& strError)
{
bool bHasMappingData = getTypeElement()->hasMappingData();
// Begin
if (bHasMappingData) {
if (!mapper.mapBegin(this, strError)) {
return false;
}
}
// Map children
uint32_t uiNbChildren = getNbChildren();
uint32_t uiChild;
for (uiChild = 0; uiChild < uiNbChildren; uiChild++) {
CInstanceConfigurableElement* pInstanceConfigurableChildElement = static_cast(getChild(uiChild));
if (!pInstanceConfigurableChildElement->map(mapper, strError)) {
return false;
}
}
// End
if (bHasMappingData) {
mapper.mapEnd();
}
return true;
}
// Element properties
void CInstanceConfigurableElement::showProperties(string& strResult) const
{
base::showProperties(strResult);
// Delegate to type element
_pTypeElement->showProperties(strResult);
}
// Sync to HW
void CInstanceConfigurableElement::setSyncer(ISyncer* pSyncer)
{
assert(!_pSyncer);
_pSyncer = pSyncer;
}
void CInstanceConfigurableElement::unsetSyncer()
{
_pSyncer = NULL;
}
// Syncer
ISyncer* CInstanceConfigurableElement::getSyncer() const
{
if (_pSyncer) {
return _pSyncer;
}
// Check parent
return base::getSyncer();
}
// Syncer set (descendant)
void CInstanceConfigurableElement::fillSyncerSetFromDescendant(CSyncerSet& syncerSet) const
{
if (_pSyncer) {
syncerSet += _pSyncer;
} else {
// Continue digging
base::fillSyncerSetFromDescendant(syncerSet);
}
}
// Sync
bool CInstanceConfigurableElement::sync(CParameterAccessContext& parameterAccessContext) const
{
ISyncer* pSyncer = getSyncer();
if (!pSyncer) {
parameterAccessContext.setError("Unable to synchronize modification. No Syncer object associated to configurable element:");
return false;
}
string strError;
if (!pSyncer->sync(*parameterAccessContext.getParameterBlackboard(), false, strError)) {
parameterAccessContext.setError(strError);
return false;
}
return true;
}
// Check parameter access path well formed for leaf elements
bool CInstanceConfigurableElement::checkPathExhausted(CPathNavigator& pathNavigator, CErrorContext& errorContext)
{
string* pStrChildName = pathNavigator.next();
if (pStrChildName) {
// Should be leaf element
errorContext.setError("Path not found: " + pathNavigator.getCurrentPath());
return false;
}
return true;
}