Fix def files so that the implementation agnostic interface definition has no non-standards defined entry points, and change the eglrefimpl specific implementation to place its private entry points high up in the ordinal order space in the implementation region, not the standards based entrypoints region.
/*
* Copyright (c) 2005-2009 Nokia Corporation and/or its subsidiary(-ies).
* All rights reserved.
* This component and the accompanying materials are made available
* under the terms of "Eclipse Public License v1.0"
* which accompanies this distribution, and is available
* at the URL "http://www.eclipse.org/legal/epl-v10.html".
*
* Initial Contributors:
* Nokia Corporation - initial contribution.
*
* Contributors:
*
* Description:
*
*/
/**
@test
@internalComponent
This contains CT_DataFbsBitmapDevice
*/
// User includes
#include "T_DataFbsBitmapDevice.h"
#include "T_GraphicsUtil.h"
/*@{*/
/// Commands
_LIT(KCmdNewL, "NewL");
_LIT(KCmdDestructor, "~");
_LIT(KCmdDrawingBegin, "DrawingBegin");
_LIT(KCmdDrawingEnd, "DrawingEnd");
_LIT(KCmdResize, "Resize");
_LIT(KCmdSwapWidthAndHeight, "SwapWidthAndHeight");
/// Parameters
_LIT(KFldBitmap, "bitmap");
_LIT(KFldLibName, "libname");
_LIT(KFldSize, "size");
_LIT(KFldResize, "resize");
_LIT(KFldAlways, "Always");
// Logs
_LIT(KLogMissingParameter, "Missing parameter '%S'");
_LIT(KLogErrNum, "Execute failed with error = %d!");
/*@}*/
/**
* Two phase constructor
*/
CT_DataFbsBitmapDevice* CT_DataFbsBitmapDevice::NewL()
{
CT_DataFbsBitmapDevice* ret = new (ELeave) CT_DataFbsBitmapDevice();
CleanupStack::PushL(ret);
ret->ConstructL();
CleanupStack::Pop(ret);
return ret;
}
/**
* Protected constructor. First phase construction
*/
CT_DataFbsBitmapDevice::CT_DataFbsBitmapDevice()
: CT_DataFbsDevice()
, iFbsBitmapDevice(NULL)
{
}
/**
* Protected second phase construction
*/
void CT_DataFbsBitmapDevice::ConstructL()
{
}
/**
* Destructor.
*/
CT_DataFbsBitmapDevice::~CT_DataFbsBitmapDevice()
{
DestroyData();
}
void CT_DataFbsBitmapDevice::DestroyData()
{
delete iFbsBitmapDevice;
iFbsBitmapDevice=NULL;
}
MGraphicsDeviceMap* CT_DataFbsBitmapDevice::GetGraphicsDeviceMap() const
{
return iFbsBitmapDevice;
}
CGraphicsDevice* CT_DataFbsBitmapDevice::GetGraphicsDevice() const
{
return iFbsBitmapDevice;
}
CBitmapDevice* CT_DataFbsBitmapDevice::GetBitmapDevice() const
{
return iFbsBitmapDevice;
}
CFbsDevice* CT_DataFbsBitmapDevice::GetFbsDevice() const
{
return iFbsBitmapDevice;
}
/**
* Return a pointer to the object that the data wraps
*
* @return pointer to the object that the data wraps
*/
TAny* CT_DataFbsBitmapDevice::GetObject()
{
return iFbsBitmapDevice;
}
void CT_DataFbsBitmapDevice::SetObjectL(TAny* aObject)
{
DestroyData();
iFbsBitmapDevice = static_cast<CFbsBitmapDevice*> (aObject);
}
void CT_DataFbsBitmapDevice::DisownObjectL()
{
iFbsBitmapDevice = NULL;
}
/**
* Process a command read from the ini file
*
* @param aDataWrapper test step requiring command to be processed
* @param aCommand the command to process
* @param aSection the entry in the ini file requiring the command to be processed
*
* @return ETrue if the command is processed
*/
TBool CT_DataFbsBitmapDevice::DoCommandL(const TTEFFunction& aCommand, const TTEFSectionName& aSection, const TInt aAsyncErrorIndex)
{
/* Another work package will complete the implement of this */
TBool retVal = ETrue;
if ( aCommand == KCmdNewL )
{
DoCmdNewL(aSection);
}
else if (aCommand == KCmdDestructor)
{
DoCmdDestructor();
}
else if (aCommand == KCmdDrawingBegin)
{
DoCmdDrawingBegin(aSection);
}
else if (aCommand == KCmdDrawingEnd)
{
DoCmdDrawingEnd(aSection);
}
else if (aCommand == KCmdResize)
{
DoCmdResize(aSection);
}
else if (aCommand == KCmdSwapWidthAndHeight)
{
DoCmdSwapWidthAndHeight();
}
else
{
retVal=CT_DataFbsDevice::DoCommandL(aCommand, aSection, aAsyncErrorIndex);
}
return retVal;
}
void CT_DataFbsBitmapDevice::DoCmdNewL(const TDesC& aSection)
{
DestroyData();
CFbsBitmap* bitmap = NULL;
if (!CT_GraphicsUtil::GetFbsBitmapL(*this, aSection, KFldBitmap, bitmap))
{
ERR_PRINTF2(KLogMissingParameter, &KFldBitmap);
SetBlockResult(EFail);
return;
}
TInt err = KErrNone;
TPtrC libName;
if ( GetStringFromConfig(aSection, KFldLibName(), libName) )
{
INFO_PRINTF1(_L("execute NewL(CFbsBitmap*, const TDesC&)."));
TRAP(err, iFbsBitmapDevice=CFbsBitmapDevice::NewL(bitmap, libName));
}
else
{
INFO_PRINTF1(_L("execute NewL(CFbsBitmap*)."));
TRAP(err, iFbsBitmapDevice=CFbsBitmapDevice::NewL(bitmap));
}
if ( err != KErrNone )
{
ERR_PRINTF2(KLogErrNum, err);
SetError(err);
}
}
void CT_DataFbsBitmapDevice::DoCmdDestructor()
{
DestroyData();
}
void CT_DataFbsBitmapDevice::DoCmdDrawingBegin(const TDesC& aSection)
{
TBool Always = EFalse;
GetBoolFromConfig(aSection, KFldAlways, Always);
INFO_PRINTF2(_L("execute DrawingBegin function with the Always parameter=%d."), Always);
iFbsBitmapDevice->DrawingBegin(Always);
}
void CT_DataFbsBitmapDevice::DoCmdDrawingEnd(const TDesC& aSection)
{
TBool Always = EFalse;
GetBoolFromConfig(aSection, KFldAlways, Always);
INFO_PRINTF2(_L("execute DrawingEnd function with the Always parameter=%d."), Always);
iFbsBitmapDevice->DrawingEnd(Always);
}
void CT_DataFbsBitmapDevice::DoCmdResize(const TDesC& aSection)
{
TSize datSize;
TInt err = KErrNone;
INFO_PRINTF1(_L("execute Resize(const TSize&)"));
if (!GetSizeFromConfig(aSection, KFldResize, datSize))
{
ERR_PRINTF2(KLogMissingParameter, &KFldResize);
SetBlockResult(EFail);
}
else
{
err = iFbsBitmapDevice->Resize(datSize);
if (KErrNone != err)
{
ERR_PRINTF2(KLogErrNum, err);
SetError(err);
}
}
}
void CT_DataFbsBitmapDevice::DoCmdSwapWidthAndHeight()
{
INFO_PRINTF1(_L("execute SwapWidthAndHeight()"));
TInt err = iFbsBitmapDevice->SwapWidthAndHeight();
if (KErrNone != err)
{
ERR_PRINTF2(KLogErrNum, err);
SetError(err);
}
}