graphicsapitest/graphicssvs/bitgdi/src/T_GraphicsBitgdiAPIServer.cpp
author Gareth Stockwell <gareth.stockwell@accenture.com>
Fri, 05 Nov 2010 17:31:20 +0000
branchbug235_bringup_0
changeset 215 097e92a68d68
parent 0 5d03bc08d59c
permissions -rw-r--r--
Added GLES 1.x spinning cube-rendering code to eglbringuptest The coordinate, color and index data are uploaded to server-side buffers by the CGLES1Cube::KhrSetup function. CGLES1Cube::KhrPaint just sets the view matrix and issues a draw command. Which demo to display can be selected by passing its name on the command line, e.g. eglbringuptest vgline eglbringuptest gles1cube If no name is provided, the application defaults to vgline.

/*
* 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:
*
*/

#include "T_GraphicsBitgdiAPIServer.h"
#include "T_DataBitmapUtil.h"
#include "T_DataFbsBitmap.h"
#include "T_DataWsBitmap.h"
#include "T_DataFbsBitmapDevice.h"
#include "T_DataFbsScreenDevice.h"
#include "T_DataAlgStyle.h"
#include "T_DataFbsBitGc.h"
#include "T_DataFbsSession.h"
#include "T_DataWsSession.h"
#include "T_DataPalette.h"
#include "T_DataPolygonFiller.h"
#include "T_DataFbsFont.h"
#include "T_DataFbsTypefaceStore.h"
#include "T_DataWsScreenDevice.h"
#include "T_DataFbsBitGcBitmap.h"
#include "T_DataFbsBitGcFont.h"
#include "T_DataLinkedTypefaceSpecification.h"

//	EPOC Includes
#include <rsshared.h>

/**
 * @enum Constant Literals used.
 */
/*@{*/
// Graphics BITGDI API
_LIT(KDataFbsBitGc,				"CFbsBitGc");
_LIT(KDataPolygonFiller,       	"CPolygonFiller");

//from T_FBServAPI
_LIT(KRFbsSessionData, 			"RFbsSession");
_LIT(KCFbsFontData, 			"CFbsFont");
_LIT(KCFbsBitmapData, 			"CFbsBitmap");
_LIT(KCWsBitmapData, 			"CWsBitmap");
_LIT(KTBitmapUtilData, 			"TBitmapUtil");
_LIT(KCFbsTypefaceStoreData,	"CFbsTypefaceStore");
_LIT(KCFbsColor256BitmapUtil,	"CFbsColor256BitmapUtil");
_LIT(KCPalette,					"CPalette");
_LIT(KCFbsBitmapDevice,			"CFbsBitmapDevice");
_LIT(KCFbsScreenDevice,			"CFbsScreenDevice");
_LIT(KTAlgStyle,				"TAlgStyle");
_LIT(KTMeasureTextInput,		"TMeasureTextInput");
_LIT(KTMeasureTextOutput,		"TMeasureTextOutput");
_LIT(KRWsSession,				"RWsSession");
_LIT(KCWsScreenDevice,			"CWsScreenDevice");
_LIT(KCFbsBitGcBitmap,			"CFbsBitGcBitmap");
_LIT(KCFbsBitGcFont,			"CFbsBitGcFont");

//from T_GraphicsFntstoreAPI
_LIT(KCLinkedTypefaceSpecification,	"CLinkedTypefaceSpecification");

/*@}*/


inline CDataWrapper* CT_GraphicsBitgdiAPIServer::CT_GraphicsBitgdiAPIBlock::CreateDataL( const TDesC& aData )
	{
	CDataWrapper*	wrapper = NULL;

	if ( aData==KRFbsSessionData )
		{
		wrapper=CT_DataFbsSession::NewL();
		}
	else if ( aData==KCFbsScreenDevice )
		{
		wrapper=CT_DataFbsScreenDevice::NewL();
		}
	else if ( aData==KDataFbsBitGc )
		{
		wrapper=CT_DataFbsBitGc::NewL();
		}
	else if ( aData==KCPalette )
		{
		wrapper=CT_DataPalette::NewL();
		}
	else if (aData==KDataPolygonFiller)
		{
		wrapper=CT_DataPolygonFiller::NewL();
		}
	else if (aData == KCFbsFontData)
        {
		wrapper=CT_DataFbsFont::NewL();
        }
	else if (aData==KCFbsBitmapData)
		{
		wrapper=CT_DataFbsBitmap::NewL();
		}
	else if (aData==KCWsBitmapData)
		{
		wrapper=CT_DataWsBitmap::NewL();
		}
	else if (aData==KRWsSession)
		{
		wrapper=CT_DataWsSession::NewL();
		}
	else if (aData==KCFbsTypefaceStoreData)
		{
		wrapper=CT_DataFbsTypefaceStore::NewL();
		}
	else if (aData==KCWsScreenDevice)
		{
		wrapper=CT_DataWsScreenDevice::NewL();
		}
	else if (aData==KCFbsBitmapDevice)
		{
		wrapper=CT_DataFbsBitmapDevice::NewL();
		}
	else if (aData==KCFbsBitGcBitmap)
		{
		wrapper=CT_DataFbsBitGcBitmap::NewL();
		}
	else if (aData==KCFbsBitGcFont)
		{
		wrapper=CT_DataFbsBitGcFont::NewL();
		}
	// from fontstore
	else if (aData==KTAlgStyle)
		{
		wrapper=CT_DataAlgStyle::NewL();
		}	
	else if (aData==KCLinkedTypefaceSpecification)
		{
		wrapper=CT_DataLinkedTypefaceSpecification::NewL();
		}
	return wrapper;
	}

CT_GraphicsBitgdiAPIServer* CT_GraphicsBitgdiAPIServer::NewL()
/**
 * @return - Instance of the test server
 * Same code for Secure and non-secure variants
 * Called inside the MainL() function to create and start the
 * CTestServer derived server.
 */
	{
	CT_GraphicsBitgdiAPIServer*	server = new (ELeave) CT_GraphicsBitgdiAPIServer();
	CleanupStack::PushL(server);
	// CServer base class call
	server->ConstructL();		/*Parsing the server name from the file name*/
	CleanupStack::Pop(server);
	return server;
	}


TInt LoadDrivers()
	{
#ifdef __WINS__
	#define KPDDName _L("ECDRV")
	#define KLDDName _L("ECOMM")
#else
	#define KPDDName _L("EUART1")
	#define KLDDName _L("ECOMM")
#endif
	TInt rerr = KErrNone;

	rerr = StartC32();
	if( rerr!=KErrNone && rerr!=KErrAlreadyExists )
		{
		return rerr;
		}

	rerr = User::LoadPhysicalDevice(KPDDName);
	if(rerr != KErrNone && rerr != KErrAlreadyExists)
		{
		return rerr;
		}
	rerr = User::LoadLogicalDevice(KLDDName);
	if(rerr != KErrNone && rerr != KErrAlreadyExists)
		{
		return rerr;
		}
	return KErrNone;
	}

LOCAL_C void MainL()
/**
 * Secure variant
 * Much simpler, uses the new Rendezvous() call to sync with the client
 */
	{
#if (defined __DATA_CAGING__)
	RProcess().DataCaging(RProcess::EDataCagingOn);
	RProcess().SecureApi(RProcess::ESecureApiOn);
#endif
	CActiveScheduler*	sched=NULL;
	sched=new(ELeave) CActiveScheduler;
	CActiveScheduler::Install(sched);
	CT_GraphicsBitgdiAPIServer*	server = NULL;
	// Create the CTestServer derived server
	TRAPD(err,server = CT_GraphicsBitgdiAPIServer::NewL());
	if(!err)
		{
		// Sync with the client and enter the active scheduler
		RProcess::Rendezvous(KErrNone);
		sched->Start();
		}
	delete server;
	delete sched;
	}

GLDEF_C TInt E32Main()
/**
 * @return - Standard Epoc error code on process exit
 * Secure variant only
 * Process entry point. Called by client using RProcess API
 */
	{
	TInt rerr = LoadDrivers();
	if( rerr != KErrNone )
		{
		return rerr;
		}

	__UHEAP_MARK;
	CTrapCleanup* cleanup = CTrapCleanup::New();
	if(cleanup == NULL)
		{
		return KErrNoMemory;
		}
#if (defined TRAP_IGNORE)
	TRAP_IGNORE(MainL());
#else
	TRAPD(err,MainL());
#endif
	delete cleanup;
	__UHEAP_MARKEND;
	return KErrNone;
	}