graphicscomposition/surfaceupdate/tsrc/tcompositionbackend.h
author Matt Plumtree <matt.plumtree@nokia.com>
Fri, 23 Apr 2010 17:57:02 +0100
branchNewGraphicsArchitecture
changeset 39 a4b63488e0b0
parent 0 5d03bc08d59c
permissions -rw-r--r--
Revise some of the compositor performance improvements to improve correctness. Implement pixel blending using a variation of Jim Blinn's no-division blending algorithm. Move transparency type simplification further up the composition code. Remove some unnecessary fields. Output to YUV implementation needs revision as it is actually converting from YUV (copy of source conversion code).

// Copyright (c) 2006-2009 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:
//

/**
 @file
 @test
 @internalComponent - Internal Symbian test code 
*/


#if !defined(__TCOMPOSITIONBACKEND_H__)
#define __TCOMPOSITIONBACKEND_H__

#include <e32base.h>
#include <graphics/surface.h>
#include <graphics/compositionsurfaceupdate.h>
#include <graphics/extensioncontainer.h>
#include "trequestorder.h"

/**
The following constants signify the delay in microseconds between two 
emulations of composition. During the emulation mock receiver will 
process a number of outstanding requests and issues the signal 
back to the SUS. Content update receiver with highest priority will process the 
requests at highest rate.
*/
const TInt KCompositionInterval = 1000000 / 20; // for composition threads with normal priority
const TInt KCompositionIntervalLong = KCompositionInterval * 2; // for composition threads with lower priority
const TInt KCompositionIntervalShort = KCompositionInterval / 2; // for composition threads with higher priority

enum RequestType
	{
	EReqEmpty = 0,
	EReqAvailable,
	EReqDisplayed,
	EReqDisplayedXTimes,	
	};
	
class RequestObject
	{
public:
	RequestType iType;
	TRequestStatus* iStatus;
	TUint32* iTimeStamp;
	TInt iDisplayedXTimes;
	};

NONSHARABLE_CLASS(CTContentUpdateReceiver) : 
public CExtensionContainer,
public MCompositionSurfaceUpdate
	{
public:
	static CTContentUpdateReceiver* NewL(TInt aScreen);
	~CTContentUpdateReceiver();
	static TInt ThreadFunction(TAny* aAny);
	TInt Screen() {return iScreen;}
	void Stop();
	void SetCompositionOrder(CRequestOrder* aOrder) { iCompositionOrder = aOrder;}
	IMPORT_C void SetVisible(TBool aVisible);
	IMPORT_C TInt SetInternalPriority(TThreadPriority aInternalPriority);
	inline TBool OutstandingRequest(); //returns ETrue if there are any oustanding requests need to be processed by the mock receiver

	/**	
	Mark the surface as dirty and request for composition.
	The function doesn't take onwership of aRegion
	*/	
	virtual void ContentUpdated(const TSurfaceId& 	aSurface, 
										TInt 			aBuffer, 
										const TRegion* 	aRegion, 
										TRequestStatus* aStatusAvailable, 
										TRequestStatus* aStatusDisplayed, 
										TUint32* 		aTimeStamp, 
										TRequestStatus* aStatusDispXTimes, 
										TInt* 			aDisplayedXTimes);

	virtual void	Delete(void){}
	virtual TInt ApiVersion(void) {return 0;}
	virtual TVersion InternalVersion(void){return TVersion();}
protected:  //From CBase
    virtual TInt Extension_(TUint aExtensionId, TAny*& a0, TAny* a1);
private:
	CTContentUpdateReceiver(TInt aScreen);
	void ConstructL();
	TInt CheckNewNotifications();
	void DoSetInternalPriorityL();
	static TInt CallBack(TAny *aAny);
    TInt Add(TRequestStatus *aStatus, RequestType aType, 
            TInt aDisplayedXTimes = 1, TUint32* aTimeStamp = NULL);
	void Remove(TInt aIndex);		
private:
	TThreadId iThreadId; //thread from which ContentUpdated is called
	TThreadId iReceiverThreadId; 
	TBool iStop;
	TInt iScreen;
	CPeriodic* iPeriodic;
	RequestObject iArray[1024]; //should be big enough
	TInt iNumberElements;
	TBool iVisible;
	TBool iSetInternalPriority;
	TThreadPriority iInternalPriority;
	CRequestOrder* iCompositionOrder;
	RFastLock iLock;
	RSemaphore iPriorityLock;
	};

IMPORT_C TInt StartTestUpdateReceiver(CTContentUpdateReceiver*& aReceiver, TInt aScreen);
IMPORT_C void CloseTestUpdateReceiver(CTContentUpdateReceiver* aReceiver);



inline TBool CTContentUpdateReceiver::OutstandingRequest()
	{ return iNumberElements > 0;}
	

#endif	// __TCOMPOSITIONBACKEND_H__