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blender-archive/source/blender/compositor/operations/COM_MixOperation.h
Lukas Tönne c566e408e4 Cleanup: Renamed compositor executePixel functions and their 'read' wrappers in SocketReader.
Distinguish the 3 different methods for acquiring pixel color values (executePixel, executePixelSampled, executePixelFiltered).
This makes it easier to keep track of the different sampling methods (and works nicer with IDEs that do code parsing).

Differential Revision: http://developer.blender.org/D7
2013-11-19 11:06:16 +01:00

198 lines
5.3 KiB
C++

/*
* Copyright 2011, Blender Foundation.
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program 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 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.
*
* Contributor:
* Jeroen Bakker
* Monique Dewanchand
*/
#ifndef _COM_MixBaseOperation_h
#define _COM_MixBaseOperation_h
#include "COM_NodeOperation.h"
/**
* All this programs converts an input color to an output value.
* it assumes we are in sRGB color space.
*/
class MixBaseOperation : public NodeOperation {
protected:
/**
* Prefetched reference to the inputProgram
*/
SocketReader *m_inputValueOperation;
SocketReader *m_inputColor1Operation;
SocketReader *m_inputColor2Operation;
bool m_valueAlphaMultiply;
bool m_useClamp;
inline void clampIfNeeded(float color[4])
{
if (m_useClamp) {
CLAMP(color[0], 0.0f, 1.0f);
CLAMP(color[1], 0.0f, 1.0f);
CLAMP(color[2], 0.0f, 1.0f);
CLAMP(color[3], 0.0f, 1.0f);
}
}
public:
/**
* Default constructor
*/
MixBaseOperation();
/**
* the inner loop of this program
*/
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
/**
* Initialize the execution
*/
void initExecution();
/**
* Deinitialize the execution
*/
void deinitExecution();
void determineResolution(unsigned int resolution[2], unsigned int preferredResolution[2]);
void setUseValueAlphaMultiply(const bool value) { this->m_valueAlphaMultiply = value; }
bool useValueAlphaMultiply() { return this->m_valueAlphaMultiply; }
void setUseClamp(bool value) { this->m_useClamp = value; }
};
class MixAddOperation : public MixBaseOperation {
public:
MixAddOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixBlendOperation : public MixBaseOperation {
public:
MixBlendOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixBurnOperation : public MixBaseOperation {
public:
MixBurnOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixColorOperation : public MixBaseOperation {
public:
MixColorOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixDarkenOperation : public MixBaseOperation {
public:
MixDarkenOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixDifferenceOperation : public MixBaseOperation {
public:
MixDifferenceOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixDivideOperation : public MixBaseOperation {
public:
MixDivideOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixDodgeOperation : public MixBaseOperation {
public:
MixDodgeOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixGlareOperation : public MixBaseOperation {
public:
MixGlareOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixHueOperation : public MixBaseOperation {
public:
MixHueOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixLightenOperation : public MixBaseOperation {
public:
MixLightenOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixLinearLightOperation : public MixBaseOperation {
public:
MixLinearLightOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixMultiplyOperation : public MixBaseOperation {
public:
MixMultiplyOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixOverlayOperation : public MixBaseOperation {
public:
MixOverlayOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixSaturationOperation : public MixBaseOperation {
public:
MixSaturationOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixScreenOperation : public MixBaseOperation {
public:
MixScreenOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixSoftLightOperation : public MixBaseOperation {
public:
MixSoftLightOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixSubtractOperation : public MixBaseOperation {
public:
MixSubtractOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
class MixValueOperation : public MixBaseOperation {
public:
MixValueOperation();
void executePixelSampled(float output[4], float x, float y, PixelSampler sampler);
};
#endif