Recently the CPP colors module landed in master. This patch will use the new module in the convert alpha node.
470 lines
15 KiB
C++
470 lines
15 KiB
C++
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* Copyright 2011, Blender Foundation.
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*/
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#include "COM_ConvertOperation.h"
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#include "BLI_color.hh"
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#include "IMB_colormanagement.h"
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namespace blender::compositor {
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ConvertBaseOperation::ConvertBaseOperation()
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{
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this->m_inputOperation = nullptr;
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}
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void ConvertBaseOperation::initExecution()
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{
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this->m_inputOperation = this->getInputSocketReader(0);
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}
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void ConvertBaseOperation::deinitExecution()
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{
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this->m_inputOperation = nullptr;
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}
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/* ******** Value to Color ******** */
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ConvertValueToColorOperation::ConvertValueToColorOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Value);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertValueToColorOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float value;
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this->m_inputOperation->readSampled(&value, x, y, sampler);
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output[0] = output[1] = output[2] = value;
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output[3] = 1.0f;
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}
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/* ******** Color to Value ******** */
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ConvertColorToValueOperation::ConvertColorToValueOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Value);
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}
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void ConvertColorToValueOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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output[0] = (inputColor[0] + inputColor[1] + inputColor[2]) / 3.0f;
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}
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/* ******** Color to BW ******** */
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ConvertColorToBWOperation::ConvertColorToBWOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Value);
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}
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void ConvertColorToBWOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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output[0] = IMB_colormanagement_get_luminance(inputColor);
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}
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/* ******** Color to Vector ******** */
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ConvertColorToVectorOperation::ConvertColorToVectorOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Vector);
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}
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void ConvertColorToVectorOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float color[4];
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this->m_inputOperation->readSampled(color, x, y, sampler);
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copy_v3_v3(output, color);
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}
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/* ******** Value to Vector ******** */
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ConvertValueToVectorOperation::ConvertValueToVectorOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Value);
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this->addOutputSocket(DataType::Vector);
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}
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void ConvertValueToVectorOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float value;
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this->m_inputOperation->readSampled(&value, x, y, sampler);
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output[0] = output[1] = output[2] = value;
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}
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/* ******** Vector to Color ******** */
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ConvertVectorToColorOperation::ConvertVectorToColorOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Vector);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertVectorToColorOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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this->m_inputOperation->readSampled(output, x, y, sampler);
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output[3] = 1.0f;
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}
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/* ******** Vector to Value ******** */
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ConvertVectorToValueOperation::ConvertVectorToValueOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Vector);
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this->addOutputSocket(DataType::Value);
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}
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void ConvertVectorToValueOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float input[4];
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this->m_inputOperation->readSampled(input, x, y, sampler);
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output[0] = (input[0] + input[1] + input[2]) / 3.0f;
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}
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/* ******** RGB to YCC ******** */
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ConvertRGBToYCCOperation::ConvertRGBToYCCOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertRGBToYCCOperation::setMode(int mode)
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{
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switch (mode) {
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case 0:
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this->m_mode = BLI_YCC_ITU_BT601;
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break;
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case 2:
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this->m_mode = BLI_YCC_JFIF_0_255;
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break;
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case 1:
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default:
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this->m_mode = BLI_YCC_ITU_BT709;
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break;
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}
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}
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void ConvertRGBToYCCOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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float color[3];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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rgb_to_ycc(
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inputColor[0], inputColor[1], inputColor[2], &color[0], &color[1], &color[2], this->m_mode);
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/* divided by 255 to normalize for viewing in */
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/* R,G,B --> Y,Cb,Cr */
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mul_v3_v3fl(output, color, 1.0f / 255.0f);
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output[3] = inputColor[3];
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}
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/* ******** YCC to RGB ******** */
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ConvertYCCToRGBOperation::ConvertYCCToRGBOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertYCCToRGBOperation::setMode(int mode)
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{
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switch (mode) {
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case 0:
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this->m_mode = BLI_YCC_ITU_BT601;
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break;
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case 2:
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this->m_mode = BLI_YCC_JFIF_0_255;
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break;
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case 1:
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default:
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this->m_mode = BLI_YCC_ITU_BT709;
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break;
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}
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}
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void ConvertYCCToRGBOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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/* need to un-normalize the data */
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/* R,G,B --> Y,Cb,Cr */
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mul_v3_fl(inputColor, 255.0f);
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ycc_to_rgb(inputColor[0],
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inputColor[1],
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inputColor[2],
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&output[0],
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&output[1],
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&output[2],
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this->m_mode);
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output[3] = inputColor[3];
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}
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/* ******** RGB to YUV ******** */
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ConvertRGBToYUVOperation::ConvertRGBToYUVOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertRGBToYUVOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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rgb_to_yuv(inputColor[0],
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inputColor[1],
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inputColor[2],
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&output[0],
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&output[1],
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&output[2],
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BLI_YUV_ITU_BT709);
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output[3] = inputColor[3];
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}
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/* ******** YUV to RGB ******** */
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ConvertYUVToRGBOperation::ConvertYUVToRGBOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertYUVToRGBOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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yuv_to_rgb(inputColor[0],
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inputColor[1],
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inputColor[2],
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&output[0],
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&output[1],
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&output[2],
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BLI_YUV_ITU_BT709);
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output[3] = inputColor[3];
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}
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/* ******** RGB to HSV ******** */
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ConvertRGBToHSVOperation::ConvertRGBToHSVOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertRGBToHSVOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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rgb_to_hsv_v(inputColor, output);
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output[3] = inputColor[3];
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}
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/* ******** HSV to RGB ******** */
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ConvertHSVToRGBOperation::ConvertHSVToRGBOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertHSVToRGBOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float inputColor[4];
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this->m_inputOperation->readSampled(inputColor, x, y, sampler);
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hsv_to_rgb_v(inputColor, output);
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output[0] = max_ff(output[0], 0.0f);
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output[1] = max_ff(output[1], 0.0f);
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output[2] = max_ff(output[2], 0.0f);
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output[3] = inputColor[3];
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}
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/* ******** Premul to Straight ******** */
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ConvertPremulToStraightOperation::ConvertPremulToStraightOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertPremulToStraightOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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ColorSceneLinear4f<eAlpha::Premultiplied> input;
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this->m_inputOperation->readSampled(input, x, y, sampler);
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ColorSceneLinear4f<eAlpha::Straight> converted = input.unpremultiply_alpha();
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copy_v4_v4(output, converted);
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}
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/* ******** Straight to Premul ******** */
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ConvertStraightToPremulOperation::ConvertStraightToPremulOperation() : ConvertBaseOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Color);
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}
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void ConvertStraightToPremulOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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ColorSceneLinear4f<eAlpha::Straight> input;
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this->m_inputOperation->readSampled(input, x, y, sampler);
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ColorSceneLinear4f<eAlpha::Premultiplied> converted = input.premultiply_alpha();
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copy_v4_v4(output, converted);
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}
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/* ******** Separate Channels ******** */
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SeparateChannelOperation::SeparateChannelOperation()
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{
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this->addInputSocket(DataType::Color);
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this->addOutputSocket(DataType::Value);
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this->m_inputOperation = nullptr;
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}
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void SeparateChannelOperation::initExecution()
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{
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this->m_inputOperation = this->getInputSocketReader(0);
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}
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void SeparateChannelOperation::deinitExecution()
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{
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this->m_inputOperation = nullptr;
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}
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void SeparateChannelOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float input[4];
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this->m_inputOperation->readSampled(input, x, y, sampler);
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output[0] = input[this->m_channel];
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}
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/* ******** Combine Channels ******** */
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CombineChannelsOperation::CombineChannelsOperation()
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{
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this->addInputSocket(DataType::Value);
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this->addInputSocket(DataType::Value);
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this->addInputSocket(DataType::Value);
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this->addInputSocket(DataType::Value);
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this->addOutputSocket(DataType::Color);
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this->setResolutionInputSocketIndex(0);
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this->m_inputChannel1Operation = nullptr;
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this->m_inputChannel2Operation = nullptr;
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this->m_inputChannel3Operation = nullptr;
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this->m_inputChannel4Operation = nullptr;
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}
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void CombineChannelsOperation::initExecution()
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{
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this->m_inputChannel1Operation = this->getInputSocketReader(0);
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this->m_inputChannel2Operation = this->getInputSocketReader(1);
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this->m_inputChannel3Operation = this->getInputSocketReader(2);
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this->m_inputChannel4Operation = this->getInputSocketReader(3);
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}
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void CombineChannelsOperation::deinitExecution()
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{
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this->m_inputChannel1Operation = nullptr;
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this->m_inputChannel2Operation = nullptr;
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this->m_inputChannel3Operation = nullptr;
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this->m_inputChannel4Operation = nullptr;
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}
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void CombineChannelsOperation::executePixelSampled(float output[4],
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float x,
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float y,
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PixelSampler sampler)
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{
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float input[4];
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if (this->m_inputChannel1Operation) {
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this->m_inputChannel1Operation->readSampled(input, x, y, sampler);
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output[0] = input[0];
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}
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if (this->m_inputChannel2Operation) {
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this->m_inputChannel2Operation->readSampled(input, x, y, sampler);
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output[1] = input[0];
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}
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if (this->m_inputChannel3Operation) {
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this->m_inputChannel3Operation->readSampled(input, x, y, sampler);
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output[2] = input[0];
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}
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if (this->m_inputChannel4Operation) {
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this->m_inputChannel4Operation->readSampled(input, x, y, sampler);
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output[3] = input[0];
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}
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}
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} // namespace blender::compositor
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