This commit pretty much reverts all the changes related on tile-ability of the fast gaussian blur. It's not tilable by definition and would almost always give you seams on the tile boundaries. Atmind already met the issue and tried to solve it by increasing some magic constant, which is pretty much likely simply made it so compositor switched to full-frame calculation in that particular .blend file. Fast gaussian is really not a production thing and need to be avoided. We're to improve speed of normal gaussian blur instead.
164 lines
5.6 KiB
C++
164 lines
5.6 KiB
C++
/*
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* Copyright 2011, Blender Foundation.
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*
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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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* Contributor:
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* Jeroen Bakker
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* Monique Dewanchand
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*/
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#include "COM_BlurNode.h"
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#include "DNA_node_types.h"
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#include "COM_GaussianXBlurOperation.h"
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#include "COM_GaussianYBlurOperation.h"
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#include "COM_GaussianAlphaXBlurOperation.h"
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#include "COM_GaussianAlphaYBlurOperation.h"
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#include "COM_ExecutionSystem.h"
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#include "COM_GaussianBokehBlurOperation.h"
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#include "COM_FastGaussianBlurOperation.h"
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#include "COM_MathBaseOperation.h"
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#include "COM_SetValueOperation.h"
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#include "COM_GammaCorrectOperation.h"
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BlurNode::BlurNode(bNode *editorNode) : Node(editorNode)
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{
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/* pass */
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}
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void BlurNode::convertToOperations(NodeConverter &converter, const CompositorContext &context) const
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{
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bNode *editorNode = this->getbNode();
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NodeBlurData *data = (NodeBlurData *)editorNode->storage;
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NodeInput *inputSizeSocket = this->getInputSocket(1);
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bool connectedSizeSocket = inputSizeSocket->isLinked();
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const float size = this->getInputSocket(1)->getEditorValueFloat();
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CompositorQuality quality = context.getQuality();
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NodeOperation *input_operation = NULL, *output_operation = NULL;
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if (data->filtertype == R_FILTER_FAST_GAUSS) {
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FastGaussianBlurOperation *operationfgb = new FastGaussianBlurOperation();
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operationfgb->setData(data);
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converter.addOperation(operationfgb);
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converter.mapInputSocket(getInputSocket(1), operationfgb->getInputSocket(1));
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input_operation = operationfgb;
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output_operation = operationfgb;
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}
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else if (editorNode->custom1 & CMP_NODEFLAG_BLUR_VARIABLE_SIZE) {
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MathAddOperation *clamp = new MathAddOperation();
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SetValueOperation *zero = new SetValueOperation();
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zero->setValue(0.0f);
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clamp->setUseClamp(true);
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converter.addOperation(clamp);
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converter.addOperation(zero);
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converter.mapInputSocket(getInputSocket(1), clamp->getInputSocket(0));
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converter.addLink(zero->getOutputSocket(), clamp->getInputSocket(1));
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GaussianAlphaXBlurOperation *operationx = new GaussianAlphaXBlurOperation();
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operationx->setData(data);
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operationx->setQuality(quality);
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operationx->setSize(1.0f);
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operationx->setFalloff(PROP_SMOOTH);
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operationx->setSubtract(false);
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converter.addOperation(operationx);
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converter.addLink(clamp->getOutputSocket(), operationx->getInputSocket(0));
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GaussianAlphaYBlurOperation *operationy = new GaussianAlphaYBlurOperation();
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operationy->setData(data);
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operationy->setQuality(quality);
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operationy->setSize(1.0f);
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operationy->setFalloff(PROP_SMOOTH);
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operationy->setSubtract(false);
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converter.addOperation(operationy);
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converter.addLink(operationx->getOutputSocket(), operationy->getInputSocket(0));
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GaussianBlurReferenceOperation *operation = new GaussianBlurReferenceOperation();
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operation->setData(data);
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operation->setQuality(quality);
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converter.addOperation(operation);
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converter.addLink(operationy->getOutputSocket(), operation->getInputSocket(1));
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output_operation = operation;
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input_operation = operation;
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}
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else if (!data->bokeh) {
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GaussianXBlurOperation *operationx = new GaussianXBlurOperation();
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operationx->setData(data);
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operationx->setQuality(quality);
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converter.addOperation(operationx);
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converter.mapInputSocket(getInputSocket(1), operationx->getInputSocket(1));
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GaussianYBlurOperation *operationy = new GaussianYBlurOperation();
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operationy->setData(data);
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operationy->setQuality(quality);
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converter.addOperation(operationy);
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converter.mapInputSocket(getInputSocket(1), operationy->getInputSocket(1));
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converter.addLink(operationx->getOutputSocket(), operationy->getInputSocket(0));
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if (!connectedSizeSocket) {
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operationx->setSize(size);
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operationy->setSize(size);
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}
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input_operation = operationx;
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output_operation = operationy;
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}
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else {
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GaussianBokehBlurOperation *operation = new GaussianBokehBlurOperation();
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operation->setData(data);
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operation->setQuality(quality);
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converter.addOperation(operation);
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converter.mapInputSocket(getInputSocket(1), operation->getInputSocket(1));
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if (!connectedSizeSocket) {
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operation->setSize(size);
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}
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input_operation = operation;
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output_operation = operation;
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}
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if (data->gamma) {
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GammaCorrectOperation *correct = new GammaCorrectOperation();
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GammaUncorrectOperation *inverse = new GammaUncorrectOperation();
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converter.addOperation(correct);
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converter.addOperation(inverse);
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converter.mapInputSocket(getInputSocket(0), correct->getInputSocket(0));
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converter.addLink(correct->getOutputSocket(), input_operation->getInputSocket(0));
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converter.addLink(output_operation->getOutputSocket(), inverse->getInputSocket(0));
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converter.mapOutputSocket(getOutputSocket(), inverse->getOutputSocket());
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converter.addPreview(inverse->getOutputSocket());
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}
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else {
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converter.mapInputSocket(getInputSocket(0), input_operation->getInputSocket(0));
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converter.mapOutputSocket(getOutputSocket(), output_operation->getOutputSocket());
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converter.addPreview(output_operation->getOutputSocket());
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}
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}
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