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										 |  |  | /*
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							|  |  |  |  * 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 | 
					
						
							|  |  |  |  *		Campbell Barton | 
					
						
							|  |  |  |  */ | 
					
						
							|  |  |  | 
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							|  |  |  | #include "COM_GaussianAlphaYBlurOperation.h"
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							|  |  |  | #include "BLI_math.h"
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							|  |  |  | extern "C" { | 
					
						
							|  |  |  | 	#include "RE_pipeline.h"
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							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | GaussianAlphaYBlurOperation::GaussianAlphaYBlurOperation() : BlurBaseOperation(COM_DT_VALUE) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	this->gausstab = NULL; | 
					
						
							|  |  |  | 	this->rad = 0; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | void *GaussianAlphaYBlurOperation::initializeTileData(rcti *rect, MemoryBuffer **memoryBuffers) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	if (!this->sizeavailable) { | 
					
						
							|  |  |  | 		updateGauss(memoryBuffers); | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | 	void *buffer = getInputOperation(0)->initializeTileData(NULL, memoryBuffers); | 
					
						
							|  |  |  | 	return buffer; | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | void GaussianAlphaYBlurOperation::initExecution() | 
					
						
							|  |  |  | { | 
					
						
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										 |  |  | 	/* BlurBaseOperation::initExecution(); */ /* until we suppoer size input - comment this */ | 
					
						
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										 |  |  | 	if (this->sizeavailable) { | 
					
						
							|  |  |  | 		float rad = size * this->data->sizey; | 
					
						
							|  |  |  | 		if (rad < 1) | 
					
						
							|  |  |  | 			rad = 1; | 
					
						
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							|  |  |  | 		this->rad = rad; | 
					
						
							|  |  |  | 		this->gausstab = BlurBaseOperation::make_gausstab(rad); | 
					
						
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										 |  |  | 		this->distbuf_inv = BlurBaseOperation::make_dist_fac_inverse(rad, this->falloff); | 
					
						
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										 |  |  | 	} | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | void GaussianAlphaYBlurOperation::updateGauss(MemoryBuffer **memoryBuffers) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	if (this->gausstab == NULL) { | 
					
						
							|  |  |  | 		updateSize(memoryBuffers); | 
					
						
							|  |  |  | 		float rad = size * this->data->sizey; | 
					
						
							|  |  |  | 		if (rad < 1) | 
					
						
							|  |  |  | 			rad = 1; | 
					
						
							|  |  |  | 		 | 
					
						
							|  |  |  | 		this->rad = rad; | 
					
						
							|  |  |  | 		this->gausstab = BlurBaseOperation::make_gausstab(rad); | 
					
						
							|  |  |  | 	} | 
					
						
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							|  |  |  | 	if (this->distbuf_inv == NULL) { | 
					
						
							|  |  |  | 		updateSize(memoryBuffers); | 
					
						
							|  |  |  | 		float rad = size * this->data->sizex; | 
					
						
							|  |  |  | 		if (rad < 1) | 
					
						
							|  |  |  | 			rad = 1; | 
					
						
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							|  |  |  | 		this->rad = rad; | 
					
						
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										 |  |  | 		this->distbuf_inv = BlurBaseOperation::make_dist_fac_inverse(rad, this->falloff); | 
					
						
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										 |  |  | 	} | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | BLI_INLINE float finv_test(const float f, const bool test) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	return (LIKELY(test == false)) ? f : 1.0f - f; | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | void GaussianAlphaYBlurOperation::executePixel(float *color, int x, int y, MemoryBuffer *inputBuffers[], void *data) | 
					
						
							|  |  |  | { | 
					
						
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										 |  |  | 	const bool do_invert = this->do_subtract; | 
					
						
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										 |  |  | 	MemoryBuffer *inputBuffer = (MemoryBuffer *)data; | 
					
						
							|  |  |  | 	float *buffer = inputBuffer->getBuffer(); | 
					
						
							|  |  |  | 	int bufferwidth = inputBuffer->getWidth(); | 
					
						
							|  |  |  | 	int bufferstartx = inputBuffer->getRect()->xmin; | 
					
						
							|  |  |  | 	int bufferstarty = inputBuffer->getRect()->ymin; | 
					
						
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							|  |  |  | 	int miny = y - this->rad; | 
					
						
							|  |  |  | 	int maxy = y + this->rad; | 
					
						
							|  |  |  | 	int minx = x; | 
					
						
							|  |  |  | 	int maxx = x; | 
					
						
							|  |  |  | 	miny = max(miny, inputBuffer->getRect()->ymin); | 
					
						
							|  |  |  | 	minx = max(minx, inputBuffer->getRect()->xmin); | 
					
						
							|  |  |  | 	maxy = min(maxy, inputBuffer->getRect()->ymax); | 
					
						
							|  |  |  | 	maxx = min(maxx, inputBuffer->getRect()->xmax); | 
					
						
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							|  |  |  | 	/* *** this is the main part which is different to 'GaussianYBlurOperation'  *** */ | 
					
						
							|  |  |  | 	int step = getStep(); | 
					
						
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							|  |  |  | 	/* gauss */ | 
					
						
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										 |  |  | 	float alpha_accum = 0.0f; | 
					
						
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										 |  |  | 	float multiplier_accum = 0.0f; | 
					
						
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							|  |  |  | 	/* dilate */ | 
					
						
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										 |  |  | 	float value_max = finv_test(buffer[(x * 4) + (y * 4 * bufferwidth)], do_invert); /* init with the current color to avoid unneeded lookups */ | 
					
						
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										 |  |  | 	float distfacinv_max = 1.0f; /* 0 to 1 */ | 
					
						
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							|  |  |  | 	for (int ny = miny; ny < maxy; ny += step) { | 
					
						
							|  |  |  | 		int bufferindex = ((minx - bufferstartx) * 4) + ((ny - bufferstarty) * 4 * bufferwidth); | 
					
						
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							|  |  |  | 		const int index = (ny - y) + this->rad; | 
					
						
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										 |  |  | 		float value = finv_test(buffer[bufferindex], do_invert); | 
					
						
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										 |  |  | 		float multiplier; | 
					
						
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							|  |  |  | 		/* gauss */ | 
					
						
							|  |  |  | 		{ | 
					
						
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										 |  |  | 			multiplier = gausstab[index]; | 
					
						
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										 |  |  | 			alpha_accum += value * multiplier; | 
					
						
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										 |  |  | 			multiplier_accum += multiplier; | 
					
						
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										 |  |  | 		} | 
					
						
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							|  |  |  | 		/* dilate - find most extreme color */ | 
					
						
							|  |  |  | 		if (value > value_max) { | 
					
						
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										 |  |  | 			multiplier = distbuf_inv[index]; | 
					
						
							|  |  |  | 			value *= multiplier; | 
					
						
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										 |  |  | 			if (value > value_max) { | 
					
						
							|  |  |  | 				value_max = value; | 
					
						
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										 |  |  | 				distfacinv_max = multiplier; | 
					
						
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										 |  |  | 			} | 
					
						
							|  |  |  | 		} | 
					
						
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							|  |  |  | 	} | 
					
						
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							|  |  |  | 	/* blend between the max value and gauss blue - gives nice feather */ | 
					
						
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										 |  |  | 	const float value_blur  = alpha_accum / multiplier_accum; | 
					
						
							|  |  |  | 	const float value_final = (value_max * distfacinv_max) + (value_blur * (1.0f - distfacinv_max)); | 
					
						
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										 |  |  | 	color[0] = finv_test(value_final, do_invert); | 
					
						
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										 |  |  | } | 
					
						
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							|  |  |  | void GaussianAlphaYBlurOperation::deinitExecution() | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	BlurBaseOperation::deinitExecution(); | 
					
						
							|  |  |  | 	delete [] this->gausstab; | 
					
						
							|  |  |  | 	this->gausstab = NULL; | 
					
						
							|  |  |  | 	delete [] this->distbuf_inv; | 
					
						
							|  |  |  | 	this->distbuf_inv = NULL; | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | bool GaussianAlphaYBlurOperation::determineDependingAreaOfInterest(rcti *input, ReadBufferOperation *readOperation, rcti *output) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	rcti newInput; | 
					
						
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										 |  |  | #if 0 /* until we add size input */
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										 |  |  | 	rcti sizeInput; | 
					
						
							|  |  |  | 	sizeInput.xmin = 0; | 
					
						
							|  |  |  | 	sizeInput.ymin = 0; | 
					
						
							|  |  |  | 	sizeInput.xmax = 5; | 
					
						
							|  |  |  | 	sizeInput.ymax = 5; | 
					
						
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										 |  |  | 	NodeOperation *operation = this->getInputOperation(1); | 
					
						
							|  |  |  | 	if (operation->determineDependingAreaOfInterest(&sizeInput, readOperation, output)) { | 
					
						
							|  |  |  | 		return true; | 
					
						
							|  |  |  | 	} | 
					
						
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										 |  |  | 	else | 
					
						
							|  |  |  | #endif
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							|  |  |  | 	{ | 
					
						
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										 |  |  | 		if (this->sizeavailable && this->gausstab != NULL) { | 
					
						
							|  |  |  | 			newInput.xmax = input->xmax; | 
					
						
							|  |  |  | 			newInput.xmin = input->xmin; | 
					
						
							|  |  |  | 			newInput.ymax = input->ymax + rad; | 
					
						
							|  |  |  | 			newInput.ymin = input->ymin - rad; | 
					
						
							|  |  |  | 		} | 
					
						
							|  |  |  | 		else { | 
					
						
							|  |  |  | 			newInput.xmax = this->getWidth(); | 
					
						
							|  |  |  | 			newInput.xmin = 0; | 
					
						
							|  |  |  | 			newInput.ymax = this->getHeight(); | 
					
						
							|  |  |  | 			newInput.ymin = 0; | 
					
						
							|  |  |  | 		} | 
					
						
							|  |  |  | 		return NodeOperation::determineDependingAreaOfInterest(&newInput, readOperation, output); | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | } |