176 lines
5.5 KiB
C++
176 lines
5.5 KiB
C++
/*
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* Copyright 2017, 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: IRIE Shinsuke
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*/
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#pragma once
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#include "COM_MultiThreadedOperation.h"
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namespace blender::compositor {
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/*-----------------------------------------------------------------------------*/
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/* Edge Detection (First Pass) */
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class SMAAEdgeDetectionOperation : public MultiThreadedOperation {
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protected:
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SocketReader *image_reader_;
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SocketReader *value_reader_;
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float threshold_;
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float contrast_limit_;
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public:
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SMAAEdgeDetectionOperation();
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/**
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* the inner loop of this program
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*/
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virtual void execute_pixel(float output[4], int x, int y, void *data) override;
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/**
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* Initialize the execution
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*/
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void init_execution() override;
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/**
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* Deinitialize the execution
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*/
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void deinit_execution() override;
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void set_threshold(float threshold);
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void set_local_contrast_adaptation_factor(float factor);
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bool determine_depending_area_of_interest(rcti *input,
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ReadBufferOperation *read_operation,
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rcti *output) override;
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void get_area_of_interest(int input_idx, const rcti &output_area, rcti &r_input_area) override;
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void update_memory_buffer_partial(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs) override;
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};
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/*-----------------------------------------------------------------------------*/
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/* Blending Weight Calculation (Second Pass) */
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class SMAABlendingWeightCalculationOperation : public MultiThreadedOperation {
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private:
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SocketReader *image_reader_;
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std::function<void(int x, int y, float *out)> sample_image_fn_;
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int corner_rounding_;
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public:
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SMAABlendingWeightCalculationOperation();
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/**
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* the inner loop of this program
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*/
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void execute_pixel(float output[4], int x, int y, void *data) override;
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/**
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* Initialize the execution
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*/
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void init_execution() override;
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void *initialize_tile_data(rcti *rect) override;
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/**
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* Deinitialize the execution
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*/
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void deinit_execution() override;
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void set_corner_rounding(float rounding);
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bool determine_depending_area_of_interest(rcti *input,
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ReadBufferOperation *read_operation,
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rcti *output) override;
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void get_area_of_interest(int input_idx, const rcti &output_area, rcti &r_input_area) override;
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void update_memory_buffer_started(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs) override;
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void update_memory_buffer_partial(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs) override;
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private:
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/* Diagonal Search Functions */
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/**
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* These functions allows to perform diagonal pattern searches.
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*/
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int search_diag1(int x, int y, int dir, bool *found);
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int search_diag2(int x, int y, int dir, bool *found);
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/**
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* This searches for diagonal patterns and returns the corresponding weights.
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*/
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void calculate_diag_weights(int x, int y, const float edges[2], float weights[2]);
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bool is_vertical_search_unneeded(int x, int y);
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/* Horizontal/Vertical Search Functions */
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int search_xleft(int x, int y);
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int search_xright(int x, int y);
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int search_yup(int x, int y);
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int search_ydown(int x, int y);
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/* Corner Detection Functions */
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void detect_horizontal_corner_pattern(
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float weights[2], int left, int right, int y, int d1, int d2);
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void detect_vertical_corner_pattern(
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float weights[2], int x, int top, int bottom, int d1, int d2);
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};
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/*-----------------------------------------------------------------------------*/
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/* Neighborhood Blending (Third Pass) */
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class SMAANeighborhoodBlendingOperation : public MultiThreadedOperation {
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private:
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SocketReader *image1Reader_;
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SocketReader *image2Reader_;
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public:
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SMAANeighborhoodBlendingOperation();
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/**
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* the inner loop of this program
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*/
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void execute_pixel(float output[4], int x, int y, void *data) override;
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/**
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* Initialize the execution
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*/
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void init_execution() override;
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void *initialize_tile_data(rcti *rect) override;
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/**
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* Deinitialize the execution
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*/
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void deinit_execution() override;
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bool determine_depending_area_of_interest(rcti *input,
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ReadBufferOperation *read_operation,
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rcti *output) override;
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void get_area_of_interest(int input_idx, const rcti &output_area, rcti &r_input_area) override;
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void update_memory_buffer_partial(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs) override;
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};
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} // namespace blender::compositor
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