Adds full frame implementation to "Displace", "Crop", "Flip", "Plane Track Deform", "Corner Pin", "Movie Distortion", "Lens Distortion" and "Map UV" nodes. The other nodes in "Distort" sub-menu are implemented separately in other commits. No functional changes. Part of T88150. Reviewed By: jbakker Differential Revision: https://developer.blender.org/D12166
185 lines
5.8 KiB
C++
185 lines
5.8 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_CropOperation.h"
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#include "BLI_math.h"
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namespace blender::compositor {
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CropBaseOperation::CropBaseOperation()
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{
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this->addInputSocket(DataType::Color, ResizeMode::None);
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this->addOutputSocket(DataType::Color);
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this->m_inputOperation = nullptr;
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this->m_settings = nullptr;
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}
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void CropBaseOperation::updateArea()
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{
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SocketReader *inputReference = this->getInputSocketReader(0);
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float width = inputReference->getWidth();
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float height = inputReference->getHeight();
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NodeTwoXYs local_settings = *this->m_settings;
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if (width > 0.0f && height > 0.0f) {
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if (this->m_relative) {
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local_settings.x1 = width * local_settings.fac_x1;
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local_settings.x2 = width * local_settings.fac_x2;
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local_settings.y1 = height * local_settings.fac_y1;
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local_settings.y2 = height * local_settings.fac_y2;
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}
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if (width <= local_settings.x1 + 1) {
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local_settings.x1 = width - 1;
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}
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if (height <= local_settings.y1 + 1) {
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local_settings.y1 = height - 1;
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}
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if (width <= local_settings.x2 + 1) {
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local_settings.x2 = width - 1;
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}
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if (height <= local_settings.y2 + 1) {
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local_settings.y2 = height - 1;
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}
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this->m_xmax = MAX2(local_settings.x1, local_settings.x2) + 1;
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this->m_xmin = MIN2(local_settings.x1, local_settings.x2);
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this->m_ymax = MAX2(local_settings.y1, local_settings.y2) + 1;
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this->m_ymin = MIN2(local_settings.y1, local_settings.y2);
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}
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else {
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this->m_xmax = 0;
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this->m_xmin = 0;
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this->m_ymax = 0;
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this->m_ymin = 0;
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}
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}
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void CropBaseOperation::initExecution()
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{
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this->m_inputOperation = this->getInputSocketReader(0);
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updateArea();
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}
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void CropBaseOperation::deinitExecution()
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{
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this->m_inputOperation = nullptr;
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}
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CropOperation::CropOperation() : CropBaseOperation()
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{
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/* pass */
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}
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void CropOperation::executePixelSampled(float output[4], float x, float y, PixelSampler sampler)
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{
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if ((x < this->m_xmax && x >= this->m_xmin) && (y < this->m_ymax && y >= this->m_ymin)) {
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this->m_inputOperation->readSampled(output, x, y, sampler);
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}
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else {
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zero_v4(output);
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}
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}
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void CropOperation::update_memory_buffer_partial(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs)
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{
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rcti crop_area;
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BLI_rcti_init(&crop_area, m_xmin, m_xmax, m_ymin, m_ymax);
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for (BuffersIterator<float> it = output->iterate_with(inputs, area); !it.is_end(); ++it) {
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if (BLI_rcti_isect_pt(&crop_area, it.x, it.y)) {
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copy_v4_v4(it.out, it.in(0));
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}
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else {
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zero_v4(it.out);
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}
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}
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}
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CropImageOperation::CropImageOperation() : CropBaseOperation()
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{
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/* pass */
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}
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bool CropImageOperation::determineDependingAreaOfInterest(rcti *input,
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ReadBufferOperation *readOperation,
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rcti *output)
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{
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rcti newInput;
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newInput.xmax = input->xmax + this->m_xmin;
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newInput.xmin = input->xmin + this->m_xmin;
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newInput.ymax = input->ymax + this->m_ymin;
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newInput.ymin = input->ymin + this->m_ymin;
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return NodeOperation::determineDependingAreaOfInterest(&newInput, readOperation, output);
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}
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void CropImageOperation::get_area_of_interest(const int input_idx,
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const rcti &output_area,
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rcti &r_input_area)
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{
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BLI_assert(input_idx == 0);
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UNUSED_VARS_NDEBUG(input_idx);
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r_input_area.xmax = output_area.xmax + this->m_xmin;
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r_input_area.xmin = output_area.xmin + this->m_xmin;
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r_input_area.ymax = output_area.ymax + this->m_ymin;
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r_input_area.ymin = output_area.ymin + this->m_ymin;
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}
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void CropImageOperation::determineResolution(unsigned int resolution[2],
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unsigned int preferredResolution[2])
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{
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NodeOperation::determineResolution(resolution, preferredResolution);
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updateArea();
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resolution[0] = this->m_xmax - this->m_xmin;
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resolution[1] = this->m_ymax - this->m_ymin;
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}
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void CropImageOperation::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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if (x >= 0 && x < getWidth() && y >= 0 && y < getHeight()) {
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this->m_inputOperation->readSampled(output, (x + this->m_xmin), (y + this->m_ymin), sampler);
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}
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else {
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zero_v4(output);
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}
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}
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void CropImageOperation::update_memory_buffer_partial(MemoryBuffer *output,
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const rcti &area,
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Span<MemoryBuffer *> inputs)
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{
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rcti op_area;
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BLI_rcti_init(&op_area, 0, getWidth(), 0, getHeight());
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const MemoryBuffer *input = inputs[0];
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for (BuffersIterator<float> it = output->iterate_with({}, area); !it.is_end(); ++it) {
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if (BLI_rcti_isect_pt(&op_area, it.x, it.y)) {
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input->read_elem_checked(it.x + this->m_xmin, it.y + this->m_ymin, it.out);
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}
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else {
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zero_v4(it.out);
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}
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}
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}
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} // namespace blender::compositor
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