Listing the "Blender Foundation" as copyright holder implied the Blender Foundation holds copyright to files which may include work from many developers. While keeping copyright on headers makes sense for isolated libraries, Blender's own code may be refactored or moved between files in a way that makes the per file copyright holders less meaningful. Copyright references to the "Blender Foundation" have been replaced with "Blender Authors", with the exception of `./extern/` since these this contains libraries which are more isolated, any changed to license headers there can be handled on a case-by-case basis. Some directories in `./intern/` have also been excluded: - `./intern/cycles/` it's own `AUTHORS` file is planned. - `./intern/opensubdiv/`. An "AUTHORS" file has been added, using the chromium projects authors file as a template. Design task: #110784 Ref !110783.
167 lines
4.8 KiB
C++
167 lines
4.8 KiB
C++
/* SPDX-FileCopyrightText: 2011 Blender Authors
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*
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* SPDX-License-Identifier: GPL-2.0-or-later */
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#include "COM_CropOperation.h"
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namespace blender::compositor {
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CropBaseOperation::CropBaseOperation()
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{
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this->add_input_socket(DataType::Color, ResizeMode::Align);
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this->add_output_socket(DataType::Color);
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input_operation_ = nullptr;
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settings_ = nullptr;
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}
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void CropBaseOperation::update_area()
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{
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SocketReader *input_reference = this->get_input_socket_reader(0);
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float width = input_reference->get_width();
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float height = input_reference->get_height();
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NodeTwoXYs local_settings = *settings_;
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if (width > 0.0f && height > 0.0f) {
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if (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) {
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local_settings.x1 = width;
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}
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if (height < local_settings.y1) {
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local_settings.y1 = height;
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}
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if (width < local_settings.x2) {
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local_settings.x2 = width;
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}
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if (height < local_settings.y2) {
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local_settings.y2 = height;
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}
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xmax_ = MAX2(local_settings.x1, local_settings.x2);
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xmin_ = MIN2(local_settings.x1, local_settings.x2);
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ymax_ = MAX2(local_settings.y1, local_settings.y2);
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ymin_ = MIN2(local_settings.y1, local_settings.y2);
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}
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else {
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xmax_ = 0;
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xmin_ = 0;
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ymax_ = 0;
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ymin_ = 0;
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}
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}
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void CropBaseOperation::init_execution()
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{
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input_operation_ = this->get_input_socket_reader(0);
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update_area();
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}
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void CropBaseOperation::deinit_execution()
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{
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input_operation_ = 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::execute_pixel_sampled(float output[4], float x, float y, PixelSampler sampler)
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{
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if ((x < xmax_ && x >= xmin_) && (y < ymax_ && y >= ymin_)) {
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input_operation_->read_sampled(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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for (BuffersIterator<float> it = output->iterate_with(inputs, area); !it.is_end(); ++it) {
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if ((it.x < xmax_ && it.x >= xmin_) && (it.y < ymax_ && it.y >= ymin_)) {
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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::determine_depending_area_of_interest(rcti *input,
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ReadBufferOperation *read_operation,
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rcti *output)
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{
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rcti new_input;
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new_input.xmax = input->xmax + xmin_;
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new_input.xmin = input->xmin + xmin_;
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new_input.ymax = input->ymax + ymin_;
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new_input.ymin = input->ymin + ymin_;
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return NodeOperation::determine_depending_area_of_interest(&new_input, read_operation, 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 + xmin_;
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r_input_area.xmin = output_area.xmin + xmin_;
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r_input_area.ymax = output_area.ymax + ymin_;
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r_input_area.ymin = output_area.ymin + ymin_;
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}
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void CropImageOperation::determine_canvas(const rcti &preferred_area, rcti &r_area)
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{
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NodeOperation::determine_canvas(preferred_area, r_area);
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update_area();
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r_area.xmax = r_area.xmin + (xmax_ - xmin_);
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r_area.ymax = r_area.ymin + (ymax_ - ymin_);
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}
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void CropImageOperation::execute_pixel_sampled(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 < get_width() && y >= 0 && y < get_height()) {
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input_operation_->read_sampled(output, (x + xmin_), (y + 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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const MemoryBuffer *input = inputs[0];
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const int width = get_width();
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const int height = get_height();
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for (BuffersIterator<float> it = output->iterate_with({}, area); !it.is_end(); ++it) {
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if (it.x >= 0 && it.x < width && it.y >= 0 && it.y < height) {
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input->read_elem_checked(it.x + xmin_, it.y + 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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