mirror of
https://github.com/RGBCube/serenity
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160 lines
6.2 KiB
C++
160 lines
6.2 KiB
C++
/*
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* Copyright (c) 2022-2023, Torsten Engelmann <engelTorsten@gmx.de>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include "LevelsDialog.h"
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#include <Applications/PixelPaint/LevelsDialogGML.h>
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#include <LibGUI/Button.h>
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#include <LibGUI/Label.h>
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#include <LibGUI/ValueSlider.h>
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namespace PixelPaint {
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LevelsDialog::LevelsDialog(GUI::Window* parent_window, ImageEditor* editor)
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: GUI::Dialog(parent_window)
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{
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set_title("Levels");
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set_icon(parent_window->icon());
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auto main_widget = set_main_widget<GUI::Widget>();
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main_widget->load_from_gml(levels_dialog_gml).release_value_but_fixme_should_propagate_errors();
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resize(305, 202);
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set_resizable(false);
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m_editor = editor;
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m_brightness_slider = main_widget->find_descendant_of_type_named<GUI::ValueSlider>("brightness_slider");
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m_contrast_slider = main_widget->find_descendant_of_type_named<GUI::ValueSlider>("contrast_slider");
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m_gamma_slider = main_widget->find_descendant_of_type_named<GUI::ValueSlider>("gamma_slider");
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auto context_label = main_widget->find_descendant_of_type_named<GUI::Label>("context_label");
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auto apply_button = main_widget->find_descendant_of_type_named<GUI::Button>("apply_button");
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auto cancel_button = main_widget->find_descendant_of_type_named<GUI::Button>("cancel_button");
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VERIFY(m_brightness_slider);
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VERIFY(m_contrast_slider);
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VERIFY(m_gamma_slider);
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VERIFY(context_label);
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VERIFY(apply_button);
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VERIFY(cancel_button);
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VERIFY(m_editor->active_layer());
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context_label->set_text(String::formatted("Working on layer: {}", m_editor->active_layer()->name()).release_value_but_fixme_should_propagate_errors());
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m_gamma_slider->set_value(100);
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m_brightness_slider->on_change = [this](auto) {
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generate_new_image();
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};
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m_contrast_slider->on_change = [this](auto) {
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generate_new_image();
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};
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m_gamma_slider->on_change = [this](auto) {
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generate_new_image();
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};
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apply_button->on_click = [this](auto) {
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if (m_did_change)
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m_editor->did_complete_action("Levels"sv);
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cleanup_resources();
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done(ExecResult::OK);
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};
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cancel_button->on_click = [this](auto) {
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done(ExecResult::Cancel);
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};
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}
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void LevelsDialog::revert_possible_changes()
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{
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if (m_did_change && m_reference_bitmap) {
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MUST(m_editor->active_layer()->set_bitmaps(m_reference_bitmap.release_nonnull(), m_editor->active_layer()->mask_bitmap()));
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m_editor->layers_did_change();
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}
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cleanup_resources();
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}
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void LevelsDialog::generate_new_image()
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{
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(void)ensure_reference_bitmap();
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if (m_reference_bitmap.is_null())
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return;
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generate_precomputed_color_correction();
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Color current_pixel_color;
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Color new_pixel_color;
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Gfx::StorageFormat storage_format = Gfx::determine_storage_format(m_editor->active_layer()->content_bitmap().format());
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auto apply_only_on_mask = m_editor->active_layer()->mask_type() == Layer::MaskType::EditingMask;
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auto relevant_area = m_masked_area.value_or({ 0, 0, m_reference_bitmap->width(), m_reference_bitmap->height() });
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for (int y = relevant_area.top(); y < relevant_area.bottom(); y++) {
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for (int x = relevant_area.left(); x < relevant_area.right(); x++) {
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current_pixel_color = m_reference_bitmap->get_pixel(x, y);
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// Check if we can avoid setting pixels as nothing will change when we don't have a mask at x,y.
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if (apply_only_on_mask && !m_editor->active_layer()->mask_bitmap()->get_pixel(x, y).alpha())
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continue;
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auto target_color = Color(
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m_precomputed_color_correction[current_pixel_color.red()],
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m_precomputed_color_correction[current_pixel_color.green()],
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m_precomputed_color_correction[current_pixel_color.blue()],
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current_pixel_color.alpha());
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new_pixel_color = m_editor->active_layer()->modify_pixel_with_editing_mask(x, y, target_color, current_pixel_color);
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switch (storage_format) {
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case Gfx::StorageFormat::BGRx8888:
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case Gfx::StorageFormat::BGRA8888:
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m_editor->active_layer()->content_bitmap().scanline(y)[x] = new_pixel_color.value();
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break;
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default:
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m_editor->active_layer()->content_bitmap().set_pixel(x, y, new_pixel_color);
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}
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}
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}
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m_editor->active_layer()->did_modify_bitmap();
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m_did_change = true;
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}
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ErrorOr<void> LevelsDialog::ensure_reference_bitmap()
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{
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if (m_reference_bitmap.is_null()) {
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m_reference_bitmap = TRY(m_editor->active_layer()->content_bitmap().clone());
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m_masked_area = m_editor->active_layer()->editing_mask_bounding_rect();
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}
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return {};
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}
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void LevelsDialog::cleanup_resources()
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{
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if (m_reference_bitmap)
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m_reference_bitmap = nullptr;
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}
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void LevelsDialog::generate_precomputed_color_correction()
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{
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int delta_brightness = m_brightness_slider->value();
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float contrast_correction_factor = static_cast<float>(259 * (m_contrast_slider->value() + 255) / static_cast<float>(255 * (259 - m_contrast_slider->value())));
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float gamma_correction = 1 / (m_gamma_slider->value() / 100.0);
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for (int color_val = 0; color_val < 256; color_val++) {
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m_precomputed_color_correction[color_val] = color_val + delta_brightness;
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m_precomputed_color_correction[color_val] = m_precomputed_color_correction[color_val] < 0 ? 0 : m_precomputed_color_correction[color_val];
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m_precomputed_color_correction[color_val] = m_precomputed_color_correction[color_val] > 255 ? 255 : m_precomputed_color_correction[color_val];
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m_precomputed_color_correction[color_val] = 255 * AK::pow<float>((m_precomputed_color_correction[color_val] / 255.0), gamma_correction);
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m_precomputed_color_correction[color_val] = contrast_correction_factor * (m_precomputed_color_correction[color_val] - 128) + 128;
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m_precomputed_color_correction[color_val] = m_precomputed_color_correction[color_val] < 0 ? 0 : m_precomputed_color_correction[color_val];
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m_precomputed_color_correction[color_val] = m_precomputed_color_correction[color_val] > 255 ? 255 : m_precomputed_color_correction[color_val];
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}
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}
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}
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