ladybird/Userland/Applications/PixelPaint/Image.cpp
Andreas Kling b91c49364d AK: Rename adopt() to adopt_ref()
This makes it more symmetrical with adopt_own() (which is used to
create a NonnullOwnPtr from the result of a naked new.)
2021-04-23 16:46:57 +02:00

324 lines
8.9 KiB
C++

/*
* Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include "Image.h"
#include "Layer.h"
#include <AK/Base64.h>
#include <AK/JsonObject.h>
#include <AK/JsonObjectSerializer.h>
#include <AK/JsonValue.h>
#include <AK/StringBuilder.h>
#include <LibGUI/Painter.h>
#include <LibGfx/BMPWriter.h>
#include <LibGfx/ImageDecoder.h>
#include <LibGfx/PNGWriter.h>
#include <stdio.h>
namespace PixelPaint {
RefPtr<Image> Image::create_with_size(const Gfx::IntSize& size)
{
if (size.is_empty())
return nullptr;
if (size.width() > 16384 || size.height() > 16384)
return nullptr;
return adopt_ref(*new Image(size));
}
Image::Image(const Gfx::IntSize& size)
: m_size(size)
{
}
void Image::paint_into(GUI::Painter& painter, const Gfx::IntRect& dest_rect)
{
float scale = (float)dest_rect.width() / (float)rect().width();
Gfx::PainterStateSaver saver(painter);
painter.add_clip_rect(dest_rect);
for (auto& layer : m_layers) {
if (!layer.is_visible())
continue;
auto target = dest_rect.translated(layer.location().x() * scale, layer.location().y() * scale);
target.set_size(layer.size().width() * scale, layer.size().height() * scale);
painter.draw_scaled_bitmap(target, layer.bitmap(), layer.rect(), (float)layer.opacity_percent() / 100.0f);
}
}
RefPtr<Image> Image::create_from_file(const String& file_path)
{
auto file = fopen(file_path.characters(), "r");
fseek(file, 0L, SEEK_END);
auto length = ftell(file);
rewind(file);
auto buffer = ByteBuffer::create_uninitialized(length);
fread(buffer.data(), sizeof(u8), length, file);
fclose(file);
auto json_or_error = JsonValue::from_string(String::copy(buffer));
if (!json_or_error.has_value())
return nullptr;
auto json = json_or_error.value().as_object();
auto image = create_with_size({ json.get("width").to_i32(), json.get("height").to_i32() });
json.get("layers").as_array().for_each([&](JsonValue json_layer) {
auto json_layer_object = json_layer.as_object();
auto width = json_layer_object.get("width").to_i32();
auto height = json_layer_object.get("height").to_i32();
auto name = json_layer_object.get("name").as_string();
auto layer = Layer::create_with_size(*image, { width, height }, name);
layer->set_location({ json_layer_object.get("locationx").to_i32(), json_layer_object.get("locationy").to_i32() });
layer->set_opacity_percent(json_layer_object.get("opacity_percent").to_i32());
layer->set_visible(json_layer_object.get("visible").as_bool());
layer->set_selected(json_layer_object.get("selected").as_bool());
auto bitmap_base64_encoded = json_layer_object.get("bitmap").as_string();
auto bitmap_data = decode_base64(bitmap_base64_encoded);
auto image_decoder = Gfx::ImageDecoder::create(bitmap_data);
layer->set_bitmap(*image_decoder->bitmap());
image->add_layer(*layer);
});
return image;
}
void Image::save(const String& file_path) const
{
// Build json file
StringBuilder builder;
JsonObjectSerializer json(builder);
json.add("width", m_size.width());
json.add("height", m_size.height());
{
auto json_layers = json.add_array("layers");
for (const auto& layer : m_layers) {
Gfx::BMPWriter bmp_dumber;
auto json_layer = json_layers.add_object();
json_layer.add("width", layer.size().width());
json_layer.add("height", layer.size().height());
json_layer.add("name", layer.name());
json_layer.add("locationx", layer.location().x());
json_layer.add("locationy", layer.location().y());
json_layer.add("opacity_percent", layer.opacity_percent());
json_layer.add("visible", layer.is_visible());
json_layer.add("selected", layer.is_selected());
json_layer.add("bitmap", encode_base64(bmp_dumber.dump(layer.bitmap())));
}
}
json.finish();
// Write json to disk
auto file = fopen(file_path.characters(), "w");
auto byte_buffer = builder.to_byte_buffer();
fwrite(byte_buffer.data(), sizeof(u8), byte_buffer.size(), file);
fclose(file);
}
void Image::export_bmp(const String& file_path)
{
auto bitmap = Gfx::Bitmap::create(Gfx::BitmapFormat::BGRx8888, m_size);
GUI::Painter painter(*bitmap);
paint_into(painter, { 0, 0, m_size.width(), m_size.height() });
Gfx::BMPWriter dumper;
auto bmp = dumper.dump(bitmap);
auto file = fopen(file_path.characters(), "wb");
fwrite(bmp.data(), sizeof(u8), bmp.size(), file);
fclose(file);
}
void Image::export_png(const String& file_path)
{
auto bitmap = Gfx::Bitmap::create(Gfx::BitmapFormat::BGRA8888, m_size);
VERIFY(bitmap);
GUI::Painter painter(*bitmap);
paint_into(painter, { 0, 0, m_size.width(), m_size.height() });
auto png = Gfx::PNGWriter::encode(*bitmap);
auto file = fopen(file_path.characters(), "wb");
fwrite(png.data(), sizeof(u8), png.size(), file);
fclose(file);
}
void Image::add_layer(NonnullRefPtr<Layer> layer)
{
for (auto& existing_layer : m_layers) {
VERIFY(&existing_layer != layer.ptr());
}
m_layers.append(move(layer));
for (auto* client : m_clients)
client->image_did_add_layer(m_layers.size() - 1);
did_modify_layer_stack();
}
RefPtr<Image> Image::take_snapshot() const
{
auto snapshot = create_with_size(m_size);
for (const auto& layer : m_layers)
snapshot->add_layer(*Layer::create_snapshot(*snapshot, layer));
return snapshot;
}
void Image::restore_snapshot(const Image& snapshot)
{
m_layers.clear();
select_layer(nullptr);
for (const auto& snapshot_layer : snapshot.m_layers) {
auto layer = Layer::create_snapshot(*this, snapshot_layer);
if (layer->is_selected())
select_layer(layer.ptr());
add_layer(*layer);
}
did_modify_layer_stack();
}
size_t Image::index_of(const Layer& layer) const
{
for (size_t i = 0; i < m_layers.size(); ++i) {
if (&m_layers.at(i) == &layer)
return i;
}
VERIFY_NOT_REACHED();
}
void Image::move_layer_to_back(Layer& layer)
{
NonnullRefPtr<Layer> protector(layer);
auto index = index_of(layer);
m_layers.remove(index);
m_layers.prepend(layer);
did_modify_layer_stack();
}
void Image::move_layer_to_front(Layer& layer)
{
NonnullRefPtr<Layer> protector(layer);
auto index = index_of(layer);
m_layers.remove(index);
m_layers.append(layer);
did_modify_layer_stack();
}
void Image::move_layer_down(Layer& layer)
{
NonnullRefPtr<Layer> protector(layer);
auto index = index_of(layer);
if (!index)
return;
m_layers.remove(index);
m_layers.insert(index - 1, layer);
did_modify_layer_stack();
}
void Image::move_layer_up(Layer& layer)
{
NonnullRefPtr<Layer> protector(layer);
auto index = index_of(layer);
if (index == m_layers.size() - 1)
return;
m_layers.remove(index);
m_layers.insert(index + 1, layer);
did_modify_layer_stack();
}
void Image::change_layer_index(size_t old_index, size_t new_index)
{
VERIFY(old_index < m_layers.size());
VERIFY(new_index < m_layers.size());
auto layer = m_layers.take(old_index);
m_layers.insert(new_index, move(layer));
did_modify_layer_stack();
}
void Image::did_modify_layer_stack()
{
for (auto* client : m_clients)
client->image_did_modify_layer_stack();
did_change();
}
void Image::remove_layer(Layer& layer)
{
NonnullRefPtr<Layer> protector(layer);
auto index = index_of(layer);
m_layers.remove(index);
for (auto* client : m_clients)
client->image_did_remove_layer(index);
did_modify_layer_stack();
}
void Image::select_layer(Layer* layer)
{
for (auto* client : m_clients)
client->image_select_layer(layer);
}
void Image::add_client(ImageClient& client)
{
VERIFY(!m_clients.contains(&client));
m_clients.set(&client);
}
void Image::remove_client(ImageClient& client)
{
VERIFY(m_clients.contains(&client));
m_clients.remove(&client);
}
void Image::layer_did_modify_bitmap(Badge<Layer>, const Layer& layer)
{
auto layer_index = index_of(layer);
for (auto* client : m_clients)
client->image_did_modify_layer(layer_index);
did_change();
}
void Image::layer_did_modify_properties(Badge<Layer>, const Layer& layer)
{
auto layer_index = index_of(layer);
for (auto* client : m_clients)
client->image_did_modify_layer(layer_index);
did_change();
}
void Image::did_change()
{
for (auto* client : m_clients)
client->image_did_change();
}
ImageUndoCommand::ImageUndoCommand(Image& image)
: m_snapshot(image.take_snapshot())
, m_image(image)
{
}
void ImageUndoCommand::undo()
{
m_image.restore_snapshot(*m_snapshot);
}
void ImageUndoCommand::redo()
{
undo();
}
}