serenity/Userland/Applications/FontEditor/GlyphEditorWidget.cpp
thankyouverycool 9b431bc2ab FontEditor: Don't add ineffectual glyph moves to the undo stack
And fix effectual glyph paints failing to create new undo events when
beginning at unmodifiable cells but mousing to settable ones.
2023-06-09 17:21:43 +02:00

267 lines
8.2 KiB
C++

/*
* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
* Copyright (c) 2022, the SerenityOS developers.
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include "GlyphEditorWidget.h"
#include <LibGUI/Painter.h>
#include <LibGfx/Font/BitmapFont.h>
#include <LibGfx/Palette.h>
REGISTER_WIDGET(FontEditor, GlyphEditorWidget);
namespace FontEditor {
void GlyphEditorWidget::initialize(Gfx::BitmapFont* mutable_font)
{
if (m_font == mutable_font)
return;
m_font = mutable_font;
update();
}
void GlyphEditorWidget::set_glyph(int glyph)
{
if (m_glyph == glyph)
return;
m_glyph = glyph;
update();
}
void GlyphEditorWidget::paint_event(GUI::PaintEvent& event)
{
if (!m_font)
return;
GUI::Frame::paint_event(event);
GUI::Painter painter(*this);
painter.add_clip_rect(frame_inner_rect());
painter.add_clip_rect(event.rect());
painter.fill_rect(frame_inner_rect(), palette().base());
painter.translate(frame_thickness(), frame_thickness());
painter.translate(-1, -1);
for (int y = 1; y < m_font->glyph_height(); ++y) {
int y_below = y - 1;
bool bold_line = y_below == m_font->baseline() || y_below == m_font->mean_line();
painter.draw_line({ 0, y * m_scale }, { m_font->max_glyph_width() * m_scale, y * m_scale }, palette().threed_shadow2(), bold_line ? 2 : 1);
}
for (int x = 1; x < m_font->max_glyph_width(); ++x)
painter.draw_line({ x * m_scale, 0 }, { x * m_scale, m_font->glyph_height() * m_scale }, palette().threed_shadow2());
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
for (int y = 0; y < m_font->glyph_height(); ++y) {
for (int x = 0; x < m_font->max_glyph_width(); ++x) {
Gfx::IntRect rect { x * m_scale, y * m_scale, m_scale, m_scale };
if (x >= m_font->raw_glyph_width(m_glyph)) {
painter.fill_rect(rect, palette().threed_shadow1());
} else {
if (bitmap.bit_at(x, y))
painter.fill_rect(rect, palette().base_text());
}
}
}
}
bool GlyphEditorWidget::is_glyph_empty()
{
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
for (int x = 0; x < m_font->max_glyph_width(); x++)
for (int y = 0; y < m_font->glyph_height(); y++)
if (bitmap.bit_at(x, y))
return false;
return true;
}
void GlyphEditorWidget::mousedown_event(GUI::MouseEvent& event)
{
if ((event.x() - 1) / m_scale + 1 > m_font->raw_glyph_width(m_glyph))
return;
if (mode() == Move && is_glyph_empty())
return;
m_is_clicking_valid_cell = true;
if (mode() == Paint) {
draw_at_mouse(event);
} else {
memset(m_movable_bits, 0, sizeof(m_movable_bits));
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
for (int x = 0; x < bitmap.width(); x++) {
for (int y = 0; y < bitmap.height(); y++) {
int movable_x = Gfx::GlyphBitmap::max_width() + x;
int movable_y = Gfx::GlyphBitmap::max_height() + y;
m_movable_bits[movable_x][movable_y] = bitmap.bit_at(x, y);
}
}
m_scaled_offset_x = (event.x() - 1) / m_scale;
m_scaled_offset_y = (event.y() - 1) / m_scale;
move_at_mouse(event);
}
}
void GlyphEditorWidget::mouseup_event(GUI::MouseEvent&)
{
m_is_clicking_valid_cell = false;
m_is_altering_glyph = false;
}
void GlyphEditorWidget::mousemove_event(GUI::MouseEvent& event)
{
if (!m_is_clicking_valid_cell)
return;
if (!(event.buttons() & (GUI::MouseButton::Primary | GUI::MouseButton::Secondary)))
return;
if (mode() == Paint)
draw_at_mouse(event);
else
move_at_mouse(event);
}
void GlyphEditorWidget::enter_event(Core::Event&)
{
if (mode() == Move)
set_override_cursor(Gfx::StandardCursor::Move);
else
set_override_cursor(Gfx::StandardCursor::None);
}
void GlyphEditorWidget::draw_at_mouse(GUI::MouseEvent const& event)
{
bool set = event.buttons() & GUI::MouseButton::Primary;
bool unset = event.buttons() & GUI::MouseButton::Secondary;
if (!(set ^ unset))
return;
int x = (event.x() - 1) / m_scale;
int y = (event.y() - 1) / m_scale;
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
if (x < 0 || x >= bitmap.width())
return;
if (y < 0 || y >= bitmap.height())
return;
if (bitmap.bit_at(x, y) == set)
return;
if (on_undo_event && !m_is_altering_glyph)
on_undo_event("Paint Glyph"sv);
m_is_altering_glyph = true;
bitmap.set_bit_at(x, y, set);
if (on_glyph_altered)
on_glyph_altered(m_glyph);
update();
}
void GlyphEditorWidget::move_at_mouse(GUI::MouseEvent const& event)
{
int x_delta = ((event.x() - 1) / m_scale) - m_scaled_offset_x;
int y_delta = ((event.y() - 1) / m_scale) - m_scaled_offset_y;
if (x_delta == 0 && y_delta == 0 && !m_is_altering_glyph)
return;
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
if (abs(x_delta) > bitmap.width() || abs(y_delta) > bitmap.height())
return;
if (on_undo_event && !m_is_altering_glyph)
on_undo_event("Move Glyph"sv);
m_is_altering_glyph = true;
for (int x = 0; x < bitmap.width(); x++) {
for (int y = 0; y < bitmap.height(); y++) {
int movable_x = Gfx::GlyphBitmap::max_width() + x - x_delta;
int movable_y = Gfx::GlyphBitmap::max_height() + y - y_delta;
bitmap.set_bit_at(x, y, m_movable_bits[movable_x][movable_y]);
}
}
if (on_glyph_altered)
on_glyph_altered(m_glyph);
update();
}
static Vector<Vector<u8>> glyph_as_matrix(Gfx::GlyphBitmap const& bitmap)
{
Vector<Vector<u8>> result;
result.ensure_capacity(bitmap.height());
for (int y = 0; y < bitmap.height(); y++) {
result.empend();
auto& row = result.last();
row.ensure_capacity(bitmap.width());
for (int x = 0; x < bitmap.width(); x++) {
row.append(bitmap.bit_at(x, y));
}
}
return result;
}
void GlyphEditorWidget::rotate_90(Gfx::RotationDirection direction)
{
auto clockwise = direction == Gfx::RotationDirection::Clockwise;
auto action_text = clockwise ? "Rotate Glyph Clockwise"sv : "Rotate Glyph Counterclockwise"sv;
if (on_undo_event)
on_undo_event(action_text);
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
auto matrix = glyph_as_matrix(bitmap);
for (int y = 0; y < bitmap.height(); y++) {
for (int x = 0; x < bitmap.width(); x++) {
int source_x = clockwise ? y : max(bitmap.width() - 1 - y, 0);
int source_y = clockwise ? bitmap.width() - 1 - x : x;
bool value = false;
if (source_x < bitmap.width() && source_y < bitmap.height()) {
value = (!clockwise && y >= bitmap.width()) ? false : matrix[source_y][source_x];
}
bitmap.set_bit_at(x, y, value);
}
}
if (on_glyph_altered)
on_glyph_altered(m_glyph);
update();
}
void GlyphEditorWidget::flip(Gfx::Orientation orientation)
{
auto vertical = orientation == Gfx::Orientation::Vertical;
auto action_text = vertical ? "Flip Glyph Vertically"sv : "Flip Glyph Horizontally"sv;
if (on_undo_event)
on_undo_event(action_text);
auto bitmap = m_font->raw_glyph(m_glyph).glyph_bitmap();
auto matrix = glyph_as_matrix(bitmap);
for (int y = 0; y < bitmap.height(); y++) {
for (int x = 0; x < bitmap.width(); x++) {
int source_x = vertical ? x : bitmap.width() - 1 - x;
int source_y = vertical ? bitmap.height() - 1 - y : y;
bool value = matrix[source_y][source_x];
bitmap.set_bit_at(x, y, value);
}
}
if (on_glyph_altered)
on_glyph_altered(m_glyph);
update();
}
int GlyphEditorWidget::preferred_width() const
{
return frame_thickness() * 2 + m_font->max_glyph_width() * m_scale - 1;
}
int GlyphEditorWidget::preferred_height() const
{
return frame_thickness() * 2 + m_font->glyph_height() * m_scale - 1;
}
void GlyphEditorWidget::set_scale(int scale)
{
if (m_scale == scale)
return;
m_scale = clamp(scale, 1, 15);
update();
}
}