/* * Copyright (c) 2020, Till Mayer * * SPDX-License-Identifier: BSD-2-Clause */ #include "Card.h" #include #include #include namespace Cards { static const NonnullRefPtr s_diamond = Gfx::CharacterBitmap::create_from_ascii( " # " " ### " " ##### " " ####### " "#########" " ####### " " ##### " " ### " " # ", 9, 9); static const NonnullRefPtr s_heart = Gfx::CharacterBitmap::create_from_ascii( " # # " " ### ### " "#########" "#########" "#########" " ####### " " ##### " " ### " " # ", 9, 9); static const NonnullRefPtr s_spade = Gfx::CharacterBitmap::create_from_ascii( " # " " ### " " ##### " " ####### " "#########" "#########" " ## # ## " " ### " " ### ", 9, 9); static const NonnullRefPtr s_club = Gfx::CharacterBitmap::create_from_ascii( " ### " " ##### " " ##### " " ## ### ## " "###########" "###########" "#### # ####" " ## ### ## " " ### ", 11, 9); static RefPtr s_background; static RefPtr s_background_inverted; Card::Card(Type type, uint8_t value) : m_rect(Gfx::IntRect({}, { width, height })) , m_front(*Gfx::Bitmap::try_create(Gfx::BitmapFormat::BGRA8888, { width, height })) , m_type(type) , m_value(value) { VERIFY(value < card_count); Gfx::IntRect paint_rect({ 0, 0 }, { width, height }); if (s_background.is_null()) { s_background = Gfx::Bitmap::try_create(Gfx::BitmapFormat::BGRA8888, { width, height }); Gfx::Painter bg_painter(*s_background); auto image = Gfx::Bitmap::try_load_from_file("/res/icons/cards/buggie-deck.png"); VERIFY(!image.is_null()); float aspect_ratio = image->width() / static_cast(image->height()); auto target_size = Gfx::IntSize(static_cast(aspect_ratio * (height - 5)), height - 5); bg_painter.fill_rect_with_rounded_corners(paint_rect, Color::Black, card_radius); auto inner_paint_rect = paint_rect.shrunken(2, 2); bg_painter.fill_rect_with_rounded_corners(inner_paint_rect, Color::White, card_radius - 1); bg_painter.draw_scaled_bitmap( { { (width - target_size.width()) / 2, (height - target_size.height()) / 2 }, target_size }, *image, image->rect()); s_background_inverted = invert_bitmap(*s_background); } Gfx::Painter painter(m_front); auto& font = Gfx::FontDatabase::default_font().bold_variant(); auto label = labels[value]; painter.fill_rect_with_rounded_corners(paint_rect, Color::Black, card_radius); paint_rect.shrink(2, 2); painter.fill_rect_with_rounded_corners(paint_rect, Color::White, card_radius - 1); paint_rect.set_height(paint_rect.height() / 2); paint_rect.shrink(10, 6); auto text_rect = Gfx::IntRect { 4, 6, font.width("10"), font.glyph_height() }; painter.draw_text(text_rect, label, font, Gfx::TextAlignment::Center, color()); NonnullRefPtr symbol = s_diamond; switch (m_type) { case Diamonds: symbol = s_diamond; break; case Clubs: symbol = s_club; break; case Spades: symbol = s_spade; break; case Hearts: symbol = s_heart; break; default: VERIFY_NOT_REACHED(); } painter.draw_bitmap( { text_rect.x() + (text_rect.width() - symbol->size().width()) / 2, text_rect.bottom() + 5 }, symbol, color()); for (int y = height / 2; y < height; ++y) { for (int x = 0; x < width; ++x) { m_front->set_pixel(x, y, m_front->get_pixel(width - x - 1, height - y - 1)); } } m_front_inverted = invert_bitmap(*m_front); } Card::~Card() { } void Card::draw(GUI::Painter& painter) const { VERIFY(!s_background.is_null()); if (m_inverted) painter.blit(position(), m_upside_down ? *s_background_inverted : *m_front_inverted, m_front_inverted->rect()); else painter.blit(position(), m_upside_down ? *s_background : *m_front, m_front->rect()); } void Card::clear(GUI::Painter& painter, const Color& background_color) const { painter.fill_rect({ old_position(), { width, height } }, background_color); } void Card::save_old_position() { m_old_position = m_rect.location(); m_old_position_valid = true; } void Card::clear_and_draw(GUI::Painter& painter, const Color& background_color) { if (is_old_position_valid()) clear(painter, background_color); draw(painter); save_old_position(); } NonnullRefPtr Card::invert_bitmap(Gfx::Bitmap& bitmap) { auto inverted_bitmap = bitmap.clone(); VERIFY(inverted_bitmap); for (int y = 0; y < inverted_bitmap->height(); y++) { for (int x = 0; x < inverted_bitmap->width(); x++) { inverted_bitmap->set_pixel(x, y, inverted_bitmap->get_pixel(x, y).inverted()); } } return *inverted_bitmap; } }