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7be0b27dd3
This is just two ints or 8 bytes or the size of the reference on x86_64 or AArch64.
315 lines
8.5 KiB
C++
315 lines
8.5 KiB
C++
/*
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* Copyright (c) 2020, Till Mayer <till.mayer@web.de>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include "CardStack.h"
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namespace Cards {
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CardStack::CardStack()
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: m_position({ 0, 0 })
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, m_type(Type::Invalid)
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, m_base(m_position, { Card::width, Card::height })
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{
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}
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CardStack::CardStack(Gfx::IntPoint position, Type type, RefPtr<CardStack> covered_stack)
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: m_covered_stack(move(covered_stack))
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, m_position(position)
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, m_type(type)
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, m_rules(rules_for_type(type))
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, m_base(m_position, { Card::width, Card::height })
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{
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VERIFY(type != Type::Invalid);
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calculate_bounding_box();
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}
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void CardStack::clear()
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{
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m_stack.clear();
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m_stack_positions.clear();
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}
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void CardStack::paint(GUI::Painter& painter, Gfx::Color background_color)
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{
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auto draw_background_if_empty = [&]() {
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size_t number_of_moving_cards = 0;
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for (auto const& card : m_stack)
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number_of_moving_cards += card.is_moving() ? 1 : 0;
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if (m_covered_stack && !m_covered_stack->is_empty())
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return false;
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if (!is_empty() && (m_stack.size() != number_of_moving_cards))
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return false;
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painter.fill_rect_with_rounded_corners(m_base, background_color.darkened(0.5), Card::card_radius);
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painter.fill_rect_with_rounded_corners(m_base.shrunken(2, 2), background_color, Card::card_radius - 1);
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return true;
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};
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switch (m_type) {
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case Type::Stock:
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if (draw_background_if_empty()) {
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painter.fill_rect(m_base.shrunken(Card::width / 4, Card::height / 4), background_color.lightened(1.5));
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painter.fill_rect(m_base.shrunken(Card::width / 2, Card::height / 2), background_color);
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}
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break;
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case Type::Foundation:
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if (draw_background_if_empty()) {
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for (int y = 0; y < (m_base.height() - 4) / 8; ++y) {
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for (int x = 0; x < (m_base.width() - 4) / 5; ++x) {
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painter.draw_rect({ 4 + m_base.x() + x * 5, 4 + m_base.y() + y * 8, 1, 1 }, background_color.darkened(0.5));
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}
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}
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}
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break;
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case Type::Play:
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case Type::Normal:
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draw_background_if_empty();
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break;
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case Type::Waste:
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break;
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default:
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VERIFY_NOT_REACHED();
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}
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if (is_empty())
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return;
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if (m_rules.shift_x == 0 && m_rules.shift_y == 0) {
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auto& card = peek();
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card.paint(painter);
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return;
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}
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for (auto& card : m_stack) {
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if (!card.is_moving())
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card.clear_and_paint(painter, Gfx::Color::Transparent);
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}
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}
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void CardStack::rebound_cards()
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{
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VERIFY(m_stack_positions.size() == m_stack.size());
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size_t card_index = 0;
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for (auto& card : m_stack)
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card.set_position(m_stack_positions.at(card_index++));
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}
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void CardStack::add_all_grabbed_cards(Gfx::IntPoint click_location, NonnullRefPtrVector<Card>& grabbed, MovementRule movement_rule)
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{
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VERIFY(grabbed.is_empty());
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if (m_type != Type::Normal) {
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auto& top_card = peek();
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if (top_card.rect().contains(click_location)) {
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top_card.set_moving(true);
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grabbed.append(top_card);
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}
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return;
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}
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RefPtr<Card> last_intersect;
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for (auto& card : m_stack) {
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if (card.rect().contains(click_location)) {
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if (card.is_upside_down())
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continue;
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last_intersect = card;
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} else if (!last_intersect.is_null()) {
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if (grabbed.is_empty()) {
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grabbed.append(*last_intersect);
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last_intersect->set_moving(true);
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}
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if (card.is_upside_down()) {
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grabbed.clear();
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return;
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}
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card.set_moving(true);
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grabbed.append(card);
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}
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}
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if (grabbed.is_empty() && !last_intersect.is_null()) {
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grabbed.append(*last_intersect);
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last_intersect->set_moving(true);
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}
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// verify valid stack
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bool valid_stack = true;
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uint8_t last_value;
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Color last_color;
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for (size_t i = 0; i < grabbed.size(); i++) {
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auto& card = grabbed.at(i);
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if (i != 0) {
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bool color_match;
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switch (movement_rule) {
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case MovementRule::Alternating:
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color_match = card.color() != last_color;
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break;
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case MovementRule::Same:
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color_match = card.color() == last_color;
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break;
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case MovementRule::Any:
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color_match = true;
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break;
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}
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if (!color_match || to_underlying(card.rank()) != last_value - 1) {
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valid_stack = false;
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break;
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}
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}
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last_value = to_underlying(card.rank());
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last_color = card.color();
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}
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if (!valid_stack) {
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for (auto& card : grabbed) {
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card.set_moving(false);
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}
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grabbed.clear();
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}
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}
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bool CardStack::is_allowed_to_push(Card const& card, size_t stack_size, MovementRule movement_rule) const
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{
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if (m_type == Type::Stock || m_type == Type::Waste || m_type == Type::Play)
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return false;
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if (m_type == Type::Normal && is_empty()) {
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// FIXME: proper solution for this
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if (movement_rule == MovementRule::Alternating) {
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return card.rank() == Rank::King;
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}
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return true;
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}
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if (m_type == Type::Foundation && is_empty())
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return card.rank() == Rank::Ace;
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if (!is_empty()) {
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auto const& top_card = peek();
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if (top_card.is_upside_down())
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return false;
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if (m_type == Type::Foundation) {
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// Prevent player from dragging an entire stack of cards to the foundation stack
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if (stack_size > 1)
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return false;
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return top_card.suit() == card.suit() && m_stack.size() == to_underlying(card.rank());
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}
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if (m_type == Type::Normal) {
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bool color_match;
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switch (movement_rule) {
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case MovementRule::Alternating:
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color_match = card.color() != top_card.color();
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break;
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case MovementRule::Same:
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color_match = card.color() == top_card.color();
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break;
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case MovementRule::Any:
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color_match = true;
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break;
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}
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return color_match && to_underlying(top_card.rank()) == to_underlying(card.rank()) + 1;
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}
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VERIFY_NOT_REACHED();
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}
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return true;
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}
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bool CardStack::make_top_card_visible()
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{
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if (is_empty())
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return false;
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auto& top_card = peek();
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if (top_card.is_upside_down()) {
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top_card.set_upside_down(false);
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return true;
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}
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return false;
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}
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void CardStack::push(NonnullRefPtr<Card> card)
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{
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auto top_most_position = m_stack_positions.is_empty() ? m_position : m_stack_positions.last();
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if (!m_stack.is_empty() && m_stack.size() % m_rules.step == 0) {
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if (peek().is_upside_down())
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top_most_position.translate_by(m_rules.shift_x, m_rules.shift_y_upside_down);
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else
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top_most_position.translate_by(m_rules.shift_x, m_rules.shift_y);
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}
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if (m_type == Type::Stock)
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card->set_upside_down(true);
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card->set_position(top_most_position);
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m_stack.append(card);
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m_stack_positions.append(top_most_position);
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calculate_bounding_box();
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}
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NonnullRefPtr<Card> CardStack::pop()
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{
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auto card = m_stack.take_last();
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calculate_bounding_box();
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if (m_type == Type::Stock)
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card->set_upside_down(false);
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m_stack_positions.take_last();
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return card;
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}
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void CardStack::move_to_stack(CardStack& stack)
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{
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while (!m_stack.is_empty()) {
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auto card = m_stack.take_first();
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m_stack_positions.take_first();
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stack.push(move(card));
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}
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calculate_bounding_box();
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}
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void CardStack::calculate_bounding_box()
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{
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m_bounding_box = Gfx::IntRect(m_position, { Card::width, Card::height });
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if (m_stack.is_empty())
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return;
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uint16_t width = 0;
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uint16_t height = 0;
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size_t card_position = 0;
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for (auto& card : m_stack) {
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if (card_position % m_rules.step == 0 && card_position != 0) {
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if (card.is_upside_down()) {
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width += m_rules.shift_x;
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height += m_rules.shift_y_upside_down;
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} else {
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width += m_rules.shift_x;
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height += m_rules.shift_y;
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}
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}
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++card_position;
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}
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m_bounding_box.set_size(Card::width + width, Card::height + height);
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}
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}
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