we can load polyos in the app now
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@@ -16,6 +16,10 @@ GamePiecesAppMenu::GamePiecesAppMenu(std::shared_ptr<MenuStack> menuStack, std::
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for (int i = 1; i <= this->settings->getMaximumPiecesSize(); i++) {
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this->playerCursor.addRow(i + 1, this->settings->getMenu().readPiecesList().getNumberOfPieces(i) + 4);
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}
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if (this->settings->getMaximumPiecesSize() < GENERATED_PIECES_SIZE) {
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this->playerCursor.addRow(this->settings->getMaximumPiecesSize() + 2, 1);
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}
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}
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void GamePiecesAppMenu::computeFrame() {
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@@ -30,7 +34,20 @@ void GamePiecesAppMenu::computeFrame() {
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if (this->playerCursor.getPosition().y == 0) {
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this->menuStack->push(std::make_shared<GameDistributionAppMenu>(this->menuStack, this->settings, this->renderWindow));
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}
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if (this->playerCursor.getPosition().y > 1) {
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if (this->playerCursor.getPosition().y == (this->settings->getMaximumPiecesSize() + 2)) {
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int newMaxSize = this->settings->getMaximumPiecesSize() + 1;
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this->settings->loadPieces(newMaxSize);
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this->playerCursor.removeRow(newMaxSize + 1);
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this->playerCursor.addRow(newMaxSize + 1, this->settings->getMenu().readPiecesList().getNumberOfPieces(newMaxSize) + 4);
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this->playerCursor.goToPosition({0u, newMaxSize + 1u});
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if (newMaxSize < GENERATED_PIECES_SIZE) {
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this->playerCursor.addRow(newMaxSize + 2, 1);
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}
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}
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else if (this->playerCursor.getPosition().y > 1) {
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if (this->playerCursor.getPosition().x >= 4) {
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this->settings->selectPieces(createSinglePieceType(this->playerCursor.getPosition().y - 1), this->playerCursor.getPosition().x - 4);
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}
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@@ -78,7 +95,8 @@ void GamePiecesAppMenu::drawFrame() const {
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this->drawSelectedPiecesRow(15.f);
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bool drawFromFirstElem = (this->playerCursor.getPosition().y == 1);
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int firstElem = std::clamp(((int) this->playerCursor.getPosition().y) - 2, 1, this->settings->getMaximumPiecesSize() - 2);
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bool addExtraLine = (this->settings->getMaximumPiecesSize() < GENERATED_PIECES_SIZE);
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int firstElem = std::clamp(((int) this->playerCursor.getPosition().y) - 2, 1, this->settings->getMaximumPiecesSize() - 2 + (addExtraLine ? 1 : 0));
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this->drawRow(firstElem, 25.f, drawFromFirstElem);
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this->drawRow(firstElem + 1, 35.f, drawFromFirstElem);
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this->drawRow(firstElem + 2, 45.f, drawFromFirstElem);
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@@ -140,31 +158,57 @@ void GamePiecesAppMenu::drawSelectedPiecesRow(float yPos) const {
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}
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void GamePiecesAppMenu::drawRow(int piecesSize, float yPos, bool drawFromFirstElem) const {
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int numberOfPieces = this->settings->getMenu().readPiecesList().getNumberOfPieces(piecesSize);
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int firstElem = (drawFromFirstElem) ? -4 : std::max(((int) this->playerCursor.getPosition().x) - 7, -4);
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sf::Text text(this->pressStartFont, "", this->settings->getWindowSizeMultiplier());
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text.setFillColor({0, 0, 0});
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text.setOutlineColor({255, 255, 255});
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this->placeText(text, {}, "SIZE " + std::to_string(piecesSize), 1.f, yPos, {});
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for (int i = 0; i < 7; i++) {
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if (i + firstElem >= numberOfPieces) return;
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if ((i + firstElem) < 0) {
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switch (i + firstElem) {
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case -4 : {this->placeText(text, this->playerCursor, "ALL", 10.f + (i * 10.f), yPos, sf::Vector2u{0, piecesSize + 1u}); break;}
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case -3 : {this->placeText(text, this->playerCursor, "CONVEX", 10.f + (i * 10.f), yPos, sf::Vector2u{1, piecesSize + 1u}); break;}
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case -2 : {this->placeText(text, this->playerCursor, "HOLELESS", 10.f + (i * 10.f), yPos, sf::Vector2u{2, piecesSize + 1u}); break;}
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case -1 : {this->placeText(text, this->playerCursor, "OTHER", 10.f + (i * 10.f), yPos, sf::Vector2u{3, piecesSize + 1u}); break;}
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}
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if (piecesSize > this->settings->getMaximumPiecesSize()) {
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sf::Text text(this->pressStartFont, "", this->settings->getWindowSizeMultiplier() * 2);
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text.setOutlineThickness(this->settings->getWindowSizeMultiplier() / 2);
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if (this->playerCursor.getPosition().y == (piecesSize + 1)) {
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text.setOutlineColor({255, 255, 255});
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}
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else {
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const Piece& piece = this->settings->getMenu().readPiecesList().lookAtPiece({piecesSize, firstElem + i});
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int cellSize = (8 * this->settings->getWindowSizeMultiplier()) / (piece.getLength());
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sf::FloatRect piecePosition(sf::Vector2f(10.f + (i * 10.f), yPos - 4.f) * (float) this->settings->getWindowSizeMultiplier(), sf::Vector2f(8 , 8) * (float) this->settings->getWindowSizeMultiplier());
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this->drawPiece(piece, cellSize, piecePosition, this->playerCursor.getPosition() == sf::Vector2u{i + firstElem + 4u, piecesSize + 1u});
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text.setOutlineColor({0, 0, 0});
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}
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std::string sizeString = "LOAD SIZE " + std::to_string(piecesSize) + "? ";
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if (piecesSize <= 10) {
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text.setFillColor({0, 255, 0});
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this->placeText(text, {}, sizeString + "(LOW LOAD TIME)", 1.f, yPos, {});
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}
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else if (piecesSize <= 13) {
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text.setFillColor({255, 255, 0});
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this->placeText(text, {}, sizeString + "(MEDIUM LOAD TIME)", 1.f, yPos, {});
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}
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else {
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text.setFillColor({255, 0, 0});
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this->placeText(text, {}, sizeString + "(LONG LOAD TIME)", 1.f, yPos, {});
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}
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}
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else {
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int numberOfPieces = this->settings->getMenu().readPiecesList().getNumberOfPieces(piecesSize);
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int firstElem = (drawFromFirstElem) ? -4 : std::max(((int) this->playerCursor.getPosition().x) - 7, -4);
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sf::Text text(this->pressStartFont, "", this->settings->getWindowSizeMultiplier());
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text.setFillColor({0, 0, 0});
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text.setOutlineColor({255, 255, 255});
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this->placeText(text, {}, "SIZE " + std::to_string(piecesSize), 1.f, yPos, {});
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for (int i = 0; i < 7; i++) {
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if (i + firstElem >= numberOfPieces) return;
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if ((i + firstElem) < 0) {
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switch (i + firstElem) {
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case -4 : {this->placeText(text, this->playerCursor, "ALL", 10.f + (i * 10.f), yPos, sf::Vector2u{0, piecesSize + 1u}); break;}
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case -3 : {this->placeText(text, this->playerCursor, "CONVEX", 10.f + (i * 10.f), yPos, sf::Vector2u{1, piecesSize + 1u}); break;}
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case -2 : {this->placeText(text, this->playerCursor, "HOLELESS", 10.f + (i * 10.f), yPos, sf::Vector2u{2, piecesSize + 1u}); break;}
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case -1 : {this->placeText(text, this->playerCursor, "OTHER", 10.f + (i * 10.f), yPos, sf::Vector2u{3, piecesSize + 1u}); break;}
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}
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}
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else {
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const Piece& piece = this->settings->getMenu().readPiecesList().lookAtPiece({piecesSize, firstElem + i});
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int cellSize = (8 * this->settings->getWindowSizeMultiplier()) / (piece.getLength());
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sf::FloatRect piecePosition(sf::Vector2f(10.f + (i * 10.f), yPos - 4.f) * (float) this->settings->getWindowSizeMultiplier(), sf::Vector2f(8 , 8) * (float) this->settings->getWindowSizeMultiplier());
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this->drawPiece(piece, cellSize, piecePosition, this->playerCursor.getPosition() == sf::Vector2u{i + firstElem + 4u, piecesSize + 1u});
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}
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}
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}
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}
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@@ -12,9 +12,9 @@
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StartUpAppMenu::StartUpAppMenu(std::shared_ptr<MenuStack> menuStack, std::shared_ptr<Settings> settings, std::shared_ptr<sf::RenderWindow> renderWindow) :
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AppMenu(menuStack, settings, renderWindow),
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playerCursor({LOADED_PIECES_SIZE + 1}) {
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playerCursor({GENERATED_PIECES_SIZE + 1}) {
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this->playerCursor.goToPosition({(unsigned int) std::clamp(this->settings->getMaximumPiecesSize(), MINIMUM_PIECES_SIZE, LOADED_PIECES_SIZE), 0u});
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this->playerCursor.goToPosition({(unsigned int) std::clamp(this->settings->getMaximumPiecesSize(), MINIMUM_PIECES_SIZE, GENERATED_PIECES_SIZE), 0u});
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}
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void StartUpAppMenu::computeFrame() {
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@@ -23,7 +23,7 @@ void StartUpAppMenu::computeFrame() {
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if (this->playerCursor.getPosition().x < MINIMUM_PIECES_SIZE) {
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if (this->playerCursor.movedLeft()) {
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this->playerCursor.goToPosition({LOADED_PIECES_SIZE, 0});
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this->playerCursor.goToPosition({GENERATED_PIECES_SIZE, 0});
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}
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else {
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this->playerCursor.goToPosition({MINIMUM_PIECES_SIZE, 0});
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