forked from FOSS/BangleApps
tetris: major overhaul
Added score, levels, bugfixes and misc, inspired by NES tetrismaster
parent
daf7e745ec
commit
1a1b79d41b
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@ -2,3 +2,4 @@
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0.02: Better controls, implement game over.
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0.02: Better controls, implement game over.
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0.03: Implement mode and level selection screens.
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0.03: Implement mode and level selection screens.
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0.04: Bring back old controls as "swipe" in menu, exit with button press
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0.04: Bring back old controls as "swipe" in menu, exit with button press
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0.10: Major overhaul: added score, levels, bugfixes and misc, inspired by NES tetris
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@ -1,7 +1,7 @@
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{ "id": "tetris",
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{ "id": "tetris",
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"name": "Tetris",
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"name": "Tetris",
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"shortName":"Tetris",
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"shortName":"Tetris",
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"version":"0.04",
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"version":"0.10",
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"description": "Tetris",
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"description": "Tetris",
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"icon": "tetris.png",
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"icon": "tetris.png",
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"readme": "README.md",
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"readme": "README.md",
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@ -41,7 +41,7 @@ const oy = 8;
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2 .. accelerometer. 12 lines record.
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2 .. accelerometer. 12 lines record.
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3 .. altimeter
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3 .. altimeter
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*/
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*/
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var control = 0, level = 0;
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var control = 0, level = 0, lines = 0, score = 0;
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var alt_start = -9999; /* For altimeter control */
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var alt_start = -9999; /* For altimeter control */
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/* 0 .. menu
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/* 0 .. menu
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1 .. game
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1 .. game
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@ -77,7 +77,9 @@ function drawBoundingBox() {
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for (i=0; i<4; ++i) g.drawRect(ox-i-1, oy-i-1, ox+10*8+i, oy+20*8+i);
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for (i=0; i<4; ++i) g.drawRect(ox-i-1, oy-i-1, ox+10*8+i, oy+20*8+i);
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}
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}
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function drawTile (tile, n, x, y, qClear) {
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function drawTile(tile, n, x, y, qClear) {
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if (state != 1) // stops tile from being drawn on the game over screen
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return;
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if (qClear) g.setColor(0);
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if (qClear) g.setColor(0);
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else g.setColor(tcols[n].r, tcols[n].g, tcols[n].b);
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else g.setColor(tcols[n].r, tcols[n].g, tcols[n].b);
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for (i=0; i<tile.length; ++i)
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for (i=0; i<tile.length; ++i)
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@ -99,8 +101,25 @@ var ctn = Math.floor(Math.random()*7); // current tile number
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var ntn = Math.floor(Math.random()*7); // next tile number
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var ntn = Math.floor(Math.random()*7); // next tile number
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var ntr = Math.floor(Math.random()*4); // next tile rotation
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var ntr = Math.floor(Math.random()*4); // next tile rotation
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var ct = rotateTile(tiles[ctn], Math.floor(Math.random()*4)); // current tile (rotated)
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var ct = rotateTile(tiles[ctn], Math.floor(Math.random()*4)); // current tile (rotated)
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var dropInterval = 450;
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var dropInterval;
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var nlines = 0;
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function calculateSpeed() {
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let step = 500;
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if (level <= 6) // 200-500ms
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step = step - 50*level;
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else if (level <= 13) { // 25-175ms
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step = 200;
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step = step - 25*(level - 6);
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}
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else {
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step = 20; // usually limited by the hardware
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// levels 15+ are programmed to go faster by skipping lines
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}
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print(`level ${level}: drop interval ${step}ms`)
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if (control == 3)
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step = step*2;
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dropInterval = step;
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}
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function redrawPF(ly) {
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function redrawPF(ly) {
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for (y=0; y<=ly; ++y)
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for (y=0; y<=ly; ++y)
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@ -112,10 +131,23 @@ function redrawPF(ly) {
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}
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}
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function gameOver() {
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function gameOver() {
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state = 0;
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g.setColor(1, 1, 1).setFontAlign(0, 1, 0).setFont("Vector",22)
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g.setColor(1, 1, 1).setFontAlign(0, 1, 0).setFont("Vector",22)
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.drawString("Game Over", 176/2, 76);
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.drawString("Game Over", 176/2, 76);
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state = 0;
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E.showAlert("Game Over").then(selectGame, print);
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E.showAlert("Game Over").then(selectGame, print);
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lines = 0;
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score = 0;
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}
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function redrawStats(onlyScore) {
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g.setColor(0).fillRect(5, 30, 41, 60)
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.setColor(1, 1, 1).drawString(score.toString(), 22, 50);
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if (!onlyScore) {
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g.setColor(0).fillRect(5, 80, 41, 110)
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.setColor(1, 1, 1).drawString(level.toString(), 22, 100)
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.setColor(0).fillRect(5, 130, 41, 160)
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.setColor(1, 1, 1).drawString(lines.toString(), 22, 150);
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}
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}
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}
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function insertAndCheck() {
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function insertAndCheck() {
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@ -123,18 +155,41 @@ function insertAndCheck() {
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for (x=0; x<ct[y].length; ++x)
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for (x=0; x<ct[y].length; ++x)
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if (ct[y][x]>0) pf[py+y][px+x+1] = ctn+1;
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if (ct[y][x]>0) pf[py+y][px+x+1] = ctn+1;
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// check for full lines
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// check for full lines
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let clearCount = 0;
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for (y=19; y>0; y--) {
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for (y=19; y>0; y--) {
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var qFull = true;
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var qFull = true;
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for (x=1; x<11; ++x) qFull &= pf[y][x]>0;
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for (x=1; x<11; ++x) qFull &= pf[y][x]>0;
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if (qFull) {
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if (qFull) {
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nlines++;
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clearCount++;
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dropInterval -= 5;
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Bangle.buzz(30);
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for (ny=y; ny>0; ny--) pf[ny] = JSON.parse(JSON.stringify(pf[ny-1]));
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for (ny=y; ny>0; ny--) pf[ny] = JSON.parse(JSON.stringify(pf[ny-1]));
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redrawPF(y);
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redrawPF(y);
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g.setColor(0).fillRect(5, 30, 41, 80).setColor(1, 1, 1).drawString(nlines.toString(), 22, 50);
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}
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}
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}
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}
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if (clearCount) {
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lines += clearCount;
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let effectiveLevel = Math.max(level, 1);
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if (clearCount == 1) { // single
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score += 100 * effectiveLevel;
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Bangle.buzz(80, 0.5);
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}
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else if (clearCount == 2) { // double
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score += 300 * effectiveLevel;
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Bangle.buzz(80);
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}
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else if (clearCount == 3) { // triple
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score += 500 * effectiveLevel;
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Bangle.buzz(150);
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}
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else if (clearCount >= 4) { // tetris
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score += 800 * effectiveLevel;
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Bangle.buzz(300);
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}
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if (lines != 0 && lines % 10 == 0) {
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level++;
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calculateSpeed();
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}
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redrawStats();
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}
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// spawn new tile
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// spawn new tile
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px = 4; py = 0;
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px = 4; py = 0;
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ctn = ntn;
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ctn = ntn;
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@ -155,12 +210,27 @@ function moveOk(t, dx, dy) {
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return ok;
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return ok;
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}
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}
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function pauseGame() {
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print("Paused");
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state = 3;
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}
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function resumeGame() {
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print("Resumed");
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state = 1;
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}
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function gameStep() {
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function gameStep() {
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if (state != 1)
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if (state != 1)
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return;
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return;
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if (Date.now()-time > dropInterval) { // drop one step
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if (Date.now()-time > dropInterval) { // drop one step
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time = Date.now();
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time = Date.now();
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if (moveOk(ct, 0, 1)) {
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if (level >= 15 && moveOk(ct, 0, 2)) {
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// at level 15, pieces drop twile as quickly
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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py += 2;
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}
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else if (moveOk(ct, 0, 1)) {
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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py++;
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py++;
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}
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}
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@ -181,16 +251,18 @@ function rotate() {
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}
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}
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function move(x, y) {
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function move(x, y) {
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if (moveOk(ct, x, y)) {
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r = moveOk(ct, x, y);
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if (r) {
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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px += x;
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px += x;
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py += y;
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py += y;
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drawTile(ct, ctn, ox+px*8, oy+py*8, false);
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drawTile(ct, ctn, ox+px*8, oy+py*8, false);
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}
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}
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return r;
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}
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}
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function linear(x) {
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function linear(x) {
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print("Linear: ", x);
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//print("Linear: ", x);
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let now = px / 10;
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let now = px / 10;
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if (x < now-0.06)
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if (x < now-0.06)
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move(-1, 0);
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move(-1, 0);
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@ -200,28 +272,8 @@ function linear(x) {
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function newGame() {
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function newGame() {
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E.showMenu();
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E.showMenu();
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Bangle.setUI({mode : "custom", btn: () => load()});
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Bangle.setUI();
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if (control == 4) { // Swipe
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if (control == 2) {
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Bangle.on("touch", (e) => {
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t = rotateTile(ct, 3);
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if (moveOk(t, 0, 0)) {
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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ct = t;
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drawTile(ct, ctn, ox+px*8, oy+py*8, false);
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}
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});
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Bangle.on("swipe", (x,y) => {
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if (y<0) y = 0;
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if (moveOk(ct, x, y)) {
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drawTile(ct, ctn, ox+px*8, oy+py*8, true);
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px += x;
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py += y;
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drawTile(ct, ctn, ox+px*8, oy+py*8, false);
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}
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});
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} else { // control != 4
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if (control == 2) { // Tilt
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Bangle.on("accel", (e) => {
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Bangle.on("accel", (e) => {
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if (state != 1) return;
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if (state != 1) return;
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if (control != 2) return;
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if (control != 2) return;
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@ -229,7 +281,7 @@ function newGame() {
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linear((0.2-e.x) * 2.5);
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linear((0.2-e.x) * 2.5);
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});
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});
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}
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}
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if (control == 3) { // Move
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if (control == 3) {
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Bangle.setBarometerPower(true);
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Bangle.setBarometerPower(true);
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Bangle.on("pressure", (e) => {
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Bangle.on("pressure", (e) => {
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if (state != 1) return;
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if (state != 1) return;
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@ -238,7 +290,7 @@ function newGame() {
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if (alt_start == -9999)
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if (alt_start == -9999)
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alt_start = a;
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alt_start = a;
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a = a - alt_start;
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a = a - alt_start;
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print(e.altitude, a);
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//print(e.altitude, a);
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linear(a);
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linear(a);
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});
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});
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}
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}
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@ -256,11 +308,11 @@ function newGame() {
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if (e.x < h)
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if (e.x < h)
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rotate();
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rotate();
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else {
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else {
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let i = 0;
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while (move(0, 1)) {
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for (i=0; i<10; i++) {
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score++;
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move(0, 1);
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g.flip();
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g.flip();
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}
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}
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redrawStats(true);
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}
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}
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} else {
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} else {
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if (control == 1)
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if (control == 1)
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@ -273,51 +325,48 @@ function newGame() {
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move(1, 0);
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move(1, 0);
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}
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}
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});
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});
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}
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setWatch(() => {
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if (state == 1)
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pauseGame();
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else if (state == 3)
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resumeGame();
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}, BTN1, {repeat: true});
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initGame();
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initGame();
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drawGame();
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drawGame();
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state = 1;
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state = 1;
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var step = 450 - 50*level;
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calculateSpeed();
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if (control == 3)
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var gi = setInterval(gameStep, 20);
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step = step*2;
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dropInterval = step;
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var gi = setInterval(gameStep, 50);
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}
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}
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function drawGame() {
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function drawGame() {
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drawBoundingBox();
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drawBoundingBox();
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g.setColor(1, 1, 1).setFontAlign(0, 1, 0)
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g.setColor(1, 1, 1).setFontAlign(0, 1, 0)
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.setFont("6x15", 1).drawString("Lines", 22, 30)
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.setFont("6x15", 1).drawString("Score", 22, 30)
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.drawString("Level", 22, 80)
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.drawString("Lines", 22, 130)
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.drawString("Next", 176-22, 30);
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.drawString("Next", 176-22, 30);
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showNext(ntn, ntr);
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showNext(ntn, ntr);
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g.setColor(0).fillRect(5, 30, 41, 80)
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redrawStats();
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.setColor(1, 1, 1).drawString(nlines.toString(), 22, 50);
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}
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function selectLevel() {
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print("Level selection menu");
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var menu = {};
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menu["< Back"] = () => {selectGame();};
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menu[/*LANG*/"Level 1"] = () => { level = 0; selectGame(); };
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menu[/*LANG*/"Level 2"] = () => { level = 1; selectGame(); };
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menu[/*LANG*/"Level 3"] = () => { level = 2; selectGame(); };
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E.showMenu(menu);
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}
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}
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function selectGame() {
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function selectGame() {
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state = 0;
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state = 0;
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print("Game selection menu");
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print("Game selection menu");
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//for (let i = 0; i < 100000; i++) ;
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var menu = {};
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var menu = {};
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menu[/*LANG*/"Normal"] = () => { control = 0; newGame(); };
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menu["Normal"] = () => { control = 0; newGame(); };
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menu[/*LANG*/"Drag"] = () => { control = 1; newGame(); };
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menu["Drag"] = () => { control = 1; newGame(); };
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menu[/*LANG*/"Tilt"] = () => { control = 2; newGame(); };
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menu["Tilt"] = () => { control = 2; newGame(); };
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menu[/*LANG*/"Move"] = () => { control = 3; newGame(); };
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menu["Pressure"] = () => { control = 3; newGame(); };
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menu[/*LANG*/"Swipe"] = () => { control = 4; newGame(); };
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level = 1;
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menu[/*LANG*/"Level"] = () => { selectLevel(); };
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menu["Level"] = {
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value : 1,
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min : 0,
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max : 10,
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wrap : true,
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onchange : (l) => { level = l; }
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};
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E.showMenu(menu);
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E.showMenu(menu);
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}
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}
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