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acaea77c-5a29-445e-b9c8-d823b58deb98
public static void main(String[] args) { Disruptor<CalculateNumbersEvent> disruptor = new Disruptor<CalculateNumbersEvent>(CalculateNumbersEvent.EVENT_FACTORY, createExecutor(), new SingleThreadedClaimStrategy(RING_SIZE), new SleepingWaitStrategy()); disruptor.handleEventsWith(new FactorialCalculator(), new FibonacciCalculator()) .then(new HexRepresentationCalculator(), new BinaryRepresentationCalculator()) .then(new EventOutputHandler()); RingBuffer<CalculateNumbersEvent> ringBuffer = disruptor.start(); // Publishers claim events in sequence long sequence = ringBuffer.next(); CalculateNumbersEvent event = ringBuffer.get(sequence); event.setValue(5); // make the event available to EventProcessors ringBuffer.publish(sequence); disruptor.publishEvent(new EventTranslator<CalculateNumbersEvent>() { @Override public void translateTo(CalculateNumbersEvent event, long sequence) { event.setFired(new Date()); } }); }
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@Override public void translateTo(CalculateNumbersEvent event, long sequence) { event.setFired(new Date()); }
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private static Executor createExecutor() { return Executors.newSingleThreadExecutor(); }
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public long getValue() { return value; }
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public void setValue(final long value) { this.value = value; }
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public ValueEvent newInstance() { return new ValueEvent(); }
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@Override public void onEvent(CalculateNumbersEvent event, long sequence, boolean endOfBatch) throws Exception { long value = event.getValue(); long result = factorial(value); event.setFactorialValue(new CalculatedNumber(result)); }
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private long factorial(long n) { long result = 1; for(int i = 2; i < n; i++){ result *= i; } return result; }
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public Date getFired() { return fired; }
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public void setFired(Date fired) { this.fired = fired; }
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public long getValue() { return value; }
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public void setValue(long value) { this.value = value; }
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public CalculatedNumber getFibonacciValue() { return fibonacciValue; }
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public void setFibonacciValue(CalculatedNumber fibonacciValue) { this.fibonacciValue = fibonacciValue; }
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public CalculatedNumber getFactorialValue() { return factorialValue; }
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public void setFactorialValue(CalculatedNumber factorialValue) { this.factorialValue = factorialValue; }
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public CalculateNumbersEvent newInstance() { return new CalculateNumbersEvent(); }
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@Override public String toString() { return "CalculateNumbersEvent{" + "fired=" + fired + ", value=" + value + ", fibonacciValue=" + fibonacciValue + ", factorialValue=" + factorialValue + '}'; }
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@Override public void onEvent(CalculateNumbersEvent event, long sequence, boolean endOfBatch) throws Exception { System.out.println(event.toString()); }
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@Override public void onEvent(CalculateNumbersEvent event, long sequence, boolean endOfBatch) throws Exception { long value = event.getValue(); long result = fibonacci(value); event.setFibonacciValue(new CalculatedNumber(result)); }
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private long fibonacci(long n) { if (n <= 1) return n; else return fibonacci(n - 1) + fibonacci(n - 2); }
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public CalculatedNumber(long value) { this.value = value; }
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public String getBinaryRepresentation() { return binaryRepresentation; }
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public void setBinaryRepresentation(String binaryRepresentation) { this.binaryRepresentation = binaryRepresentation; }
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public String getHexRepresentation() { return hexRepresentation; }
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public void setHexRepresentation(String hexRepresentation) { this.hexRepresentation = hexRepresentation; }
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public long getValue() { return value; }
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@Override public String toString() { return "CalculatedNumber{" + "binaryRepresentation='" + binaryRepresentation + '\'' + ", hexRepresentation='" + hexRepresentation + '\'' + '}'; }
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public int closer(int i, int target, int step){ if(Math.abs(target-i) <= step ){ return target; } if(i < target){ return i + step; } else if(i > target){ return i - step; } else { return target; } }
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public UtilTest() { }
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@Test public void testDrawString() { assertTrue(closer(10, 5, 1) == 9); assertTrue(closer(10, 5, 2) == 8); assertTrue(closer(-10, 5, 1) == -9); assertTrue(closer(-10, 5, 2) == -8); assertTrue(closer(1, 2, 5) == 2); assertTrue(closer(-1, 1, 1) == 0); assertTrue(closer(0, 0, 1) == 0); }
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public Player(int x, int y) { this.x = x; this.y = y; tex = tx.getTexture("assets/dude.png"); this.q = new Quad(x, y, tex); }
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public int[] getForce() { return force; }
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public void addForce(int x, int y) { this.force[0] += x; this.force[1] += y; }
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public void setDirection(int direction){ if(direction == LEFT){ this.tex = tx.getTexture("assets/dudeLeft.png"); } else { this.tex = tx.getTexture("assets/dude.png"); } }
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@Override public void draw() { q.setPos(x, y); q.setTexture(tex); q.draw(); }
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public int lock(int i, int min, int max){ if(i > max){ i = max; } else if(i < min){ i = min; } return i; }
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public int closer(int i, int target, int step){ if(Math.abs(target-i) <= step ){ return target; } if(i < target){ return i + step; } else if(i > target){ return i - step; } else { return target; } }
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public boolean isAirbourne(){ return force[1] > 0; }
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@Override public void tick(State gamestate) { this.force[0] = lock(this.force[0], -20, 20); this.force[1] = lock(this.force[1], -50, 50); // x if(this.force[0] > 0){ // moving in positive x this.x += this.force[0]; Entity xBlocker = gamestate.blockingEntity(this); if(xBlocker != null){ int borderInset = (int)(int)this.getBounds().getMinX()-x; this.x = (int)xBlocker.getBounds().getMinX()-(int)this.getBounds().getWidth()-borderInset; } } else if(this.force[0] < 0){ // moving in negative x this.x += this.force[0]; Entity xBlocker = gamestate.blockingEntity(this); if(xBlocker != null){ int borderInset = (int)this.getBounds().getMinX() - x; this.x = (int)xBlocker.getBounds().getMaxX() - borderInset; } } // y if(this.force[1] > 0){ this.y += this.force[1]; if(gamestate.blockingEntity(this) != null){ this.y -= this.force[1]; } } else if(this.force[1] < 0){ this.y += this.force[1]; Entity xBlocker = gamestate.blockingEntity(this); if(xBlocker != null){ this.y = (int)xBlocker.getBounds().getMaxY(); } if(gamestate.blockingEntity(this) != null){ this.y -= this.force[1]; } } // friction & gravity force[0] = closer(force[0], 0, 2); force[1] = closer(force[1], -40, 2); // bounding if(this.y <= 0){ this.y = 0; } }
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@Override public Rectangle getBounds() { return new Rectangle(x+15, y, 64-30, 57); }
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public int getX(){ return x; }
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public int getY(){ return y; }
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public Rectangle getBounds();
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public void tick(State gamestate);
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public void draw();
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public Mock(int x, int y) { this.x = x; this.y = y; tex = tx.getTexture("assets/sand.png"); this.q = new Quad(x, y, tex); }
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@Override public void draw() { q.draw(); }
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@Override public void tick(State gamestate) { }
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@Override public Rectangle getBounds() { return new Rectangle(x, y, 64, 64); }
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public void draw();
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public Quad(float x, float y, Texture tex){ this.x = x; this.y = y; this.tex = tex; }
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public void setPos(int x, int y){ this.x = x; this.y = y; }
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public void setTexture(Texture t){ this.tex = t; }
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@Override public void draw(){ if(this.tex != null){ tex.bind(); } GL11.glPushMatrix(); GL11.glTranslatef(x, y, 0); GL11.glBegin(GL11.GL_QUADS); GL11.glTexCoord2f(0, 1); GL11.glVertex2f(0, 0); GL11.glTexCoord2f(1, 1); GL11.glVertex2f(64, 0); GL11.glTexCoord2f(1, 0); GL11.glVertex2f(64, 64); GL11.glTexCoord2f(0, 0); GL11.glVertex2f(0, 64); GL11.glEnd(); GL11.glPopMatrix(); }
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public IsoGrid(){ TextureLoader tx = new TextureLoader(); Texture testTex = tx.getTexture("assets/iso_grass.png"); Texture testTex2 = tx.getTexture("assets/iso_grass2.png"); Texture flowers = tx.getTexture("assets/iso_grass3.png"); Texture flower = tx.getTexture("assets/iso_grass4.png"); Texture mushroom = tx.getTexture("assets/iso_grass5.png"); Texture clump = tx.getTexture("assets/iso_grass6.png"); Texture tex = null; for(int y = 0; y < 50; y++){ for(int x = 0; x < 20; x++){ if(rnd.nextInt(100) > 98 ){ if(rnd.nextInt(100) > 70){ tex = mushroom; } else { tex = flowers; } } else if(rnd.nextInt(100) > 95 ){ if(rnd.nextInt(100) > 70){ tex = clump; } else { tex = flower; } } else if(rnd.nextInt(100) > 60 ){ tex = testTex2; } else { tex = testTex; } if(y % 2 == 0.0){ Drawable q = new IsoQuad(x*64, (y*16), tex); pipe.add(q); } else { Drawable q = new IsoQuad((x*64)+32, (y*16), tex); pipe.add(q); } } } }
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@Override public void draw() { for(Drawable d : pipe){ d.draw(); } }
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public static void drawString(int x, int y, String text){ int tilesize = 16; for(int i = 0; i < text.length(); ++i){ String character = "" + text.charAt(i); TextTile tile = alphabetmap.get(character.toUpperCase()); if(tile == null){ tile = alphabetmap.get("?"); } tile.setPosition(i * tilesize, y); tile.draw(); } }
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public TextTile(int row, int col, Texture t){ this.x = 0; this.y = 0; this.row = row; this.col = col; this.tex = t; }
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public void setPosition(int x, int y){ this.x = x; this.y = y; }
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@Override public void draw(){ if(this.tex != null){ tex.bind(); } GL11.glPushMatrix(); GL11.glTranslatef(x, y, 0); GL11.glBegin(GL11.GL_QUADS); float dist = 1f / numtiles; float tileSize=16f; GL11.glTexCoord2f(col*dist, dist*(row+1)); GL11.glVertex2f(0, 0); GL11.glTexCoord2f(dist+(col*dist), dist*(row+1)); GL11.glVertex2f(tileSize, 0); GL11.glTexCoord2f(dist+(col*dist), dist*row); GL11.glVertex2f(tileSize, tileSize); GL11.glTexCoord2f(col*dist, dist*row); GL11.glVertex2f(0, tileSize); GL11.glEnd(); GL11.glPopMatrix(); }
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public IsoQuad(float x, float y, Texture tex){ this.x = x; this.y = y; this.tex = tex; }
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public void draw(){ if(this.tex != null){ tex.bind(); } GL11.glPushMatrix(); GL11.glTranslatef(x, y, 0); GL11.glBegin(GL11.GL_QUADS); GL11.glTexCoord2f(0, 1); GL11.glVertex2f(0, 0); GL11.glTexCoord2f(1, 1); GL11.glVertex2f(64, 0); GL11.glTexCoord2f(1, 0); GL11.glVertex2f(64, 32); GL11.glTexCoord2f(0, 0); GL11.glVertex2f(0, 32); GL11.glEnd(); GL11.glPopMatrix(); }
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public static boolean isIn(Rectangle r, int pointX, int pointY){ return r.contains(pointX, pointY); }
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public Texture(int target, int textureID) { this.target = target; this.textureID = textureID; }
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public void bind() { if(currentlyBoundTexture != textureID){ glBindTexture(target, textureID); currentlyBoundTexture = textureID; } }
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public void setHeight(int height) { this.height = height; setHeight(); }
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public void setWidth(int width) { this.width = width; setWidth(); }
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public int getImageHeight() { return height; }
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public int getImageWidth() { return width; }
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public float getHeight() { return heightRatio; }
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public float getWidth() { return widthRatio; }
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public void setTextureHeight(int texHeight) { this.texHeight = texHeight; setHeight(); }
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public void setTextureWidth(int texWidth) { this.texWidth = texWidth; setWidth(); }
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private void setHeight() { if (texHeight != 0) { heightRatio = ((float) height) / texHeight; } }
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private void setWidth() { if (texWidth != 0) { widthRatio = ((float) width) / texWidth; } }
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public Engine(){ try { Display.setDisplayMode(new DisplayMode(800,600)); Display.create(); GL11.glMatrixMode(GL11.GL_PROJECTION); GL11.glLoadIdentity(); GL11.glOrtho(0, 800, 0, 600, 1, -1); GL11.glMatrixMode(GL11.GL_MODELVIEW); } catch (LWJGLException e) { throw new RuntimeException(e); } }
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public void start() { GL11.glEnable(GL11.GL_TEXTURE_2D); GL11.glDisable(GL11.GL_DEPTH_TEST); GL11.glDisable(GL11.GL_LIGHTING); GL11.glEnable(GL11.GL_BLEND); GL11.glBlendFunc(GL11.GL_SRC_ALPHA, GL11.GL_ONE_MINUS_SRC_ALPHA); // init gameState.setPlayer(new Player(0, 0)); gameState.getEntities().add(new Mock(200, 0)); // game loop while (!Display.isCloseRequested()) { Date d = new Date(); long startTime = d.getTime(); draw(); update(); handleInput(); d = new Date(); long endTime = d.getTime(); try{ Thread.sleep(33 - (endTime-startTime)); } catch(Exception e){ } } Display.destroy(); }
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private void update(){ for(Entity e : gameState.getEntities()){ e.tick(gameState); } }
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private void draw(){ // Clear the screen and depth buffer GL11.glClear(GL11.GL_COLOR_BUFFER_BIT | GL11.GL_DEPTH_BUFFER_BIT); GL11.glMatrixMode(GL11.GL_MODELVIEW); GL11.glLoadIdentity(); GL11.glScalef(scale, scale, scale); GL11.glTranslatef(-camerax, -cameray, 0); // draw shit here for(Entity e : gameState.getEntities()){ e.draw(); } primitives.Util.drawString(10, 560, "pos " + gameState.getPlayer().getX() + " " + gameState.getPlayer().getY()); primitives.Util.drawString(10, 540, "force " + gameState.getPlayer().getForce()[0] + " " + gameState.getPlayer().getForce()[1]); Display.update(); }
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public void handleInput(){ // mouse stuff apparently if(Mouse.isButtonDown(0)){ System.out.println(String.format("Screen: %s/%s", Mouse.getX(), Mouse.getY())); System.out.println(String.format("World : %s/%s", Mouse.getX()+camerax, Mouse.getY()+cameray)); gameState.getEntities().add(new Mock(Mouse.getX(), Mouse.getY())); } // handle movement keys float increment = 7.0f; if (Keyboard.isKeyDown(Keyboard.KEY_LEFT)) { // todo camerax -= increment; } if (Keyboard.isKeyDown(Keyboard.KEY_RIGHT)) { camerax += increment; } if (Keyboard.isKeyDown(Keyboard.KEY_DOWN)) { cameray -= increment; } if (Keyboard.isKeyDown(Keyboard.KEY_UP)) { cameray += increment; } if (Keyboard.isKeyDown(Keyboard.KEY_Q)) { scale -= 0.1; } else if (Keyboard.isKeyDown(Keyboard.KEY_E)) { scale += 0.1; } if (Keyboard.isKeyDown(Keyboard.KEY_C )) { System.out.println(String.format("Mouse: %s/%s", Mouse.getX(), Mouse.getY())); System.out.println(String.format("Camera: %s/%s", camerax, cameray)); } if (Keyboard.isKeyDown(Keyboard.KEY_SPACE) && gameState.getPlayer().isAirbourne() == false) { gameState.getPlayer().addForce(0, 20); } if (Keyboard.isKeyDown(Keyboard.KEY_D )) { gameState.getPlayer().setDirection(Player.RIGHT); gameState.getPlayer().addForce(3, 0); } if (Keyboard.isKeyDown(Keyboard.KEY_A)) { gameState.getPlayer().setDirection(Player.LEFT); gameState.getPlayer().addForce(-8, 0); } }
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public State() { }
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public TextureLoader getLoader() { return loader; }
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public List<Entity> getEntities() { return entities; }
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public void setPlayer(Player p){ this.player = p; this.entities.add(p); }
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public Player getPlayer(){ return this.player; }
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public boolean blocking(Entity a){ for(Entity ent : entities){ if(a != ent && a.getBounds().intersects(ent.getBounds())){ return true; } } return false; }
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public Entity blockingEntity(Entity a){ for(Entity ent : entities){ if(a != ent && a.getBounds().intersects(ent.getBounds())){ return ent; } } return null; }
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public static void main(String[] args) { Engine e = new Engine(); e.start(); }
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public TextureLoader() { glAlphaColorModel = new ComponentColorModel(ColorSpace.getInstance(ColorSpace.CS_sRGB), new int[] {8,8,8,8}, true, false, ComponentColorModel.TRANSLUCENT, DataBuffer.TYPE_BYTE); glColorModel = new ComponentColorModel(ColorSpace.getInstance(ColorSpace.CS_sRGB), new int[] {8,8,8,0}, false, false, ComponentColorModel.OPAQUE, DataBuffer.TYPE_BYTE); }
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private int createTextureID() { glGenTextures(textureIDBuffer); return textureIDBuffer.get(0); }
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public Texture getTexture(String resourceName){ Texture tex = table.get(resourceName); if (tex != null) { return tex; } try{ tex = getTexture(resourceName, GL_TEXTURE_2D, GL_RGBA, GL_LINEAR, GL_LINEAR); } catch(Exception e){ throw new RuntimeException(e); } table.put(resourceName,tex); return tex; }
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public Texture getTexture(String resourceName, int target, int dstPixelFormat, int minFilter, int magFilter) throws IOException { int srcPixelFormat; // create the texture ID for this texture int textureID = createTextureID(); Texture texture = new Texture(target,textureID); // bind this texture glBindTexture(target, textureID); BufferedImage bufferedImage = loadImage(resourceName); texture.setWidth(bufferedImage.getWidth()); texture.setHeight(bufferedImage.getHeight()); if (bufferedImage.getColorModel().hasAlpha()) { srcPixelFormat = GL_RGBA; } else { srcPixelFormat = GL_RGB; } // convert that image into a byte buffer of texture data ByteBuffer textureBuffer = convertImageData(bufferedImage,texture); if (target == GL_TEXTURE_2D) { glTexParameteri(target, GL_TEXTURE_MIN_FILTER, minFilter); glTexParameteri(target, GL_TEXTURE_MAG_FILTER, magFilter); } // produce a texture from the byte buffer glTexImage2D(target, 0, dstPixelFormat, get2Fold(bufferedImage.getWidth()), get2Fold(bufferedImage.getHeight()), 0, srcPixelFormat, GL_UNSIGNED_BYTE, textureBuffer ); return texture; }
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private static int get2Fold(int fold) { int ret = 2; while (ret < fold) { ret *= 2; } return ret; }
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private ByteBuffer convertImageData(BufferedImage bufferedImage,Texture texture) { ByteBuffer imageBuffer; WritableRaster raster; BufferedImage texImage; int texWidth = 2; int texHeight = 2; // find the closest power of 2 for the width and height // of the produced texture while (texWidth < bufferedImage.getWidth()) { texWidth *= 2; } while (texHeight < bufferedImage.getHeight()) { texHeight *= 2; } texture.setTextureHeight(texHeight); texture.setTextureWidth(texWidth); // create a raster that can be used by OpenGL as a source // for a texture if (bufferedImage.getColorModel().hasAlpha()) { raster = Raster.createInterleavedRaster(DataBuffer.TYPE_BYTE,texWidth,texHeight,4,null); texImage = new BufferedImage(glAlphaColorModel,raster,false,new Hashtable()); } else { raster = Raster.createInterleavedRaster(DataBuffer.TYPE_BYTE,texWidth,texHeight,3,null); texImage = new BufferedImage(glColorModel,raster,false,new Hashtable()); } // copy the source image into the produced image Graphics g = texImage.getGraphics(); g.setColor(new Color(0f,0f,0f,0f)); g.fillRect(0,0,texWidth,texHeight); g.drawImage(bufferedImage,0,0,null); // build a byte buffer from the temporary image // that be used by OpenGL to produce a texture. byte[] data = ((DataBufferByte) texImage.getRaster().getDataBuffer()).getData(); imageBuffer = ByteBuffer.allocateDirect(data.length); imageBuffer.order(ByteOrder.nativeOrder()); imageBuffer.put(data, 0, data.length); imageBuffer.flip(); return imageBuffer; }
fee8daaa-60ad-43cc-ae00-c1b71ae0f80a
private BufferedImage loadImage(String ref) throws IOException { URL url = TextureLoader.class.getClassLoader().getResource(ref); if (url == null) { throw new IOException("Cannot find: " + ref); } Image img = new ImageIcon(url).getImage(); BufferedImage bufferedImage = new BufferedImage(img.getWidth(null), img.getHeight(null), BufferedImage.TYPE_INT_ARGB); Graphics g = bufferedImage.getGraphics(); g.drawImage(img, 0, 0, null); g.dispose(); return bufferedImage; }
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public ListOfTasks() { taskList = new ArrayList<Task>(); }
7da66d0e-4fa6-4435-8c66-25c79780c175
public ArrayList<Task> getTaskList() { return taskList; }
2f9daaa5-f6bd-40ff-a480-61e09b0ba9db
public void addTask(Task newTask) { taskList.add(newTask); }
f2ceaae4-37a2-45a0-a98f-6c078fad6c59
public void removeTask(Task task) { taskList.remove(task); }