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I'm generating probability tables for one color appearing to the right of another. I have accomplished all of this. I store the tables in objects which are created for each color value. My problem is, that when I generate a new image, I'd like to create pixel 0, then make a weighted random decision for the color that will appear to the right. I think my problem is that I'm trying to read data from image I'm constructing, and write to it in the same loop. I'm not sure how processing deals with this, and I seem to be getting strange errors, often, many of my pixels are black. I believe all of my problems are occurring the third time I loop through all of the pixels (lines 60-78), and try to write pixels to the new image.

you can see in the output of println statement the colors that should be written to the new image.

Is there something I'm missing? This is the first time I've used classes and objects to code, so please forgive any clunkiness. Thanks in advance for any help anyone can offer.

PImage src;
PImage dstn;
HashMap library;
int counter;
color d = (0);
color seed = (0);
color ds = (0);

void setup() {
  library = new HashMap<Integer, Object>();
  size(200, 200);
  src = loadImage("sunflower.jpg");
  dstn = createImage(src.width, src.height, RGB);
  int acc = 0; 
  for (int y = 0; y < height; y++) {
    for (int x = 0; x < width; x++) {
      int loc = x + y*width;
      color d = src.get(x,y); // get pixel color at desired location
      if (library.containsKey(d)) {
      // Get the AColor object and increase the count
      // We access objects from the library via its key, the String
      AColor c = (AColor) library.get(d);
      c.count(); // touch the counter everytime the a color is read
      c.the_color(d); // add the color to the object
    } else { 
      // Otherwise make a new entry in library
      AColor c = new AColor(d);
      // And add to the library
      // put() takes two arguments, "key" and "value"
      // The key for us is the String and the value is the AColor object
      library.put(d, c);
      } // all colors are in library now

      AColor c = (AColor) library.get(d);
      if (x < width - 1 ) { //If statement to ensure null pixles are not added to transition matrix
        color z = src.get(x+1,y);
      } else { // this is a nasty shortcut that wraps the probability of the rightmost pixel to the leftmost pixel
        color z = src.get(x,y);

void draw() {
    for (int y = 0; y < height; y++) {
    for (int x = 0; x < width; x++) {
      color d = src.get(x,y);
      AColor c = (AColor) library.get(d);
      c.sort_matrix(); // add and construct all of the ArrayLists for each object
      println("first loop");  

    for (int y = 0; y < height; y++) {
    for (int x = 0; x < width; x++) {
      int loc1 = ((x + y*width));
      color seed = src.get(x,y);
      dstn.pixels[0] = seed; 
      color ds = src.get(x,y); // copy pixel 0 from src to dstn image
      AColor c = (AColor) library.get(ds);
      float chance; 
      int acc = 0;
      chance = random(1);
      float probAccum = (c.probs.get(acc));

      while (chance > probAccum) {
      probAccum = probAccum + (c.probs.get(acc));
      int colorToTheRight = c.colors.get(acc);
      dstn.pixels[loc1] = colorToTheRight; // <-If I put this outside of the while lopp, the image is more or less normal looking.

       println(acc + " " + c.colors.get(acc) + " , " + c.colors + " - " + c.probs + " Chance = " + chance +" -color should be" + (c.colors.get(acc)));
class AColor {
  float count;
  int theColor;
  int colorRight;
  int acc = 0; 
  int z;
  HashMap<Object, Integer> matrix = new HashMap<Object, Integer>();
  ArrayList<Float> probs;
  ArrayList<Integer> colors = new ArrayList<Integer>(); //an ArrayList is used here. Perhaps it would be better to use an Array and iterate over the hashmap to set the length

  AColor(int theColorTemp) {
    theColor = theColorTemp;
    count = 1;
  void the_color(int theColorTemp) {
    theColor = theColorTemp; 

  void count() {

  void access_matrix_right(int colorRightTemp) {

    colorRight = colorRightTemp;
    if (matrix.containsKey(colorRight)) { // if library has entry for current pixel
      int val = ((Integer) matrix.get(colorRight)).intValue(); //accumulator 
      matrix.put(colorRight, new Integer(val + 1));  // add 1 to
      else {
       matrix.put(colorRight,1); //adds entry & a value of 1 if entry does not exist

  void sort_matrix() {

    probs = new ArrayList<Float>();

    for (int i = 0; i <= colors.size()-1; i++) { //for number elements in list
      probs.add((matrix.get(colors.get(i))) / count); // add element in array probs (number of occurrances of a color on the right/ total pixels on right )
share|improve this question
If your goal is to create a probability table, why are you "generating a new image"? What are you actually trying to do? Your actual question is unclear. You also might want to try reformatting your code, it's a bit hard to read the way it is. – misha Oct 4 '11 at 19:15
I'd like to generate a new image based on the probability tables. The problem is, as im writing this new image, I am also reading from it, looking at the probability tables and then writing another pixel. The probability is not my problem, it is the reading and writing of the image simultaneously. – evanlivingston Oct 4 '11 at 20:28
Why are you reading and writing the image simultaneously? It is not necessary for the problem that you are solving. The generated image can be write-only. – misha Oct 5 '11 at 4:50

1 Answer 1

up vote 0 down vote accepted

Why not read all your pixels into a second image write to that, then write that back to the original one? wouldn't something like this work? (untested)

int numPixelsX = 500;
int numPixelsY = 500; 
PImage captureImage = createImage (numPixelsX,numPixelsY, ARGB);

void setup(){

void draw(){

    captureImage = pushPixels(captureImage);
    image(captureImage, 0, 0);

PImage pushPixels(PImage readImage){
    PImage writeImage = createImage(numPixelsX,numPixelsY,ARGB);
    writeImage = readImage();
    //do your stuff here from the read image to the write image
    return writeImage;
share|improve this answer

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