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path: root/fly-tools/derive-background/pixel.c
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#include <wand/MagickWand.h>
#include <inttypes.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>

#define round(x)((x)>=0?(int)((x)+0.5):(int)((x)-0.5))
#define ThrowWandException(wand)  {  char *description; ExceptionType severity; description=MagickGetException(wand,&severity);  (void) fprintf(stderr,"%s %s %lu %s\n",GetMagickModule(),description);  description=(char *) MagickRelinquishMemory(description);  exit(-1); }


int main(int argc, char **argv ) {

  MagickWand *magick_wand;
  MagickWand *first;

  double green = 0;
  double red = 0;
  double blue = 0;


  int image = 0;

  int i = 0;
  int j = 0;
  int k = 0;
  int l = 0;

  int height = 0;
  int width = 0;
  int nImages = 0;

  MagickWandGenesis();
  first = NewMagickWand();
  // Check the height and width of the first image
  MagickReadImage(first, "Background.png");

  height =  MagickGetImageHeight(first);
  width =  MagickGetImageWidth(first);

  printf("%d %d \n", height, width);


  // Count how many images there are in the input file

  char fname[256];
  FILE *count = fopen( argv[1], "r");
  if(count != NULL) {  
    while((fgets(fname, sizeof(fname), count)) != NULL) {
      nImages++;
    }
    fclose(count);
  }

  printf("%d \n", nImages);
  //this will store the number of pixels in each row
  unsigned long number_wands; 

  char filename[256];
  char *temp;
  FILE *file = fopen ( argv[1], "r" );


  // initialize this crazy array.
  uint8_t ****array;
  int dim1 = nImages;
  int dim2 = height;
  int dim3 = width;
  int dim4 = 3;

  array = calloc(dim1, sizeof(array[0]));
  for(i = 0; i < dim1; i++)
  {
    array[i] = calloc(dim2, sizeof(array[0][0]));
    for(j = 0; j < dim2; j++)
    {
      array[i][j] = calloc(dim3, sizeof(array[0][0][0]));
      for(k = 0; k < dim3; k++)
      {
        array[i][j][k] = calloc(dim4, sizeof(array[0][0][0][0]));
      }
    }
  }

  if ( file != NULL ) {
    while ((fgets(filename, sizeof(filename), file)) != NULL ) {
      temp = strchr(filename, '\n');
      if (temp != NULL) *temp = '\0';

      magick_wand = NewMagickWand();
      MagickReadImage(magick_wand, filename);

       PixelIterator* iterator = NewPixelIterator(magick_wand);

       PixelWand **pixels = PixelGetNextIteratorRow(iterator,&number_wands);
       printf("Image number:%d Filename: %s \n", image, filename);
       for (i=0; pixels != (PixelWand **) NULL; i++) {
         for (j=0; j<number_wands; j++) {

           green = PixelGetGreen(*pixels);
           blue = PixelGetBlue(*pixels);
           red = PixelGetRed(*pixels);

       //    printf("write: %d %d %d \n", round(red*255), round(green*255), round(blue*255));
           array[image][i][j][0] = round(red*255);
           array[image][i][j][1] = round(green*255);
           array[image][i][j][2] = round(blue*255); 
         }
         PixelSyncIterator(iterator);
         pixels=PixelGetNextIteratorRow(iterator,&number_wands);
       }

       PixelSyncIterator(iterator);
       iterator=DestroyPixelIterator(iterator);
       ClearMagickWand(magick_wand);

       image++;
     }
     fclose ( file );
   }
   else {
     exit(0);
   }


   // Just prove that the index works, don't actually bother with it until we get a histogram function
   for (i = 0; i < nImages; i++) {
     printf("image %d \n ", i);
     for (j = 0; j < height; j++) {
       for (k = 0; k < width; k++) {
         //for (l = 0; l < 3; l++) {d
         //printf("print: %d %d %d %hhu %hhu %hhu \n", i, j, k, array[i][j][k][0], array[i][j][k][1], array[i][j][k][2]);
         // }
       }
     }
   }

  MagickWandTerminus();

  return 0;
}