Exemplo n.º 1
0
int main(int argc, char **argv)
{
  int len;
  int NumResolution, numD_min;	/*   NumResolution : number of resolution                     */
  int Tile_arg;			/*   Tile_arg = 0 (not in argument) ou = 1 (in argument)      */
  int CSty;			/*   CSty : coding style                                      */
  int Prog_order;		/*   progression order (default LRCP)                         */
  char progression[4];
  int numpocs, numpocs_tile;	/*   Number of progression order change (POC) default 0       */
  int prcw_init[J2K_MAXRLVLS];	/*   Initialisation Precinct width                            */
  int prch_init[J2K_MAXRLVLS];	/*   Initialisation Precinct height                           */
  //int prcw_init, prch_init;                     /*   Initialisation precincts' size                           */
  int cblockw_init, cblockh_init;	/*   Initialisation codeblocks' size                          */
  int mode, value;		/*   Mode switch (cblk_style)                                 */
  int subsampling_dx, subsampling_dy;	/* subsampling value for dx and dy                    */
  int ROI_compno, ROI_shift;	/*   region of interrest                                      */
  int Dim[2];			/*   portion of the image coded                               */
  int TX0, TY0;			/*   tile off-set                                             */
  j2k_image_t img;
  j2k_cp_t cp, cp_init;		/*   cp_init is used to initialise in multiple tiles          */
  j2k_tcp_t *tcp, *tcp_init;	/*   tcp_init is used to initialise in multiple tile          */
  j2k_poc_t POC[32];		/*   POC : used in case of Progression order change           */
  j2k_poc_t *tcp_poc;
  j2k_tccp_t *tccp;
  
  int i, tileno, j;
  char *infile = 0;
  char *outfile = 0;
  char *index = 0;
  char *s, S1, S2, S3;
  int ir = 0;
  int res_spec = 0;		/*   For various precinct sizes specification                 */
  char sep;
  char *outbuf, *out;
  FILE *f;


  /* default value */
  /* ------------- */
  NumResolution = 6;
  CSty = 0;
  cblockw_init = 64;
  cblockh_init = 64;
  cp.tw = 1;
  cp.th = 1;
  cp.index_on = 0;
  Prog_order = 0;
  numpocs = 0;
  mode = 0;
  subsampling_dx = 1;
  subsampling_dy = 1;
  ROI_compno = -1;		/* no ROI */
  ROI_shift = 0;
  Dim[0] = 0;
  Dim[1] = 0;
  TX0 = 0;
  TY0 = 0;
  cp.comment = "Created by OpenJPEG version 0.9";
  cp.disto_alloc = 0;
  cp.fixed_alloc = 0;
  cp.fixed_quality = 0;		//add fixed_quality
  /* img.PPT=0; */

  Tile_arg = 0;
  cp_init.tcps = (j2k_tcp_t *) malloc(sizeof(j2k_tcp_t));	/* initialisation if only one tile */
  tcp_init = &cp_init.tcps[0];
  tcp_init->numlayers = 0;
  jpwl_cp_init(&jpwl_cp);

  cp.intermed_file=0;
  use_index=0;

  while (1) {
    int c = getopt(argc, argv,
		"i:o:r:q:f:t:n:c:b:x:p:s:d:h:P:S:E:M:R:T:C:I:W,F");
    if (c == -1)
      break;
    switch (c) {
    case 'i':			/* IN fill */
      infile = optarg;
      s = optarg;
      while (*s) {
	s++;
      }
      s--;
      S3 = *s;
      s--;
      S2 = *s;
      s--;
      S1 = *s;

      if ((S1 == 'p' && S2 == 'g' && S3 == 'x')
	  || (S1 == 'P' && S2 == 'G' && S3 == 'X')) {
	cp.image_type = 0;
	break;
      }

      if ((S1 == 'p' && S2 == 'n' && S3 == 'm')
	  || (S1 == 'P' && S2 == 'N' && S3 == 'M')
	  || (S1 == 'p' && S2 == 'g' && S3 == 'm') || (S1 == 'P'
						       && S2 == 'G'
						       && S3 == 'M')
	  || (S1 == 'P' && S2 == 'P' && S3 == 'M') || (S1 == 'p'
						       && S2 == 'p'
						       && S3 == 'm')) {
	cp.image_type = 1;
	break;
      }

      if ((S1 == 'b' && S2 == 'm' && S3 == 'p')
	  || (S1 == 'B' && S2 == 'M' && S3 == 'P')) {
	cp.image_type = 2;
	break;
      }
      fprintf(stderr,
	      "!! Unrecognized format for infile : %c%c%c [accept only *.pnm, *.pgm, *.ppm, *.pgx or *.bmp] !!\n\n",
	      S1, S2, S3);
      return 1;
      break;
      /* ----------------------------------------------------- */
    case 'o':			/* OUT fill */
      outfile = optarg;
      while (*outfile) {
	outfile++;
      }
      outfile--;
      S3 = *outfile;
      outfile--;
      S2 = *outfile;
      outfile--;
      S1 = *outfile;
      
      outfile = optarg;
      
      if ((S1 == 'j' && S2 == '2' && S3 == 'k') || (S1 == 'J' && S2 == '2' && S3 == 'K'))
	cp.JPEG2000_format=0;
      else if ((S1 == 'j' && S2 == 'p' && S3 == '2') || (S1 == 'J' && S2 == 'P' && S3 == '2'))
	cp.JPEG2000_format=1;
      else    {
	fprintf(stderr,"Unknown output format image *.%c%c%c [only *.j2k, *.jp2]!! \n",S1,S2,S3);
	return 1;
      }
      
      
      
      break;
      /* ----------------------------------------------------- */
    case 'r':			/* rates rates/distorsion */
      s = optarg;
      while (sscanf(s, "%d", &tcp_init->rates[tcp_init->numlayers])
	     == 1) {
	tcp_init->numlayers++;
	while (*s && *s != ',') {
	  s++;
	}
	if (!*s)
	  break;
	s++;
      }
      cp.disto_alloc = 1;
      cp.matrice = NULL;
      break;
      /* ----------------------------------------------------- */
    case 'q':			/* add fixed_quality */
      s = optarg;
      while (sscanf(s, "%f", &tcp_init->distoratio[tcp_init->numlayers]) ==
	     1) {
	tcp_init->numlayers++;
	while (*s && *s != ',') {
	  s++;
	}
	if (!*s)
	  break;
	s++;
      }
      cp.fixed_quality = 1;
      cp.matrice = NULL;
      break;
      /* dda */
      /* ----------------------------------------------------- */
    case 'f':			/* mod fixed_quality (before : -q) */
      s = optarg;
      sscanf(s, "%d", &tcp_init->numlayers);
      s++;
      if (tcp_init->numlayers > 9)
	s++;
      cp.matrice =
	(int *) malloc(tcp_init->numlayers * NumResolution * 3 *
		       sizeof(int));
      s = s + 2;
      for (i = 0; i < tcp_init->numlayers; i++) {
	tcp_init->rates[i] = 1;
	sscanf(s, "%d,", &cp.matrice[i * NumResolution * 3]);
	s += 2;
	if (cp.matrice[i * NumResolution * 3] > 9)
	  s++;
	cp.matrice[i * NumResolution * 3 + 1] = 0;
	cp.matrice[i * NumResolution * 3 + 2] = 0;
	for (j = 1; j < NumResolution; j++) {
	  sscanf(s, "%d,%d,%d",
		 &cp.matrice[i * NumResolution * 3 + j * 3 + 0],
		 &cp.matrice[i * NumResolution * 3 + j * 3 + 1],
		 &cp.matrice[i * NumResolution * 3 + j * 3 + 2]);
	  s += 6;
	  if (cp.matrice[i * NumResolution * 3 + j * 3] > 9)
	    s++;
	  if (cp.matrice[i * NumResolution * 3 + j * 3 + 1] > 9)
	    s++;
	  if (cp.matrice[i * NumResolution * 3 + j * 3 + 2] > 9)
	    s++;
	}
	if (i < tcp_init->numlayers - 1)
	  s++;
      }
      cp.fixed_alloc = 1;
      break;
      /* ----------------------------------------------------- */
    case 't':			/* tiles */
      sscanf(optarg, "%d,%d", &cp.tdx, &cp.tdy);
      Tile_arg = 1;
      break;
      /* ----------------------------------------------------- */
    case 'n':			/* resolution */
      sscanf(optarg, "%d", &NumResolution);
      break;
      /* ----------------------------------------------------- */
    case 'c':			/* precinct dimension */
      s = optarg;
      do {
	sep = 0;
	sscanf(s, "[%d,%d]%c", &prcw_init[res_spec],
	       &prch_init[res_spec], &sep);
	CSty |= 0x01;
	res_spec++;
	s = strpbrk(s, "]") + 2;
      } while (sep == ',');
      break;
      /* ----------------------------------------------------- */
    case 'b':			/* code-block dimension */
      sscanf(optarg, "%d,%d", &cblockw_init, &cblockh_init);
      if (cblockw_init * cblockh_init > 4096 || cblockw_init > 1024
	  || cblockw_init < 4 || cblockh_init > 1024 || cblockh_init < 4) {
	fprintf(stderr,
		"!! Size of code_block error (option -b) !!\n\nRestriction :\n    * width*height<=4096\n    * 4<=width,height<= 1024\n\n");
	return 1;
      }
      break;
      /* ----------------------------------------------------- */
    case 'x':			/* creation of index file */
      index = optarg;
      cp.index_on = 1;
	  use_index = 1;
      break;
      /* ----------------------------------------------------- */
    case 'p':			/* progression order */
      s = optarg;
      for (i = 0; i < 4; i++) {
	progression[i] = *s;
	s++;
      }
      Prog_order = give_progression(progression);

      if (Prog_order == -1) {
	fprintf(stderr,
		"Unrecognized progression order [LRCP, RLCP, RPCL, PCRL, CPRL] !!\n");
	return 1;
      }
      break;
      /* ----------------------------------------------------- */
    case 's':			/* subsampling factor */
      if (sscanf(optarg, "%d,%d", &subsampling_dx, &subsampling_dy)
	  != 2) {
	fprintf(stderr,
		"'-s' sub-sampling argument error !  [-s dx,dy]\n");
	return 1;
      }
      break;
      /* ----------------------------------------------------- */
    case 'd':			/* coordonnate of the reference grid */
      if (sscanf(optarg, "%d,%d", &Dim[0], &Dim[1]) != 2) {
	fprintf(stderr,
		"-d 'coordonnate of the reference grid' argument error !! [-d x0,y0]\n");
	return 1;
      }
      break;
      /* ----------------------------------------------------- */
    case 'h':			/* Display an help description */
      help_display();
      return 0;
      break;
      /* ----------------------------------------------------- */
    case 'P':			/* POC */
      fprintf(stderr, "/----------------------------------\\\n");
      fprintf(stderr, "|  POC option not fully tested !!  |\n");
      fprintf(stderr, "\\----------------------------------/\n");

      s = optarg;
      while (sscanf(s, "T%d=%d,%d,%d,%d,%d,%s", &POC[numpocs].tile,
		    &POC[numpocs].resno0, &POC[numpocs].compno0,
		    &POC[numpocs].layno1, &POC[numpocs].resno1,
		    &POC[numpocs].compno1, POC[numpocs].progorder) == 7) {
	POC[numpocs].prg = give_progression(POC[numpocs].progorder);
	/* POC[numpocs].tile; */
	numpocs++;
	while (*s && *s != '/') {
	  s++;
	}
	if (!*s)
	  break;
	s++;
      }
      break;
      /* ------------------------------------------------------ */
    case 'S':			/* SOP marker */
      CSty |= 0x02;
      break;
      /* ------------------------------------------------------ */
    case 'E':			/* EPH marker */
      CSty |= 0x04;
      break;
      /* ------------------------------------------------------ */
    case 'M':			/* Mode switch pas tous au point !! */
      if (sscanf(optarg, "%d", &value) == 1) {
	for (i = 0; i <= 5; i++) {
	  int cache = value & (1 << i);
	  if (cache)
	    mode |= (1 << i);
	}
      }
      break;
      /* ------------------------------------------------------ */
    case 'R':			/* ROI */
      if (sscanf(optarg, "OI:c=%d,U=%d", &ROI_compno, &ROI_shift) != 2) {
	fprintf(stderr, "ROI error !! [-ROI:c='compno',U='shift']\n");
	return 1;
      }
      break;
      /* ------------------------------------------------------ */
    case 'T':			/* Tile offset */
      if (sscanf(optarg, "%d,%d", &TX0, &TY0) != 2) {
	fprintf(stderr, "-T 'tile offset' argument error !! [-T X0,Y0]");
	return 1;
      }
      break;
      /* ------------------------------------------------------ */
    case 'C':			/* Add a comment */
      cp.comment = optarg;
      break;
      /* ------------------------------------------------------ */
    case 'I':			/* reversible or not */
      ir = 1;
      break;
	   /* ------------------------------------------------------ */
	case 'W':			/* version 0.2 enables only EPC on main header and epb in fixed way*/
	  jpwl_cp.JPWL_on = 1;
	  break;
	   /* ------------------------------------------------------ */
	case 'F':			/* use intermed files*/
	  cp.intermed_file=1;
	  break;
	   /* ------------------------------------------------------ */
    default:
      return 1;
    }
  }

  cp.tx0 = TX0;
  cp.ty0 = TY0;

  // inserici i parametri jpwl
  
  if(jpwl_cp.JPWL_on)
	get_jpwl_cp(& cp);


  


  /* Error messages */
  /* -------------- */
  if (!infile || !outfile) {
    fprintf(stderr,
	    "usage: image_to_j2k -i image-file -o j2k/jp2-file (+ options)\n");
    return 1;
  }

  if ((cp.disto_alloc || cp.fixed_alloc || cp.fixed_quality)&&(!(cp.disto_alloc ^ cp.fixed_alloc ^ cp.fixed_quality))) {
    fprintf(stderr,
	    "Error: options -r -q and -f can not be used together !!\n");
    return 1;
  } // mod fixed_quality

  /* if no rate entered, lossless by default */
  if (tcp_init->numlayers == 0) {
    tcp_init->rates[tcp_init->numlayers] = 1;
    tcp_init->numlayers++;
    cp.disto_alloc = 1;
  }

  if (TX0 > Dim[0] || TY0 > Dim[1]) {
    fprintf(stderr,
	    "Error: Tile offset dimension is unnappropriate --> TX0(%d)<=IMG_X0(%d) TYO(%d)<=IMG_Y0(%d) \n",
	    TX0, Dim[0], TY0, Dim[1]);
    return 1;
  }

  for (i = 0; i < numpocs; i++) {
    if (POC[i].prg == -1) {
      fprintf(stderr,
	      "Unrecognized progression order in option -P (POC n %d) [LRCP, RLCP, RPCL, PCRL, CPRL] !!\n",
	      i + 1);
    }
  }

  switch (cp.image_type) {
  case 0:
    if (Tile_arg) {
      if (!pgxtoimage
	  (infile, &img, cp.tdy, subsampling_dx, subsampling_dy, Dim,
	   cp)) {
	fprintf(stderr, "not a pgx file\n");
	return 1;
      }
    } else {
      if (!pgxtoimage
	  (infile, &img, -1, subsampling_dx, subsampling_dy, Dim, cp)) {
	fprintf(stderr, " not a pgx file\n");
	return 1;
      }
    }
    break;

  case 1:
    if (!pnmtoimage(infile, &img, subsampling_dx, subsampling_dy, Dim)) {
      fprintf(stderr, " not a pnm file\n");
      return 1;
    }
    break;

  case 2:
    if (!bmptoimage(infile, &img, subsampling_dx, subsampling_dy, Dim)) {
      fprintf(stderr, " not a bmp file\n");
      return 1;
    }
    break;
  }
  /* to respect profile - 0 */
  /* ---------------------- */
  numD_min = 0;
  /*   while (int_ceildiv(img.x1,(1<<numD_min))-int_ceildiv(img.x0,(1<<numD_min))>120 || int_ceildiv(img.y1,(1<<numD_min))-int_ceildiv(img.y0,(1<<numD_min))>160) numD_min++;
     if ((numD_min+1)>NumResolution)
     {
     fprintf(stderr,"\n********************************************************************************\n\n");
     fprintf(stderr,  "In view to respect Profile-0, the number of resolution used is %d in place of %d\n\n",numD_min+1,NumResolution);
     fprintf(stderr,  "********************************************************************************\n\n");
     NumResolution=numD_min+1;
     } */

  if (Tile_arg == 1) {
    cp.tw = int_ceildiv(img.x1 - cp.tx0, cp.tdx);
    cp.th = int_ceildiv(img.y1 - cp.ty0, cp.tdy);
  } else {
    cp.tdx = img.x1 - cp.tx0;
    cp.tdy = img.y1 - cp.ty0;
  }
 
  /* Initialization for PPM marker */
  cp.ppm = 0;
  cp.ppm_data = NULL;
  cp.ppm_previous = 0;
  cp.ppm_store = 0;

  /* Init the mutiple tiles */
  /* ---------------------- */
  cp.tcps = (j2k_tcp_t *) malloc(cp.tw * cp.th * sizeof(j2k_tcp_t));

  for (tileno = 0; tileno < cp.tw * cp.th; tileno++) {
    tcp = &cp.tcps[tileno];
    tcp->numlayers = tcp_init->numlayers;
    for (j = 0; j < tcp->numlayers; j++) {
      if (cp.fixed_quality)   // add fixed_quality
	tcp->distoratio[j] = tcp_init->distoratio[j];
      else
	tcp->rates[j] = tcp_init->rates[j];
    }
    tcp->csty = CSty;
    tcp->prg = Prog_order;
    tcp->mct = img.numcomps == 3 ? 1 : 0;
    tcp->ppt = 0;
    tcp->ppt_data = NULL;
    tcp->ppt_store = 0;

    numpocs_tile = 0;
    tcp->POC = 0;
    if (numpocs) {
      /* intialisation of POC */
      tcp->POC = 1;
      for (i = 0; i < numpocs; i++) {
	if (tileno == POC[i].tile - 1 || POC[i].tile == -1) {
	  tcp_poc = &tcp->pocs[numpocs_tile];
	  tcp_poc->resno0 = POC[numpocs_tile].resno0;
	  tcp_poc->compno0 = POC[numpocs_tile].compno0;
	  tcp_poc->layno1 = POC[numpocs_tile].layno1;
	  tcp_poc->resno1 = POC[numpocs_tile].resno1;
	  tcp_poc->compno1 = POC[numpocs_tile].compno1;
	  tcp_poc->prg = POC[numpocs_tile].prg;
	  tcp_poc->tile = POC[numpocs_tile].tile;
	  numpocs_tile++;
	}
      }
    }
    tcp->numpocs = numpocs_tile;
    tcp->tccps = (j2k_tccp_t *) malloc(img.numcomps * sizeof(j2k_tccp_t));

    for (i = 0; i < img.numcomps; i++) {
      tccp = &tcp->tccps[i];
      tccp->csty = CSty & 0x01;	/* 0 => one precinct || 1 => custom precinct  */
      tccp->numresolutions = NumResolution;
      tccp->cblkw = int_floorlog2(cblockw_init);
      tccp->cblkh = int_floorlog2(cblockh_init);
      tccp->cblksty = mode;
      tccp->qmfbid = ir ? 0 : 1;
      tccp->qntsty = ir ? J2K_CCP_QNTSTY_SEQNT : J2K_CCP_QNTSTY_NOQNT;
      tccp->numgbits = 2;
      if (i == ROI_compno)
	tccp->roishift = ROI_shift;
      else
	tccp->roishift = 0;
      if (CSty & J2K_CCP_CSTY_PRT) {
	int p = 0;
	for (j = tccp->numresolutions - 1; j >= 0; j--) {
	  if (p < res_spec) {
	    if (prcw_init[p] < 1)
	      tccp->prcw[j] = 1;
	    else
	      tccp->prcw[j] = int_floorlog2(prcw_init[p]);

	    if (prch_init[p] < 1)
	      tccp->prch[j] = 1;
	    else
	      tccp->prch[j] = int_floorlog2(prch_init[p]);
	  } else {
	    int size_prcw, size_prch;
	    size_prcw = prcw_init[res_spec - 1] >> (p - (res_spec - 1));
	    size_prch = prch_init[res_spec - 1] >> (p - (res_spec - 1));
	    if (size_prcw < 1)
	      tccp->prcw[j] = 1;
	    else
	      tccp->prcw[j] = int_floorlog2(size_prcw);
	    if (size_prch < 1)
	      tccp->prch[j] = 1;
	    else
	      tccp->prch[j] = int_floorlog2(size_prch);
	  }
	  p++;
	  /*printf("\nsize precinct pour level %d : %d,%d\n", j,
		 tccp->prcw[j], tccp->prch[j]);*/
	}
      } else {
	for (j = 0; j < tccp->numresolutions; j++) {
	  tccp->prcw[j] = 15;
	  tccp->prch[j] = 15;
	}
      }
      calc_explicit_stepsizes(tccp, img.comps[i].prec);
    }
Exemplo n.º 2
0
static opj_image_t* readImageFromFilePGX(const char* filename, int nbFilenamePGX, const char *separator)
{
  int it_file;
  opj_image_t* image_read = NULL;
  opj_image_t* image = NULL;
  opj_cparameters_t parameters;
  opj_image_cmptparm_t* param_image_read;
  int** data;

  /* If separator is empty => nb file to read is equal to one*/
  if ( strlen(separator) == 0 )
    nbFilenamePGX = 1;

  /* set encoding parameters to default values */
  opj_set_default_encoder_parameters(&parameters);
  parameters.decod_format = PGX_DFMT;
  strcpy(parameters.infile, filename);

  /* Allocate memory*/
  param_image_read = malloc((size_t)nbFilenamePGX * sizeof(opj_image_cmptparm_t));
  data = malloc((size_t)nbFilenamePGX * sizeof(*data));

  for (it_file = 0; it_file < nbFilenamePGX; it_file++)
    {
    /* Create the right filename*/
    char *filenameComponentPGX;
    if (strlen(separator) == 0)
      {
      filenameComponentPGX = malloc((strlen(filename) + 1) * sizeof(*filenameComponentPGX));
      strcpy(filenameComponentPGX, filename);
      }
    else
      filenameComponentPGX = createMultiComponentsFilename(filename, it_file, separator);

    /* Read the pgx file corresponding to the component */
    image_read = pgxtoimage(filenameComponentPGX, &parameters);
    if (!image_read)
      {
      int it_free_data;
      fprintf(stderr, "Unable to load pgx file\n");

      free(param_image_read);

      for (it_free_data = 0; it_free_data < it_file; it_free_data++) {
        free(data[it_free_data]);
      }
      free(data);

      free(filenameComponentPGX);

      return NULL;
      }

    /* Set the image_read parameters*/
    param_image_read[it_file].x0 = 0;
    param_image_read[it_file].y0 = 0;
    param_image_read[it_file].dx = 0;
    param_image_read[it_file].dy = 0;
    param_image_read[it_file].h = image_read->comps->h;
    param_image_read[it_file].w = image_read->comps->w;
    param_image_read[it_file].bpp = image_read->comps->bpp;
    param_image_read[it_file].prec = image_read->comps->prec;
    param_image_read[it_file].sgnd = image_read->comps->sgnd;

    /* Copy data*/
    data[it_file] = malloc(param_image_read[it_file].h * param_image_read[it_file].w * sizeof(int));
    memcpy(data[it_file], image_read->comps->data, image_read->comps->h * image_read->comps->w * sizeof(int));

    /* Free memory*/
    opj_image_destroy(image_read);
    free(filenameComponentPGX);
    }

  image = opj_image_create((OPJ_UINT32)nbFilenamePGX, param_image_read, OPJ_CLRSPC_UNSPECIFIED);
  for (it_file = 0; it_file < nbFilenamePGX; it_file++)
    {
    /* Copy data into output image and free memory*/
    memcpy(image->comps[it_file].data, data[it_file], image->comps[it_file].h * image->comps[it_file].w * sizeof(int));
    free(data[it_file]);
    }

  /* Free memory*/
  free(param_image_read);
  free(data);

  return image;
}