pngset.c 45.9 KB
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/* pngset.c - storage of image information into info struct
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 *
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 * Last changed in libpng 1.6.15 [November 20, 2014]
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 * Copyright (c) 1998-2014 Glenn Randers-Pehrson
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 * (Version 0.96 Copyright (c) 1996, 1997 Andreas Dilger)
 * (Version 0.88 Copyright (c) 1995, 1996 Guy Eric Schalnat, Group 42, Inc.)
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 *
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 * This code is released under the libpng license.
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 * For conditions of distribution and use, see the disclaimer
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 * and license in png.h
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 *
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 * The functions here are used during reads to store data from the file
 * into the info struct, and during writes to store application data
 * into the info struct for writing into the file.  This abstracts the
 * info struct and allows us to change the structure in the future.
 */
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#include "pngpriv.h"
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#if defined(PNG_READ_SUPPORTED) || defined(PNG_WRITE_SUPPORTED)

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#ifdef PNG_bKGD_SUPPORTED
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void PNGAPI
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png_set_bKGD(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_const_color_16p background)
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{
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   png_debug1(1, "in %s storage function", "bKGD");
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   if (png_ptr == NULL || info_ptr == NULL || background == NULL)
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      return;

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   info_ptr->background = *background;
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   info_ptr->valid |= PNG_INFO_bKGD;
}
#endif

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#ifdef PNG_cHRM_SUPPORTED
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void PNGFAPI
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png_set_cHRM_fixed(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_fixed_point white_x, png_fixed_point white_y, png_fixed_point red_x,
    png_fixed_point red_y, png_fixed_point green_x, png_fixed_point green_y,
    png_fixed_point blue_x, png_fixed_point blue_y)
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{
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   png_xy xy;

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   png_debug1(1, "in %s storage function", "cHRM fixed");
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   if (png_ptr == NULL || info_ptr == NULL)
      return;
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   xy.redx = red_x;
   xy.redy = red_y;
   xy.greenx = green_x;
   xy.greeny = green_y;
   xy.bluex = blue_x;
   xy.bluey = blue_y;
   xy.whitex = white_x;
   xy.whitey = white_y;

   if (png_colorspace_set_chromaticities(png_ptr, &info_ptr->colorspace, &xy,
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       2/* override with app values*/) != 0)
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      info_ptr->colorspace.flags |= PNG_COLORSPACE_FROM_cHRM;

   png_colorspace_sync_info(png_ptr, info_ptr);
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}

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void PNGFAPI
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png_set_cHRM_XYZ_fixed(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_fixed_point int_red_X, png_fixed_point int_red_Y,
    png_fixed_point int_red_Z, png_fixed_point int_green_X,
    png_fixed_point int_green_Y, png_fixed_point int_green_Z,
    png_fixed_point int_blue_X, png_fixed_point int_blue_Y,
    png_fixed_point int_blue_Z)
{
   png_XYZ XYZ;

   png_debug1(1, "in %s storage function", "cHRM XYZ fixed");

   if (png_ptr == NULL || info_ptr == NULL)
      return;

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   XYZ.red_X = int_red_X;
   XYZ.red_Y = int_red_Y;
   XYZ.red_Z = int_red_Z;
   XYZ.green_X = int_green_X;
   XYZ.green_Y = int_green_Y;
   XYZ.green_Z = int_green_Z;
   XYZ.blue_X = int_blue_X;
   XYZ.blue_Y = int_blue_Y;
   XYZ.blue_Z = int_blue_Z;

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   if (png_colorspace_set_endpoints(png_ptr, &info_ptr->colorspace,
       &XYZ, 2) != 0)
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      info_ptr->colorspace.flags |= PNG_COLORSPACE_FROM_cHRM;

   png_colorspace_sync_info(png_ptr, info_ptr);
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}

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#  ifdef PNG_FLOATING_POINT_SUPPORTED
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void PNGAPI
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png_set_cHRM(png_const_structrp png_ptr, png_inforp info_ptr,
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    double white_x, double white_y, double red_x, double red_y,
    double green_x, double green_y, double blue_x, double blue_y)
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{
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   png_set_cHRM_fixed(png_ptr, info_ptr,
      png_fixed(png_ptr, white_x, "cHRM White X"),
      png_fixed(png_ptr, white_y, "cHRM White Y"),
      png_fixed(png_ptr, red_x, "cHRM Red X"),
      png_fixed(png_ptr, red_y, "cHRM Red Y"),
      png_fixed(png_ptr, green_x, "cHRM Green X"),
      png_fixed(png_ptr, green_y, "cHRM Green Y"),
      png_fixed(png_ptr, blue_x, "cHRM Blue X"),
      png_fixed(png_ptr, blue_y, "cHRM Blue Y"));
}
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void PNGAPI
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png_set_cHRM_XYZ(png_const_structrp png_ptr, png_inforp info_ptr, double red_X,
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    double red_Y, double red_Z, double green_X, double green_Y, double green_Z,
    double blue_X, double blue_Y, double blue_Z)
{
   png_set_cHRM_XYZ_fixed(png_ptr, info_ptr,
      png_fixed(png_ptr, red_X, "cHRM Red X"),
      png_fixed(png_ptr, red_Y, "cHRM Red Y"),
      png_fixed(png_ptr, red_Z, "cHRM Red Z"),
      png_fixed(png_ptr, green_X, "cHRM Red X"),
      png_fixed(png_ptr, green_Y, "cHRM Red Y"),
      png_fixed(png_ptr, green_Z, "cHRM Red Z"),
      png_fixed(png_ptr, blue_X, "cHRM Red X"),
      png_fixed(png_ptr, blue_Y, "cHRM Red Y"),
      png_fixed(png_ptr, blue_Z, "cHRM Red Z"));
}
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#  endif /* FLOATING_POINT */
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#endif /* cHRM */
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#ifdef PNG_gAMA_SUPPORTED
void PNGFAPI
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png_set_gAMA_fixed(png_const_structrp png_ptr, png_inforp info_ptr,
    png_fixed_point file_gamma)
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{
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   png_debug1(1, "in %s storage function", "gAMA");
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   if (png_ptr == NULL || info_ptr == NULL)
      return;

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   png_colorspace_set_gamma(png_ptr, &info_ptr->colorspace, file_gamma);
   png_colorspace_sync_info(png_ptr, info_ptr);
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}
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#  ifdef PNG_FLOATING_POINT_SUPPORTED
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void PNGAPI
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png_set_gAMA(png_const_structrp png_ptr, png_inforp info_ptr, double file_gamma)
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{
   png_set_gAMA_fixed(png_ptr, info_ptr, png_fixed(png_ptr, file_gamma,
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       "png_set_gAMA"));
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}
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#  endif
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#endif
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#ifdef PNG_hIST_SUPPORTED
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void PNGAPI
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png_set_hIST(png_const_structrp png_ptr, png_inforp info_ptr,
    png_const_uint_16p hist)
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{
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   int i;
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   png_debug1(1, "in %s storage function", "hIST");
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   if (png_ptr == NULL || info_ptr == NULL)
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      return;
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   if (info_ptr->num_palette == 0 || info_ptr->num_palette
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       > PNG_MAX_PALETTE_LENGTH)
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   {
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      png_warning(png_ptr,
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          "Invalid palette size, hIST allocation skipped");
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      return;
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   }
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   png_free_data(png_ptr, info_ptr, PNG_FREE_HIST, 0);
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   /* Changed from info->num_palette to PNG_MAX_PALETTE_LENGTH in
    * version 1.2.1
    */
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   info_ptr->hist = png_voidcast(png_uint_16p, png_malloc_warn(png_ptr,
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       PNG_MAX_PALETTE_LENGTH * (sizeof (png_uint_16))));
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   if (info_ptr->hist == NULL)
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   {
      png_warning(png_ptr, "Insufficient memory for hIST chunk data");
      return;
   }
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   info_ptr->free_me |= PNG_FREE_HIST;

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   for (i = 0; i < info_ptr->num_palette; i++)
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      info_ptr->hist[i] = hist[i];
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   info_ptr->valid |= PNG_INFO_hIST;
}
#endif

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void PNGAPI
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png_set_IHDR(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_uint_32 width, png_uint_32 height, int bit_depth,
    int color_type, int interlace_type, int compression_type,
    int filter_type)
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{
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   png_debug1(1, "in %s storage function", "IHDR");
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   if (png_ptr == NULL || info_ptr == NULL)
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      return;

   info_ptr->width = width;
   info_ptr->height = height;
   info_ptr->bit_depth = (png_byte)bit_depth;
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   info_ptr->color_type = (png_byte)color_type;
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   info_ptr->compression_type = (png_byte)compression_type;
   info_ptr->filter_type = (png_byte)filter_type;
   info_ptr->interlace_type = (png_byte)interlace_type;
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   png_check_IHDR (png_ptr, info_ptr->width, info_ptr->height,
       info_ptr->bit_depth, info_ptr->color_type, info_ptr->interlace_type,
       info_ptr->compression_type, info_ptr->filter_type);

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   if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
      info_ptr->channels = 1;
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   else if ((info_ptr->color_type & PNG_COLOR_MASK_COLOR) != 0)
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      info_ptr->channels = 3;
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   else
      info_ptr->channels = 1;
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   if ((info_ptr->color_type & PNG_COLOR_MASK_ALPHA) != 0)
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      info_ptr->channels++;
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   info_ptr->pixel_depth = (png_byte)(info_ptr->channels * info_ptr->bit_depth);
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   info_ptr->rowbytes = PNG_ROWBYTES(info_ptr->pixel_depth, width);
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}

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#ifdef PNG_oFFs_SUPPORTED
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void PNGAPI
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png_set_oFFs(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_int_32 offset_x, png_int_32 offset_y, int unit_type)
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{
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   png_debug1(1, "in %s storage function", "oFFs");
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   if (png_ptr == NULL || info_ptr == NULL)
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      return;

   info_ptr->x_offset = offset_x;
   info_ptr->y_offset = offset_y;
   info_ptr->offset_unit_type = (png_byte)unit_type;
   info_ptr->valid |= PNG_INFO_oFFs;
}
#endif

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#ifdef PNG_pCAL_SUPPORTED
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void PNGAPI
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png_set_pCAL(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_const_charp purpose, png_int_32 X0, png_int_32 X1, int type,
    int nparams, png_const_charp units, png_charpp params)
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{
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   png_size_t length;
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   int i;
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   png_debug1(1, "in %s storage function", "pCAL");
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   if (png_ptr == NULL || info_ptr == NULL || purpose == NULL || units == NULL
      || (nparams > 0 && params == NULL))
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      return;

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   length = strlen(purpose) + 1;
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   png_debug1(3, "allocating purpose for info (%lu bytes)",
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       (unsigned long)length);
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   /* TODO: validate format of calibration name and unit name */

   /* Check that the type matches the specification. */
   if (type < 0 || type > 3)
      png_error(png_ptr, "Invalid pCAL equation type");

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   if (nparams < 0 || nparams > 255)
      png_error(png_ptr, "Invalid pCAL parameter count");

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   /* Validate params[nparams] */
   for (i=0; i<nparams; ++i)
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   {
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      if (params[i] == NULL ||
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          !png_check_fp_string(params[i], strlen(params[i])))
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         png_error(png_ptr, "Invalid format for pCAL parameter");
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   }
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   info_ptr->pcal_purpose = png_voidcast(png_charp,
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       png_malloc_warn(png_ptr, length));
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   if (info_ptr->pcal_purpose == NULL)
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   {
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      png_warning(png_ptr, "Insufficient memory for pCAL purpose");
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      return;
   }
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   memcpy(info_ptr->pcal_purpose, purpose, length);
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   png_debug(3, "storing X0, X1, type, and nparams in info");
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   info_ptr->pcal_X0 = X0;
   info_ptr->pcal_X1 = X1;
   info_ptr->pcal_type = (png_byte)type;
   info_ptr->pcal_nparams = (png_byte)nparams;

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   length = strlen(units) + 1;
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   png_debug1(3, "allocating units for info (%lu bytes)",
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     (unsigned long)length);
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   info_ptr->pcal_units = png_voidcast(png_charp,
      png_malloc_warn(png_ptr, length));
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   if (info_ptr->pcal_units == NULL)
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   {
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      png_warning(png_ptr, "Insufficient memory for pCAL units");
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      return;
   }
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   memcpy(info_ptr->pcal_units, units, length);
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   info_ptr->pcal_params = png_voidcast(png_charpp, png_malloc_warn(png_ptr,
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       (png_size_t)((nparams + 1) * (sizeof (png_charp)))));
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   if (info_ptr->pcal_params == NULL)
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   {
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      png_warning(png_ptr, "Insufficient memory for pCAL params");
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      return;
   }
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   memset(info_ptr->pcal_params, 0, (nparams + 1) * (sizeof (png_charp)));
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   for (i = 0; i < nparams; i++)
   {
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      length = strlen(params[i]) + 1;
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      png_debug2(3, "allocating parameter %d for info (%lu bytes)", i,
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          (unsigned long)length);
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      info_ptr->pcal_params[i] = (png_charp)png_malloc_warn(png_ptr, length);
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      if (info_ptr->pcal_params[i] == NULL)
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      {
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         png_warning(png_ptr, "Insufficient memory for pCAL parameter");
         return;
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      }
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      memcpy(info_ptr->pcal_params[i], params[i], length);
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   }

   info_ptr->valid |= PNG_INFO_pCAL;
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   info_ptr->free_me |= PNG_FREE_PCAL;
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}
#endif

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#ifdef PNG_sCAL_SUPPORTED
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void PNGAPI
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png_set_sCAL_s(png_const_structrp png_ptr, png_inforp info_ptr,
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    int unit, png_const_charp swidth, png_const_charp sheight)
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{
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   png_size_t lengthw = 0, lengthh = 0;
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   png_debug1(1, "in %s storage function", "sCAL");
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   if (png_ptr == NULL || info_ptr == NULL)
      return;

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   /* Double check the unit (should never get here with an invalid
    * unit unless this is an API call.)
    */
   if (unit != 1 && unit != 2)
      png_error(png_ptr, "Invalid sCAL unit");

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   if (swidth == NULL || (lengthw = strlen(swidth)) == 0 ||
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       swidth[0] == 45 /* '-' */ || !png_check_fp_string(swidth, lengthw))
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      png_error(png_ptr, "Invalid sCAL width");

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   if (sheight == NULL || (lengthh = strlen(sheight)) == 0 ||
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       sheight[0] == 45 /* '-' */ || !png_check_fp_string(sheight, lengthh))
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      png_error(png_ptr, "Invalid sCAL height");

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   info_ptr->scal_unit = (png_byte)unit;
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   ++lengthw;
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   png_debug1(3, "allocating unit for info (%u bytes)", (unsigned int)lengthw);
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   info_ptr->scal_s_width = png_voidcast(png_charp,
      png_malloc_warn(png_ptr, lengthw));
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   if (info_ptr->scal_s_width == NULL)
   {
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      png_warning(png_ptr, "Memory allocation failed while processing sCAL");
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      return;
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   }
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   memcpy(info_ptr->scal_s_width, swidth, lengthw);
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   ++lengthh;
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   png_debug1(3, "allocating unit for info (%u bytes)", (unsigned int)lengthh);
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   info_ptr->scal_s_height = png_voidcast(png_charp,
      png_malloc_warn(png_ptr, lengthh));
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   if (info_ptr->scal_s_height == NULL)
   {
      png_free (png_ptr, info_ptr->scal_s_width);
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      info_ptr->scal_s_width = NULL;
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      png_warning(png_ptr, "Memory allocation failed while processing sCAL");
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      return;
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   }
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   memcpy(info_ptr->scal_s_height, sheight, lengthh);
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   info_ptr->valid |= PNG_INFO_sCAL;
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   info_ptr->free_me |= PNG_FREE_SCAL;
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}
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#  ifdef PNG_FLOATING_POINT_SUPPORTED
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void PNGAPI
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png_set_sCAL(png_const_structrp png_ptr, png_inforp info_ptr, int unit,
    double width, double height)
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{
   png_debug1(1, "in %s storage function", "sCAL");

   /* Check the arguments. */
   if (width <= 0)
      png_warning(png_ptr, "Invalid sCAL width ignored");
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   else if (height <= 0)
      png_warning(png_ptr, "Invalid sCAL height ignored");
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   else
   {
      /* Convert 'width' and 'height' to ASCII. */
      char swidth[PNG_sCAL_MAX_DIGITS+1];
      char sheight[PNG_sCAL_MAX_DIGITS+1];

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      png_ascii_from_fp(png_ptr, swidth, (sizeof swidth), width,
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         PNG_sCAL_PRECISION);
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      png_ascii_from_fp(png_ptr, sheight, (sizeof sheight), height,
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         PNG_sCAL_PRECISION);

      png_set_sCAL_s(png_ptr, info_ptr, unit, swidth, sheight);
   }
}
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#  endif
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#  ifdef PNG_FIXED_POINT_SUPPORTED
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void PNGAPI
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png_set_sCAL_fixed(png_const_structrp png_ptr, png_inforp info_ptr, int unit,
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    png_fixed_point width, png_fixed_point height)
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{
   png_debug1(1, "in %s storage function", "sCAL");

   /* Check the arguments. */
   if (width <= 0)
      png_warning(png_ptr, "Invalid sCAL width ignored");
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   else if (height <= 0)
      png_warning(png_ptr, "Invalid sCAL height ignored");
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   else
   {
      /* Convert 'width' and 'height' to ASCII. */
      char swidth[PNG_sCAL_MAX_DIGITS+1];
      char sheight[PNG_sCAL_MAX_DIGITS+1];

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      png_ascii_from_fixed(png_ptr, swidth, (sizeof swidth), width);
      png_ascii_from_fixed(png_ptr, sheight, (sizeof sheight), height);
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      png_set_sCAL_s(png_ptr, info_ptr, unit, swidth, sheight);
   }
}
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#  endif
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#endif
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#ifdef PNG_pHYs_SUPPORTED
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void PNGAPI
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png_set_pHYs(png_const_structrp png_ptr, png_inforp info_ptr,
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    png_uint_32 res_x, png_uint_32 res_y, int unit_type)
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{
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   png_debug1(1, "in %s storage function", "pHYs");
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   if (png_ptr == NULL || info_ptr == NULL)
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      return;

   info_ptr->x_pixels_per_unit = res_x;
   info_ptr->y_pixels_per_unit = res_y;
   info_ptr->phys_unit_type = (png_byte)unit_type;
   info_ptr->valid |= PNG_INFO_pHYs;
}
#endif

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void PNGAPI
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png_set_PLTE(png_structrp png_ptr, png_inforp info_ptr,
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    png_const_colorp palette, int num_palette)
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507
{
508

509
   png_debug1(1, "in %s storage function", "PLTE");
510

511
   if (png_ptr == NULL || info_ptr == NULL)
A
Andreas Dilger 已提交
512 513
      return;

514
   if (num_palette < 0 || num_palette > PNG_MAX_PALETTE_LENGTH)
515 516
   {
      if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
517
         png_error(png_ptr, "Invalid palette length");
518

519 520
      else
      {
521 522
         png_warning(png_ptr, "Invalid palette length");
         return;
523 524
      }
   }
525

526 527 528 529 530 531 532
   if ((num_palette > 0 && palette == NULL) ||
      (num_palette == 0
#        ifdef PNG_MNG_FEATURES_SUPPORTED
            && (png_ptr->mng_features_permitted & PNG_FLAG_MNG_EMPTY_PLTE) == 0
#        endif
      ))
   {
533
      png_error(png_ptr, "Invalid palette");
534 535 536
      return;
   }

537
   /* It may not actually be necessary to set png_ptr->palette here;
538 539
    * we do it for backward compatibility with the way the png_handle_tRNS
    * function used to do the allocation.
540 541 542
    *
    * 1.6.0: the above statement appears to be incorrect; something has to set
    * the palette inside png_struct on read.
543 544
    */
   png_free_data(png_ptr, info_ptr, PNG_FREE_PLTE, 0);
545

546
   /* Changed in libpng-1.2.1 to allocate PNG_MAX_PALETTE_LENGTH instead
547 548 549
    * of num_palette entries, in case of an invalid PNG file that has
    * too-large sample values.
    */
550
   png_ptr->palette = png_voidcast(png_colorp, png_calloc(png_ptr,
551
       PNG_MAX_PALETTE_LENGTH * (sizeof (png_color))));
552

553 554
   if (num_palette > 0)
      memcpy(png_ptr->palette, palette, num_palette * (sizeof (png_color)));
555 556 557 558
   info_ptr->palette = png_ptr->palette;
   info_ptr->num_palette = png_ptr->num_palette = (png_uint_16)num_palette;

   info_ptr->free_me |= PNG_FREE_PLTE;
559

560
   info_ptr->valid |= PNG_INFO_PLTE;
A
Andreas Dilger 已提交
561 562
}

563
#ifdef PNG_sBIT_SUPPORTED
564
void PNGAPI
565
png_set_sBIT(png_const_structrp png_ptr, png_inforp info_ptr,
566
    png_const_color_8p sig_bit)
A
Andreas Dilger 已提交
567
{
568
   png_debug1(1, "in %s storage function", "sBIT");
569

570
   if (png_ptr == NULL || info_ptr == NULL || sig_bit == NULL)
A
Andreas Dilger 已提交
571 572
      return;

573
   info_ptr->sig_bit = *sig_bit;
A
Andreas Dilger 已提交
574 575 576 577
   info_ptr->valid |= PNG_INFO_sBIT;
}
#endif

578
#ifdef PNG_sRGB_SUPPORTED
579
void PNGAPI
580
png_set_sRGB(png_const_structrp png_ptr, png_inforp info_ptr, int srgb_intent)
581
{
582
   png_debug1(1, "in %s storage function", "sRGB");
583

584
   if (png_ptr == NULL || info_ptr == NULL)
585 586
      return;

587 588
   (void)png_colorspace_set_sRGB(png_ptr, &info_ptr->colorspace, srgb_intent);
   png_colorspace_sync_info(png_ptr, info_ptr);
589
}
590

591
void PNGAPI
592
png_set_sRGB_gAMA_and_cHRM(png_const_structrp png_ptr, png_inforp info_ptr,
593
    int srgb_intent)
594
{
595
   png_debug1(1, "in %s storage function", "sRGB_gAMA_and_cHRM");
596

597
   if (png_ptr == NULL || info_ptr == NULL)
598 599
      return;

600 601
   if (png_colorspace_set_sRGB(png_ptr, &info_ptr->colorspace,
       srgb_intent) != 0)
602 603 604 605 606
   {
      /* This causes the gAMA and cHRM to be written too */
      info_ptr->colorspace.flags |=
         PNG_COLORSPACE_FROM_gAMA|PNG_COLORSPACE_FROM_cHRM;
   }
607

608
   png_colorspace_sync_info(png_ptr, info_ptr);
609
}
610
#endif /* sRGB */
611

612

613
#ifdef PNG_iCCP_SUPPORTED
614
void PNGAPI
615
png_set_iCCP(png_const_structrp png_ptr, png_inforp info_ptr,
616 617
    png_const_charp name, int compression_type,
    png_const_bytep profile, png_uint_32 proflen)
618
{
619
   png_charp new_iccp_name;
G
[devel]  
Glenn Randers-Pehrson 已提交
620
   png_bytep new_iccp_profile;
621
   png_size_t length;
622

623
   png_debug1(1, "in %s storage function", "iCCP");
624

625 626 627
   if (png_ptr == NULL || info_ptr == NULL || name == NULL || profile == NULL)
      return;

628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643
   if (compression_type != PNG_COMPRESSION_TYPE_BASE)
      png_app_error(png_ptr, "Invalid iCCP compression method");

   /* Set the colorspace first because this validates the profile; do not
    * override previously set app cHRM or gAMA here (because likely as not the
    * application knows better than libpng what the correct values are.)  Pass
    * the info_ptr color_type field to png_colorspace_set_ICC because in the
    * write case it has not yet been stored in png_ptr.
    */
   {
      int result = png_colorspace_set_ICC(png_ptr, &info_ptr->colorspace, name,
         proflen, profile, info_ptr->color_type);

      png_colorspace_sync_info(png_ptr, info_ptr);

      /* Don't do any of the copying if the profile was bad, or inconsistent. */
644
      if (result == 0)
645 646 647 648 649 650 651 652
         return;

      /* But do write the gAMA and cHRM chunks from the profile. */
      info_ptr->colorspace.flags |=
         PNG_COLORSPACE_FROM_gAMA|PNG_COLORSPACE_FROM_cHRM;
   }

   length = strlen(name)+1;
653
   new_iccp_name = png_voidcast(png_charp, png_malloc_warn(png_ptr, length));
654

655 656
   if (new_iccp_name == NULL)
   {
657
      png_benign_error(png_ptr, "Insufficient memory to process iCCP chunk");
658 659
      return;
   }
660

661
   memcpy(new_iccp_name, name, length);
662 663
   new_iccp_profile = png_voidcast(png_bytep,
      png_malloc_warn(png_ptr, proflen));
664

665 666
   if (new_iccp_profile == NULL)
   {
667
      png_free(png_ptr, new_iccp_name);
668
      new_iccp_name = NULL;
669
      png_benign_error(png_ptr,
670
          "Insufficient memory to process iCCP profile");
671 672
      return;
   }
673

674
   memcpy(new_iccp_profile, profile, proflen);
675

676
   png_free_data(png_ptr, info_ptr, PNG_FREE_ICCP, 0);
677

678
   info_ptr->iccp_proflen = proflen;
679 680
   info_ptr->iccp_name = new_iccp_name;
   info_ptr->iccp_profile = new_iccp_profile;
681
   info_ptr->free_me |= PNG_FREE_ICCP;
682 683 684 685
   info_ptr->valid |= PNG_INFO_iCCP;
}
#endif

686
#ifdef PNG_TEXT_SUPPORTED
687
void PNGAPI
688 689
png_set_text(png_const_structrp png_ptr, png_inforp info_ptr,
    png_const_textp text_ptr, int num_text)
690 691
{
   int ret;
692
   ret = png_set_text_2(png_ptr, info_ptr, text_ptr, num_text);
693

694
   if (ret != 0)
695
      png_error(png_ptr, "Insufficient memory to store text");
696 697 698
}

int /* PRIVATE */
699
png_set_text_2(png_const_structrp png_ptr, png_inforp info_ptr,
700
    png_const_textp text_ptr, int num_text)
A
Andreas Dilger 已提交
701 702 703
{
   int i;

704 705
   png_debug1(1, "in %lx storage function", png_ptr == NULL ? "unexpected" :
      (unsigned long)png_ptr->chunk_name);
A
Andreas Dilger 已提交
706

707
   if (png_ptr == NULL || info_ptr == NULL || num_text <= 0 || text_ptr == NULL)
708
      return(0);
A
Andreas Dilger 已提交
709 710

   /* Make sure we have enough space in the "text" array in info_struct
711 712 713
    * to hold all of the incoming text_ptr objects.  This compare can't overflow
    * because max_text >= num_text (anyway, subtract of two positive integers
    * can't overflow in any case.)
A
Andreas Dilger 已提交
714
    */
715
   if (num_text > info_ptr->max_text - info_ptr->num_text)
A
Andreas Dilger 已提交
716
   {
717 718 719 720 721 722 723
      int old_num_text = info_ptr->num_text;
      int max_text;
      png_textp new_text = NULL;

      /* Calculate an appropriate max_text, checking for overflow. */
      max_text = old_num_text;
      if (num_text <= INT_MAX - max_text)
A
Andreas Dilger 已提交
724
      {
725
         max_text += num_text;
726

727 728 729
         /* Round up to a multiple of 8 */
         if (max_text < INT_MAX-8)
            max_text = (max_text + 8) & ~0x7;
730

731 732 733
         else
            max_text = INT_MAX;

734
         /* Now allocate a new array and copy the old members in; this does all
735 736 737 738 739
          * the overflow checks.
          */
         new_text = png_voidcast(png_textp,png_realloc_array(png_ptr,
            info_ptr->text, old_num_text, max_text-old_num_text,
            sizeof *new_text));
A
Andreas Dilger 已提交
740
      }
741

742
      if (new_text == NULL)
A
Andreas Dilger 已提交
743
      {
744 745 746
         png_chunk_report(png_ptr, "too many text chunks",
            PNG_CHUNK_WRITE_ERROR);
         return 1;
A
Andreas Dilger 已提交
747
      }
748

749 750 751 752 753 754 755 756
      png_free(png_ptr, info_ptr->text);

      info_ptr->text = new_text;
      info_ptr->free_me |= PNG_FREE_TEXT;
      info_ptr->max_text = max_text;
      /* num_text is adjusted below as the entries are copied in */

      png_debug1(3, "allocated %d entries for info_ptr->text", max_text);
A
Andreas Dilger 已提交
757
   }
758

A
Andreas Dilger 已提交
759 760
   for (i = 0; i < num_text; i++)
   {
761 762
      size_t text_length, key_len;
      size_t lang_len, lang_key_len;
A
Andreas Dilger 已提交
763 764
      png_textp textp = &(info_ptr->text[info_ptr->num_text]);

765
      if (text_ptr[i].key == NULL)
766 767
          continue;

768 769
      if (text_ptr[i].compression < PNG_TEXT_COMPRESSION_NONE ||
          text_ptr[i].compression >= PNG_TEXT_COMPRESSION_LAST)
770
      {
771 772
         png_chunk_report(png_ptr, "text compression mode is out of range",
            PNG_CHUNK_WRITE_ERROR);
773 774 775
         continue;
      }

776
      key_len = strlen(text_ptr[i].key);
777

778
      if (text_ptr[i].compression <= 0)
779
      {
780 781
         lang_len = 0;
         lang_key_len = 0;
782
      }
783

784
      else
785
#  ifdef PNG_iTXt_SUPPORTED
786
      {
787
         /* Set iTXt data */
788

789
         if (text_ptr[i].lang != NULL)
790
            lang_len = strlen(text_ptr[i].lang);
791

792 793
         else
            lang_len = 0;
794

795
         if (text_ptr[i].lang_key != NULL)
796
            lang_key_len = strlen(text_ptr[i].lang_key);
797

798 799
         else
            lang_key_len = 0;
800
      }
801
#  else /* PNG_iTXt_SUPPORTED */
802
      {
803 804
         png_chunk_report(png_ptr, "iTXt chunk not supported",
            PNG_CHUNK_WRITE_ERROR);
805
         continue;
806
      }
807
#  endif
A
Andreas Dilger 已提交
808

809
      if (text_ptr[i].text == NULL || text_ptr[i].text[0] == '\0')
A
Andreas Dilger 已提交
810
      {
811
         text_length = 0;
812
#  ifdef PNG_iTXt_SUPPORTED
813
         if (text_ptr[i].compression > 0)
814
            textp->compression = PNG_ITXT_COMPRESSION_NONE;
815

816
         else
817
#  endif
818
            textp->compression = PNG_TEXT_COMPRESSION_NONE;
A
Andreas Dilger 已提交
819
      }
820

A
Andreas Dilger 已提交
821 822
      else
      {
823
         text_length = strlen(text_ptr[i].text);
A
Andreas Dilger 已提交
824 825
         textp->compression = text_ptr[i].compression;
      }
826

827 828
      textp->key = png_voidcast(png_charp,png_malloc_base(png_ptr,
          key_len + text_length + lang_len + lang_key_len + 4));
829

830
      if (textp->key == NULL)
831 832 833 834 835
      {
         png_chunk_report(png_ptr, "text chunk: out of memory",
               PNG_CHUNK_WRITE_ERROR);
         return 1;
      }
836

837
      png_debug2(2, "Allocated %lu bytes at %p in png_set_text",
838 839
          (unsigned long)(png_uint_32)
          (key_len + lang_len + lang_key_len + text_length + 4),
840
          textp->key);
841

842
      memcpy(textp->key, text_ptr[i].key, key_len);
843
      *(textp->key + key_len) = '\0';
844

845 846
      if (text_ptr[i].compression > 0)
      {
847
         textp->lang = textp->key + key_len + 1;
848
         memcpy(textp->lang, text_ptr[i].lang, lang_len);
849
         *(textp->lang + lang_len) = '\0';
850
         textp->lang_key = textp->lang + lang_len + 1;
851
         memcpy(textp->lang_key, text_ptr[i].lang_key, lang_key_len);
852
         *(textp->lang_key + lang_key_len) = '\0';
853
         textp->text = textp->lang_key + lang_key_len + 1;
854
      }
855

856 857
      else
      {
858 859
         textp->lang=NULL;
         textp->lang_key=NULL;
860
         textp->text = textp->key + key_len + 1;
861
      }
862

863
      if (text_length != 0)
864
         memcpy(textp->text, text_ptr[i].text, text_length);
865

866
      *(textp->text + text_length) = '\0';
867

868
#  ifdef PNG_iTXt_SUPPORTED
869
      if (textp->compression > 0)
870 871 872 873
      {
         textp->text_length = 0;
         textp->itxt_length = text_length;
      }
874

875
      else
876
#  endif
877 878 879 880
      {
         textp->text_length = text_length;
         textp->itxt_length = 0;
      }
881

A
Andreas Dilger 已提交
882
      info_ptr->num_text++;
883
      png_debug1(3, "transferred text chunk %d", info_ptr->num_text);
A
Andreas Dilger 已提交
884
   }
885

886
   return(0);
A
Andreas Dilger 已提交
887 888 889
}
#endif

890
#ifdef PNG_tIME_SUPPORTED
891
void PNGAPI
892 893
png_set_tIME(png_const_structrp png_ptr, png_inforp info_ptr,
    png_const_timep mod_time)
A
Andreas Dilger 已提交
894
{
895
   png_debug1(1, "in %s storage function", "tIME");
896

897
   if (png_ptr == NULL || info_ptr == NULL || mod_time == NULL ||
898
       (png_ptr->mode & PNG_WROTE_tIME) != 0)
A
Andreas Dilger 已提交
899 900
      return;

901 902 903 904 905 906 907 908 909
   if (mod_time->month == 0   || mod_time->month > 12  ||
       mod_time->day   == 0   || mod_time->day   > 31  ||
       mod_time->hour  > 23   || mod_time->minute > 59 ||
       mod_time->second > 60)
   {
      png_warning(png_ptr, "Ignoring invalid time value");
      return;
   }

910
   info_ptr->mod_time = *mod_time;
A
Andreas Dilger 已提交
911 912 913 914
   info_ptr->valid |= PNG_INFO_tIME;
}
#endif

915
#ifdef PNG_tRNS_SUPPORTED
916
void PNGAPI
917
png_set_tRNS(png_structrp png_ptr, png_inforp info_ptr,
918
    png_const_bytep trans_alpha, int num_trans, png_const_color_16p trans_color)
A
Andreas Dilger 已提交
919
{
920
   png_debug1(1, "in %s storage function", "tRNS");
921

922
   if (png_ptr == NULL || info_ptr == NULL)
A
Andreas Dilger 已提交
923 924
      return;

925
   if (trans_alpha != NULL)
926
   {
927
       /* It may not actually be necessary to set png_ptr->trans_alpha here;
928 929
        * we do it for backward compatibility with the way the png_handle_tRNS
        * function used to do the allocation.
930 931 932 933
        *
        * 1.6.0: The above statement is incorrect; png_handle_tRNS effectively
        * relies on png_set_tRNS storing the information in png_struct
        * (otherwise it won't be there for the code in pngrtran.c).
934
        */
935

936
       png_free_data(png_ptr, info_ptr, PNG_FREE_TRNS, 0);
937

938
       /* Changed from num_trans to PNG_MAX_PALETTE_LENGTH in version 1.2.1 */
939 940
       png_ptr->trans_alpha = info_ptr->trans_alpha = png_voidcast(png_bytep,
         png_malloc(png_ptr, PNG_MAX_PALETTE_LENGTH));
941

942
       if (num_trans > 0 && num_trans <= PNG_MAX_PALETTE_LENGTH)
943
          memcpy(info_ptr->trans_alpha, trans_alpha, (png_size_t)num_trans);
944
   }
A
Andreas Dilger 已提交
945

946
   if (trans_color != NULL)
A
Andreas Dilger 已提交
947
   {
948 949 950 951 952 953 954 955 956 957 958 959 960
      if (info_ptr->bit_depth < 16)
      {
         unsigned int sample_max = (1U << info_ptr->bit_depth) - 1U;

         if ((info_ptr->color_type == PNG_COLOR_TYPE_GRAY &&
             trans_color->gray > sample_max) ||
             (info_ptr->color_type == PNG_COLOR_TYPE_RGB &&
             (trans_color->red > sample_max ||
             trans_color->green > sample_max ||
             trans_color->blue > sample_max)))
           png_warning(png_ptr,
              "tRNS chunk has out-of-range samples for bit_depth");
      }
961

962
      if (num_trans == 0)
963
         num_trans = 1;
964 965

      info_ptr->trans_color = *trans_color;
A
Andreas Dilger 已提交
966
   }
967

A
Andreas Dilger 已提交
968
   info_ptr->num_trans = (png_uint_16)num_trans;
969

970 971 972 973 974
   if (num_trans != 0)
   {
      info_ptr->valid |= PNG_INFO_tRNS;
      info_ptr->free_me |= PNG_FREE_TRNS;
   }
A
Andreas Dilger 已提交
975 976 977
}
#endif

978
#ifdef PNG_sPLT_SUPPORTED
979
void PNGAPI
980
png_set_sPLT(png_const_structrp png_ptr,
981
    png_inforp info_ptr, png_const_sPLT_tp entries, int nentries)
982 983 984 985
/*
 *  entries        - array of png_sPLT_t structures
 *                   to be added to the list of palettes
 *                   in the info structure.
986
 *
987 988 989
 *  nentries       - number of palette structures to be
 *                   added.
 */
990
{
991
   png_sPLT_tp np;
992

993
   if (png_ptr == NULL || info_ptr == NULL || nentries <= 0 || entries == NULL)
994
      return;
995

996 997 998 999 1000 1001
   /* Use the internal realloc function, which checks for all the possible
    * overflows.  Notice that the parameters are (int) and (size_t)
    */
   np = png_voidcast(png_sPLT_tp,png_realloc_array(png_ptr,
      info_ptr->splt_palettes, info_ptr->splt_palettes_num, nentries,
      sizeof *np));
1002

1003 1004
   if (np == NULL)
   {
1005 1006
      /* Out of memory or too many chunks */
      png_chunk_report(png_ptr, "too many sPLT chunks", PNG_CHUNK_WRITE_ERROR);
1007
      return;
1008
   }
1009

1010
   png_free(png_ptr, info_ptr->splt_palettes);
1011 1012
   info_ptr->splt_palettes = np;
   info_ptr->free_me |= PNG_FREE_SPLT;
1013

1014 1015 1016
   np += info_ptr->splt_palettes_num;

   do
1017
   {
1018
      png_size_t length;
1019

1020 1021
      /* Skip invalid input entries */
      if (entries->name == NULL || entries->entries == NULL)
1022
      {
1023 1024 1025
         /* png_handle_sPLT doesn't do this, so this is an app error */
         png_app_error(png_ptr, "png_set_sPLT: invalid sPLT");
         /* Just skip the invalid entry */
1026
         continue;
1027
      }
1028

1029 1030
      np->depth = entries->depth;

1031 1032
      /* In the event of out-of-memory just return - there's no point keeping
       * on trying to add sPLT chunks.
1033 1034 1035 1036 1037 1038
       */
      length = strlen(entries->name) + 1;
      np->name = png_voidcast(png_charp, png_malloc_base(png_ptr, length));

      if (np->name == NULL)
         break;
1039

1040 1041 1042
      memcpy(np->name, entries->name, length);

      /* IMPORTANT: we have memory now that won't get freed if something else
1043 1044
       * goes wrong; this code must free it.  png_malloc_array produces no
       * warnings; use a png_chunk_report (below) if there is an error.
1045 1046 1047 1048 1049
       */
      np->entries = png_voidcast(png_sPLT_entryp, png_malloc_array(png_ptr,
          entries->nentries, sizeof (png_sPLT_entry)));

      if (np->entries == NULL)
1050
      {
1051
         png_free(png_ptr, np->name);
1052
         np->name = NULL;
1053
         break;
1054
      }
1055

1056 1057 1058 1059 1060 1061
      np->nentries = entries->nentries;
      /* This multiply can't overflow because png_malloc_array has already
       * checked it when doing the allocation.
       */
      memcpy(np->entries, entries->entries,
         entries->nentries * sizeof (png_sPLT_entry));
1062

1063 1064 1065 1066 1067 1068
      /* Note that 'continue' skips the advance of the out pointer and out
       * count, so an invalid entry is not added.
       */
      info_ptr->valid |= PNG_INFO_sPLT;
      ++(info_ptr->splt_palettes_num);
      ++np;
1069
   }
1070
   while (++entries, --nentries);
1071

1072 1073
   if (nentries > 0)
      png_chunk_report(png_ptr, "sPLT out of memory", PNG_CHUNK_WRITE_ERROR);
1074
}
1075
#endif /* sPLT */
1076

1077 1078 1079 1080 1081 1082 1083
#ifdef PNG_STORE_UNKNOWN_CHUNKS_SUPPORTED
static png_byte
check_location(png_const_structrp png_ptr, int location)
{
   location &= (PNG_HAVE_IHDR|PNG_HAVE_PLTE|PNG_AFTER_IDAT);

   /* New in 1.6.0; copy the location and check it.  This is an API
1084
    * change; previously the app had to use the
1085 1086
    * png_set_unknown_chunk_location API below for each chunk.
    */
1087
   if (location == 0 && (png_ptr->mode & PNG_IS_READ_STRUCT) == 0)
1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114
   {
      /* Write struct, so unknown chunks come from the app */
      png_app_warning(png_ptr,
         "png_set_unknown_chunks now expects a valid location");
      /* Use the old behavior */
      location = (png_byte)(png_ptr->mode &
         (PNG_HAVE_IHDR|PNG_HAVE_PLTE|PNG_AFTER_IDAT));
   }

   /* This need not be an internal error - if the app calls
    * png_set_unknown_chunks on a read pointer it must get the location right.
    */
   if (location == 0)
      png_error(png_ptr, "invalid location in png_set_unknown_chunks");

   /* Now reduce the location to the top-most set bit by removing each least
    * significant bit in turn.
    */
   while (location != (location & -location))
      location &= ~(location & -location);

   /* The cast is safe because 'location' is a bit mask and only the low four
    * bits are significant.
    */
   return (png_byte)location;
}

1115
void PNGAPI
1116
png_set_unknown_chunks(png_const_structrp png_ptr,
1117
   png_inforp info_ptr, png_const_unknown_chunkp unknowns, int num_unknowns)
1118
{
1119 1120
   png_unknown_chunkp np;

1121 1122
   if (png_ptr == NULL || info_ptr == NULL || num_unknowns <= 0 ||
      unknowns == NULL)
1123
      return;
1124

1125 1126 1127 1128 1129 1130 1131 1132
   /* Check for the failure cases where support has been disabled at compile
    * time.  This code is hardly ever compiled - it's here because
    * STORE_UNKNOWN_CHUNKS is set by both read and write code (compiling in this
    * code) but may be meaningless if the read or write handling of unknown
    * chunks is not compiled in.
    */
#  if !defined(PNG_READ_UNKNOWN_CHUNKS_SUPPORTED) && \
      defined(PNG_READ_SUPPORTED)
1133
      if ((png_ptr->mode & PNG_IS_READ_STRUCT) != 0)
1134 1135 1136 1137 1138 1139 1140
      {
         png_app_error(png_ptr, "no unknown chunk support on read");
         return;
      }
#  endif
#  if !defined(PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED) && \
      defined(PNG_WRITE_SUPPORTED)
1141
      if ((png_ptr->mode & PNG_IS_READ_STRUCT) == 0)
1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155
      {
         png_app_error(png_ptr, "no unknown chunk support on write");
         return;
      }
#  endif

   /* Prior to 1.6.0 this code used png_malloc_warn; however, this meant that
    * unknown critical chunks could be lost with just a warning resulting in
    * undefined behavior.  Now png_chunk_report is used to provide behavior
    * appropriate to read or write.
    */
   np = png_voidcast(png_unknown_chunkp, png_realloc_array(png_ptr,
         info_ptr->unknown_chunks, info_ptr->unknown_chunks_num, num_unknowns,
         sizeof *np));
1156 1157 1158

   if (np == NULL)
   {
1159 1160
      png_chunk_report(png_ptr, "too many unknown chunks",
         PNG_CHUNK_WRITE_ERROR);
1161 1162 1163
      return;
   }

1164
   png_free(png_ptr, info_ptr->unknown_chunks);
1165 1166
   info_ptr->unknown_chunks = np; /* safe because it is initialized */
   info_ptr->free_me |= PNG_FREE_UNKN;
1167

1168
   np += info_ptr->unknown_chunks_num;
1169

1170 1171 1172 1173 1174 1175 1176 1177
   /* Increment unknown_chunks_num each time round the loop to protect the
    * just-allocated chunk data.
    */
   for (; num_unknowns > 0; --num_unknowns, ++unknowns)
   {
      memcpy(np->name, unknowns->name, (sizeof np->name));
      np->name[(sizeof np->name)-1] = '\0';
      np->location = check_location(png_ptr, unknowns->location);
1178

1179 1180 1181 1182 1183
      if (unknowns->size == 0)
      {
         np->data = NULL;
         np->size = 0;
      }
1184

1185 1186
      else
      {
1187 1188
         np->data = png_voidcast(png_bytep,
            png_malloc_base(png_ptr, unknowns->size));
1189

1190
         if (np->data == NULL)
1191
         {
1192 1193 1194 1195
            png_chunk_report(png_ptr, "unknown chunk: out of memory",
               PNG_CHUNK_WRITE_ERROR);
            /* But just skip storing the unknown chunk */
            continue;
1196 1197
         }

1198 1199
         memcpy(np->data, unknowns->data, unknowns->size);
         np->size = unknowns->size;
1200
      }
1201

1202 1203 1204 1205 1206 1207 1208
      /* These increments are skipped on out-of-memory for the data - the
       * unknown chunk entry gets overwritten if the png_chunk_report returns.
       * This is correct in the read case (the chunk is just dropped.)
       */
      ++np;
      ++(info_ptr->unknown_chunks_num);
   }
1209
}
1210

1211
void PNGAPI
1212
png_set_unknown_chunk_location(png_const_structrp png_ptr, png_inforp info_ptr,
1213
    int chunk, int location)
1214
{
1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226
   /* This API is pretty pointless in 1.6.0 because the location can be set
    * before the call to png_set_unknown_chunks.
    *
    * TODO: add a png_app_warning in 1.7
    */
   if (png_ptr != NULL && info_ptr != NULL && chunk >= 0 &&
      chunk < info_ptr->unknown_chunks_num)
   {
      if ((location & (PNG_HAVE_IHDR|PNG_HAVE_PLTE|PNG_AFTER_IDAT)) == 0)
      {
         png_app_error(png_ptr, "invalid unknown chunk location");
         /* Fake out the pre 1.6.0 behavior: */
1227
         if ((location & PNG_HAVE_IDAT) != 0) /* undocumented! */
1228 1229 1230 1231 1232 1233 1234 1235 1236
            location = PNG_AFTER_IDAT;

         else
            location = PNG_HAVE_IHDR; /* also undocumented */
      }

      info_ptr->unknown_chunks[chunk].location =
         check_location(png_ptr, location);
   }
1237
}
1238 1239
#endif

1240

1241
#ifdef PNG_MNG_FEATURES_SUPPORTED
1242
png_uint_32 PNGAPI
1243
png_permit_mng_features (png_structrp png_ptr, png_uint_32 mng_features)
1244
{
1245
   png_debug(1, "in png_permit_mng_features");
1246

1247
   if (png_ptr == NULL)
1248
      return 0;
1249

1250
   png_ptr->mng_features_permitted = mng_features & PNG_ALL_MNG_FEATURES;
1251

1252
   return png_ptr->mng_features_permitted;
1253 1254
}
#endif
1255

1256
#ifdef PNG_HANDLE_AS_UNKNOWN_SUPPORTED
1257 1258 1259 1260 1261 1262 1263 1264
static unsigned int
add_one_chunk(png_bytep list, unsigned int count, png_const_bytep add, int keep)
{
   unsigned int i;

   /* Utility function: update the 'keep' state of a chunk if it is already in
    * the list, otherwise add it to the list.
    */
1265
   for (i=0; i<count; ++i, list += 5)
1266
   {
1267 1268 1269 1270 1271
      if (memcmp(list, add, 4) == 0)
      {
         list[4] = (png_byte)keep;
         return count;
      }
1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283
   }

   if (keep != PNG_HANDLE_CHUNK_AS_DEFAULT)
   {
      ++count;
      memcpy(list, add, 4);
      list[4] = (png_byte)keep;
   }

   return count;
}

1284 1285
void PNGAPI
png_set_keep_unknown_chunks(png_structrp png_ptr, int keep,
1286
    png_const_bytep chunk_list, int num_chunks_in)
1287
{
1288 1289 1290
   png_bytep new_list;
   unsigned int num_chunks, old_num_chunks;

1291 1292
   if (png_ptr == NULL)
      return;
1293

1294
   if (keep < 0 || keep >= PNG_HANDLE_CHUNK_LAST)
1295
   {
1296 1297 1298
      png_app_error(png_ptr, "png_set_keep_unknown_chunks: invalid keep");
      return;
   }
1299

1300 1301 1302
   if (num_chunks_in <= 0)
   {
      png_ptr->unknown_default = keep;
1303

1304 1305 1306 1307
      /* '0' means just set the flags, so stop here */
      if (num_chunks_in == 0)
        return;
   }
1308

1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334
   if (num_chunks_in < 0)
   {
      /* Ignore all unknown chunks and all chunks recognized by
       * libpng except for IHDR, PLTE, tRNS, IDAT, and IEND
       */
      static PNG_CONST png_byte chunks_to_ignore[] = {
         98,  75,  71,  68, '\0',  /* bKGD */
         99,  72,  82,  77, '\0',  /* cHRM */
        103,  65,  77,  65, '\0',  /* gAMA */
        104,  73,  83,  84, '\0',  /* hIST */
        105,  67,  67,  80, '\0',  /* iCCP */
        105,  84,  88, 116, '\0',  /* iTXt */
        111,  70,  70, 115, '\0',  /* oFFs */
        112,  67,  65,  76, '\0',  /* pCAL */
        112,  72,  89, 115, '\0',  /* pHYs */
        115,  66,  73,  84, '\0',  /* sBIT */
        115,  67,  65,  76, '\0',  /* sCAL */
        115,  80,  76,  84, '\0',  /* sPLT */
        115,  84,  69,  82, '\0',  /* sTER */
        115,  82,  71,  66, '\0',  /* sRGB */
        116,  69,  88, 116, '\0',  /* tEXt */
        116,  73,  77,  69, '\0',  /* tIME */
        122,  84,  88, 116, '\0'   /* zTXt */
      };

      chunk_list = chunks_to_ignore;
1335
      num_chunks = (unsigned int)/*SAFE*/(sizeof chunks_to_ignore)/5U;
1336
   }
1337

1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
   else /* num_chunks_in > 0 */
   {
      if (chunk_list == NULL)
      {
         /* Prior to 1.6.0 this was silently ignored, now it is an app_error
          * which can be switched off.
          */
         png_app_error(png_ptr, "png_set_keep_unknown_chunks: no chunk list");
         return;
      }

      num_chunks = num_chunks_in;
1350 1351
   }

1352 1353 1354 1355 1356 1357 1358 1359 1360
   old_num_chunks = png_ptr->num_chunk_list;
   if (png_ptr->chunk_list == NULL)
      old_num_chunks = 0;

   /* Since num_chunks is always restricted to UINT_MAX/5 this can't overflow.
    */
   if (num_chunks + old_num_chunks > UINT_MAX/5)
   {
      png_app_error(png_ptr, "png_set_keep_unknown_chunks: too many chunks");
1361
      return;
1362
   }
1363

1364 1365 1366 1367
   /* If these chunks are being reset to the default then no more memory is
    * required because add_one_chunk above doesn't extend the list if the 'keep'
    * parameter is the default.
    */
1368
   if (keep != 0)
1369 1370 1371
   {
      new_list = png_voidcast(png_bytep, png_malloc(png_ptr,
          5 * (num_chunks + old_num_chunks)));
1372

1373 1374 1375 1376 1377 1378
      if (old_num_chunks > 0)
         memcpy(new_list, png_ptr->chunk_list, 5*old_num_chunks);
   }

   else if (old_num_chunks > 0)
      new_list = png_ptr->chunk_list;
1379

1380 1381 1382 1383 1384 1385 1386 1387 1388
   else
      new_list = NULL;

   /* Add the new chunks together with each one's handling code.  If the chunk
    * already exists the code is updated, otherwise the chunk is added to the
    * end.  (In libpng 1.6.0 order no longer matters because this code enforces
    * the earlier convention that the last setting is the one that is used.)
    */
   if (new_list != NULL)
1389
   {
1390 1391 1392 1393 1394
      png_const_bytep inlist;
      png_bytep outlist;
      unsigned int i;

      for (i=0; i<num_chunks; ++i)
1395
      {
1396 1397
         old_num_chunks = add_one_chunk(new_list, old_num_chunks,
            chunk_list+5*i, keep);
1398
      }
1399 1400 1401 1402

      /* Now remove any spurious 'default' entries. */
      num_chunks = 0;
      for (i=0, inlist=outlist=new_list; i<old_num_chunks; ++i, inlist += 5)
1403
      {
1404 1405 1406 1407 1408 1409 1410
         if (inlist[4])
         {
            if (outlist != inlist)
               memcpy(outlist, inlist, 5);
            outlist += 5;
            ++num_chunks;
         }
1411
      }
1412 1413 1414 1415 1416 1417 1418 1419 1420

      /* This means the application has removed all the specialized handling. */
      if (num_chunks == 0)
      {
         if (png_ptr->chunk_list != new_list)
            png_free(png_ptr, new_list);

         new_list = NULL;
      }
1421
   }
1422

1423 1424 1425 1426
   else
      num_chunks = 0;

   png_ptr->num_chunk_list = num_chunks;
1427

1428 1429 1430 1431
   if (png_ptr->chunk_list != new_list)
   {
      if (png_ptr->chunk_list != NULL)
         png_free(png_ptr, png_ptr->chunk_list);
1432

1433 1434
      png_ptr->chunk_list = new_list;
   }
1435 1436
}
#endif
1437

1438
#ifdef PNG_READ_USER_CHUNKS_SUPPORTED
1439
void PNGAPI
1440
png_set_read_user_chunk_fn(png_structrp png_ptr, png_voidp user_chunk_ptr,
1441
    png_user_chunk_ptr read_user_chunk_fn)
1442
{
1443
   png_debug(1, "in png_set_read_user_chunk_fn");
1444

1445 1446
   if (png_ptr == NULL)
      return;
1447

1448 1449 1450 1451
   png_ptr->read_user_chunk_fn = read_user_chunk_fn;
   png_ptr->user_chunk_ptr = user_chunk_ptr;
}
#endif
1452

1453
#ifdef PNG_INFO_IMAGE_SUPPORTED
1454
void PNGAPI
1455 1456
png_set_rows(png_const_structrp png_ptr, png_inforp info_ptr,
    png_bytepp row_pointers)
1457
{
1458
   png_debug1(1, "in %s storage function", "rows");
1459

1460 1461 1462
   if (png_ptr == NULL || info_ptr == NULL)
      return;

1463 1464
   if (info_ptr->row_pointers != NULL &&
       (info_ptr->row_pointers != row_pointers))
1465
      png_free_data(png_ptr, info_ptr, PNG_FREE_ROWS, 0);
1466

1467
   info_ptr->row_pointers = row_pointers;
1468

1469
   if (row_pointers != NULL)
1470
      info_ptr->valid |= PNG_INFO_IDAT;
1471 1472 1473
}
#endif

1474
void PNGAPI
1475
png_set_compression_buffer_size(png_structrp png_ptr, png_size_t size)
1476
{
1477 1478
    if (png_ptr == NULL)
       return;
1479

1480 1481
    if (size == 0 || size > PNG_UINT_31_MAX)
       png_error(png_ptr, "invalid compression buffer size");
1482

1483
#  ifdef PNG_SEQUENTIAL_READ_SUPPORTED
1484
      if ((png_ptr->mode & PNG_IS_READ_STRUCT) != 0)
1485 1486 1487 1488 1489 1490 1491
      {
         png_ptr->IDAT_read_size = (png_uint_32)size; /* checked above */
         return;
      }
#  endif

#  ifdef PNG_WRITE_SUPPORTED
1492
      if ((png_ptr->mode & PNG_IS_READ_STRUCT) == 0)
1493 1494 1495 1496 1497 1498 1499
      {
         if (png_ptr->zowner != 0)
         {
            png_warning(png_ptr,
              "Compression buffer size cannot be changed because it is in use");
            return;
         }
1500

1501 1502 1503 1504 1505 1506
         if (size > ZLIB_IO_MAX)
         {
            png_warning(png_ptr,
               "Compression buffer size limited to system maximum");
            size = ZLIB_IO_MAX; /* must fit */
         }
1507

1508 1509 1510 1511 1512 1513 1514 1515 1516
         else if (size < 6)
         {
            /* Deflate will potentially go into an infinite loop on a SYNC_FLUSH
             * if this is permitted.
             */
            png_warning(png_ptr,
               "Compression buffer size cannot be reduced below 6");
            return;
         }
1517

1518 1519 1520 1521 1522 1523 1524
         if (png_ptr->zbuffer_size != size)
         {
            png_free_buffer_list(png_ptr, &png_ptr->zbuffer_list);
            png_ptr->zbuffer_size = (uInt)size;
         }
      }
#  endif
1525
}
1526 1527

void PNGAPI
1528
png_set_invalid(png_const_structrp png_ptr, png_inforp info_ptr, int mask)
1529
{
1530
   if (png_ptr != NULL && info_ptr != NULL)
1531
      info_ptr->valid &= ~mask;
1532
}
1533

1534

1535
#ifdef PNG_SET_USER_LIMITS_SUPPORTED
1536
/* This function was added to libpng 1.2.6 */
1537
void PNGAPI
1538
png_set_user_limits (png_structrp png_ptr, png_uint_32 user_width_max,
1539 1540
    png_uint_32 user_height_max)
{
1541 1542 1543 1544 1545 1546
   /* Images with dimensions larger than these limits will be
    * rejected by png_set_IHDR().  To accept any PNG datastream
    * regardless of dimensions, set both limits to 0x7ffffffL.
    */
   if (png_ptr == NULL)
      return;
1547

1548 1549
   png_ptr->user_width_max = user_width_max;
   png_ptr->user_height_max = user_height_max;
1550
}
1551

1552
/* This function was added to libpng 1.4.0 */
1553
void PNGAPI
1554
png_set_chunk_cache_max (png_structrp png_ptr, png_uint_32 user_chunk_cache_max)
1555
{
1556
    if (png_ptr != NULL)
1557
       png_ptr->user_chunk_cache_max = user_chunk_cache_max;
1558 1559 1560 1561
}

/* This function was added to libpng 1.4.1 */
void PNGAPI
1562
png_set_chunk_malloc_max (png_structrp png_ptr,
1563
    png_alloc_size_t user_chunk_malloc_max)
1564
{
1565
   if (png_ptr != NULL)
1566
      png_ptr->user_chunk_malloc_max = user_chunk_malloc_max;
1567
}
1568
#endif /* ?SET_USER_LIMITS */
1569

1570

1571
#ifdef PNG_BENIGN_ERRORS_SUPPORTED
1572
void PNGAPI
1573
png_set_benign_errors(png_structrp png_ptr, int allowed)
1574
{
1575
   png_debug(1, "in png_set_benign_errors");
1576

1577 1578 1579 1580 1581 1582
   /* If allowed is 1, png_benign_error() is treated as a warning.
    *
    * If allowed is 0, png_benign_error() is treated as an error (which
    * is the default behavior if png_set_benign_errors() is not called).
    */

1583
   if (allowed != 0)
1584 1585
      png_ptr->flags |= PNG_FLAG_BENIGN_ERRORS_WARN |
         PNG_FLAG_APP_WARNINGS_WARN | PNG_FLAG_APP_ERRORS_WARN;
1586

1587
   else
1588 1589
      png_ptr->flags &= ~(PNG_FLAG_BENIGN_ERRORS_WARN |
         PNG_FLAG_APP_WARNINGS_WARN | PNG_FLAG_APP_ERRORS_WARN);
1590
}
1591
#endif /* BENIGN_ERRORS */
1592 1593 1594 1595 1596 1597

#ifdef PNG_CHECK_FOR_INVALID_INDEX_SUPPORTED
   /* Whether to report invalid palette index; added at libng-1.5.10.
    * It is possible for an indexed (color-type==3) PNG file to contain
    * pixels with invalid (out-of-range) indexes if the PLTE chunk has
    * fewer entries than the image's bit-depth would allow. We recover
1598
    * from this gracefully by filling any incomplete palette with zeros
1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613
    * (opaque black).  By default, when this occurs libpng will issue
    * a benign error.  This API can be used to override that behavior.
    */
void PNGAPI
png_set_check_for_invalid_index(png_structrp png_ptr, int allowed)
{
   png_debug(1, "in png_set_check_for_invalid_index");

   if (allowed > 0)
      png_ptr->num_palette_max = 0;

   else
      png_ptr->num_palette_max = -1;
}
#endif
1614
#endif /* READ || WRITE */