pngread.c 71.4 KB
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/* pngread.c - read a PNG file
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 *
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 * Last changed in libpng 1.6.0 [(PENDING RELEASE)]
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 * Copyright (c) 1998-2011 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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 * This file contains routines that an application calls directly to
 * read a PNG file or stream.
 */
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#include "pngpriv.h"
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#if defined PNG_SIMPLIFIED_READ_SUPPORTED && defined PNG_STDIO_SUPPORTED
#  include <errno.h>
#endif
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#ifdef PNG_READ_SUPPORTED
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/* Create a PNG structure for reading, and allocate any memory needed. */
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PNG_FUNCTION(png_structp,PNGAPI
png_create_read_struct,(png_const_charp user_png_ver, png_voidp error_ptr,
    png_error_ptr error_fn, png_error_ptr warn_fn),PNG_ALLOCATED)
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{
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#ifndef PNG_USER_MEM_SUPPORTED
   png_structp png_ptr = png_create_png_struct(user_png_ver, error_ptr,
      error_fn, warn_fn, NULL, NULL, NULL);
#else
   return png_create_read_struct_2(user_png_ver, error_ptr, error_fn,
       warn_fn, NULL, NULL, NULL);
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}

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/* Alternate create PNG structure for reading, and allocate any memory
 * needed.
 */
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PNG_FUNCTION(png_structp,PNGAPI
png_create_read_struct_2,(png_const_charp user_png_ver, png_voidp error_ptr,
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    png_error_ptr error_fn, png_error_ptr warn_fn, png_voidp mem_ptr,
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    png_malloc_ptr malloc_fn, png_free_ptr free_fn),PNG_ALLOCATED)
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{
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   png_structp png_ptr = png_create_png_struct(user_png_ver, error_ptr,
      error_fn, warn_fn, mem_ptr, malloc_fn, free_fn);
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#endif /* PNG_USER_MEM_SUPPORTED */

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   if (png_ptr != NULL)
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   {
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      int ok = 0;
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      /* TODO: why does this happen here on read, but in png_write_IHDR on
       * write?
       */
      png_ptr->zstream.zalloc = png_zalloc;
      png_ptr->zstream.zfree = png_zfree;
      png_ptr->zstream.opaque = png_ptr;
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      switch (inflateInit(&png_ptr->zstream))
      {
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         case Z_OK:
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            ok = 1;
            break;
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         case Z_MEM_ERROR:
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            png_warning(png_ptr, "zlib memory error");
            break;

         case Z_STREAM_ERROR:
            png_warning(png_ptr, "zlib stream error");
            break;

         case Z_VERSION_ERROR:
            png_warning(png_ptr, "zlib version error");
            break;

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         default:
            png_warning(png_ptr, "Unknown zlib error");
            break;
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      }
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      if (ok)
      {
         png_ptr->zstream.next_out = png_ptr->zbuf;
         png_ptr->zstream.avail_out = png_ptr->zbuf_size;
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         /* TODO: delay this, it can be done in png_init_io (if the app doesn't
          * do it itself) avoiding setting the default function if it is not
          * required.
          */
         png_set_read_fn(png_ptr, NULL, NULL);
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         return png_ptr;
      }
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      /* Else something went wrong in the zlib initialization above; it would
       * much simplify this code if the creation of the zlib stuff was to be
       * delayed until it is needed.
       */
      png_destroy_read_struct(&png_ptr, NULL, NULL);
   }
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   return NULL;
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}

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#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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/* Read the information before the actual image data.  This has been
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 * changed in v0.90 to allow reading a file that already has the magic
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 * bytes read from the stream.  You can tell libpng how many bytes have
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 * been read from the beginning of the stream (up to the maximum of 8)
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 * via png_set_sig_bytes(), and we will only check the remaining bytes
 * here.  The application can then have access to the signature bytes we
 * read if it is determined that this isn't a valid PNG file.
 */
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void PNGAPI
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png_read_info(png_structp png_ptr, png_infop info_ptr)
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{
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   png_debug(1, "in png_read_info");
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   if (png_ptr == NULL || info_ptr == NULL)
      return;
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   /* Read and check the PNG file signature. */
   png_read_sig(png_ptr, info_ptr);
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   for (;;)
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   {
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      png_uint_32 length = png_read_chunk_header(png_ptr);
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      png_uint_32 chunk_name = png_ptr->chunk_name;
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      /* This should be a binary subdivision search or a hash for
       * matching the chunk name rather than a linear search.
       */
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      if (chunk_name == png_IDAT)
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         if (png_ptr->mode & PNG_AFTER_IDAT)
            png_ptr->mode |= PNG_HAVE_CHUNK_AFTER_IDAT;
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      if (chunk_name == png_IHDR)
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         png_handle_IHDR(png_ptr, info_ptr, length);
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      else if (chunk_name == png_IEND)
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         png_handle_IEND(png_ptr, info_ptr, length);
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#ifdef PNG_HANDLE_AS_UNKNOWN_SUPPORTED
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      else if (png_chunk_unknown_handling(png_ptr, chunk_name) !=
         PNG_HANDLE_CHUNK_AS_DEFAULT)
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      {
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         if (chunk_name == png_IDAT)
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            png_ptr->mode |= PNG_HAVE_IDAT;
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         png_handle_unknown(png_ptr, info_ptr, length);
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         if (chunk_name == png_PLTE)
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            png_ptr->mode |= PNG_HAVE_PLTE;
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         else if (chunk_name == png_IDAT)
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         {
            if (!(png_ptr->mode & PNG_HAVE_IHDR))
               png_error(png_ptr, "Missing IHDR before IDAT");
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            else if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE &&
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                !(png_ptr->mode & PNG_HAVE_PLTE))
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               png_error(png_ptr, "Missing PLTE before IDAT");
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            break;
         }
      }
#endif
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      else if (chunk_name == png_PLTE)
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         png_handle_PLTE(png_ptr, info_ptr, length);
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      else if (chunk_name == png_IDAT)
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      {
         if (!(png_ptr->mode & PNG_HAVE_IHDR))
            png_error(png_ptr, "Missing IHDR before IDAT");
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         else if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE &&
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             !(png_ptr->mode & PNG_HAVE_PLTE))
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            png_error(png_ptr, "Missing PLTE before IDAT");

         png_ptr->idat_size = length;
         png_ptr->mode |= PNG_HAVE_IDAT;
         break;
      }
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#ifdef PNG_READ_bKGD_SUPPORTED
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      else if (chunk_name == png_bKGD)
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         png_handle_bKGD(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_cHRM_SUPPORTED
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      else if (chunk_name == png_cHRM)
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         png_handle_cHRM(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_gAMA_SUPPORTED
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      else if (chunk_name == png_gAMA)
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         png_handle_gAMA(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_hIST_SUPPORTED
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      else if (chunk_name == png_hIST)
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         png_handle_hIST(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_oFFs_SUPPORTED
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      else if (chunk_name == png_oFFs)
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         png_handle_oFFs(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_pCAL_SUPPORTED
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      else if (chunk_name == png_pCAL)
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         png_handle_pCAL(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_sCAL_SUPPORTED
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      else if (chunk_name == png_sCAL)
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         png_handle_sCAL(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_pHYs_SUPPORTED
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      else if (chunk_name == png_pHYs)
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         png_handle_pHYs(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_sBIT_SUPPORTED
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      else if (chunk_name == png_sBIT)
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         png_handle_sBIT(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_sRGB_SUPPORTED
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      else if (chunk_name == png_sRGB)
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         png_handle_sRGB(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_iCCP_SUPPORTED
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      else if (chunk_name == png_iCCP)
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         png_handle_iCCP(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_sPLT_SUPPORTED
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      else if (chunk_name == png_sPLT)
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         png_handle_sPLT(png_ptr, info_ptr, length);
#endif
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#ifdef PNG_READ_tEXt_SUPPORTED
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      else if (chunk_name == png_tEXt)
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         png_handle_tEXt(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_tIME_SUPPORTED
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      else if (chunk_name == png_tIME)
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         png_handle_tIME(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_tRNS_SUPPORTED
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      else if (chunk_name == png_tRNS)
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         png_handle_tRNS(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_zTXt_SUPPORTED
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      else if (chunk_name == png_zTXt)
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         png_handle_zTXt(png_ptr, info_ptr, length);
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#endif
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#ifdef PNG_READ_iTXt_SUPPORTED
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      else if (chunk_name == png_iTXt)
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         png_handle_iTXt(png_ptr, info_ptr, length);
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#endif
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      else
         png_handle_unknown(png_ptr, info_ptr, length);
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   }
}
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#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
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/* Optional call to update the users info_ptr structure */
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void PNGAPI
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png_read_update_info(png_structp png_ptr, png_infop info_ptr)
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{
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   png_debug(1, "in png_read_update_info");
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   if (png_ptr == NULL)
      return;
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   png_read_start_row(png_ptr);
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#ifdef PNG_READ_TRANSFORMS_SUPPORTED
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   png_read_transform_info(png_ptr, info_ptr);
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#else
   PNG_UNUSED(info_ptr)
#endif
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}

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#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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/* Initialize palette, background, etc, after transformations
 * are set, but before any reading takes place.  This allows
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 * the user to obtain a gamma-corrected palette, for example.
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 * If the user doesn't call this, we will do it ourselves.
 */
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void PNGAPI
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png_start_read_image(png_structp png_ptr)
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{
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   png_debug(1, "in png_start_read_image");
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   if (png_ptr != NULL)
     png_read_start_row(png_ptr);
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}
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#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
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#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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void PNGAPI
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png_read_row(png_structp png_ptr, png_bytep row, png_bytep dsp_row)
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{
   int ret;
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   png_row_info row_info;

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   if (png_ptr == NULL)
      return;
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   png_debug2(1, "in png_read_row (row %lu, pass %d)",
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       (unsigned long)png_ptr->row_number, png_ptr->pass);
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   /* png_read_start_row sets the information (in particular iwidth) for this
    * interlace pass.
    */
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   if (!(png_ptr->flags & PNG_FLAG_ROW_INIT))
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      png_read_start_row(png_ptr);
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   /* 1.5.6: row_info moved out of png_struct to a local here. */
   row_info.width = png_ptr->iwidth; /* NOTE: width of current interlaced row */
   row_info.color_type = png_ptr->color_type;
   row_info.bit_depth = png_ptr->bit_depth;
   row_info.channels = png_ptr->channels;
   row_info.pixel_depth = png_ptr->pixel_depth;
   row_info.rowbytes = PNG_ROWBYTES(row_info.pixel_depth, row_info.width);

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   if (png_ptr->row_number == 0 && png_ptr->pass == 0)
   {
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   /* Check for transforms that have been set but were defined out */
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#if defined(PNG_WRITE_INVERT_SUPPORTED) && !defined(PNG_READ_INVERT_SUPPORTED)
   if (png_ptr->transformations & PNG_INVERT_MONO)
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      png_warning(png_ptr, "PNG_READ_INVERT_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_FILLER_SUPPORTED) && !defined(PNG_READ_FILLER_SUPPORTED)
   if (png_ptr->transformations & PNG_FILLER)
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      png_warning(png_ptr, "PNG_READ_FILLER_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_PACKSWAP_SUPPORTED) && \
    !defined(PNG_READ_PACKSWAP_SUPPORTED)
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   if (png_ptr->transformations & PNG_PACKSWAP)
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      png_warning(png_ptr, "PNG_READ_PACKSWAP_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_PACK_SUPPORTED) && !defined(PNG_READ_PACK_SUPPORTED)
   if (png_ptr->transformations & PNG_PACK)
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      png_warning(png_ptr, "PNG_READ_PACK_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_SHIFT_SUPPORTED) && !defined(PNG_READ_SHIFT_SUPPORTED)
   if (png_ptr->transformations & PNG_SHIFT)
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      png_warning(png_ptr, "PNG_READ_SHIFT_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_BGR_SUPPORTED) && !defined(PNG_READ_BGR_SUPPORTED)
   if (png_ptr->transformations & PNG_BGR)
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      png_warning(png_ptr, "PNG_READ_BGR_SUPPORTED is not defined");
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#endif
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#if defined(PNG_WRITE_SWAP_SUPPORTED) && !defined(PNG_READ_SWAP_SUPPORTED)
   if (png_ptr->transformations & PNG_SWAP_BYTES)
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      png_warning(png_ptr, "PNG_READ_SWAP_SUPPORTED is not defined");
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#endif
   }
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#ifdef PNG_READ_INTERLACING_SUPPORTED
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   /* If interlaced and we do not need a new row, combine row and return.
    * Notice that the pixels we have from previous rows have been transformed
    * already; we can only combine like with like (transformed or
    * untransformed) and, because of the libpng API for interlaced images, this
    * means we must transform before de-interlacing.
    */
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   if (png_ptr->interlaced && (png_ptr->transformations & PNG_INTERLACE))
   {
      switch (png_ptr->pass)
      {
         case 0:
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            if (png_ptr->row_number & 0x07)
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            {
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               if (dsp_row != NULL)
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
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               return;
            }
            break;
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         case 1:
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            if ((png_ptr->row_number & 0x07) || png_ptr->width < 5)
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            {
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               if (dsp_row != NULL)
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
               return;
            }
            break;
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         case 2:
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            if ((png_ptr->row_number & 0x07) != 4)
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            {
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               if (dsp_row != NULL && (png_ptr->row_number & 4))
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
               return;
            }
            break;
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         case 3:
            if ((png_ptr->row_number & 3) || png_ptr->width < 3)
            {
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               if (dsp_row != NULL)
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
               return;
            }
            break;
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         case 4:
            if ((png_ptr->row_number & 3) != 2)
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            {
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               if (dsp_row != NULL && (png_ptr->row_number & 2))
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
               return;
            }
            break;
         case 5:
            if ((png_ptr->row_number & 1) || png_ptr->width < 2)
            {
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               if (dsp_row != NULL)
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                  png_combine_row(png_ptr, dsp_row, 1/*display*/);
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               png_read_finish_row(png_ptr);
               return;
            }
            break;
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         default:
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         case 6:
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            if (!(png_ptr->row_number & 1))
            {
               png_read_finish_row(png_ptr);
               return;
            }
            break;
      }
   }
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#endif
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   if (!(png_ptr->mode & PNG_HAVE_IDAT))
      png_error(png_ptr, "Invalid attempt to read row data");
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   png_ptr->zstream.next_out = png_ptr->row_buf;
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   png_ptr->zstream.avail_out =
       (uInt)(PNG_ROWBYTES(png_ptr->pixel_depth,
       png_ptr->iwidth) + 1);
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   do
   {
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      if (!(png_ptr->zstream.avail_in))
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      {
         while (!png_ptr->idat_size)
         {
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            png_crc_finish(png_ptr, 0);
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            png_ptr->idat_size = png_read_chunk_header(png_ptr);
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            if (png_ptr->chunk_name != png_IDAT)
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               png_error(png_ptr, "Not enough image data");
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         }
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         png_ptr->zstream.avail_in = (uInt)png_ptr->zbuf_size;
         png_ptr->zstream.next_in = png_ptr->zbuf;
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         if (png_ptr->zbuf_size > png_ptr->idat_size)
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            png_ptr->zstream.avail_in = (uInt)png_ptr->idat_size;
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         png_crc_read(png_ptr, png_ptr->zbuf,
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             (png_size_t)png_ptr->zstream.avail_in);
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         png_ptr->idat_size -= png_ptr->zstream.avail_in;
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      }
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      ret = inflate(&png_ptr->zstream, Z_PARTIAL_FLUSH);
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      if (ret == Z_STREAM_END)
      {
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         if (png_ptr->zstream.avail_out || png_ptr->zstream.avail_in ||
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502
            png_ptr->idat_size)
503
            png_benign_error(png_ptr, "Extra compressed data");
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504
         png_ptr->mode |= PNG_AFTER_IDAT;
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505
         png_ptr->flags |= PNG_FLAG_ZLIB_FINISHED;
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506
         break;
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507
      }
508

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509
      if (ret != Z_OK)
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510
         png_error(png_ptr, png_ptr->zstream.msg ? png_ptr->zstream.msg :
511
             "Decompression error");
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512 513

   } while (png_ptr->zstream.avail_out);
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514

515 516 517
   if (png_ptr->row_buf[0] > PNG_FILTER_VALUE_NONE)
   {
      if (png_ptr->row_buf[0] < PNG_FILTER_VALUE_LAST)
518
         png_read_filter_row(png_ptr, &row_info, png_ptr->row_buf + 1,
519 520 521 522
            png_ptr->prev_row + 1, png_ptr->row_buf[0]);
      else
         png_error(png_ptr, "bad adaptive filter value");
   }
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523

524 525 526 527 528 529
   /* libpng 1.5.6: the following line was copying png_ptr->rowbytes before
    * 1.5.6, while the buffer really is this big in current versions of libpng
    * it may not be in the future, so this was changed just to copy the
    * interlaced count:
    */
   png_memcpy(png_ptr->prev_row, png_ptr->row_buf, row_info.rowbytes + 1);
530

531
#ifdef PNG_MNG_FEATURES_SUPPORTED
532
   if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) &&
533
       (png_ptr->filter_type == PNG_INTRAPIXEL_DIFFERENCING))
534 535
   {
      /* Intrapixel differencing */
536
      png_do_read_intrapixel(&row_info, png_ptr->row_buf + 1);
537 538
   }
#endif
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539

540

541
#ifdef PNG_READ_TRANSFORMS_SUPPORTED
542
   if (png_ptr->transformations)
543
      png_do_read_transformations(png_ptr, &row_info);
544
#endif
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545

546 547 548 549 550 551 552 553 554 555 556
   /* The transformed pixel depth should match the depth now in row_info. */
   if (png_ptr->transformed_pixel_depth == 0)
   {
      png_ptr->transformed_pixel_depth = row_info.pixel_depth;
      if (row_info.pixel_depth > png_ptr->maximum_pixel_depth)
         png_error(png_ptr, "sequential row overflow");
   }

   else if (png_ptr->transformed_pixel_depth != row_info.pixel_depth)
      png_error(png_ptr, "internal sequential row size calculation error");

557
#ifdef PNG_READ_INTERLACING_SUPPORTED
558
   /* Blow up interlaced rows to full size */
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559 560 561 562
   if (png_ptr->interlaced &&
      (png_ptr->transformations & PNG_INTERLACE))
   {
      if (png_ptr->pass < 6)
563 564
         png_do_read_interlace(&row_info, png_ptr->row_buf + 1, png_ptr->pass,
            png_ptr->transformations);
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565

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566
      if (dsp_row != NULL)
567
         png_combine_row(png_ptr, dsp_row, 1/*display*/);
568

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569
      if (row != NULL)
570
         png_combine_row(png_ptr, row, 0/*row*/);
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571
   }
572

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573
   else
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574
#endif
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575
   {
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576
      if (row != NULL)
577
         png_combine_row(png_ptr, row, -1/*ignored*/);
578

A
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579
      if (dsp_row != NULL)
580
         png_combine_row(png_ptr, dsp_row, -1/*ignored*/);
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581 582
   }
   png_read_finish_row(png_ptr);
583 584 585

   if (png_ptr->read_row_fn != NULL)
      (*(png_ptr->read_row_fn))(png_ptr, png_ptr->row_number, png_ptr->pass);
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586
}
587
#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
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588

589
#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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590
/* Read one or more rows of image data.  If the image is interlaced,
591 592
 * and png_set_interlace_handling() has been called, the rows need to
 * contain the contents of the rows from the previous pass.  If the
593
 * image has alpha or transparency, and png_handle_alpha()[*] has been
594 595
 * called, the rows contents must be initialized to the contents of the
 * screen.
596
 *
597 598 599 600 601 602 603 604 605 606 607 608 609
 * "row" holds the actual image, and pixels are placed in it
 * as they arrive.  If the image is displayed after each pass, it will
 * appear to "sparkle" in.  "display_row" can be used to display a
 * "chunky" progressive image, with finer detail added as it becomes
 * available.  If you do not want this "chunky" display, you may pass
 * NULL for display_row.  If you do not want the sparkle display, and
 * you have not called png_handle_alpha(), you may pass NULL for rows.
 * If you have called png_handle_alpha(), and the image has either an
 * alpha channel or a transparency chunk, you must provide a buffer for
 * rows.  In this case, you do not have to provide a display_row buffer
 * also, but you may.  If the image is not interlaced, or if you have
 * not called png_set_interlace_handling(), the display_row buffer will
 * be ignored, so pass NULL to it.
610
 *
611
 * [*] png_handle_alpha() does not exist yet, as of this version of libpng
612
 */
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613

614
void PNGAPI
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615
png_read_rows(png_structp png_ptr, png_bytepp row,
616
    png_bytepp display_row, png_uint_32 num_rows)
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617
{
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618 619 620
   png_uint_32 i;
   png_bytepp rp;
   png_bytepp dp;
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621

622
   png_debug(1, "in png_read_rows");
623

624 625
   if (png_ptr == NULL)
      return;
626

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627 628
   rp = row;
   dp = display_row;
629
   if (rp != NULL && dp != NULL)
630 631 632 633
      for (i = 0; i < num_rows; i++)
      {
         png_bytep rptr = *rp++;
         png_bytep dptr = *dp++;
634

635 636
         png_read_row(png_ptr, rptr, dptr);
      }
637

638
   else if (rp != NULL)
639 640
      for (i = 0; i < num_rows; i++)
      {
641
         png_bytep rptr = *rp;
642
         png_read_row(png_ptr, rptr, NULL);
643 644
         rp++;
      }
645

646
   else if (dp != NULL)
647 648 649
      for (i = 0; i < num_rows; i++)
      {
         png_bytep dptr = *dp;
650
         png_read_row(png_ptr, NULL, dptr);
651
         dp++;
652
      }
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653
}
654
#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
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655

656
#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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657
/* Read the entire image.  If the image has an alpha channel or a tRNS
658
 * chunk, and you have called png_handle_alpha()[*], you will need to
659 660 661 662 663 664 665
 * initialize the image to the current image that PNG will be overlaying.
 * We set the num_rows again here, in case it was incorrectly set in
 * png_read_start_row() by a call to png_read_update_info() or
 * png_start_read_image() if png_set_interlace_handling() wasn't called
 * prior to either of these functions like it should have been.  You can
 * only call this function once.  If you desire to have an image for
 * each pass of a interlaced image, use png_read_rows() instead.
666
 *
667
 * [*] png_handle_alpha() does not exist yet, as of this version of libpng
668
 */
669
void PNGAPI
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670
png_read_image(png_structp png_ptr, png_bytepp image)
G
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671
{
672
   png_uint_32 i, image_height;
G
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673
   int pass, j;
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674
   png_bytepp rp;
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675

676
   png_debug(1, "in png_read_image");
677

678 679
   if (png_ptr == NULL)
      return;
680 681

#ifdef PNG_READ_INTERLACING_SUPPORTED
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682 683 684 685 686 687 688 689
   if (!(png_ptr->flags & PNG_FLAG_ROW_INIT))
   {
      pass = png_set_interlace_handling(png_ptr);
      /* And make sure transforms are initialized. */
      png_start_read_image(png_ptr);
   }
   else
   {
690
      if (png_ptr->interlaced && !(png_ptr->transformations & PNG_INTERLACE))
G
[devel]  
Glenn Randers-Pehrson 已提交
691
      {
692 693 694 695 696 697 698 699
         /* Caller called png_start_read_image or png_read_update_info without
          * first turning on the PNG_INTERLACE transform.  We can fix this here,
          * but the caller should do it!
          */
         png_warning(png_ptr, "Interlace handling should be turned on when "
            "using png_read_image");
         /* Make sure this is set correctly */
         png_ptr->num_rows = png_ptr->height;
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700 701 702 703 704 705 706
      }

      /* Obtain the pass number, which also turns on the PNG_INTERLACE flag in
       * the above error case.
       */
      pass = png_set_interlace_handling(png_ptr);
   }
707 708 709
#else
   if (png_ptr->interlaced)
      png_error(png_ptr,
710
          "Cannot read interlaced image -- interlace handler disabled");
711

712 713 714
   pass = 1;
#endif

715
   image_height=png_ptr->height;
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716

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717 718 719
   for (j = 0; j < pass; j++)
   {
      rp = image;
720
      for (i = 0; i < image_height; i++)
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721
      {
722
         png_read_row(png_ptr, *rp, NULL);
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723 724 725 726
         rp++;
      }
   }
}
727
#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
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728

729
#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
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730
/* Read the end of the PNG file.  Will not read past the end of the
731 732 733
 * file, will verify the end is accurate, and will read any comments
 * or time information at the end of the file, if info is not NULL.
 */
734
void PNGAPI
A
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735
png_read_end(png_structp png_ptr, png_infop info_ptr)
G
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736
{
737
   png_debug(1, "in png_read_end");
738

739 740
   if (png_ptr == NULL)
      return;
741

A
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742
   png_crc_finish(png_ptr, 0); /* Finish off CRC from last IDAT chunk */
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743 744 745

   do
   {
746
      png_uint_32 length = png_read_chunk_header(png_ptr);
747
      png_uint_32 chunk_name = png_ptr->chunk_name;
A
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748

749
      if (chunk_name == png_IHDR)
A
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750
         png_handle_IHDR(png_ptr, info_ptr, length);
751

752
      else if (chunk_name == png_IEND)
753
         png_handle_IEND(png_ptr, info_ptr, length);
754

755
#ifdef PNG_HANDLE_AS_UNKNOWN_SUPPORTED
756 757
      else if (png_chunk_unknown_handling(png_ptr, chunk_name) !=
         PNG_HANDLE_CHUNK_AS_DEFAULT)
758
      {
759
         if (chunk_name == png_IDAT)
760
         {
761
            if ((length > 0) || (png_ptr->mode & PNG_HAVE_CHUNK_AFTER_IDAT))
762
               png_benign_error(png_ptr, "Too many IDATs found");
763 764
         }
         png_handle_unknown(png_ptr, info_ptr, length);
765
         if (chunk_name == png_PLTE)
766 767 768
            png_ptr->mode |= PNG_HAVE_PLTE;
      }
#endif
769

770
      else if (chunk_name == png_IDAT)
A
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771 772 773 774
      {
         /* Zero length IDATs are legal after the last IDAT has been
          * read, but not after other chunks have been read.
          */
775
         if ((length > 0) || (png_ptr->mode & PNG_HAVE_CHUNK_AFTER_IDAT))
776
            png_benign_error(png_ptr, "Too many IDATs found");
777

778
         png_crc_finish(png_ptr, length);
A
Andreas Dilger 已提交
779
      }
780
      else if (chunk_name == png_PLTE)
A
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781
         png_handle_PLTE(png_ptr, info_ptr, length);
782

783
#ifdef PNG_READ_bKGD_SUPPORTED
784
      else if (chunk_name == png_bKGD)
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785
         png_handle_bKGD(png_ptr, info_ptr, length);
A
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786
#endif
787

788
#ifdef PNG_READ_cHRM_SUPPORTED
789
      else if (chunk_name == png_cHRM)
A
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790 791
         png_handle_cHRM(png_ptr, info_ptr, length);
#endif
792

793
#ifdef PNG_READ_gAMA_SUPPORTED
794
      else if (chunk_name == png_gAMA)
A
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795 796
         png_handle_gAMA(png_ptr, info_ptr, length);
#endif
797

798
#ifdef PNG_READ_hIST_SUPPORTED
799
      else if (chunk_name == png_hIST)
A
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800
         png_handle_hIST(png_ptr, info_ptr, length);
A
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801
#endif
802

803
#ifdef PNG_READ_oFFs_SUPPORTED
804
      else if (chunk_name == png_oFFs)
A
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805
         png_handle_oFFs(png_ptr, info_ptr, length);
A
Andreas Dilger 已提交
806
#endif
807

808
#ifdef PNG_READ_pCAL_SUPPORTED
809
      else if (chunk_name == png_pCAL)
A
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810 811
         png_handle_pCAL(png_ptr, info_ptr, length);
#endif
812

813
#ifdef PNG_READ_sCAL_SUPPORTED
814
      else if (chunk_name == png_sCAL)
815 816
         png_handle_sCAL(png_ptr, info_ptr, length);
#endif
817

818
#ifdef PNG_READ_pHYs_SUPPORTED
819
      else if (chunk_name == png_pHYs)
A
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820 821
         png_handle_pHYs(png_ptr, info_ptr, length);
#endif
822

823
#ifdef PNG_READ_sBIT_SUPPORTED
824
      else if (chunk_name == png_sBIT)
A
Andreas Dilger 已提交
825
         png_handle_sBIT(png_ptr, info_ptr, length);
G
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826
#endif
827

828
#ifdef PNG_READ_sRGB_SUPPORTED
829
      else if (chunk_name == png_sRGB)
830 831
         png_handle_sRGB(png_ptr, info_ptr, length);
#endif
832

833
#ifdef PNG_READ_iCCP_SUPPORTED
834
      else if (chunk_name == png_iCCP)
835 836
         png_handle_iCCP(png_ptr, info_ptr, length);
#endif
837

838
#ifdef PNG_READ_sPLT_SUPPORTED
839
      else if (chunk_name == png_sPLT)
840 841
         png_handle_sPLT(png_ptr, info_ptr, length);
#endif
842

843
#ifdef PNG_READ_tEXt_SUPPORTED
844
      else if (chunk_name == png_tEXt)
A
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845
         png_handle_tEXt(png_ptr, info_ptr, length);
G
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846
#endif
847

848
#ifdef PNG_READ_tIME_SUPPORTED
849
      else if (chunk_name == png_tIME)
A
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850 851
         png_handle_tIME(png_ptr, info_ptr, length);
#endif
852

853
#ifdef PNG_READ_tRNS_SUPPORTED
854
      else if (chunk_name == png_tRNS)
A
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855 856
         png_handle_tRNS(png_ptr, info_ptr, length);
#endif
857

858
#ifdef PNG_READ_zTXt_SUPPORTED
859
      else if (chunk_name == png_zTXt)
A
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860
         png_handle_zTXt(png_ptr, info_ptr, length);
861
#endif
862

863
#ifdef PNG_READ_iTXt_SUPPORTED
864
      else if (chunk_name == png_iTXt)
865
         png_handle_iTXt(png_ptr, info_ptr, length);
G
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866
#endif
867

G
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868
      else
A
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869 870
         png_handle_unknown(png_ptr, info_ptr, length);
   } while (!(png_ptr->mode & PNG_HAVE_IEND));
G
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871
}
872
#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
G
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873

874 875 876
/* Free all memory used in the read struct */
static void
png_read_destroy(png_structp png_ptr)
G
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877
{
878
   png_debug(1, "in png_read_destroy");
879

880 881 882 883
#ifdef PNG_READ_GAMMA_SUPPORTED
   png_destroy_gamma_table(png_ptr);
#endif

A
Andreas Dilger 已提交
884
   png_free(png_ptr, png_ptr->zbuf);
885
   png_free(png_ptr, png_ptr->big_row_buf);
886
   png_free(png_ptr, png_ptr->big_prev_row);
887
   png_free(png_ptr, png_ptr->chunkdata);
888

889
#ifdef PNG_READ_QUANTIZE_SUPPORTED
A
Andreas Dilger 已提交
890
   png_free(png_ptr, png_ptr->palette_lookup);
891
   png_free(png_ptr, png_ptr->quantize_index);
G
Guy Schalnat 已提交
892
#endif
893

894
   if (png_ptr->free_me & PNG_FREE_PLTE)
895
      png_zfree(png_ptr, png_ptr->palette);
896
   png_ptr->free_me &= ~PNG_FREE_PLTE;
897

898
#if defined(PNG_tRNS_SUPPORTED) || \
899
    defined(PNG_READ_EXPAND_SUPPORTED) || defined(PNG_READ_BACKGROUND_SUPPORTED)
900
   if (png_ptr->free_me & PNG_FREE_TRNS)
901
      png_free(png_ptr, png_ptr->trans_alpha);
902
   png_ptr->free_me &= ~PNG_FREE_TRNS;
903
#endif
904

905
#ifdef PNG_READ_hIST_SUPPORTED
906
   if (png_ptr->free_me & PNG_FREE_HIST)
A
Andreas Dilger 已提交
907
      png_free(png_ptr, png_ptr->hist);
908
   png_ptr->free_me &= ~PNG_FREE_HIST;
G
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909
#endif
910

A
Andreas Dilger 已提交
911
   inflateEnd(&png_ptr->zstream);
912

G
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913
#ifdef PNG_PROGRESSIVE_READ_SUPPORTED
A
Andreas Dilger 已提交
914
   png_free(png_ptr, png_ptr->save_buffer);
G
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915
#endif
G
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916

917 918 919 920 921 922
#ifdef PNG_PROGRESSIVE_READ_SUPPORTED
#ifdef PNG_TEXT_SUPPORTED
   png_free(png_ptr, png_ptr->current_text);
#endif /* PNG_TEXT_SUPPORTED */
#endif /* PNG_PROGRESSIVE_READ_SUPPORTED */

923 924 925
   /* NOTE: the 'setjmp' buffer may still be allocated and the memory and error
    * callbacks are still set at this point.  They are required to complete the
    * destruction of the png_struct itself.
G
Guy Schalnat 已提交
926
    */
927
}
G
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928

929 930 931 932 933 934
/* Free all memory used by the read */
void PNGAPI
png_destroy_read_struct(png_structpp png_ptr_ptr, png_infopp info_ptr_ptr,
    png_infopp end_info_ptr_ptr)
{
   png_structp png_ptr = NULL;
G
Guy Schalnat 已提交
935

936
   png_debug(1, "in png_destroy_read_struct");
G
Guy Schalnat 已提交
937

938 939
   if (png_ptr_ptr != NULL)
      png_ptr = *png_ptr_ptr;
G
Guy Schalnat 已提交
940

941 942 943 944 945 946 947 948 949
   if (png_ptr == NULL)
      return;

   /* libpng 1.6.0: use the API to destroy info structs to ensure consistent
    * behavior.  Prior to 1.6.0 libpng did extra 'info' destruction in this API.
    * The extra was, apparently, unnecessary yet this hides memory leak bugs.
    */
   png_destroy_info_struct(png_ptr, end_info_ptr_ptr);
   png_destroy_info_struct(png_ptr, info_ptr_ptr);
950

951 952 953
   *png_ptr_ptr = NULL;
   png_read_destroy(png_ptr);
   png_destroy_png_struct(png_ptr);
G
Guy Schalnat 已提交
954
}
955

956
void PNGAPI
957 958
png_set_read_status_fn(png_structp png_ptr, png_read_status_ptr read_row_fn)
{
959 960
   if (png_ptr == NULL)
      return;
961

962 963
   png_ptr->read_row_fn = read_row_fn;
}
964

965

966
#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
967
#ifdef PNG_INFO_IMAGE_SUPPORTED
968 969
void PNGAPI
png_read_png(png_structp png_ptr, png_infop info_ptr,
970 971 972 973 974
                           int transforms,
                           voidp params)
{
   int row;

975
   if (png_ptr == NULL || info_ptr == NULL)
976
      return;
977

978
   /* png_read_info() gives us all of the information from the
979 980 981
    * PNG file before the first IDAT (image data chunk).
    */
   png_read_info(png_ptr, info_ptr);
982 983
   if (info_ptr->height > PNG_UINT_32_MAX/png_sizeof(png_bytep))
      png_error(png_ptr, "Image is too high to process with png_read_png()");
984 985 986

   /* -------------- image transformations start here ------------------- */

987
#ifdef PNG_READ_SCALE_16_TO_8_SUPPORTED
988
   /* Tell libpng to strip 16-bit/color files down to 8 bits per color.
989
    */
990
   if (transforms & PNG_TRANSFORM_SCALE_16)
991
   {
992 993 994
     /* Added at libpng-1.5.4. "strip_16" produces the same result that it
      * did in earlier versions, while "scale_16" is now more accurate.
      */
995 996 997 998 999
      png_set_scale_16(png_ptr);
   }
#endif

#ifdef PNG_READ_STRIP_16_TO_8_SUPPORTED
1000 1001 1002 1003 1004 1005
   /* If both SCALE and STRIP are required pngrtran will effectively cancel the
    * latter by doing SCALE first.  This is ok and allows apps not to check for
    * which is supported to get the right answer.
    */
   if (transforms & PNG_TRANSFORM_STRIP_16)
      png_set_strip_16(png_ptr);
1006 1007
#endif

1008
#ifdef PNG_READ_STRIP_ALPHA_SUPPORTED
1009 1010
   /* Strip alpha bytes from the input data without combining with
    * the background (not recommended).
1011 1012
    */
   if (transforms & PNG_TRANSFORM_STRIP_ALPHA)
1013
      png_set_strip_alpha(png_ptr);
1014 1015
#endif

1016
#if defined(PNG_READ_PACK_SUPPORTED) && !defined(PNG_READ_EXPAND_SUPPORTED)
1017
   /* Extract multiple pixels with bit depths of 1, 2, or 4 from a single
1018 1019 1020
    * byte into separate bytes (useful for paletted and grayscale images).
    */
   if (transforms & PNG_TRANSFORM_PACKING)
1021
      png_set_packing(png_ptr);
1022 1023
#endif

1024
#ifdef PNG_READ_PACKSWAP_SUPPORTED
1025
   /* Change the order of packed pixels to least significant bit first
1026 1027
    * (not useful if you are using png_set_packing).
    */
1028
   if (transforms & PNG_TRANSFORM_PACKSWAP)
1029
      png_set_packswap(png_ptr);
1030 1031
#endif

1032
#ifdef PNG_READ_EXPAND_SUPPORTED
1033 1034 1035 1036 1037 1038
   /* Expand paletted colors into true RGB triplets
    * Expand grayscale images to full 8 bits from 1, 2, or 4 bits/pixel
    * Expand paletted or RGB images with transparency to full alpha
    * channels so the data will be available as RGBA quartets.
    */
   if (transforms & PNG_TRANSFORM_EXPAND)
1039 1040 1041
      if ((png_ptr->bit_depth < 8) ||
          (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE) ||
          (png_get_valid(png_ptr, info_ptr, PNG_INFO_tRNS)))
1042
         png_set_expand(png_ptr);
1043 1044
#endif

1045
   /* We don't handle background color or gamma transformation or quantizing.
1046
    */
1047

1048
#ifdef PNG_READ_INVERT_SUPPORTED
1049
   /* Invert monochrome files to have 0 as white and 1 as black
1050
    */
1051
   if (transforms & PNG_TRANSFORM_INVERT_MONO)
1052
      png_set_invert_mono(png_ptr);
1053 1054
#endif

1055
#ifdef PNG_READ_SHIFT_SUPPORTED
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069
   /* If you want to shift the pixel values from the range [0,255] or
    * [0,65535] to the original [0,7] or [0,31], or whatever range the
    * colors were originally in:
    */
   if ((transforms & PNG_TRANSFORM_SHIFT)
       && png_get_valid(png_ptr, info_ptr, PNG_INFO_sBIT))
   {
      png_color_8p sig_bit;

      png_get_sBIT(png_ptr, info_ptr, &sig_bit);
      png_set_shift(png_ptr, sig_bit);
   }
#endif

1070
#ifdef PNG_READ_BGR_SUPPORTED
1071
   /* Flip the RGB pixels to BGR (or RGBA to BGRA) */
1072
   if (transforms & PNG_TRANSFORM_BGR)
1073
      png_set_bgr(png_ptr);
1074 1075
#endif

1076
#ifdef PNG_READ_SWAP_ALPHA_SUPPORTED
1077
   /* Swap the RGBA or GA data to ARGB or AG (or BGRA to ABGR) */
1078
   if (transforms & PNG_TRANSFORM_SWAP_ALPHA)
1079
      png_set_swap_alpha(png_ptr);
1080 1081
#endif

1082
#ifdef PNG_READ_SWAP_SUPPORTED
1083
   /* Swap bytes of 16-bit files to least significant byte first */
1084
   if (transforms & PNG_TRANSFORM_SWAP_ENDIAN)
1085
      png_set_swap(png_ptr);
1086 1087
#endif

1088
/* Added at libpng-1.2.41 */
1089
#ifdef PNG_READ_INVERT_ALPHA_SUPPORTED
1090
   /* Invert the alpha channel from opacity to transparency */
1091
   if (transforms & PNG_TRANSFORM_INVERT_ALPHA)
1092
      png_set_invert_alpha(png_ptr);
1093 1094
#endif

1095
/* Added at libpng-1.2.41 */
1096
#ifdef PNG_READ_GRAY_TO_RGB_SUPPORTED
1097
   /* Expand grayscale image to RGB */
1098
   if (transforms & PNG_TRANSFORM_GRAY_TO_RGB)
1099
      png_set_gray_to_rgb(png_ptr);
1100 1101
#endif

1102
/* Added at libpng-1.5.4 */
1103 1104 1105 1106 1107
#ifdef PNG_READ_EXPAND_16_SUPPORTED
   if (transforms & PNG_TRANSFORM_EXPAND_16)
      png_set_expand_16(png_ptr);
#endif

1108 1109
   /* We don't handle adding filler bytes */

1110 1111 1112 1113 1114
   /* We use png_read_image and rely on that for interlace handling, but we also
    * call png_read_update_info therefore must turn on interlace handling now:
    */
   (void)png_set_interlace_handling(png_ptr);

1115 1116
   /* Optional call to gamma correct and add the background to the palette
    * and update info structure.  REQUIRED if you are expecting libpng to
1117
    * update the palette for you (i.e., you selected such a transform above).
1118 1119 1120 1121 1122
    */
   png_read_update_info(png_ptr, info_ptr);

   /* -------------- image transformations end here ------------------- */

1123
   png_free_data(png_ptr, info_ptr, PNG_FREE_ROWS, 0);
1124
   if (info_ptr->row_pointers == NULL)
1125
   {
1126
      png_uint_32 iptr;
1127

1128
      info_ptr->row_pointers = (png_bytepp)png_malloc(png_ptr,
1129
          info_ptr->height * png_sizeof(png_bytep));
1130 1131 1132
      for (iptr=0; iptr<info_ptr->height; iptr++)
         info_ptr->row_pointers[iptr] = NULL;

1133
      info_ptr->free_me |= PNG_FREE_ROWS;
1134

1135
      for (row = 0; row < (int)info_ptr->height; row++)
1136
         info_ptr->row_pointers[row] = (png_bytep)png_malloc(png_ptr,
1137
            png_get_rowbytes(png_ptr, info_ptr));
1138
   }
1139 1140 1141 1142

   png_read_image(png_ptr, info_ptr->row_pointers);
   info_ptr->valid |= PNG_INFO_IDAT;

1143
   /* Read rest of file, and get additional chunks in info_ptr - REQUIRED */
1144
   png_read_end(png_ptr, info_ptr);
1145

1146 1147
   PNG_UNUSED(transforms)   /* Quiet compiler warnings */
   PNG_UNUSED(params)
1148

1149
}
1150
#endif /* PNG_INFO_IMAGE_SUPPORTED */
1151
#endif /* PNG_SEQUENTIAL_READ_SUPPORTED */
1152 1153 1154 1155 1156 1157 1158 1159

#ifdef PNG_SIMPLIFIED_READ_SUPPORTED
/* SIMPLIFIED READ
 *
 * This code currently relies on the sequential reader, though it could easily
 * be made to work with the progressive one.
 */
/* Do all the *safe* initialization - 'safe' means that png_error won't be
1160 1161 1162
 * called, so setting up the jmp_buf is not required.  This means that anything
 * called from here must *not* call png_malloc - it has to call png_malloc_warn
 * instead so that control is returned safely back to this routine.
1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175
 */
static int
png_image_read_init(png_imagep image)
{
   png_structp png_ptr = png_create_read_struct(PNG_LIBPNG_VER_STRING, image,
          png_safe_error, png_safe_warning);

   if (png_ptr != NULL)
   {
      png_infop info_ptr = png_create_info_struct(png_ptr);

      if (info_ptr != NULL)
      {
1176 1177
         png_controlp control = png_voidcast(png_controlp,
            png_malloc_warn(png_ptr, sizeof *control));
1178 1179 1180

         if (control != NULL)
         {
1181
            png_memset(control, 0, sizeof *control);
1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228

            control->png_ptr = png_ptr;
            control->info_ptr = info_ptr;
            control->for_write = 0;

            image->opaque = control;
            return 1;
         }

         /* Error clean up */
         png_destroy_info_struct(png_ptr, &info_ptr);
      }

      png_destroy_read_struct(&png_ptr, NULL, NULL);
   }

   return png_image_error(image, "png_image_read: out of memory");
}

/* Utility to find the base format of a PNG file from a png_struct. */
static png_uint_32
png_image_format(png_structp png_ptr, png_infop info_ptr)
{
   png_uint_32 format = 0;

   if (png_ptr->color_type & PNG_COLOR_MASK_COLOR)
      format |= PNG_FORMAT_FLAG_COLOR;

   if (png_ptr->color_type & PNG_COLOR_MASK_ALPHA)
      format |= PNG_FORMAT_FLAG_ALPHA;

   else if (info_ptr != NULL && (info_ptr->valid & PNG_INFO_tRNS))
      format |= PNG_FORMAT_FLAG_ALPHA;

   if (png_ptr->bit_depth == 16)
      format |= PNG_FORMAT_FLAG_LINEAR;

   return format;
}

/* Do the main body of a 'png_image_begin_read' function; read the PNG file
 * header and fill in all the information.  This is executed in a safe context,
 * unlike the init routine above.
 */
static int
png_image_read_header(png_voidp argument)
{
1229
   png_imagep image = png_voidcast(png_imagep, argument);
1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250
   png_structp png_ptr = image->opaque->png_ptr;
   png_infop info_ptr = image->opaque->info_ptr;

   png_read_info(png_ptr, info_ptr);

   /* Do this the fast way; just read directly out of png_struct. */
   image->width = png_ptr->width;
   image->height = png_ptr->height;

   {
      png_uint_32 format = png_image_format(png_ptr, info_ptr);

      image->format = format;
      image->flags = 0;

      /* Now try to work out whether the color data does not match sRGB. */
      if ((format & PNG_FORMAT_FLAG_COLOR) != 0 &&
         (info_ptr->valid & PNG_INFO_sRGB) == 0)
      {
         /* gamma is irrelevant because libpng does gamma correction, what
          * matters is if the cHRM chunk doesn't match or, in the absence of
1251
          * cRHM, if the iCCP profile appears to have different end points.
1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271
          */
         if (info_ptr->valid & PNG_INFO_cHRM)
         {
            /* TODO: this is a copy'n'paste from pngrutil.c, make a common
             * checking function.  This checks for a 1% error.
             */
            /* The cHRM chunk is used in preference to iCCP */
            if (PNG_OUT_OF_RANGE(info_ptr->x_white, 31270,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->y_white, 32900,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->x_red,   64000,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->y_red,   33000,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->x_green, 30000,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->y_green, 60000,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->x_blue,  15000,  1000) ||
                PNG_OUT_OF_RANGE(info_ptr->y_blue,   6000,  1000))
               image->flags |= PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB;
         }

         else if (info_ptr->valid & PNG_INFO_iCCP)
         {
1272 1273 1274
#        if 0
            /* TODO: IMPLEMENT THIS! Remember to remove iCCP from
                 the chunks_to_ignore list */
1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 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 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
            /* Here if we just have an iCCP chunk. */
            if (!png_iCCP_is_sRGB(png_ptr, info_ptr))
#        endif
               image->flags |= PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB;
         }
      }
   }

   return 1;
}

#ifdef PNG_STDIO_SUPPORTED
int PNGAPI
png_image_begin_read_from_stdio(png_imagep image, FILE* file)
{
   if (image != NULL)
   {
      if (file != NULL)
      {
         if (png_image_read_init(image))
         {
            /* This is slightly evil, but png_init_io doesn't do anything other
             * than this and we haven't changed the standard IO functions so
             * this saves a 'safe' function.
             */
            image->opaque->png_ptr->io_ptr = file;
            return png_safe_execute(image, png_image_read_header, image);
         }
      }

      else
         return png_image_error(image,
            "png_image_begin_read_from_stdio: invalid argument");
   }

   return 0;
}

int PNGAPI
png_image_begin_read_from_file(png_imagep image, const char *file_name)
{
   if (image != NULL)
   {
      if (file_name != NULL)
      {
         FILE *fp = fopen(file_name, "rb");

         if (fp != NULL)
         {
            if (png_image_read_init(image))
            {
               image->opaque->png_ptr->io_ptr = fp;
               image->opaque->owned_file = 1;
               return png_safe_execute(image, png_image_read_header, image);
            }

            /* Clean up: just the opened file. */
            (void)fclose(fp);
         }

         else
            return png_image_error(image, strerror(errno));
      }

      else
         return png_image_error(image,
            "png_image_begin_read_from_file: invalid argument");
   }

   return 0;
}
#endif /* PNG_STDIO_SUPPORTED */

static void PNGCBAPI
png_image_memory_read(png_structp png_ptr, png_bytep out, png_size_t need)
{
   if (png_ptr != NULL)
   {
1353
      png_imagep image = png_voidcast(png_imagep, png_ptr->io_ptr);
1354 1355 1356 1357 1358 1359 1360 1361 1362 1363
      if (image != NULL)
      {
         png_controlp cp = image->opaque;
         if (cp != NULL)
         {
            png_const_bytep memory = cp->memory;
            png_size_t size = cp->size;

            if (memory != NULL && size >= need)
            {
1364
               png_memcpy(out, memory, need);
1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390
               cp->memory = memory + need;
               cp->size = size - need;
               return;
            }

            png_error(png_ptr, "read beyond end of data");
         }
      }

      png_error(png_ptr, "invalid memory read");
   }
}

int PNGAPI png_image_begin_read_from_memory(png_imagep image,
   png_const_voidp memory, png_size_t size)
{
   if (image != NULL)
   {
      if (memory != NULL && size > 0)
      {
         if (png_image_read_init(image))
         {
            /* Now set the IO functions to read from the memory buffer and
             * store it into io_ptr.  Again do this in-place to avoid calling a
             * libpng function that requires error handling.
             */
1391
            image->opaque->memory = png_voidcast(png_const_bytep, memory);
1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425
            image->opaque->size = size;
            image->opaque->png_ptr->io_ptr = image;
            image->opaque->png_ptr->read_data_fn = png_image_memory_read;

            return png_safe_execute(image, png_image_read_header, image);
         }
      }

      else
         return png_image_error(image,
            "png_image_begin_read_from_memory: invalid argument");
   }

   return 0;
}

/* Arguments to png_image_finish_read: */
typedef struct
{
   /* Arguments: */
   png_imagep image;
   png_voidp  buffer;
   png_int_32 row_stride;
   png_colorp background;
   /* Local variables: */
   png_bytep  local_row;
   png_bytep  first_row;
   ptrdiff_t  row_bytes; /* unsigned arithmetic step between rows */
} png_image_read_control;

/* Just the row reading part of png_image_read. */
static int
png_image_read_composite(png_voidp argument)
{
1426 1427
   png_image_read_control *display = png_voidcast(png_image_read_control*,
      argument);
1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467
   png_imagep image = display->image;
   png_structp png_ptr = image->opaque->png_ptr;
   png_byte interlace_type = png_ptr->interlaced;
   int passes;

   switch (interlace_type)
   {
      case PNG_INTERLACE_NONE:
         passes = 1;
         break;

      case PNG_INTERLACE_ADAM7:
         passes = PNG_INTERLACE_ADAM7_PASSES;
         break;

      default:
         png_error(png_ptr, "unknown interlace type");
   }

   {
      png_uint_32 height = image->height;
      png_uint_32 width = image->width;
      unsigned int channels = (image->format & PNG_FORMAT_FLAG_COLOR) ? 3 : 1;
      int pass;

      for (pass = 0; pass < passes; ++pass)
      {
         png_bytep        row = display->first_row;
         unsigned int     startx, stepx, stepy;
         png_uint_32      y;

         if (interlace_type == PNG_INTERLACE_ADAM7)
         {
            /* The row may be empty for a short image: */
            if (PNG_PASS_COLS(width, pass) == 0)
               continue;

            startx = PNG_PASS_START_COL(pass);
            stepx = PNG_PASS_COL_OFFSET(pass);
            y = PNG_PASS_START_ROW(pass);
1468
            stepy = PNG_PASS_ROW_OFFSET(pass);
1469 1470 1471 1472 1473 1474 1475 1476
         }

         else
         {
            y = 0;
            startx = 0;
            stepx = stepy = 1;
         }
1477 1478 1479 1480

         /* The following are invariants across all the rows: */
         startx *= channels;
         stepx *= channels;
1481 1482 1483 1484
         
         for (; y<height; y += stepy)
            {
               png_bytep inrow = display->local_row;
1485 1486
               png_bytep outrow = row + startx;
               png_const_bytep end_row = row + width * channels;
1487 1488 1489 1490 1491

               /* Read the row, which is packed: */
               png_read_row(png_ptr, inrow, NULL);

               /* Now do the composition on each pixel in this row. */
1492
               for (; outrow < end_row; outrow += stepx)
1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515
               {
                  png_byte alpha = inrow[channels];

                  if (alpha > 0) /* else no change to the output */
                  {
                     unsigned int c;

                     for (c=0; c<channels; ++c)
                     {
                        png_uint_32 component = inrow[c];

                        if (alpha < 255) /* else just use component */
                        {
                           /* This is PNG_OPTIMIZED_ALPHA, the component value
                            * is a linear 8-bit value.  Combine this with the
                            * current outrow[c] value which is sRGB encoded.
                            * Arithmetic here is 16-bits to preserve the output
                            * values correctly.
                            */
                           component *= 257*255; /* =65535 */
                           component += (255-alpha)*png_sRGB_table[outrow[c]];

                           /* So 'component' is scaled by 255*65535 and is
1516
                            * therefore appropriate for the sRGB to linear
1517
                            * conversion table.
1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536
                            */
                           component = PNG_sRGB_FROM_LINEAR(component);
                        }

                        outrow[c] = (png_byte)component;
                     }
                  }

                  inrow += channels+1; /* components and alpha channel */
               }

               row += display->row_bytes;
            }
      }
   }

   return 1;
}

1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552
/* The do_local_background case; called when all the following transforms are to
 * be done:
 *
 * PNG_RGB_TO_GRAY
 * PNG_COMPOSITE
 * PNG_GAMMA
 *
 * This is a work-round for the fact that both the PNG_RGB_TO_GRAY and
 * PNG_COMPOSITE code performs gamma correction, so we get double gamma
 * correction.  The fix-up is to prevent the PNG_COMPOSITE operation happening
 * inside libpng, so this routine sees an 8 or 16-bit gray+alpha row and handles
 * the removal or pre-multiplication of the alpha channel.
 */
static int
png_image_read_background(png_voidp argument)
{
1553 1554
   png_image_read_control *display = png_voidcast(png_image_read_control*,
      argument);
1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807
   png_imagep image = display->image;
   png_structp png_ptr = image->opaque->png_ptr;
   png_infop info_ptr = image->opaque->info_ptr;
   png_byte interlace_type = png_ptr->interlaced;
   png_uint_32 height = image->height;
   png_uint_32 width = image->width;
   int pass, passes;

   /* Double check the convoluted logic below.  We expect to get here with
    * libpng doing rgb to gray and gamma correction but background processing
    * left to the png_image_read_background function.  The rows libpng produce
    * might be 8 or 16-bit but should always have two channels; gray plus alpha.
    */
   if ((png_ptr->transformations & PNG_RGB_TO_GRAY) == 0)
      png_error(png_ptr, "lost rgb to gray");

   if ((png_ptr->transformations & PNG_COMPOSE) != 0)
      png_error(png_ptr, "unexpected compose");

   /* The palette code zaps PNG_GAMMA in place... */
   if ((png_ptr->color_type & PNG_COLOR_MASK_PALETTE) == 0 &&
      (png_ptr->transformations & PNG_GAMMA) == 0)
      png_error(png_ptr, "lost gamma correction");

   if (png_get_channels(png_ptr, info_ptr) != 2)
      png_error(png_ptr, "lost/gained channels");

   switch (interlace_type)
   {
      case PNG_INTERLACE_NONE:
         passes = 1;
         break;

      case PNG_INTERLACE_ADAM7:
         passes = PNG_INTERLACE_ADAM7_PASSES;
         break;

      default:
         png_error(png_ptr, "unknown interlace type");
   }

   switch (png_get_bit_depth(png_ptr, info_ptr))
   {
      default:
         png_error(png_ptr, "unexpected bit depth");
         break;

      case 8:
         /* 8-bit sRGB gray values with an alpha channel; the alpha channel is
          * to be removed by composing on a backgroundi: either the row if
          * display->background is NULL or display->background.green if not.
          * Unlike the code above ALPHA_OPTIMIZED has *not* been done.
          */
         for (pass = 0; pass < passes; ++pass)
         {
            png_bytep        row = display->first_row;
            unsigned int     startx, stepx, stepy;
            png_uint_32      y;

            if (interlace_type == PNG_INTERLACE_ADAM7)
            {
               /* The row may be empty for a short image: */
               if (PNG_PASS_COLS(width, pass) == 0)
                  continue;

               startx = PNG_PASS_START_COL(pass);
               stepx = PNG_PASS_COL_OFFSET(pass);
               y = PNG_PASS_START_ROW(pass);
               stepy = PNG_PASS_ROW_OFFSET(pass);
            }

            else
            {
               y = 0;
               startx = 0;
               stepx = stepy = 1;
            }
            
            if (display->background == NULL)
            {
               for (; y<height; y += stepy)
                  {
                     png_bytep inrow = display->local_row;
                     png_bytep outrow = row + startx;
                     png_const_bytep end_row = row + width;

                     /* Read the row, which is packed: */
                     png_read_row(png_ptr, inrow, NULL);

                     /* Now do the composition on each pixel in this row. */
                     for (; outrow < end_row; outrow += stepx)
                     {
                        png_byte alpha = inrow[1];

                        if (alpha > 0) /* else no change to the output */
                        {
                           png_uint_32 component = inrow[0];

                           if (alpha < 255) /* else just use component */
                           {
                              /* Since PNG_OPTIMIZED_ALPHA was not set it is
                               * necessary to invert the sRGB transfer
                               * function and multiply the alpha out.
                               */
                              component = png_sRGB_table[component] * alpha;
                              component += png_sRGB_table[outrow[0]] *
                                 (255-alpha);
                              component = PNG_sRGB_FROM_LINEAR(component);
                           }

                           outrow[0] = (png_byte)component;
                        }

                        inrow += 2; /* gray and alpha channel */
                     }

                     row += display->row_bytes;
                  }
            }

            else /* constant background value */
            {
               png_byte background8 = display->background->green;
               png_uint_16 background = png_sRGB_table[background8];

               for (; y<height; y += stepy)
                  {
                     png_bytep inrow = display->local_row;
                     png_bytep outrow = row + startx;
                     png_const_bytep end_row = row + width;

                     /* Read the row, which is packed: */
                     png_read_row(png_ptr, inrow, NULL);

                     /* Now do the composition on each pixel in this row. */
                     for (; outrow < end_row; outrow += stepx)
                     {
                        png_byte alpha = inrow[1];

                        if (alpha > 0) /* else use background */
                        {
                           png_uint_32 component = inrow[0];

                           if (alpha < 255) /* else just use component */
                           {
                              component = png_sRGB_table[component] * alpha;
                              component += background * (255-alpha);
                              component = PNG_sRGB_FROM_LINEAR(component);
                           }

                           outrow[0] = (png_byte)component;
                        }

                        else
                           outrow[0] = background8;

                        inrow += 2; /* gray and alpha channel */
                     }

                     row += display->row_bytes;
                  }
            }
         }
         break;

      case 16:
         /* 16-bit linear with pre-multiplied alpha; the pre-multiplication must
          * still be done and, maybe, the alpha channel removed.  This code also
          * handles the alpha-first option.
          */
         {
            unsigned int outchannels = png_get_channels(png_ptr, info_ptr);
            int preserve_alpha = (image->format & PNG_FORMAT_FLAG_ALPHA) != 0;
            int swap_alpha = 0;

            if (preserve_alpha && (image->format & PNG_FORMAT_FLAG_AFIRST))
               swap_alpha = 1;

            for (pass = 0; pass < passes; ++pass)
            {
               png_uint_16p     row = (png_uint_16p)display->first_row;
               unsigned int     startx, stepx, stepy; /* all in pixels */
               png_uint_32      y;

               if (interlace_type == PNG_INTERLACE_ADAM7)
               {
                  /* The row may be empty for a short image: */
                  if (PNG_PASS_COLS(width, pass) == 0)
                     continue;

                  startx = PNG_PASS_START_COL(pass);
                  stepx = PNG_PASS_COL_OFFSET(pass);
                  y = PNG_PASS_START_ROW(pass);
                  stepy = PNG_PASS_ROW_OFFSET(pass);
               }

               else
               {
                  y = 0;
                  startx = 0;
                  stepx = stepy = 1;
               }

               startx *= outchannels;
               stepx *= outchannels;
               
               for (; y<height; y += stepy)
                  {
                     png_uint_16p inrow;
                     png_uint_16p outrow = row + startx;
                     png_uint_16p end_row = row + width * outchannels;

                     /* Read the row, which is packed: */
                     png_read_row(png_ptr, display->local_row, NULL);
                     inrow = (png_uint_16p)display->local_row;

                     /* Now do the pre-multiplication on each pixel in this row.
                      */
                     for (; outrow < end_row; outrow += stepx)
                     {
                        png_uint_32 component = inrow[0];
                        png_uint_16 alpha = inrow[1];

                        if (alpha > 0) /* else 0 */
                        {
                           if (alpha < 65535) /* else just use component */
                           {
                              component *= alpha;
                              component += 32767;
                              component /= 65535;
                           }
                        }

                        else
                           component = 0;

                        outrow[swap_alpha] = (png_uint_16)component;
                        if (outchannels > 1)
                           outrow[1 ^ swap_alpha] = alpha;

                        inrow += 2; /* components and alpha channel */
                     }

                     row += display->row_bytes;
                  }
            }
         }
         break;
   }

   return 1;
}

1808 1809 1810 1811
/* The guts of png_image_finish_read as a png_safe_execute callback. */
static int
png_image_read_end(png_voidp argument)
{
1812 1813
   png_image_read_control *display = png_voidcast(png_image_read_control*,
      argument);
1814 1815 1816 1817 1818 1819 1820
   png_imagep image = display->image;
   png_structp png_ptr = image->opaque->png_ptr;
   png_infop info_ptr = image->opaque->info_ptr;

   png_uint_32 format = image->format;
   int linear = (format & PNG_FORMAT_FLAG_LINEAR) != 0;
   int do_local_compose = 0;
1821
   int do_local_background = 0; /* to avoid double gamma correction bug */
1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833
   int passes = 0;

   /* Add transforms to ensure the correct output format is produced then check
    * that the required implementation support is there.  Always expand; always
    * need 8 bits minimum, no palette and expanded tRNS.
    */
   png_set_expand(png_ptr);
   
   /* Now check the format to see if it was modified. */
   {
      png_uint_32 base_format = png_image_format(png_ptr, info_ptr);
      png_uint_32 change = format ^ base_format;
1834 1835
      png_fixed_point output_gamma;
      int mode; /* alpha mode */
1836

1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868
      /* Do this first so that we have a record if rgb to gray is happening. */
      if (change & PNG_FORMAT_FLAG_COLOR)
      {
         /* gray<->color transformation required. */
         if (format & PNG_FORMAT_FLAG_COLOR)
            png_set_gray_to_rgb(png_ptr);

         else
         {
            /* libpng can't do both rgb to gray and
             * background/pre-multiplication if there is also significant gamma
             * correction, because both operations require linear colors and
             * the code only supports one transform doing the gamma correction.
             * Handle this by doing the pre-multiplication or background
             * operation in this code, if necessary.
             *
             * TODO: fix this by rewriting pngrtran.c (!)
             *
             * For the moment (given that fixing this in pngrtran.c is an
             * enormous change) 'do_local_background' is used to indicate that
             * the problem exists.
             */
            if (base_format & PNG_FORMAT_FLAG_ALPHA)
               do_local_background = 1/*maybe*/;

            png_set_rgb_to_gray_fixed(png_ptr, PNG_ERROR_ACTION_NONE,
               PNG_RGB_TO_GRAY_DEFAULT, PNG_RGB_TO_GRAY_DEFAULT);
         }

         change &= ~PNG_FORMAT_FLAG_COLOR;
      }

1869 1870 1871
      /* Set the gamma appropriately, linear for 16-bit input, sRGB otherwise.
       */
      {
1872
         png_fixed_point input_gamma_default;
1873 1874 1875 1876 1877 1878

         if (base_format & PNG_FORMAT_FLAG_LINEAR)
            input_gamma_default = PNG_GAMMA_LINEAR;
         else
            input_gamma_default = PNG_DEFAULT_sRGB;

1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890
         /* Call png_set_alpha_mode to set the default for the input gamma; the
          * output gamma is set by a second call below.
          */
         png_set_alpha_mode_fixed(png_ptr, PNG_ALPHA_PNG, input_gamma_default);
      }

      if (linear)
      {
         /* If there *is* an alpha channel in the input it must be multiplied
          * out; use PNG_ALPHA_STANDARD, otherwise just use PNG_ALPHA_PNG.
          */
         if (base_format & PNG_FORMAT_FLAG_ALPHA)
1891
            mode = PNG_ALPHA_STANDARD; /* associated alpha */
1892 1893 1894 1895

         else
            mode = PNG_ALPHA_PNG;

1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918
         output_gamma = PNG_GAMMA_LINEAR;
      }

      else
      {
         mode = PNG_ALPHA_PNG;
         output_gamma = PNG_DEFAULT_sRGB;
      }

      /* If 'do_local_background' is set check for the presence of gamma
       * correction; this is part of the work-round for the libpng bug
       * described above.
       *
       * TODO: fix libpng and remove this.
       */
      if (do_local_background)
      {
         png_fixed_point gtest;

         /* This is 'png_gamma_threshold' from pngrtran.c; the test used for
          * gamma correction, the screen gamma hasn't been set on png_struct
          * yet; it's set below.  png_struct::gamma, however, is set to the
          * final value.
1919
          */
1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930
         if (png_muldiv(&gtest, output_gamma, png_ptr->gamma, PNG_FP_1) &&
            !png_gamma_significant(gtest))
            do_local_background = 0;

         else if (mode == PNG_ALPHA_STANDARD)
         {
            do_local_background = 2/*required*/;
            mode = PNG_ALPHA_PNG; /* prevent libpng doing it */
         }

         /* else leave as 1 for the checks below */
1931
      }
1932

1933 1934 1935 1936 1937
      /* If the bit-depth changes then handle that here. */
      if (change & PNG_FORMAT_FLAG_LINEAR)
      {
         if (linear /*16-bit output*/)
            png_set_expand_16(png_ptr);
1938

1939 1940
         else /* 8-bit output */
            png_set_scale_16(png_ptr);
1941

1942
         change &= ~PNG_FORMAT_FLAG_LINEAR;
1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953
      }

      /* Now the background/alpha channel changes. */
      if (change & PNG_FORMAT_FLAG_ALPHA)
      {
         /* Removing an alpha channel requires composition for the 8-bit
          * formats; for the 16-bit it is already done, above, by the
          * pre-multiplication and the channel just needs to be stripped.
          */
         if (base_format & PNG_FORMAT_FLAG_ALPHA)
         {
1954 1955 1956 1957 1958 1959 1960 1961
            /* If RGB->gray is happening the alpha channel must be left and the
             * operation completed locally.
             *
             * TODO: fix libpng and remove this.
             */
            if (do_local_background)
               do_local_background = 2/*required*/;

1962
            /* 16-bit output: just remove the channel */
1963
            else if (linear) /* compose on black (well, pre-multiply) */
1964 1965
               png_set_strip_alpha(png_ptr);

1966
            /* 8-bit output: do an appropriate compose */
1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990
            else if (display->background != NULL)
            {
               png_color_16 c;

               c.index = 0; /*unused*/
               c.red = display->background->red;
               c.green = display->background->green;
               c.blue = display->background->blue;
               c.gray = display->background->green;

               /* This is always an 8-bit sRGB value, using the 'green' channel
                * for gray is much better than calculating the luminance here;
                * we can get off-by-one errors in that calculation relative to
                * the app expectations and that will show up in transparent
                * pixels.
                */
               png_set_background_fixed(png_ptr, &c,
                  PNG_BACKGROUND_GAMMA_SCREEN, 0/*need_expand*/,
                  0/*gamma: not used*/);
            }

            else /* compose on row: implemented below. */
            {
               do_local_compose = 1;
1991
               /* This leaves the alpha channel in the output, so it has to be
1992 1993 1994 1995
                * removed by the code below.  Set the encoding to the 'OPTIMIZE'
                * one so the code only has to hack on the pixels that require
                * composition.
                */
1996
               mode = PNG_ALPHA_OPTIMIZED;
1997 1998 1999 2000 2001 2002
            }
         }

         else /* output needs an alpha channel */
         {
            /* This is tricky because it happens before the swap operation has
2003
             * been accomplished; however, the swap does *not* swap the added
2004 2005
             * alpha channel (weird API), so it must be added in the correct
             * place.
2006
             */
2007
            png_uint_32 filler; /* opaque filler */
2008
            int where;
2009 2010 2011 2012 2013 2014 2015

            if (linear)
               filler = 65535;

            else
               filler = 255;

2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027
#           ifdef PNG_FORMAT_AFIRST_SUPPORTED
               if (format & PNG_FORMAT_FLAG_AFIRST)
               {
                  where = PNG_FILLER_BEFORE;
                  change &= ~PNG_FORMAT_FLAG_AFIRST;
               }

               else
#           endif
               where = PNG_FILLER_AFTER;

            png_set_add_alpha(png_ptr, filler, where);
2028 2029
         }

2030
         /* This stops the (irrelevant) call to swap_alpha below. */
2031 2032 2033
         change &= ~PNG_FORMAT_FLAG_ALPHA;
      }

2034 2035 2036 2037 2038 2039
      /* Now set the alpha mode correctly; this is always done, even if there is
       * no alpha channel in either the input or the output because it correctly
       * sets the output gamma.
       */
      png_set_alpha_mode_fixed(png_ptr, mode, output_gamma);

2040
#     ifdef PNG_FORMAT_BGR_SUPPORTED
2041
         if (change & PNG_FORMAT_FLAG_BGR)
2042
         {
2043
            /* Check only the output format; PNG is never BGR; don't do this if
2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056
             * the output is gray, but fix up the 'format' value in that case.
             */
            if (format & PNG_FORMAT_FLAG_COLOR)
               png_set_bgr(png_ptr);

            else
               format &= ~PNG_FORMAT_FLAG_BGR;

            change &= ~PNG_FORMAT_FLAG_BGR;
         }
#     endif

#     ifdef PNG_FORMAT_AFIRST_SUPPORTED
2057
         if (change & PNG_FORMAT_FLAG_AFIRST)
2058 2059 2060 2061 2062 2063 2064
         {
            /* Only relevant if there is an alpha channel - it's particularly
             * important to handle this correctly because do_local_compose may
             * be set above and then libpng will keep the alpha channel for this
             * code to remove.
             */
            if (format & PNG_FORMAT_FLAG_ALPHA)
2065 2066 2067 2068 2069 2070 2071
            {
               /* Disable this if doing a local background,
                * TODO: remove this when local background is no longer required.
                */
               if (do_local_background != 2)
                  png_set_swap_alpha(png_ptr);
            }
2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095

            else
               format &= ~PNG_FORMAT_FLAG_AFIRST;

            change &= ~PNG_FORMAT_FLAG_AFIRST;
         }
#     endif

      /* If the *output* is 16-bit then we need to check for a byte-swap on this
       * architecture.
       */
      if (linear)
      {
         PNG_CONST png_uint_16 le = 0x0001;

         if (*(png_const_bytep)&le)
            png_set_swap(png_ptr);
      }

      /* If change is not now 0 some transformation is missing - error out. */
      if (change)
         png_error(png_ptr, "png_read_image: unsupported transformation");
   }

2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136
#  ifdef PNG_HANDLE_AS_UNKNOWN_SUPPORTED
      /* Prepare the reader to ignore all recognized chunks whose data will not
       * be used, i.e., all chunks recognized by libpng except for those
       * involved in basic image reading:
       *
       *    IHDR, PLTE, IDAT, IEND
       *
       * Or image data handling:
       *
       *    tRNS, bKGD, gAMA, cHRM, sRGB, iCCP and sBIT.
       *
       * This provides a small performance improvement and eliminates any
       * potential vulnerability to security problems in the unused chunks.
       *
       * TODO: make it so that this is an explicit list to process, not a list
       * to ignore?
       */
      {
          static PNG_CONST png_byte chunks_to_ignore[] = {
              104,  73,  83,  84, '\0',  /* hIST */
              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,  67,  65,  76, '\0',  /* sCAL */
              115,  80,  76,  84, '\0',  /* sPLT */
              116,  69,  88, 116, '\0',  /* tEXt */
              116,  73,  77,  69, '\0',  /* tIME */
              122,  84,  88, 116, '\0'   /* zTXt */
          };

          /* Ignore unknown chunks */
          png_set_keep_unknown_chunks(png_ptr, 1 /* PNG_HANDLE_CHUNK_NEVER */,
            NULL, 0);

          /* Ignore known but unused chunks */
          png_set_keep_unknown_chunks(png_ptr, 1 /* PNG_HANDLE_CHUNK_NEVER */,
            chunks_to_ignore, (sizeof chunks_to_ignore)/5);
       }
#  endif /* PNG_HANDLE_AS_UNKNOWN_SUPPORTED */

2137
   /* Update the 'info' structure and make sure the result is as required; first
2138 2139
    * make sure to turn on the interlace handling if it will be required
    * (because it can't be turned on *after* the call to png_read_update_info!)
2140 2141
    *
    * TODO: remove the do_local_background fixup below.
2142
    */
2143
   if (!do_local_compose && do_local_background != 2)
2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155
      passes = png_set_interlace_handling(png_ptr);

   png_read_update_info(png_ptr, info_ptr);

   {
      png_uint_32 info_format = 0;

      if (info_ptr->color_type & PNG_COLOR_MASK_COLOR)
         info_format |= PNG_FORMAT_FLAG_COLOR;

      if (info_ptr->color_type & PNG_COLOR_MASK_ALPHA)
      {
2156
         /* do_local_compose removes this channel below. */
2157
         if (!do_local_compose)
2158 2159 2160 2161 2162 2163
         {
            /* do_local_background does the same if required. */
            if (do_local_background != 2 ||
               (format & PNG_FORMAT_FLAG_ALPHA) != 0)
               info_format |= PNG_FORMAT_FLAG_ALPHA;
         }
2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177
      }

      else if (do_local_compose) /* internal error */
         png_error(png_ptr, "png_image_read: alpha channel lost");

      if (info_ptr->bit_depth == 16)
         info_format |= PNG_FORMAT_FLAG_LINEAR;

#     ifdef PNG_FORMAT_BGR_SUPPORTED
         if (png_ptr->transformations & PNG_BGR)
            info_format |= PNG_FORMAT_FLAG_BGR;
#     endif

#     ifdef PNG_FORMAT_AFIRST_SUPPORTED
2178 2179 2180
         if (png_ptr->transformations & PNG_SWAP_ALPHA ||
            ((png_ptr->transformations & PNG_ADD_ALPHA) != 0 &&
            (png_ptr->flags & PNG_FLAG_FILLER_AFTER) == 0))
2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194
            info_format |= PNG_FORMAT_FLAG_AFIRST;
#     endif

      /* This is actually an internal error. */
      if (info_format != format)
         png_error(png_ptr, "png_read_image: invalid transformations");
   }

   /* Now read the rows.  If do_local_compose is set then it is necessary to use
    * a local row buffer.  The output will be GA, RGBA or BGRA and must be
    * converted to G, RGB or BGR as appropriate.  The 'local_row' member of the
    * display acts as a flag.
    */
   {
2195
      png_bytep first_row = png_voidcast(png_bytep, display->buffer);
2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213
      ptrdiff_t row_bytes = display->row_stride;

      if (linear)
         row_bytes *= sizeof (png_uint_16);

      /* The following expression is designed to work correctly whether it gives
       * a signed or an unsigned result.
       */
      if (row_bytes < 0)
         first_row += (image->height-1) * (-row_bytes);

      display->first_row = first_row;
      display->row_bytes = row_bytes;
   }

   if (do_local_compose)
   {
      int result;
2214 2215
      png_bytep row = png_voidcast(png_bytep, png_malloc(png_ptr,
         png_get_rowbytes(png_ptr, info_ptr)));
2216 2217 2218 2219 2220 2221 2222 2223 2224

      display->local_row = row;
      result = png_safe_execute(image, png_image_read_composite, display);
      display->local_row = NULL;
      png_free(png_ptr, row);

      return result;
   }

2225 2226 2227
   else if (do_local_background == 2)
   {
      int result;
2228 2229
      png_bytep row = png_voidcast(png_bytep, png_malloc(png_ptr,
         png_get_rowbytes(png_ptr, info_ptr)));
2230 2231 2232 2233 2234 2235 2236 2237 2238

      display->local_row = row;
      result = png_safe_execute(image, png_image_read_background, display);
      display->local_row = NULL;
      png_free(png_ptr, row);

      return result;
   }

2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266
   else
   {
      png_alloc_size_t row_bytes = display->row_bytes;

      while (--passes >= 0)
      {
         png_uint_32      y = image->height;
         png_bytep        row = display->first_row;
         
         while (y-- > 0)
         {
            png_read_row(png_ptr, row, NULL);
            row += row_bytes;
         }
      }

      return 1;
   }
}

int PNGAPI
png_image_finish_read(png_imagep image, png_colorp background, void *buffer,
   png_int_32 row_stride)
{
   if (image != NULL)
   {
      png_uint_32 check;

2267 2268 2269
      if (row_stride == 0)
         row_stride = PNG_IMAGE_ROW_STRIDE(*image);

2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280
      if (row_stride < 0)
         check = -row_stride;

      else
         check = row_stride;

      if (buffer != NULL && check >= PNG_IMAGE_ROW_STRIDE(*image))
      {
         int result;
         png_image_read_control display;

2281
         png_memset(&display, 0, sizeof display);
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         display.image = image;
         display.buffer = buffer;
         display.row_stride = row_stride;
         display.background = background;
         display.local_row = NULL;
         result = png_safe_execute(image, png_image_read_end, &display);
         png_image_free(image);
         return result;
      }

      else
         return png_image_error(image,
            "png_image_finish_read: invalid argument");
   }

   return 0;
}

#endif /* PNG_SIMPLIFIED_READ_SUPPORTED */
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#endif /* PNG_READ_SUPPORTED */