pngpread.c

来自「超强的嵌入式GUI系统」· C语言 代码 · 共 1,585 行 · 第 1/4 页

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           png_ptr->flags |= PNG_FLAG_ZLIB_FINISHED;           break;         }         png_push_process_row(png_ptr);         png_ptr->zstream.avail_out = (uInt)png_ptr->irowbytes;         png_ptr->zstream.next_out = png_ptr->row_buf;      }      else         break;   }}void /* PRIVATE */png_push_process_row(png_structp png_ptr){   png_ptr->row_info.color_type = png_ptr->color_type;   png_ptr->row_info.width = png_ptr->iwidth;   png_ptr->row_info.channels = png_ptr->channels;   png_ptr->row_info.bit_depth = png_ptr->bit_depth;   png_ptr->row_info.pixel_depth = png_ptr->pixel_depth;   png_ptr->row_info.rowbytes = PNG_ROWBYTES(png_ptr->row_info.pixel_depth,       png_ptr->row_info.width);   png_read_filter_row(png_ptr, &(png_ptr->row_info),      png_ptr->row_buf + 1, png_ptr->prev_row + 1,      (int)(png_ptr->row_buf[0]));   png_memcpy_check(png_ptr, png_ptr->prev_row, png_ptr->row_buf,      png_ptr->rowbytes + 1);   if (png_ptr->transformations || (png_ptr->flags&PNG_FLAG_STRIP_ALPHA))      png_do_read_transformations(png_ptr);#if defined(PNG_READ_INTERLACING_SUPPORTED)   /* blow up interlaced rows to full size */   if (png_ptr->interlaced && (png_ptr->transformations & PNG_INTERLACE))   {      if (png_ptr->pass < 6)/*       old interface (pre-1.0.9):         png_do_read_interlace(&(png_ptr->row_info),            png_ptr->row_buf + 1, png_ptr->pass, png_ptr->transformations); */         png_do_read_interlace(png_ptr);    switch (png_ptr->pass)    {         case 0:         {            int i;            for (i = 0; i < 8 && png_ptr->pass == 0; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr); /* updates png_ptr->pass */            }            if (png_ptr->pass == 2) /* pass 1 might be empty */            {               for (i = 0; i < 4 && png_ptr->pass == 2; i++)               {                  png_push_have_row(png_ptr, png_bytep_NULL);                  png_read_push_finish_row(png_ptr);               }            }            if (png_ptr->pass == 4 && png_ptr->height <= 4)            {               for (i = 0; i < 2 && png_ptr->pass == 4; i++)               {                  png_push_have_row(png_ptr, png_bytep_NULL);                  png_read_push_finish_row(png_ptr);               }            }            if (png_ptr->pass == 6 && png_ptr->height <= 4)            {                png_push_have_row(png_ptr, png_bytep_NULL);                png_read_push_finish_row(png_ptr);            }            break;         }         case 1:         {            int i;            for (i = 0; i < 8 && png_ptr->pass == 1; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr);            }            if (png_ptr->pass == 2) /* skip top 4 generated rows */            {               for (i = 0; i < 4 && png_ptr->pass == 2; i++)               {                  png_push_have_row(png_ptr, png_bytep_NULL);                  png_read_push_finish_row(png_ptr);               }            }            break;         }         case 2:         {            int i;            for (i = 0; i < 4 && png_ptr->pass == 2; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr);            }            for (i = 0; i < 4 && png_ptr->pass == 2; i++)            {               png_push_have_row(png_ptr, png_bytep_NULL);               png_read_push_finish_row(png_ptr);            }            if (png_ptr->pass == 4) /* pass 3 might be empty */            {               for (i = 0; i < 2 && png_ptr->pass == 4; i++)               {                  png_push_have_row(png_ptr, png_bytep_NULL);                  png_read_push_finish_row(png_ptr);               }            }            break;         }         case 3:         {            int i;            for (i = 0; i < 4 && png_ptr->pass == 3; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr);            }            if (png_ptr->pass == 4) /* skip top two generated rows */            {               for (i = 0; i < 2 && png_ptr->pass == 4; i++)               {                  png_push_have_row(png_ptr, png_bytep_NULL);                  png_read_push_finish_row(png_ptr);               }            }            break;         }         case 4:         {            int i;            for (i = 0; i < 2 && png_ptr->pass == 4; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr);            }            for (i = 0; i < 2 && png_ptr->pass == 4; i++)            {               png_push_have_row(png_ptr, png_bytep_NULL);               png_read_push_finish_row(png_ptr);            }            if (png_ptr->pass == 6) /* pass 5 might be empty */            {               png_push_have_row(png_ptr, png_bytep_NULL);               png_read_push_finish_row(png_ptr);            }            break;         }         case 5:         {            int i;            for (i = 0; i < 2 && png_ptr->pass == 5; i++)            {               png_push_have_row(png_ptr, png_ptr->row_buf + 1);               png_read_push_finish_row(png_ptr);            }            if (png_ptr->pass == 6) /* skip top generated row */            {               png_push_have_row(png_ptr, png_bytep_NULL);               png_read_push_finish_row(png_ptr);            }            break;         }         case 6:         {            png_push_have_row(png_ptr, png_ptr->row_buf + 1);            png_read_push_finish_row(png_ptr);            if (png_ptr->pass != 6)               break;            png_push_have_row(png_ptr, png_bytep_NULL);            png_read_push_finish_row(png_ptr);         }      }   }   else#endif   {      png_push_have_row(png_ptr, png_ptr->row_buf + 1);      png_read_push_finish_row(png_ptr);   }}void /* PRIVATE */png_read_push_finish_row(png_structp png_ptr){#ifdef PNG_USE_LOCAL_ARRAYS   /* arrays to facilitate easy interlacing - use pass (0 - 6) as index */   /* start of interlace block */   const int FARDATA png_pass_start[] = {0, 4, 0, 2, 0, 1, 0};   /* offset to next interlace block */   const int FARDATA png_pass_inc[] = {8, 8, 4, 4, 2, 2, 1};   /* start of interlace block in the y direction */   const int FARDATA png_pass_ystart[] = {0, 0, 4, 0, 2, 0, 1};   /* offset to next interlace block in the y direction */   const int FARDATA png_pass_yinc[] = {8, 8, 8, 4, 4, 2, 2};   /* Width of interlace block.  This is not currently used - if you need    * it, uncomment it here and in png.h   const int FARDATA png_pass_width[] = {8, 4, 4, 2, 2, 1, 1};   */   /* Height of interlace block.  This is not currently used - if you need    * it, uncomment it here and in png.h   const int FARDATA png_pass_height[] = {8, 8, 4, 4, 2, 2, 1};   */#endif   png_ptr->row_number++;   if (png_ptr->row_number < png_ptr->num_rows)      return;   if (png_ptr->interlaced)   {      png_ptr->row_number = 0;      png_memset_check(png_ptr, png_ptr->prev_row, 0,         png_ptr->rowbytes + 1);      do      {         png_ptr->pass++;         if ((png_ptr->pass == 1 && png_ptr->width < 5) ||             (png_ptr->pass == 3 && png_ptr->width < 3) ||             (png_ptr->pass == 5 && png_ptr->width < 2))           png_ptr->pass++;         if (png_ptr->pass > 7)            png_ptr->pass--;         if (png_ptr->pass >= 7)            break;         png_ptr->iwidth = (png_ptr->width +            png_pass_inc[png_ptr->pass] - 1 -            png_pass_start[png_ptr->pass]) /            png_pass_inc[png_ptr->pass];         png_ptr->irowbytes = PNG_ROWBYTES(png_ptr->pixel_depth,            png_ptr->iwidth) + 1;         if (png_ptr->transformations & PNG_INTERLACE)            break;         png_ptr->num_rows = (png_ptr->height +            png_pass_yinc[png_ptr->pass] - 1 -            png_pass_ystart[png_ptr->pass]) /            png_pass_yinc[png_ptr->pass];      } while (png_ptr->iwidth == 0 || png_ptr->num_rows == 0);   }}#if defined(PNG_READ_tEXt_SUPPORTED)void /* PRIVATE */png_push_handle_tEXt(png_structp png_ptr, png_infop info_ptr, png_uint_32   length){   if (!(png_ptr->mode & PNG_HAVE_IHDR) || (png_ptr->mode & PNG_HAVE_IEND))      {         png_error(png_ptr, "Out of place tEXt");         /* to quiet some compiler warnings */         if(info_ptr == NULL) return;      }#ifdef PNG_MAX_MALLOC_64K   png_ptr->skip_length = 0;  /* This may not be necessary */   if (length > (png_uint_32)65535L) /* Can't hold entire string in memory */   {      png_warning(png_ptr, "tEXt chunk too large to fit in memory");      png_ptr->skip_length = length - (png_uint_32)65535L;      length = (png_uint_32)65535L;   }#endif   png_ptr->current_text = (png_charp)png_malloc(png_ptr,         (png_uint_32)(length+1));   png_ptr->current_text[length] = '\0';   png_ptr->current_text_ptr = png_ptr->current_text;   png_ptr->current_text_size = (png_size_t)length;   png_ptr->current_text_left = (png_size_t)length;   png_ptr->process_mode = PNG_READ_tEXt_MODE;}void /* PRIVATE */png_push_read_tEXt(png_structp png_ptr, png_infop info_ptr){   if (png_ptr->buffer_size && png_ptr->current_text_left)   {      png_size_t text_size;      if (png_ptr->buffer_size < png_ptr->current_text_left)         text_size = png_ptr->buffer_size;      else         text_size = png_ptr->current_text_left;      png_crc_read(png_ptr, (png_bytep)png_ptr->current_text_ptr, text_size);      png_ptr->current_text_left -= text_size;      png_ptr->current_text_ptr += text_size;   }   if (!(png_ptr->current_text_left))   {      png_textp text_ptr;      png_charp text;      png_charp key;      int ret;      if (png_ptr->buffer_size < 4)      {         png_push_save_buffer(png_ptr);         return;      }      png_push_crc_finish(png_ptr);#if defined(PNG_MAX_MALLOC_64K)      if (png_ptr->skip_length)         return;#endif      key = png_ptr->current_text;      for (text = key; *text; text++)         /* empty loop */ ;      if (text != key + png_ptr->current_text_size)         text++;      text_ptr = (png_textp)png_malloc(png_ptr,         (png_uint_32)png_sizeof(png_text));      text_ptr->compression = PNG_TEXT_COMPRESSION_NONE;      text_ptr->key = key;#ifdef PNG_iTXt_SUPPORTED      text_ptr->lang = NULL;      text_ptr->lang_key = NULL;#endif      text_ptr->text = text;      ret = png_set_text_2(png_ptr, info_ptr, text_ptr, 1);      png_free(png_ptr, key);      png_free(png_ptr, text_ptr);      png_ptr->current_text = NULL;      if (ret)        png_warning(png_ptr, "Insufficient memory to store text chunk.");   }}#endif#if defined(PNG_READ_zTXt_SUPPORTED)void /* PRIVATE */png_push_handle_zTXt(png_structp png_ptr, png_infop info_ptr, png_uint_32   length){   if (!(png_ptr->mode & PNG_HAVE_IHDR) || (png_ptr->mode & PNG_HAVE_IEND))      {         png_error(png_ptr, "Out of place zTXt");         /* to quiet some compiler warnings */         if(info_ptr == NULL) return;      }#ifdef PNG_MAX_MALLOC_64K   /* We can't handle zTXt chunks > 64K, since we don't have enough space    * to be able to store the uncompressed data.  Actually, the threshold    * is probably around 32K, but it isn't as definite as 64K is.    */   if (length > (png_uint_32)65535L)   {      png_warning(png_ptr, "zTXt chunk too large to fit in memory");      png_push_crc_skip(png_ptr, length);      return;   }#endif   png_ptr->current_text = (png_charp)png_malloc(png_ptr,       (png_uint_32)(length+1));   png_ptr->current_text[length] = '\0';   png_ptr->current_text_ptr = png_ptr->current_text;   png_ptr->current_text_size = (png_size_t)length;   png_ptr->current_text_left = (png_size_t)length;   png_ptr->process_mode = PNG_READ_zTXt_MODE;}void /* PRIVATE */png_push_read_zTXt(png_structp png_ptr, png_infop info_ptr){   if (png_ptr->buffer_size && png_ptr->current_text_left)

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