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📄 cidload.c

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/***************************************************************************//*                                                                         *//*  cidload.c                                                              *//*                                                                         *//*    CID-keyed Type1 font loader (body).                                  *//*                                                                         *//*  Copyright 1996-2001 by                                                 *//*  David Turner, Robert Wilhelm, and Werner Lemberg.                      *//*                                                                         *//*  This file is part of the FreeType project, and may only be used,       *//*  modified, and distributed under the terms of the FreeType project      *//*  license, LICENSE.TXT.  By continuing to use, modify, or distribute     *//*  this file you indicate that you have read the license and              *//*  understand and accept it fully.                                        *//*                                                                         *//***************************************************************************/#include <ft2build.h>#include FT_INTERNAL_DEBUG_H#include FT_CONFIG_CONFIG_H#include FT_MULTIPLE_MASTERS_H#include FT_INTERNAL_TYPE1_TYPES_H#include "cidload.h"#include "ciderrs.h"#include <stdio.h>#include <ctype.h>  /* for isspace(), isalnum() */  /*************************************************************************/  /*                                                                       */  /* The macro FT_COMPONENT is used in trace mode.  It is an implicit      */  /* parameter of the FT_TRACE() and FT_ERROR() macros, used to print/log  */  /* messages during execution.                                            */  /*                                                                       */#undef  FT_COMPONENT#define FT_COMPONENT  trace_cidload  /* read a single offset */  FT_LOCAL_DEF FT_Long  cid_get_offset( FT_Byte**  start,                  FT_Byte    offsize )  {    FT_Long   result;    FT_Byte*  p = *start;    for ( result = 0; offsize > 0; offsize-- )    {      result <<= 8;      result  |= *p++;    }    *start = p;    return result;  }  FT_LOCAL_DEF void  cid_decrypt( FT_Byte*   buffer,               FT_Offset  length,               FT_UShort  seed )  {    while ( length > 0 )    {      FT_Byte  plain;      plain     = (FT_Byte)( *buffer ^ ( seed >> 8 ) );      seed      = (FT_UShort)( ( *buffer + seed ) * 52845U + 22719 );      *buffer++ = plain;      length--;    }  }  /*************************************************************************/  /*************************************************************************/  /*****                                                               *****/  /*****                    TYPE 1 SYMBOL PARSING                      *****/  /*****                                                               *****/  /*************************************************************************/  /*************************************************************************/  static FT_Error  cid_load_keyword( CID_Face         face,                    CID_Loader*      loader,                    const T1_Field*  keyword )  {    FT_Error     error;    CID_Parser*  parser = &loader->parser;    FT_Byte*     object;    void*        dummy_object;    CID_Info*    cid = &face->cid;    /* if the keyword has a dedicated callback, call it */    if ( keyword->type == t1_field_callback )    {      keyword->reader( (FT_Face)face, parser );      error = parser->root.error;      goto Exit;    }    /* we must now compute the address of our target object */    switch ( keyword->location )    {    case t1_field_cid_info:      object = (FT_Byte*)cid;      break;    case t1_field_font_info:      object = (FT_Byte*)&cid->font_info;      break;    default:      {        CID_FontDict*  dict;        if ( parser->num_dict < 0 )        {          FT_ERROR(( "cid_load_keyword: invalid use of `%s'!\n",                     keyword->ident ));          error = CID_Err_Syntax_Error;          goto Exit;        }        dict = cid->font_dicts + parser->num_dict;        switch ( keyword->location )        {        case t1_field_private:          object = (FT_Byte*)&dict->private_dict;          break;        default:          object = (FT_Byte*)dict;        }      }    }    dummy_object = object;    /* now, load the keyword data in the object's field(s) */    if ( keyword->type == t1_field_integer_array ||         keyword->type == t1_field_fixed_array   )      error = CID_Load_Field_Table( &loader->parser, keyword,                                    &dummy_object );    else      error = CID_Load_Field( &loader->parser, keyword, &dummy_object );  Exit:    return error;  }  FT_CALLBACK_DEF( FT_Error )  parse_font_bbox( CID_Face     face,                   CID_Parser*  parser )  {    FT_Fixed  temp[4];    FT_BBox*  bbox = &face->cid.font_bbox;    (void)CID_ToFixedArray( parser, 4, temp, 0 );    bbox->xMin = FT_RoundFix( temp[0] );    bbox->yMin = FT_RoundFix( temp[1] );    bbox->xMax = FT_RoundFix( temp[2] );    bbox->yMax = FT_RoundFix( temp[3] );    return CID_Err_Ok;       /* this is a callback function; */                            /* we must return an error code */  }  FT_CALLBACK_DEF( FT_Error )  parse_font_matrix( CID_Face     face,                     CID_Parser*  parser )  {    FT_Matrix*     matrix;    FT_Vector*     offset;    CID_FontDict*  dict;    FT_Face        root = (FT_Face)&face->root;    FT_Fixed       temp[6];    FT_Fixed       temp_scale;    if ( parser->num_dict >= 0 )    {      dict   = face->cid.font_dicts + parser->num_dict;      matrix = &dict->font_matrix;      offset = &dict->font_offset;      (void)CID_ToFixedArray( parser, 6, temp, 3 );      temp_scale = ABS( temp[3] );      /* Set Units per EM based on FontMatrix values.  We set the value to */      /* `1000/temp_scale', because temp_scale was already multiplied by   */      /* 1000 (in t1_tofixed(), from psobjs.c).                            */      root->units_per_EM = (FT_UShort)( FT_DivFix( 0x10000L,                                        FT_DivFix( temp_scale, 1000 ) ) );      /* we need to scale the values by 1.0/temp[3] */      if ( temp_scale != 0x10000L )      {        temp[0] = FT_DivFix( temp[0], temp_scale );        temp[1] = FT_DivFix( temp[1], temp_scale );        temp[2] = FT_DivFix( temp[2], temp_scale );        temp[4] = FT_DivFix( temp[4], temp_scale );        temp[5] = FT_DivFix( temp[5], temp_scale );        temp[3] = 0x10000L;      }      matrix->xx = temp[0];      matrix->yx = temp[1];      matrix->xy = temp[2];      matrix->yy = temp[3];      /* note that the font offsets are expressed in integer font units */      offset->x  = temp[4] >> 16;      offset->y  = temp[5] >> 16;    }    return CID_Err_Ok;       /* this is a callback function; */                            /* we must return an error code */  }  FT_CALLBACK_DEF( FT_Error )  parse_fd_array( CID_Face     face,                  CID_Parser*  parser )  {    CID_Info*  cid    = &face->cid;    FT_Memory  memory = face->root.memory;    FT_Error   error  = CID_Err_Ok;    FT_Long    num_dicts;    num_dicts = CID_ToInt( parser );    if ( !cid->font_dicts )    {      FT_Int  n;      if ( ALLOC_ARRAY( cid->font_dicts, num_dicts, CID_FontDict ) )        goto Exit;      cid->num_dicts = (FT_UInt)num_dicts;      /* don't forget to set a few defaults */      for ( n = 0; n < cid->num_dicts; n++ )      {        CID_FontDict*  dict = cid->font_dicts + n;        /* default value for lenIV */        dict->private_dict.lenIV = 4;      }    }  Exit:    return error;  }  static  const T1_Field  cid_field_records[] =  {#include "cidtoken.h"    T1_FIELD_CALLBACK( "FontBBox", parse_font_bbox )    T1_FIELD_CALLBACK( "FDArray", parse_fd_array )    T1_FIELD_CALLBACK( "FontMatrix", parse_font_matrix )    { 0, t1_field_cid_info, t1_field_none, 0, 0, 0, 0, 0 }  };  static int  is_alpha( char  c )  {    return ( isalnum( (int)c ) ||             c == '.'          ||             c == '_'          );  }  static FT_Error  cid_parse_dict( CID_Face     face,                  CID_Loader*  loader,                  FT_Byte*     base,                  FT_Long      size )  {    CID_Parser*  parser = &loader->parser;    parser->root.cursor = base;    parser->root.limit  = base + size;    parser->root.error  = 0;    {      FT_Byte*  cur   = base;      FT_Byte*  limit = cur + size;      for ( ;cur < limit; cur++ )      {        /* look for `%ADOBeginFontDict' */        if ( *cur == '%' && cur + 20 < limit &&             strncmp( (char*)cur, "%ADOBeginFontDict", 17 ) == 0 )        {          cur += 17;          /* if /FDArray was found, then cid->num_dicts is > 0, and */          /* we can start increasing parser->num_dict               */          if ( face->cid.num_dicts > 0 )            parser->num_dict++;        }        /* look for immediates */        else if ( *cur == '/' && cur + 2 < limit )        {          FT_Byte*  cur2;          FT_Int    len;          cur++;          cur2 = cur;          while ( cur2 < limit && is_alpha( *cur2 ) )            cur2++;          len = (FT_Int)( cur2 - cur );          if ( len > 0 && len < 22 )          {            /* now compare the immediate name to the keyword table */            const T1_Field*  keyword = cid_field_records;            for (;;)            {              FT_Byte*  name;              name = (FT_Byte*)keyword->ident;              if ( !name )                break;              if ( cur[0] == name[0]                          &&                   len == (FT_Int)strlen( (const char*)name ) )              {                FT_Int  n;                for ( n = 1; n < len; n++ )                  if ( cur[n] != name[n] )                    break;                if ( n >= len )                {                  /* we found it - run the parsing callback */                  parser->root.cursor = cur2;                  CID_Skip_Spaces( parser );                  parser->root.error = cid_load_keyword( face,                                                         loader,                                                         keyword );                  if ( parser->root.error )                    return parser->root.error;                  cur = parser->root.cursor;                  break;                }              }              keyword++;            }          }        }      }    }    return parser->root.error;  }  /* read the subrmap and the subrs of each font dict */  static FT_Error  cid_read_subrs( CID_Face  face )  {    CID_Info*   cid    = &face->cid;    FT_Memory   memory = face->root.memory;    FT_Stream   stream = face->root.stream;    FT_Error    error;    FT_Int      n;    CID_Subrs*  subr;    FT_UInt     max_offsets = 0;    FT_ULong*   offsets = 0;    if ( ALLOC_ARRAY( face->subrs, cid->num_dicts, CID_Subrs ) )      goto Exit;    subr = face->subrs;    for ( n = 0; n < cid->num_dicts; n++, subr++ )    {      CID_FontDict*  dict  = cid->font_dicts + n;      FT_Int         lenIV = dict->private_dict.lenIV;      FT_UInt        count, num_subrs = dict->num_subrs;      FT_ULong       data_len;      FT_Byte*       p;      /* reallocate offsets array if needed */      if ( num_subrs + 1 > max_offsets )      {        FT_UInt  new_max = ( num_subrs + 1 + 3 ) & -4;        if ( REALLOC_ARRAY( offsets, max_offsets, new_max, FT_ULong ) )          goto Fail;        max_offsets = new_max;      }      /* read the subrmap's offsets */      if ( FILE_Seek( cid->data_offset + dict->subrmap_offset ) ||           ACCESS_Frame( ( num_subrs + 1 ) * dict->sd_bytes )   )        goto Fail;      p = (FT_Byte*)stream->cursor;      for ( count = 0; count <= num_subrs; count++ )        offsets[count] = cid_get_offset( &p, (FT_Byte)dict->sd_bytes );      FORGET_Frame();      /* now, compute the size of subrs charstrings, */      /* allocate, and read them                     */      data_len = offsets[num_subrs] - offsets[0];      if ( ALLOC_ARRAY( subr->code, num_subrs + 1, FT_Byte* ) ||           ALLOC( subr->code[0], data_len )                   )        goto Fail;      if ( FILE_Seek( cid->data_offset + offsets[0] ) ||           FILE_Read( subr->code[0], data_len )  )        goto Fail;      /* set up pointers */      for ( count = 1; count <= num_subrs; count++ )      {        FT_UInt  len;        len               = offsets[count] - offsets[count - 1];        subr->code[count] = subr->code[count - 1] + len;      }      /* decrypt subroutines, but only if lenIV >= 0 */      if ( lenIV >= 0 )      {        for ( count = 0; count < num_subrs; count++ )        {          FT_UInt  len;          len = offsets[count + 1] - offsets[count];          cid_decrypt( subr->code[count], len, 4330 );        }      }      subr->num_subrs = num_subrs;    }  Exit:    FREE( offsets );    return error;  Fail:    if ( face->subrs )    {      for ( n = 0; n < cid->num_dicts; n++ )      {        if ( face->subrs[n].code )          FREE( face->subrs[n].code[0] );        FREE( face->subrs[n].code );      }      FREE( face->subrs );    }    goto Exit;  }  static void  t1_init_loader( CID_Loader*  loader,                  CID_Face     face )  {    FT_UNUSED( face );    MEM_Set( loader, 0, sizeof ( *loader ) );  }  static void  t1_done_loader( CID_Loader*  loader )  {    CID_Parser*  parser = &loader->parser;    /* finalize parser */    CID_Done_Parser( parser );  }  FT_LOCAL_DEF FT_Error  CID_Open_Face( CID_Face  face )  {    CID_Loader  loader;    CID_Parser* parser;    FT_Error   error;    t1_init_loader( &loader, face );    parser = &loader.parser;    error = CID_New_Parser( parser, face->root.stream, face->root.memory,                            (PSAux_Interface*)face->psaux );    if ( error )      goto Exit;    error = cid_parse_dict( face, &loader,                            parser->postscript,                            parser->postscript_len );    if ( error )      goto Exit;    face->cid.data_offset = loader.parser.data_offset;    error = cid_read_subrs( face );  Exit:    t1_done_loader( &loader );    return error;  }/* END */

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