87c0d30fc5
src/autofit/afangles.c src/autofit/aflatin.c src/autohint/ahglyph.c src/autohint/ahhint.c src/base/ftcalc.c src/base/ftgloadr.c src/base/ftglyph.c src/base/ftobjs.c src/base/ftsynth.c src/base/fttrigon.c src/cff/cffgload.c src/cid/cidgload.c src/cid/cidload.c src/pfr/pfrgload.c src/pfr/pfrload.c src/pfr/pfrsbit.c src/psaux/psobjs.c src/pshinter/pshalgo.c src/pshinter/pshglob.c src/pshinter/pshrec.c src/raster/ftrend1.c src/sfnt/ttcmap0.c src/smooth/ftsmooth.c src/truetype/ttdriver.c src/truetype/ttgload.c src/truetype/ttinterp.c src/truetype/ttobjs.c src/type1/t1gload.c src/winfonts/winfnt.c: use of the FT_PAD_XXX and FT_PIX_XXX macros to avoid compiler warnings with very pedantic compilers. Hints: (x) & -64 will warn if (x) is not signed.. use (x) & ~63 instead !
447 lines
16 KiB
C
447 lines
16 KiB
C
/***************************************************************************/
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/* */
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/* cidgload.c */
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/* */
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/* CID-keyed Type1 Glyph Loader (body). */
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/* */
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/* Copyright 1996-2001, 2002, 2003 by */
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/* David Turner, Robert Wilhelm, and Werner Lemberg. */
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/* */
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/* This file is part of the FreeType project, and may only be used, */
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/* modified, and distributed under the terms of the FreeType project */
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/* license, LICENSE.TXT. By continuing to use, modify, or distribute */
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/* this file you indicate that you have read the license and */
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/* understand and accept it fully. */
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/* */
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/***************************************************************************/
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#include <ft2build.h>
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#include "cidload.h"
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#include "cidgload.h"
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#include FT_INTERNAL_DEBUG_H
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#include FT_INTERNAL_STREAM_H
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#include FT_OUTLINE_H
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#include "ciderrs.h"
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/*************************************************************************/
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/* */
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/* The macro FT_COMPONENT is used in trace mode. It is an implicit */
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/* parameter of the FT_TRACE() and FT_ERROR() macros, used to print/log */
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/* messages during execution. */
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/* */
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#undef FT_COMPONENT
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#define FT_COMPONENT trace_cidgload
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FT_CALLBACK_DEF( FT_Error )
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cid_load_glyph( T1_Decoder decoder,
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FT_UInt glyph_index )
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{
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CID_Face face = (CID_Face)decoder->builder.face;
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CID_FaceInfo cid = &face->cid;
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FT_Byte* p;
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FT_UInt fd_select;
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FT_Stream stream = face->root.stream;
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FT_Error error = 0;
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FT_Byte* charstring = 0;
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FT_Memory memory = face->root.memory;
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FT_ULong glyph_length = 0;
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PSAux_Service psaux = (PSAux_Service)face->psaux;
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#ifdef FT_CONFIG_OPTION_INCREMENTAL
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/* For incremental fonts get the character data using */
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/* the callback function. */
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if ( face->root.internal->incremental_interface )
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{
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FT_Data glyph_data;
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error = face->root.internal->incremental_interface->funcs->get_glyph_data(
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face->root.internal->incremental_interface->object,
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glyph_index,
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&glyph_data );
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if ( error )
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goto Exit;
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p = (FT_Byte*)glyph_data.pointer;
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fd_select = (FT_UInt)cid_get_offset( &p, (FT_Byte)cid->fd_bytes );
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if ( glyph_data.length != 0 )
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{
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glyph_length = glyph_data.length - cid->fd_bytes;
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FT_ALLOC( charstring, glyph_length );
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if ( !error )
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ft_memcpy( charstring, glyph_data.pointer + cid->fd_bytes,
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glyph_length );
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}
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face->root.internal->incremental_interface->funcs->free_glyph_data(
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face->root.internal->incremental_interface->object,
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&glyph_data );
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if ( error )
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goto Exit;
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}
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else
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#endif /* FT_CONFIG_OPTION_INCREMENTAL */
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/* For ordinary fonts read the CID font dictionary index */
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/* and charstring offset from the CIDMap. */
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{
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FT_UInt entry_len = cid->fd_bytes + cid->gd_bytes;
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FT_ULong off1;
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if ( FT_STREAM_SEEK( cid->data_offset + cid->cidmap_offset +
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glyph_index * entry_len ) ||
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FT_FRAME_ENTER( 2 * entry_len ) )
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goto Exit;
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p = (FT_Byte*)stream->cursor;
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fd_select = (FT_UInt) cid_get_offset( &p, (FT_Byte)cid->fd_bytes );
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off1 = (FT_ULong)cid_get_offset( &p, (FT_Byte)cid->gd_bytes );
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p += cid->fd_bytes;
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glyph_length = cid_get_offset( &p, (FT_Byte)cid->gd_bytes ) - off1;
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FT_FRAME_EXIT();
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if ( glyph_length == 0 )
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goto Exit;
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if ( FT_ALLOC( charstring, glyph_length ) )
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goto Exit;
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if ( FT_STREAM_READ_AT( cid->data_offset + off1,
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charstring, glyph_length ) )
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goto Exit;
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}
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/* Now set up the subrs array and parse the charstrings. */
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{
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CID_FaceDict dict;
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CID_Subrs cid_subrs = face->subrs + fd_select;
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FT_Int cs_offset;
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/* Set up subrs */
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decoder->num_subrs = cid_subrs->num_subrs;
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decoder->subrs = cid_subrs->code;
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decoder->subrs_len = 0;
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/* Set up font matrix */
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dict = cid->font_dicts + fd_select;
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decoder->font_matrix = dict->font_matrix;
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decoder->font_offset = dict->font_offset;
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decoder->lenIV = dict->private_dict.lenIV;
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/* Decode the charstring. */
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/* Adjustment for seed bytes. */
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cs_offset = ( decoder->lenIV >= 0 ? decoder->lenIV : 0 );
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/* Decrypt only if lenIV >= 0. */
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if ( decoder->lenIV >= 0 )
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psaux->t1_decrypt( charstring, glyph_length, 4330 );
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error = decoder->funcs.parse_charstrings(
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decoder, charstring + cs_offset,
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(FT_Int)glyph_length - cs_offset );
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}
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FT_FREE( charstring );
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#ifdef FT_CONFIG_OPTION_INCREMENTAL
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/* Incremental fonts can optionally override the metrics. */
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if ( !error &&
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face->root.internal->incremental_interface &&
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face->root.internal->incremental_interface->funcs->get_glyph_metrics )
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{
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FT_Incremental_MetricsRec metrics;
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metrics.bearing_x = decoder->builder.left_bearing.x;
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metrics.bearing_y = decoder->builder.left_bearing.y;
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metrics.advance = decoder->builder.advance.x;
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error = face->root.internal->incremental_interface->funcs->get_glyph_metrics(
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face->root.internal->incremental_interface->object,
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glyph_index, FALSE, &metrics );
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decoder->builder.left_bearing.x = metrics.bearing_x;
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decoder->builder.left_bearing.y = metrics.bearing_y;
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decoder->builder.advance.x = metrics.advance;
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decoder->builder.advance.y = 0;
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}
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#endif /* FT_CONFIG_OPTION_INCREMENTAL */
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Exit:
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return error;
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}
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#if 0
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/*************************************************************************/
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/*************************************************************************/
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/*************************************************************************/
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/********** *********/
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/********** *********/
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/********** COMPUTE THE MAXIMUM ADVANCE WIDTH *********/
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/********** *********/
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/********** The following code is in charge of computing *********/
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/********** the maximum advance width of the font. It *********/
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/********** quickly processes each glyph charstring to *********/
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/********** extract the value from either a `sbw' or `seac' *********/
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/********** operator. *********/
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/********** *********/
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/*************************************************************************/
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/*************************************************************************/
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/*************************************************************************/
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FT_LOCAL_DEF( FT_Error )
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cid_face_compute_max_advance( CID_Face face,
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FT_Int* max_advance )
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{
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FT_Error error;
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T1_DecoderRec decoder;
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FT_Int glyph_index;
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PSAux_Service psaux = (PSAux_Service)face->psaux;
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*max_advance = 0;
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/* Initialize load decoder */
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error = psaux->t1_decoder_funcs->init( &decoder,
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(FT_Face)face,
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0, /* size */
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0, /* glyph slot */
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0, /* glyph names! XXX */
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0, /* blend == 0 */
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0, /* hinting == 0 */
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cid_load_glyph );
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if ( error )
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return error;
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decoder.builder.metrics_only = 1;
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decoder.builder.load_points = 0;
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/* for each glyph, parse the glyph charstring and extract */
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/* the advance width */
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for ( glyph_index = 0; glyph_index < face->root.num_glyphs;
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glyph_index++ )
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{
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/* now get load the unscaled outline */
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error = cid_load_glyph( &decoder, glyph_index );
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/* ignore the error if one occurred - skip to next glyph */
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}
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*max_advance = decoder.builder.advance.x;
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return CID_Err_Ok;
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}
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#endif /* 0 */
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/*************************************************************************/
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/*************************************************************************/
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/*************************************************************************/
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/********** *********/
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/********** *********/
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/********** UNHINTED GLYPH LOADER *********/
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/********** *********/
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/********** The following code is in charge of loading a *********/
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/********** single outline. It completely ignores hinting *********/
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/********** and is used when FT_LOAD_NO_HINTING is set. *********/
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/********** *********/
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/*************************************************************************/
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/*************************************************************************/
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/*************************************************************************/
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FT_LOCAL_DEF( FT_Error )
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cid_slot_load_glyph( CID_GlyphSlot glyph,
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CID_Size size,
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FT_Int glyph_index,
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FT_Int32 load_flags )
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{
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FT_Error error;
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T1_DecoderRec decoder;
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CID_Face face = (CID_Face)glyph->root.face;
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FT_Bool hinting;
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PSAux_Service psaux = (PSAux_Service)face->psaux;
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FT_Matrix font_matrix;
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FT_Vector font_offset;
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if ( load_flags & FT_LOAD_NO_RECURSE )
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load_flags |= FT_LOAD_NO_SCALE | FT_LOAD_NO_HINTING;
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glyph->x_scale = size->root.metrics.x_scale;
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glyph->y_scale = size->root.metrics.y_scale;
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glyph->root.outline.n_points = 0;
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glyph->root.outline.n_contours = 0;
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hinting = FT_BOOL( ( load_flags & FT_LOAD_NO_SCALE ) == 0 &&
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( load_flags & FT_LOAD_NO_HINTING ) == 0 );
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glyph->root.format = FT_GLYPH_FORMAT_OUTLINE;
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{
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error = psaux->t1_decoder_funcs->init( &decoder,
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(FT_Face)face,
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(FT_Size)size,
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(FT_GlyphSlot)glyph,
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0, /* glyph names -- XXX */
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0, /* blend == 0 */
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hinting,
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FT_LOAD_TARGET_MODE(load_flags),
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cid_load_glyph );
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/* set up the decoder */
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decoder.builder.no_recurse = FT_BOOL(
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( ( load_flags & FT_LOAD_NO_RECURSE ) != 0 ) );
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error = cid_load_glyph( &decoder, glyph_index );
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font_matrix = decoder.font_matrix;
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font_offset = decoder.font_offset;
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/* save new glyph tables */
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psaux->t1_decoder_funcs->done( &decoder );
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}
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/* now, set the metrics -- this is rather simple, as */
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/* the left side bearing is the xMin, and the top side */
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/* bearing the yMax */
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if ( !error )
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{
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glyph->root.outline.flags &= FT_OUTLINE_OWNER;
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glyph->root.outline.flags |= FT_OUTLINE_REVERSE_FILL;
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/* for composite glyphs, return only left side bearing and */
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/* advance width */
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if ( load_flags & FT_LOAD_NO_RECURSE )
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{
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FT_Slot_Internal internal = glyph->root.internal;
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glyph->root.metrics.horiBearingX = decoder.builder.left_bearing.x;
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glyph->root.metrics.horiAdvance = decoder.builder.advance.x;
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internal->glyph_matrix = font_matrix;
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internal->glyph_delta = font_offset;
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internal->glyph_transformed = 1;
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}
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else
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{
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FT_BBox cbox;
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FT_Glyph_Metrics* metrics = &glyph->root.metrics;
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FT_Vector advance;
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/* copy the _unscaled_ advance width */
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metrics->horiAdvance = decoder.builder.advance.x;
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glyph->root.linearHoriAdvance = decoder.builder.advance.x;
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glyph->root.internal->glyph_transformed = 0;
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/* make up vertical metrics */
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metrics->vertBearingX = 0;
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metrics->vertBearingY = 0;
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metrics->vertAdvance = 0;
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glyph->root.linearVertAdvance = 0;
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glyph->root.format = FT_GLYPH_FORMAT_OUTLINE;
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if ( size && size->root.metrics.y_ppem < 24 )
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glyph->root.outline.flags |= FT_OUTLINE_HIGH_PRECISION;
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/* apply the font matrix */
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FT_Outline_Transform( &glyph->root.outline, &font_matrix );
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FT_Outline_Translate( &glyph->root.outline,
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font_offset.x,
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font_offset.y );
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advance.x = metrics->horiAdvance;
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advance.y = 0;
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FT_Vector_Transform( &advance, &font_matrix );
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metrics->horiAdvance = advance.x + font_offset.x;
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advance.x = 0;
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advance.y = metrics->vertAdvance;
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FT_Vector_Transform( &advance, &font_matrix );
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metrics->vertAdvance = advance.y + font_offset.y;
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if ( ( load_flags & FT_LOAD_NO_SCALE ) == 0 )
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{
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/* scale the outline and the metrics */
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FT_Int n;
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FT_Outline* cur = decoder.builder.base;
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FT_Vector* vec = cur->points;
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FT_Fixed x_scale = glyph->x_scale;
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FT_Fixed y_scale = glyph->y_scale;
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/* First of all, scale the points */
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if ( !hinting )
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for ( n = cur->n_points; n > 0; n--, vec++ )
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{
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vec->x = FT_MulFix( vec->x, x_scale );
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vec->y = FT_MulFix( vec->y, y_scale );
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}
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FT_Outline_Get_CBox( &glyph->root.outline, &cbox );
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/* Then scale the metrics */
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metrics->horiAdvance = FT_MulFix( metrics->horiAdvance, x_scale );
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metrics->vertAdvance = FT_MulFix( metrics->vertAdvance, y_scale );
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metrics->vertBearingX = FT_MulFix( metrics->vertBearingX, x_scale );
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metrics->vertBearingY = FT_MulFix( metrics->vertBearingY, y_scale );
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if ( hinting )
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{
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metrics->horiAdvance = FT_PIX_ROUND( metrics->horiAdvance );
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metrics->vertAdvance = FT_PIX_ROUND( metrics->vertAdvance );
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metrics->vertBearingX = FT_PIX_ROUND( metrics->vertBearingX );
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metrics->vertBearingY = FT_PIX_ROUND( metrics->vertBearingY );
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}
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}
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/* compute the other metrics */
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FT_Outline_Get_CBox( &glyph->root.outline, &cbox );
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/* grid fit the bounding box if necessary */
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if ( hinting )
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{
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cbox.xMin = FT_PIX_FLOOR( cbox.xMin );
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cbox.yMin = FT_PIX_FLOOR( cbox.yMin );
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cbox.xMax = FT_PIX_CEIL( cbox.xMax );
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cbox.yMax = FT_PIX_CEIL( cbox.yMax );
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}
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metrics->width = cbox.xMax - cbox.xMin;
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metrics->height = cbox.yMax - cbox.yMin;
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metrics->horiBearingX = cbox.xMin;
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metrics->horiBearingY = cbox.yMax;
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}
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}
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return error;
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}
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/* END */
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