forked from minhngoc25a/freetype2
504 lines
16 KiB
C
504 lines
16 KiB
C
/***************************************************************************/
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/* */
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/* afloader.c */
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/* */
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/* Auto-fitter glyph loading routines (body). */
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/* */
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/* Copyright 2003, 2004, 2005, 2006 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 "afloader.h"
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#include "afhints.h"
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#include "afglobal.h"
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#include "aflatin.h"
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#include "aferrors.h"
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FT_LOCAL_DEF( FT_Error )
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af_loader_init( AF_Loader loader,
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FT_Memory memory )
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{
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FT_ZERO( loader );
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af_glyph_hints_init( &loader->hints, memory );
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#ifdef AF_DEBUG
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_af_debug_hints = &loader->hints;
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#endif
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return FT_GlyphLoader_New( memory, &loader->gloader );
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}
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FT_LOCAL_DEF( FT_Error )
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af_loader_reset( AF_Loader loader,
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FT_Face face )
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{
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FT_Error error = AF_Err_Ok;
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loader->face = face;
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loader->globals = (AF_FaceGlobals)face->autohint.data;
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FT_GlyphLoader_Rewind( loader->gloader );
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if ( loader->globals == NULL )
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{
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error = af_face_globals_new( face, &loader->globals );
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if ( !error )
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{
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face->autohint.data =
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(FT_Pointer)loader->globals;
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face->autohint.finalizer =
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(FT_Generic_Finalizer)af_face_globals_free;
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}
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}
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return error;
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}
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FT_LOCAL_DEF( void )
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af_loader_done( AF_Loader loader )
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{
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af_glyph_hints_done( &loader->hints );
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loader->face = NULL;
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loader->globals = NULL;
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#ifdef AF_DEBUG
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_af_debug_hints = NULL;
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#endif
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FT_GlyphLoader_Done( loader->gloader );
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loader->gloader = NULL;
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}
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static FT_Error
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af_loader_load_g( AF_Loader loader,
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AF_Scaler scaler,
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FT_UInt glyph_index,
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FT_Int32 load_flags,
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FT_UInt depth )
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{
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FT_Error error;
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FT_Face face = loader->face;
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FT_GlyphLoader gloader = loader->gloader;
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AF_ScriptMetrics metrics = loader->metrics;
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AF_GlyphHints hints = &loader->hints;
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FT_GlyphSlot slot = face->glyph;
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FT_Slot_Internal internal = slot->internal;
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error = FT_Load_Glyph( face, glyph_index, load_flags );
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if ( error )
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goto Exit;
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loader->transformed = internal->glyph_transformed;
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if ( loader->transformed )
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{
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FT_Matrix inverse;
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loader->trans_matrix = internal->glyph_matrix;
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loader->trans_delta = internal->glyph_delta;
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inverse = loader->trans_matrix;
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FT_Matrix_Invert( &inverse );
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FT_Vector_Transform( &loader->trans_delta, &inverse );
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}
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/* set linear metrics */
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slot->linearHoriAdvance = slot->metrics.horiAdvance;
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slot->linearVertAdvance = slot->metrics.vertAdvance;
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switch ( slot->format )
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{
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case FT_GLYPH_FORMAT_OUTLINE:
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/* translate the loaded glyph when an internal transform is needed */
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if ( loader->transformed )
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FT_Outline_Translate( &slot->outline,
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loader->trans_delta.x,
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loader->trans_delta.y );
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/* copy the outline points in the loader's current */
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/* extra points which is used to keep original glyph coordinates */
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error = FT_GLYPHLOADER_CHECK_POINTS( gloader,
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slot->outline.n_points + 4,
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slot->outline.n_contours );
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if ( error )
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goto Exit;
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FT_ARRAY_COPY( gloader->current.outline.points,
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slot->outline.points,
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slot->outline.n_points );
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FT_ARRAY_COPY( gloader->current.outline.contours,
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slot->outline.contours,
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slot->outline.n_contours );
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FT_ARRAY_COPY( gloader->current.outline.tags,
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slot->outline.tags,
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slot->outline.n_points );
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gloader->current.outline.n_points = slot->outline.n_points;
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gloader->current.outline.n_contours = slot->outline.n_contours;
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/* compute original horizontal phantom points (and ignore */
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/* vertical ones) */
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loader->pp1.x = hints->x_delta;
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loader->pp1.y = hints->y_delta;
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loader->pp2.x = FT_MulFix( slot->metrics.horiAdvance,
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hints->x_scale ) + hints->x_delta;
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loader->pp2.y = hints->y_delta;
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/* be sure to check for spacing glyphs */
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if ( slot->outline.n_points == 0 )
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goto Hint_Metrics;
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/* now load the slot image into the auto-outline and run the */
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/* automatic hinting process */
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metrics->clazz->script_hints_apply( hints,
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&gloader->current.outline,
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metrics );
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/* we now need to hint the metrics according to the change in */
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/* width/positioning that occured during the hinting process */
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{
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#ifndef AF_USE_WARPER
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FT_Pos old_advance, old_rsb, old_lsb, new_lsb;
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FT_Pos pp1x_uh, pp2x_uh;
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AF_AxisHints axis = &hints->axis[AF_DIMENSION_HORZ];
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AF_Edge edge1 = axis->edges; /* leftmost edge */
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AF_Edge edge2 = edge1 +
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axis->num_edges - 1; /* rightmost edge */
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if ( axis->num_edges > 1 && AF_HINTS_DO_ADVANCE( hints ) )
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{
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old_advance = loader->pp2.x;
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old_rsb = old_advance - edge2->opos;
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old_lsb = edge1->opos;
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new_lsb = edge1->pos;
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/* remember unhinted values to later account */
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/* for rounding errors */
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pp1x_uh = new_lsb - old_lsb;
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pp2x_uh = edge2->pos + old_rsb;
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/* prefer too much space over too little space */
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/* for very small sizes */
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if ( old_lsb < 24 )
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pp1x_uh -= 5;
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if ( old_rsb < 24 )
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pp2x_uh += 5;
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loader->pp1.x = FT_PIX_ROUND( pp1x_uh );
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loader->pp2.x = FT_PIX_ROUND( pp2x_uh );
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if ( loader->pp1.x >= new_lsb )
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loader->pp1.x -= 64;
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if ( loader->pp2.x <= pp2x_uh )
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loader->pp2.x += 64;
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slot->lsb_delta = loader->pp1.x - pp1x_uh;
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slot->rsb_delta = loader->pp2.x - pp2x_uh;
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}
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else
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#endif /* !AF_USE_WARPER */
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{
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FT_Pos pp1x = loader->pp1.x;
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FT_Pos pp2x = loader->pp2.x;
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loader->pp1.x = FT_PIX_ROUND( loader->pp1.x );
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loader->pp2.x = FT_PIX_ROUND( loader->pp2.x );
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slot->lsb_delta = loader->pp1.x - pp1x;
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slot->rsb_delta = loader->pp2.x - pp2x;
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}
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}
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/* good, we simply add the glyph to our loader's base */
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FT_GlyphLoader_Add( gloader );
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break;
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case FT_GLYPH_FORMAT_COMPOSITE:
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{
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FT_UInt nn, num_subglyphs = slot->num_subglyphs;
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FT_UInt num_base_subgs, start_point;
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FT_SubGlyph subglyph;
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start_point = gloader->base.outline.n_points;
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/* first of all, copy the subglyph descriptors in the glyph loader */
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error = FT_GlyphLoader_CheckSubGlyphs( gloader, num_subglyphs );
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if ( error )
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goto Exit;
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FT_ARRAY_COPY( gloader->current.subglyphs,
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slot->subglyphs,
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num_subglyphs );
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gloader->current.num_subglyphs = num_subglyphs;
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num_base_subgs = gloader->base.num_subglyphs;
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/* now, read each subglyph independently */
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for ( nn = 0; nn < num_subglyphs; nn++ )
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{
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FT_Vector pp1, pp2;
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FT_Pos x, y;
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FT_UInt num_points, num_new_points, num_base_points;
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/* gloader.current.subglyphs can change during glyph loading due */
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/* to re-allocation -- we must recompute the current subglyph on */
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/* each iteration */
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subglyph = gloader->base.subglyphs + num_base_subgs + nn;
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pp1 = loader->pp1;
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pp2 = loader->pp2;
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num_base_points = gloader->base.outline.n_points;
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error = af_loader_load_g( loader, scaler, subglyph->index,
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load_flags, depth + 1 );
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if ( error )
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goto Exit;
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/* recompute subglyph pointer */
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subglyph = gloader->base.subglyphs + num_base_subgs + nn;
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if ( subglyph->flags & FT_SUBGLYPH_FLAG_USE_MY_METRICS )
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{
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pp1 = loader->pp1;
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pp2 = loader->pp2;
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}
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else
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{
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loader->pp1 = pp1;
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loader->pp2 = pp2;
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}
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num_points = gloader->base.outline.n_points;
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num_new_points = num_points - num_base_points;
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/* now perform the transform required for this subglyph */
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if ( subglyph->flags & ( FT_SUBGLYPH_FLAG_SCALE |
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FT_SUBGLYPH_FLAG_XY_SCALE |
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FT_SUBGLYPH_FLAG_2X2 ) )
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{
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FT_Vector* cur = gloader->base.outline.points +
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num_base_points;
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FT_Vector* limit = cur + num_new_points;
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for ( ; cur < limit; cur++ )
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FT_Vector_Transform( cur, &subglyph->transform );
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}
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/* apply offset */
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if ( !( subglyph->flags & FT_SUBGLYPH_FLAG_ARGS_ARE_XY_VALUES ) )
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{
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FT_Int k = subglyph->arg1;
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FT_UInt l = subglyph->arg2;
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FT_Vector* p1;
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FT_Vector* p2;
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if ( start_point + k >= num_base_points ||
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l >= (FT_UInt)num_new_points )
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{
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error = AF_Err_Invalid_Composite;
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goto Exit;
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}
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l += num_base_points;
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/* for now, only use the current point coordinates; */
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/* we may consider another approach in the near future */
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p1 = gloader->base.outline.points + start_point + k;
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p2 = gloader->base.outline.points + start_point + l;
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x = p1->x - p2->x;
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y = p1->y - p2->y;
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}
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else
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{
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x = FT_MulFix( subglyph->arg1, hints->x_scale ) + hints->x_delta;
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y = FT_MulFix( subglyph->arg2, hints->y_scale ) + hints->y_delta;
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x = FT_PIX_ROUND( x );
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y = FT_PIX_ROUND( y );
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}
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{
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FT_Outline dummy = gloader->base.outline;
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dummy.points += num_base_points;
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dummy.n_points = (short)num_new_points;
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FT_Outline_Translate( &dummy, x, y );
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}
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}
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}
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break;
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default:
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/* we don't support other formats (yet?) */
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error = AF_Err_Unimplemented_Feature;
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}
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Hint_Metrics:
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if ( depth == 0 )
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{
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FT_BBox bbox;
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FT_Vector vvector;
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vvector.x = slot->metrics.vertBearingX - slot->metrics.horiBearingX;
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vvector.y = slot->metrics.vertBearingY - slot->metrics.horiBearingY;
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vvector.x = FT_MulFix( vvector.x, metrics->scaler.x_scale );
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vvector.y = FT_MulFix( vvector.y, metrics->scaler.y_scale );
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/* transform the hinted outline if needed */
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if ( loader->transformed )
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{
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FT_Outline_Transform( &gloader->base.outline, &loader->trans_matrix );
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FT_Vector_Transform( &vvector, &loader->trans_matrix );
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}
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/* we must translate our final outline by -pp1.x and compute */
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/* the new metrics */
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if ( loader->pp1.x )
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FT_Outline_Translate( &gloader->base.outline, -loader->pp1.x, 0 );
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FT_Outline_Get_CBox( &gloader->base.outline, &bbox );
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bbox.xMin = FT_PIX_FLOOR( bbox.xMin );
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bbox.yMin = FT_PIX_FLOOR( bbox.yMin );
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bbox.xMax = FT_PIX_CEIL( bbox.xMax );
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bbox.yMax = FT_PIX_CEIL( bbox.yMax );
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slot->metrics.width = bbox.xMax - bbox.xMin;
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slot->metrics.height = bbox.yMax - bbox.yMin;
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slot->metrics.horiBearingX = bbox.xMin;
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slot->metrics.horiBearingY = bbox.yMax;
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slot->metrics.vertBearingX = FT_PIX_FLOOR( bbox.xMin + vvector.x );
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slot->metrics.vertBearingY = FT_PIX_FLOOR( bbox.yMax + vvector.y );
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/* for mono-width fonts (like Andale, Courier, etc.) we need */
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/* to keep the original rounded advance width */
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#if 0
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if ( !FT_IS_FIXED_WIDTH( slot->face ) )
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slot->metrics.horiAdvance = loader->pp2.x - loader->pp1.x;
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else
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slot->metrics.horiAdvance = FT_MulFix( slot->metrics.horiAdvance,
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x_scale );
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#else
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if ( !FT_IS_FIXED_WIDTH( slot->face ) )
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slot->metrics.horiAdvance = loader->pp2.x - loader->pp1.x;
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else
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slot->metrics.horiAdvance = FT_MulFix( slot->metrics.horiAdvance,
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metrics->scaler.x_scale );
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#endif
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slot->metrics.vertAdvance = FT_MulFix( slot->metrics.vertAdvance,
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metrics->scaler.y_scale );
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slot->metrics.horiAdvance = FT_PIX_ROUND( slot->metrics.horiAdvance );
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slot->metrics.vertAdvance = FT_PIX_ROUND( slot->metrics.vertAdvance );
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/* now copy outline into glyph slot */
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FT_GlyphLoader_Rewind( internal->loader );
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error = FT_GlyphLoader_CopyPoints( internal->loader, gloader );
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if ( error )
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goto Exit;
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slot->outline = internal->loader->base.outline;
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slot->format = FT_GLYPH_FORMAT_OUTLINE;
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}
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#ifdef DEBUG_HINTER
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af_debug_hinter = hinter;
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#endif
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Exit:
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return error;
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}
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FT_LOCAL_DEF( FT_Error )
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af_loader_load_glyph( AF_Loader loader,
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FT_Face face,
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FT_UInt gindex,
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FT_UInt32 load_flags )
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{
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FT_Error error;
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FT_Size size = face->size;
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AF_ScalerRec scaler;
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if ( !size )
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return AF_Err_Invalid_Argument;
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FT_ZERO( &scaler );
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scaler.face = face;
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scaler.x_scale = size->metrics.x_scale;
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scaler.x_delta = 0; /* XXX: TODO: add support for sub-pixel hinting */
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scaler.y_scale = size->metrics.y_scale;
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scaler.y_delta = 0; /* XXX: TODO: add support for sub-pixel hinting */
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scaler.render_mode = FT_LOAD_TARGET_MODE( load_flags );
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scaler.flags = 0; /* XXX: fix this */
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error = af_loader_reset( loader, face );
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if ( !error )
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{
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AF_ScriptMetrics metrics;
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error = af_face_globals_get_metrics( loader->globals, gindex,
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&metrics );
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if ( !error )
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{
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loader->metrics = metrics;
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if ( metrics->clazz->script_metrics_scale )
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metrics->clazz->script_metrics_scale( metrics, &scaler );
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else
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metrics->scaler = scaler;
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load_flags |= FT_LOAD_NO_SCALE | FT_LOAD_IGNORE_TRANSFORM;
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load_flags &= ~FT_LOAD_RENDER;
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error = metrics->clazz->script_hints_init( &loader->hints, metrics );
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if ( error )
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goto Exit;
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error = af_loader_load_g( loader, &scaler, gindex, load_flags, 0 );
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}
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}
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Exit:
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return error;
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}
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/* END */
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