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/* Copyright (C) 1996, 2000 Aladdin Enterprises. All rights reserved.
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This software is provided AS-IS with no warranty, either express or
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implied.
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This software is distributed under license and may not be copied,
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modified or distributed except as expressly authorized under the terms
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of the license contained in the file LICENSE in this distribution.
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For more information about licensing, please refer to
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http://www.ghostscript.com/licensing/. For information on
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commercial licensing, go to http://www.artifex.com/licensing/ or
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contact Artifex Software, Inc., 101 Lucas Valley Road #110,
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San Rafael, CA 94903, U.S.A., +1(415)492-9861.
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*/
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/* $Id: gstype42.c,v 1.51 2005/03/15 11:36:37 igor Exp $ */
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/* Type 42 (TrueType) font library routines */
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#include "memory_.h"
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#include "gx.h"
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#include "gserrors.h"
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#include "gsstruct.h"
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#include "gsccode.h"
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#include "gsline.h" /* for gs_imager_setflat */
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#include "gsmatrix.h"
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#include "gsutil.h"
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#include "gxchrout.h"
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#include "gxfixed.h" /* for gxpath.h */
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#include "gxpath.h"
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#include "gxfont.h"
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#include "gxfont42.h"
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#include "gxttf.h"
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#include "gxttfb.h"
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#include "gxfcache.h"
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#include "gxistate.h"
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#include "stream.h"
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void abort(void);
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/* Structure descriptor */
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public_st_gs_font_type42();
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/* Forward references */
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private int append_outline_fitted(uint glyph_index, const gs_matrix * pmat,
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gx_path * ppath, cached_fm_pair * pair,
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const gs_log2_scale_point * pscale, bool design_grid);
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private uint default_get_glyph_index(gs_font_type42 *pfont, gs_glyph glyph);
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private int default_get_outline(gs_font_type42 *pfont, uint glyph_index,
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gs_glyph_data_t *pgd);
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/* Set up a pointer to a substring of the font data. */
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/* Free variables: pfont, string_proc. */
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#define ACCESS(base, length, vptr)\
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BEGIN\
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code = (*string_proc)(pfont, (ulong)(base), length, &vptr);\
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if ( code < 0 ) return code;\
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if ( code > 0 ) return_error(gs_error_invalidfont);\
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END
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/* Get 2- or 4-byte quantities from a table. */
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#define U8(p) ((uint)((p)[0]))
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#define S8(p) (int)((U8(p) ^ 0x80) - 0x80)
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#define U16(p) (((uint)((p)[0]) << 8) + (p)[1])
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#define S16(p) (int)((U16(p) ^ 0x8000) - 0x8000)
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#define u32(p) get_u32_msb(p)
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/* ---------------- Font level ---------------- */
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GS_NOTIFY_PROC(gs_len_glyphs_release);
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/* Get the offset to a glyph using the loca table */
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private inline ulong
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get_glyph_offset(gs_font_type42 *pfont, uint glyph_index)
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{
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int (*string_proc)(gs_font_type42 *, ulong, uint, const byte **) =
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pfont->data.string_proc;
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const byte *ploca;
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ulong result;
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int code; /* hidden variable used by ACCESS */
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if (pfont->data.indexToLocFormat) {
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ACCESS(pfont->data.loca + glyph_index * 4, 4, ploca);
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result = u32(ploca);
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} else {
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ACCESS(pfont->data.loca + glyph_index * 2, 2, ploca);
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result = (ulong) U16(ploca) << 1;
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}
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return result;
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}
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/*
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* Initialize the cached values in a Type 42 font.
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* Note that this initializes the type42_data procedures other than
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* string_proc, and the font procedures as well.
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*/
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int
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gs_type42_font_init(gs_font_type42 * pfont)
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{
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int (*string_proc)(gs_font_type42 *, ulong, uint, const byte **) =
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pfont->data.string_proc;
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const byte *OffsetTable;
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uint numTables;
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const byte *TableDirectory;
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uint i;
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int code;
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byte head_box[8];
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ulong loca_size = 0;
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ulong glyph_start, glyph_offset, glyph_length;
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ACCESS(0, 12, OffsetTable);
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{
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static const byte version1_0[4] = {0, 1, 0, 0};
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static const byte version_true[4] = {'t', 'r', 'u', 'e'};
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if (memcmp(OffsetTable, version1_0, 4) &&
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memcmp(OffsetTable, version_true, 4))
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return_error(gs_error_invalidfont);
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}
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numTables = U16(OffsetTable + 4);
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ACCESS(12, numTables * 16, TableDirectory);
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/* Clear all non-client-supplied data. */
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{
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void *proc_data = pfont->data.proc_data;
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memset(&pfont->data, 0, sizeof(pfont->data));
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pfont->data.string_proc = string_proc;
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pfont->data.proc_data = proc_data;
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}
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for (i = 0; i < numTables; ++i) {
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const byte *tab = TableDirectory + i * 16;
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ulong offset = u32(tab + 8);
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if (!memcmp(tab, "cmap", 4))
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pfont->data.cmap = offset;
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else if (!memcmp(tab, "glyf", 4))
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pfont->data.glyf = offset;
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else if (!memcmp(tab, "head", 4)) {
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const byte *head;
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ACCESS(offset, 54, head);
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pfont->data.unitsPerEm = U16(head + 18);
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memcpy(head_box, head + 36, 8);
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pfont->data.indexToLocFormat = U16(head + 50);
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} else if (!memcmp(tab, "hhea", 4)) {
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const byte *hhea;
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ACCESS(offset, 36, hhea);
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pfont->data.metrics[0].numMetrics = U16(hhea + 34);
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} else if (!memcmp(tab, "hmtx", 4)) {
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pfont->data.metrics[0].offset = offset;
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pfont->data.metrics[0].length = (uint)u32(tab + 12);
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} else if (!memcmp(tab, "loca", 4)) {
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pfont->data.loca = offset;
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loca_size = u32(tab + 12);
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} else if (!memcmp(tab, "maxp", 4)) {
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const byte *maxp;
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ACCESS(offset, 30, maxp);
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pfont->data.trueNumGlyphs = U16(maxp + 4);
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} else if (!memcmp(tab, "vhea", 4)) {
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const byte *vhea;
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ACCESS(offset, 36, vhea);
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pfont->data.metrics[1].numMetrics = U16(vhea + 34);
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} else if (!memcmp(tab, "vmtx", 4)) {
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pfont->data.metrics[1].offset = offset;
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pfont->data.metrics[1].length = (uint)u32(tab + 12);
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}
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}
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loca_size >>= pfont->data.indexToLocFormat + 1;
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pfont->data.numGlyphs = (loca_size == 0 ? 0 : loca_size - 1);
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/* Now build the len_glyphs array since 'loca' may not be properly sorted */
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pfont->data.len_glyphs = (uint *)gs_alloc_bytes(pfont->memory, pfont->data.numGlyphs * sizeof(uint),
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"gs_type42_font");
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if (pfont->data.len_glyphs == 0)
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return_error(gs_error_VMerror);
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gs_font_notify_register((gs_font *)pfont, gs_len_glyphs_release, (void *)pfont);
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/* The 'loca' may not be in order, so we construct a glyph length array */
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/* Since 'loca' is usually sorted, first try the simple linear scan to */
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/* avoid the need to perform the more expensive process. */
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glyph_start = get_glyph_offset(pfont, 0);
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for (i=1; i < loca_size; i++) {
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glyph_offset = get_glyph_offset(pfont, i);
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glyph_length = glyph_offset - glyph_start;
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if (glyph_length > 0x80000000)
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break; /* out of order loca */
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pfont->data.len_glyphs[i-1] = glyph_length;
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glyph_start = glyph_offset;
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}
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if (i < loca_size) {
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uint j;
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ulong trial_glyph_length;
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/*
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* loca was out of order, build the len_glyphs the hard way
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* Assume that some of the len_glyphs built so far may be wrong
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* For each starting offset, find the next higher ending offset
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* Note that doing this means that there can only be zero length
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* glyphs that have loca table offset equal to the last 'dummy'
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* entry. Otherwise we assume that it is a duplicated entry.
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*/
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for (i=0; i < loca_size-1; i++) {
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glyph_start = get_glyph_offset(pfont, i);
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for (j=1, glyph_length = 0x80000000; j<loca_size; j++) {
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glyph_offset = get_glyph_offset(pfont, j);
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trial_glyph_length = glyph_offset - glyph_start;
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if ((trial_glyph_length > 0) && (trial_glyph_length < glyph_length))
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glyph_length = trial_glyph_length;
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}
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pfont->data.len_glyphs[i] = glyph_length < 0x80000000 ? glyph_length : 0;
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}
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}
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/*
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* If the font doesn't have a valid FontBBox, compute one from the
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* 'head' information. Since the Adobe PostScript driver sometimes
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* outputs garbage FontBBox values, we use a "reasonableness" check
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* here.
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*/
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if (pfont->FontBBox.p.x >= pfont->FontBBox.q.x ||
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pfont->FontBBox.p.y >= pfont->FontBBox.q.y ||
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pfont->FontBBox.p.x < -0.5 || pfont->FontBBox.p.x > 0.5 ||
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pfont->FontBBox.p.y < -0.5 || pfont->FontBBox.p.y > 0.5
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) {
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float upem = (float)pfont->data.unitsPerEm;
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if (upem == 0)
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abort(); /* "gs_type42_init_font: 0 pfont->data.unitsPerEm" */
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pfont->FontBBox.p.x = S16(head_box) / upem;
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pfont->FontBBox.p.y = S16(head_box + 2) / upem;
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pfont->FontBBox.q.x = S16(head_box + 4) / upem;
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pfont->FontBBox.q.y = S16(head_box + 6) / upem;
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}
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pfont->data.warning_patented = false;
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pfont->data.warning_bad_instruction = false;
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pfont->data.get_glyph_index = default_get_glyph_index;
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pfont->data.get_outline = default_get_outline;
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pfont->data.get_metrics = gs_type42_default_get_metrics;
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pfont->procs.glyph_outline = gs_type42_glyph_outline;
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pfont->procs.glyph_info = gs_type42_glyph_info;
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pfont->procs.enumerate_glyph = gs_type42_enumerate_glyph;
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return 0;
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}
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int
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gs_len_glyphs_release(void *data, void *event)
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{
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gs_font_type42 *pfont = (gs_font_type42 *)data;
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gs_font_notify_unregister((gs_font *)pfont, gs_len_glyphs_release, (void *)data);
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gs_free_object(pfont->memory, pfont->data.len_glyphs, "gs_len_glyphs_release");
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return 0;
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}
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/* ---------------- Glyph level ---------------- */
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double
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recipunitsperem(gs_font_type42 *pfont)
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{
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if (pfont->data.unitsPerEm == 0)
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abort(); /* "recipunitsperem: 0 pfont->data.unitsPerEm" */
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return 1. / pfont->data.unitsPerEm;
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}
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/*
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* Parse the definition of one component of a composite glyph. We don't
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* bother to parse the component index, since the caller can do this so
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* easily.
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*/
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private void
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parse_component(const byte **pdata, uint *pflags, gs_matrix_fixed *psmat,
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int *pmp /*[2], may be null*/, const gs_font_type42 *pfont,
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const gs_matrix_fixed *pmat)
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{
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const byte *gdata = *pdata;
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uint flags;
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double factor = recipunitsperem(pfont);
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gs_matrix_fixed mat;
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gs_matrix scale_mat;
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flags = U16(gdata);
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gdata += 4;
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mat = *pmat;
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if (flags & TT_CG_ARGS_ARE_XY_VALUES) {
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int arg1, arg2;
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gs_fixed_point pt;
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if (flags & TT_CG_ARGS_ARE_WORDS)
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arg1 = S16(gdata), arg2 = S16(gdata + 2), gdata += 4;
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else
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arg1 = S8(gdata), arg2 = S8(gdata + 1), gdata += 2;
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if (flags & TT_CG_ROUND_XY_TO_GRID) {
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/* We should do something here, but we don't. */
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}
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gs_point_transform2fixed(pmat, arg1 * factor,
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arg2 * factor, &pt);
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/****** HACK: WE KNOW ABOUT FIXED MATRICES ******/
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mat.tx = fixed2float(mat.tx_fixed = pt.x);
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mat.ty = fixed2float(mat.ty_fixed = pt.y);
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if (pmp)
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pmp[0] = pmp[1] = -1;
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} else {
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if (flags & TT_CG_ARGS_ARE_WORDS) {
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if (pmp)
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pmp[0] = U16(gdata), pmp[1] = S16(gdata + 2);
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gdata += 4;
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} else {
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if (pmp)
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pmp[0] = U8(gdata), pmp[1] = U8(gdata + 1);
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gdata += 2;
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}
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}
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#define S2_14(p) (S16(p) / 16384.0)
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if (flags & TT_CG_HAVE_SCALE) {
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scale_mat.xx = scale_mat.yy = S2_14(gdata);
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scale_mat.xy = scale_mat.yx = 0;
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gdata += 2;
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} else if (flags & TT_CG_HAVE_XY_SCALE) {
|
|
|
318 |
scale_mat.xx = S2_14(gdata);
|
|
|
319 |
scale_mat.yy = S2_14(gdata + 2);
|
|
|
320 |
scale_mat.xy = scale_mat.yx = 0;
|
|
|
321 |
gdata += 4;
|
|
|
322 |
} else if (flags & TT_CG_HAVE_2X2) {
|
|
|
323 |
scale_mat.xx = S2_14(gdata);
|
|
|
324 |
scale_mat.xy = S2_14(gdata + 2);
|
|
|
325 |
scale_mat.yx = S2_14(gdata + 4);
|
|
|
326 |
scale_mat.yy = S2_14(gdata + 6);
|
|
|
327 |
gdata += 8;
|
|
|
328 |
} else
|
|
|
329 |
goto no_scale;
|
|
|
330 |
#undef S2_14
|
|
|
331 |
scale_mat.tx = 0;
|
|
|
332 |
scale_mat.ty = 0;
|
|
|
333 |
/* The scale doesn't affect mat.t{x,y}, so we don't */
|
|
|
334 |
/* need to update the fixed components. */
|
|
|
335 |
gs_matrix_multiply(&scale_mat, (const gs_matrix *)&mat,
|
|
|
336 |
(gs_matrix *)&mat);
|
|
|
337 |
no_scale:
|
|
|
338 |
*pdata = gdata;
|
|
|
339 |
*pflags = flags;
|
|
|
340 |
*psmat = mat;
|
|
|
341 |
}
|
|
|
342 |
|
|
|
343 |
/* Compute the total number of points in a (possibly composite) glyph. */
|
|
|
344 |
private int
|
|
|
345 |
total_points(gs_font_type42 *pfont, uint glyph_index)
|
|
|
346 |
{
|
|
|
347 |
gs_glyph_data_t glyph_data;
|
|
|
348 |
int code;
|
|
|
349 |
int ocode;
|
|
|
350 |
const byte *gdata;
|
|
|
351 |
int total;
|
|
|
352 |
|
|
|
353 |
glyph_data.memory = pfont->memory;
|
|
|
354 |
ocode = pfont->data.get_outline(pfont, glyph_index, &glyph_data);
|
|
|
355 |
if (ocode < 0)
|
|
|
356 |
return ocode;
|
|
|
357 |
if (glyph_data.bits.size == 0)
|
|
|
358 |
return 0;
|
|
|
359 |
gdata = glyph_data.bits.data;
|
|
|
360 |
if (S16(gdata) != -1) {
|
|
|
361 |
/* This is a simple glyph. */
|
|
|
362 |
int numContours = S16(gdata);
|
|
|
363 |
const byte *pends = gdata + 10;
|
|
|
364 |
const byte *pinstr = pends + numContours * 2;
|
|
|
365 |
|
|
|
366 |
total = (numContours == 0 ? 0 : U16(pinstr - 2) + 1);
|
|
|
367 |
} else {
|
|
|
368 |
/* This is a composite glyph. Add up the components. */
|
|
|
369 |
uint flags;
|
|
|
370 |
gs_matrix_fixed mat;
|
|
|
371 |
|
|
|
372 |
gdata += 10;
|
|
|
373 |
memset(&mat, 0, sizeof(mat)); /* arbitrary */
|
|
|
374 |
total = 0;
|
|
|
375 |
do {
|
|
|
376 |
code = total_points(pfont, U16(gdata + 2));
|
|
|
377 |
if (code < 0)
|
|
|
378 |
return code;
|
|
|
379 |
total += code;
|
|
|
380 |
parse_component(&gdata, &flags, &mat, NULL, pfont, &mat);
|
|
|
381 |
}
|
|
|
382 |
while (flags & TT_CG_MORE_COMPONENTS);
|
|
|
383 |
}
|
|
|
384 |
gs_glyph_data_free(&glyph_data, "total_points");
|
|
|
385 |
return total;
|
|
|
386 |
}
|
|
|
387 |
|
|
|
388 |
/*
|
|
|
389 |
* Define the default implementation for getting the glyph index from a
|
|
|
390 |
* gs_glyph. This is trivial for integer ("CID" but representing a GID)
|
|
|
391 |
* gs_glyph values, and not implemented for name glyphs.
|
|
|
392 |
*/
|
|
|
393 |
private uint
|
|
|
394 |
default_get_glyph_index(gs_font_type42 *pfont, gs_glyph glyph)
|
|
|
395 |
{
|
|
|
396 |
return (glyph < GS_MIN_CID_GLYPH ? 0 : /* undefined */
|
|
|
397 |
glyph - GS_MIN_CID_GLYPH);
|
|
|
398 |
}
|
|
|
399 |
|
|
|
400 |
/* Define the default implementation for getting the outline data for */
|
|
|
401 |
/* a glyph, using indexToLocFormat and the loca and glyf tables. */
|
|
|
402 |
/* Set pglyph->data = 0 if the glyph is empty. */
|
|
|
403 |
private int
|
|
|
404 |
default_get_outline(gs_font_type42 * pfont, uint glyph_index,
|
|
|
405 |
gs_glyph_data_t *pgd)
|
|
|
406 |
{
|
|
|
407 |
int (*string_proc) (gs_font_type42 *, ulong, uint, const byte **) =
|
|
|
408 |
pfont->data.string_proc;
|
|
|
409 |
ulong glyph_start;
|
|
|
410 |
uint glyph_length;
|
|
|
411 |
int code;
|
|
|
412 |
|
|
|
413 |
glyph_start = get_glyph_offset(pfont, glyph_index);
|
|
|
414 |
glyph_length = pfont->data.len_glyphs[glyph_index];
|
|
|
415 |
if (glyph_length == 0)
|
|
|
416 |
gs_glyph_data_from_null(pgd);
|
|
|
417 |
else {
|
|
|
418 |
const byte *data;
|
|
|
419 |
byte *buf;
|
|
|
420 |
|
|
|
421 |
code = (*string_proc)(pfont, (ulong)(pfont->data.glyf + glyph_start),
|
|
|
422 |
glyph_length, &data);
|
|
|
423 |
if (code < 0)
|
|
|
424 |
return code;
|
|
|
425 |
if (code == 0)
|
|
|
426 |
gs_glyph_data_from_string(pgd, data, glyph_length, NULL);
|
|
|
427 |
else {
|
|
|
428 |
/*
|
|
|
429 |
* The glyph is segmented in sfnts.
|
|
|
430 |
* It is not allowed with Type 42 specification.
|
|
|
431 |
* Perhaps we can handle it (with a low performance),
|
|
|
432 |
* making a contiguous copy.
|
|
|
433 |
*/
|
|
|
434 |
uint left = glyph_length;
|
|
|
435 |
|
|
|
436 |
/* 'code' is the returned length */
|
|
|
437 |
buf = (byte *)gs_alloc_string(pgd->memory, glyph_length, "default_get_outline");
|
|
|
438 |
if (buf == 0)
|
|
|
439 |
return_error(gs_error_VMerror);
|
|
|
440 |
gs_glyph_data_from_string(pgd, buf, glyph_length, (gs_font *)pfont);
|
|
|
441 |
for (;;) {
|
|
|
442 |
memcpy(buf + glyph_length - left, data, code);
|
|
|
443 |
if (!(left -= code))
|
|
|
444 |
return 0;
|
|
|
445 |
code = (*string_proc)(pfont, (ulong)(pfont->data.glyf + glyph_start +
|
|
|
446 |
glyph_length - left), left, &data);
|
|
|
447 |
if (code < 0)
|
|
|
448 |
return code;
|
|
|
449 |
if (code == 0)
|
|
|
450 |
code = left;
|
|
|
451 |
}
|
|
|
452 |
}
|
|
|
453 |
}
|
|
|
454 |
return 0;
|
|
|
455 |
}
|
|
|
456 |
|
|
|
457 |
/* Take outline data from a True Type font file. */
|
|
|
458 |
int
|
|
|
459 |
gs_type42_get_outline_from_TT_file(gs_font_type42 * pfont, stream *s, uint glyph_index,
|
|
|
460 |
gs_glyph_data_t *pgd)
|
|
|
461 |
{
|
|
|
462 |
uchar lbuf[8];
|
|
|
463 |
ulong glyph_start;
|
|
|
464 |
uint glyph_length, count;
|
|
|
465 |
|
|
|
466 |
/* fixme: Since this function is being called multiple times per glyph,
|
|
|
467 |
* we should cache glyph data in a buffer associated with the font.
|
|
|
468 |
*/
|
|
|
469 |
if (pfont->data.indexToLocFormat) {
|
|
|
470 |
sseek(s, pfont->data.loca + glyph_index * 4);
|
|
|
471 |
sgets(s, lbuf, 8, &count);
|
|
|
472 |
if (count < 8)
|
|
|
473 |
return_error(gs_error_invalidfont);
|
|
|
474 |
glyph_start = u32(lbuf);
|
|
|
475 |
glyph_length = u32(lbuf + 4) - glyph_start;
|
|
|
476 |
} else {
|
|
|
477 |
sseek(s, pfont->data.loca + glyph_index * 2);
|
|
|
478 |
sgets(s, lbuf, 4, &count);
|
|
|
479 |
if (count < 4)
|
|
|
480 |
return_error(gs_error_invalidfont);
|
|
|
481 |
glyph_start = (ulong) U16(lbuf) << 1;
|
|
|
482 |
glyph_length = ((ulong) U16(lbuf + 2) << 1) - glyph_start;
|
|
|
483 |
}
|
|
|
484 |
if (glyph_length == 0)
|
|
|
485 |
gs_glyph_data_from_null(pgd);
|
|
|
486 |
else {
|
|
|
487 |
byte *buf;
|
|
|
488 |
|
|
|
489 |
sseek(s, pfont->data.glyf + glyph_start);
|
|
|
490 |
buf = (byte *)gs_alloc_string(pgd->memory, glyph_length, "default_get_outline");
|
|
|
491 |
if (buf == 0)
|
|
|
492 |
return_error(gs_error_VMerror);
|
|
|
493 |
gs_glyph_data_from_string(pgd, buf, glyph_length, (gs_font *)pfont);
|
|
|
494 |
sgets(s, buf, glyph_length, &count);
|
|
|
495 |
if (count < glyph_length)
|
|
|
496 |
return_error(gs_error_invalidfont);
|
|
|
497 |
}
|
|
|
498 |
return 0;
|
|
|
499 |
}
|
|
|
500 |
|
|
|
501 |
/* Parse a glyph into pieces, if any. */
|
|
|
502 |
private int
|
|
|
503 |
parse_pieces(gs_font_type42 *pfont, gs_glyph glyph, gs_glyph *pieces,
|
|
|
504 |
int *pnum_pieces)
|
|
|
505 |
{
|
|
|
506 |
uint glyph_index = (glyph >= GS_MIN_GLYPH_INDEX
|
|
|
507 |
? glyph - GS_MIN_GLYPH_INDEX
|
|
|
508 |
: pfont->data.get_glyph_index(pfont, glyph));
|
|
|
509 |
gs_glyph_data_t glyph_data;
|
|
|
510 |
int code;
|
|
|
511 |
|
|
|
512 |
glyph_data.memory = pfont->memory;
|
|
|
513 |
code = pfont->data.get_outline(pfont, glyph_index, &glyph_data);
|
|
|
514 |
if (code < 0)
|
|
|
515 |
return code;
|
|
|
516 |
if (glyph_data.bits.size != 0 && S16(glyph_data.bits.data) == -1) {
|
|
|
517 |
/* This is a composite glyph. */
|
|
|
518 |
int i = 0;
|
|
|
519 |
uint flags = TT_CG_MORE_COMPONENTS;
|
|
|
520 |
const byte *gdata = glyph_data.bits.data + 10;
|
|
|
521 |
gs_matrix_fixed mat;
|
|
|
522 |
|
|
|
523 |
memset(&mat, 0, sizeof(mat)); /* arbitrary */
|
|
|
524 |
for (i = 0; flags & TT_CG_MORE_COMPONENTS; ++i) {
|
|
|
525 |
if (pieces)
|
|
|
526 |
pieces[i] = U16(gdata + 2) + GS_MIN_GLYPH_INDEX;
|
|
|
527 |
parse_component(&gdata, &flags, &mat, NULL, pfont, &mat);
|
|
|
528 |
}
|
|
|
529 |
*pnum_pieces = i;
|
|
|
530 |
} else
|
|
|
531 |
*pnum_pieces = 0;
|
|
|
532 |
gs_glyph_data_free(&glyph_data, "parse_pieces");
|
|
|
533 |
return 0;
|
|
|
534 |
}
|
|
|
535 |
|
|
|
536 |
/* Define the font procedures for a Type 42 font. */
|
|
|
537 |
int
|
|
|
538 |
gs_type42_glyph_outline(gs_font *font, int WMode, gs_glyph glyph, const gs_matrix *pmat,
|
|
|
539 |
gx_path *ppath, double sbw[4])
|
|
|
540 |
{
|
|
|
541 |
gs_font_type42 *const pfont = (gs_font_type42 *)font;
|
|
|
542 |
uint glyph_index = (glyph >= GS_MIN_GLYPH_INDEX
|
|
|
543 |
? glyph - GS_MIN_GLYPH_INDEX
|
|
|
544 |
: pfont->data.get_glyph_index(pfont, glyph));
|
|
|
545 |
gs_fixed_point origin;
|
|
|
546 |
int code;
|
|
|
547 |
gs_glyph_info_t info;
|
|
|
548 |
static const gs_matrix imat = { identity_matrix_body };
|
|
|
549 |
bool design_grid = true;
|
|
|
550 |
const gs_log2_scale_point log2_scale = {0, 0};
|
|
|
551 |
/* fixme : The subpixel numbers doesn't pass through the font_proc_glyph_outline interface.
|
|
|
552 |
High level devices can't get a proper grid fitting with AlignToPixels = 1.
|
|
|
553 |
Currently font_proc_glyph_outline is only used by pdfwrite for computing a
|
|
|
554 |
character bbox, which doesn't need a grid fitting.
|
|
|
555 |
We apply design grid here.
|
|
|
556 |
*/
|
|
|
557 |
cached_fm_pair *pair;
|
|
|
558 |
code = gx_lookup_fm_pair(font, pmat, &log2_scale, design_grid, &pair);
|
|
|
559 |
|
|
|
560 |
if (code < 0)
|
|
|
561 |
return code;
|
|
|
562 |
if (pmat == 0)
|
|
|
563 |
pmat = &imat;
|
|
|
564 |
if ((code = gx_path_current_point(ppath, &origin)) < 0 ||
|
|
|
565 |
(code = append_outline_fitted(glyph_index, pmat, ppath, pair,
|
|
|
566 |
&log2_scale, design_grid)) < 0 ||
|
|
|
567 |
(code = font->procs.glyph_info(font, glyph, pmat,
|
|
|
568 |
GLYPH_INFO_WIDTH0 << WMode, &info)) < 0
|
|
|
569 |
)
|
|
|
570 |
return code;
|
|
|
571 |
return gx_path_add_point(ppath, origin.x + float2fixed(info.width[WMode].x),
|
|
|
572 |
origin.y + float2fixed(info.width[WMode].y));
|
|
|
573 |
}
|
|
|
574 |
|
|
|
575 |
/* Get glyph info by glyph index. */
|
|
|
576 |
int
|
|
|
577 |
gs_type42_glyph_info_by_gid(gs_font *font, gs_glyph glyph, const gs_matrix *pmat,
|
|
|
578 |
int members, gs_glyph_info_t *info, uint glyph_index)
|
|
|
579 |
{
|
|
|
580 |
gs_font_type42 *const pfont = (gs_font_type42 *)font;
|
|
|
581 |
int default_members =
|
|
|
582 |
members & ~(GLYPH_INFO_WIDTHS | GLYPH_INFO_NUM_PIECES |
|
|
|
583 |
GLYPH_INFO_PIECES | GLYPH_INFO_OUTLINE_WIDTHS |
|
|
|
584 |
GLYPH_INFO_VVECTOR0 | GLYPH_INFO_VVECTOR1);
|
|
|
585 |
gs_glyph_data_t outline;
|
|
|
586 |
int code = 0;
|
|
|
587 |
|
|
|
588 |
outline.memory = pfont->memory;
|
|
|
589 |
if (default_members) {
|
|
|
590 |
code = gs_default_glyph_info(font, glyph, pmat, default_members, info);
|
|
|
591 |
|
|
|
592 |
if (code < 0)
|
|
|
593 |
return code;
|
|
|
594 |
} else if ((code = pfont->data.get_outline(pfont, glyph_index, &outline)) < 0)
|
|
|
595 |
return code; /* non-existent glyph */
|
|
|
596 |
else {
|
|
|
597 |
gs_glyph_data_free(&outline, "gs_type42_glyph_info");
|
|
|
598 |
info->members = 0;
|
|
|
599 |
}
|
|
|
600 |
if (members & GLYPH_INFO_WIDTHS) {
|
|
|
601 |
int i;
|
|
|
602 |
|
|
|
603 |
for (i = 0; i < 2; ++i)
|
|
|
604 |
if (members & (GLYPH_INFO_WIDTH0 << i)) {
|
|
|
605 |
float sbw[4];
|
|
|
606 |
|
|
|
607 |
code = gs_type42_wmode_metrics(pfont, glyph_index, i, sbw);
|
|
|
608 |
if (code < 0) {
|
|
|
609 |
code = 0;
|
|
|
610 |
continue;
|
|
|
611 |
}
|
|
|
612 |
if (pmat) {
|
|
|
613 |
code = gs_point_transform(sbw[2], sbw[3], pmat,
|
|
|
614 |
&info->width[i]);
|
|
|
615 |
if (code < 0)
|
|
|
616 |
return code;
|
|
|
617 |
code = gs_point_transform(sbw[0], sbw[1], pmat,
|
|
|
618 |
&info->v);
|
|
|
619 |
} else {
|
|
|
620 |
info->width[i].x = sbw[2], info->width[i].y = sbw[3];
|
|
|
621 |
info->v.x = sbw[0], info->v.y = sbw[1];
|
|
|
622 |
}
|
|
|
623 |
info->members |= (GLYPH_INFO_VVECTOR0 << i);
|
|
|
624 |
info->members |= (GLYPH_INFO_WIDTH << i);
|
|
|
625 |
}
|
|
|
626 |
|
|
|
627 |
}
|
|
|
628 |
if (members & (GLYPH_INFO_NUM_PIECES | GLYPH_INFO_PIECES)) {
|
|
|
629 |
gs_glyph *pieces =
|
|
|
630 |
(members & GLYPH_INFO_PIECES ? info->pieces : (gs_glyph *)0);
|
|
|
631 |
int code = parse_pieces(pfont, glyph, pieces, &info->num_pieces);
|
|
|
632 |
|
|
|
633 |
if (code < 0)
|
|
|
634 |
return code;
|
|
|
635 |
info->members |= members & (GLYPH_INFO_NUM_PIECES | GLYPH_INFO_PIECES);
|
|
|
636 |
}
|
|
|
637 |
return code;
|
|
|
638 |
}
|
|
|
639 |
int
|
|
|
640 |
gs_type42_glyph_info(gs_font *font, gs_glyph glyph, const gs_matrix *pmat,
|
|
|
641 |
int members, gs_glyph_info_t *info)
|
|
|
642 |
{
|
|
|
643 |
gs_font_type42 *const pfont = (gs_font_type42 *)font;
|
|
|
644 |
uint glyph_index;
|
|
|
645 |
|
|
|
646 |
if (glyph >= GS_MIN_GLYPH_INDEX)
|
|
|
647 |
glyph_index = glyph - GS_MIN_GLYPH_INDEX;
|
|
|
648 |
else {
|
|
|
649 |
glyph_index = pfont->data.get_glyph_index(pfont, glyph);
|
|
|
650 |
if (glyph_index == GS_NO_GLYPH)
|
|
|
651 |
return_error(gs_error_undefined);
|
|
|
652 |
}
|
|
|
653 |
return gs_type42_glyph_info_by_gid(font, glyph, pmat, members, info, glyph_index);
|
|
|
654 |
|
|
|
655 |
}
|
|
|
656 |
int
|
|
|
657 |
gs_type42_enumerate_glyph(gs_font *font, int *pindex,
|
|
|
658 |
gs_glyph_space_t glyph_space, gs_glyph *pglyph)
|
|
|
659 |
{
|
|
|
660 |
gs_font_type42 *const pfont = (gs_font_type42 *)font;
|
|
|
661 |
|
|
|
662 |
while (++*pindex <= pfont->data.numGlyphs) {
|
|
|
663 |
gs_glyph_data_t outline;
|
|
|
664 |
uint glyph_index = *pindex - 1;
|
|
|
665 |
int code;
|
|
|
666 |
|
|
|
667 |
outline.memory = pfont->memory;
|
|
|
668 |
code = pfont->data.get_outline(pfont, glyph_index, &outline);
|
|
|
669 |
if (code < 0)
|
|
|
670 |
return code;
|
|
|
671 |
if (outline.bits.data == 0)
|
|
|
672 |
continue; /* empty (undefined) glyph */
|
|
|
673 |
*pglyph = glyph_index + GS_MIN_GLYPH_INDEX;
|
|
|
674 |
gs_glyph_data_free(&outline, "gs_type42_enumerate_glyph");
|
|
|
675 |
return 0;
|
|
|
676 |
}
|
|
|
677 |
/* We are done. */
|
|
|
678 |
*pindex = 0;
|
|
|
679 |
return 0;
|
|
|
680 |
}
|
|
|
681 |
|
|
|
682 |
/* Get the metrics of a simple glyph. */
|
|
|
683 |
private int
|
|
|
684 |
simple_glyph_metrics(gs_font_type42 * pfont, uint glyph_index, int wmode,
|
|
|
685 |
float sbw[4])
|
|
|
686 |
{
|
|
|
687 |
int (*string_proc)(gs_font_type42 *, ulong, uint, const byte **) =
|
|
|
688 |
pfont->data.string_proc;
|
|
|
689 |
double factor = recipunitsperem(pfont);
|
|
|
690 |
uint width;
|
|
|
691 |
int lsb;
|
|
|
692 |
int code;
|
|
|
693 |
|
|
|
694 |
{
|
|
|
695 |
const gs_type42_mtx_t *pmtx = &pfont->data.metrics[wmode];
|
|
|
696 |
uint num_metrics = pmtx->numMetrics;
|
|
|
697 |
const byte *pmetrics;
|
|
|
698 |
|
|
|
699 |
if (pmtx->length == 0)
|
|
|
700 |
return_error(gs_error_rangecheck);
|
|
|
701 |
if (glyph_index < num_metrics) {
|
|
|
702 |
ACCESS(pmtx->offset + glyph_index * 4, 4, pmetrics);
|
|
|
703 |
width = U16(pmetrics);
|
|
|
704 |
lsb = S16(pmetrics + 2);
|
|
|
705 |
} else {
|
|
|
706 |
uint offset = pmtx->offset + num_metrics * 4;
|
|
|
707 |
uint glyph_offset = (glyph_index - num_metrics) * 2;
|
|
|
708 |
const byte *plsb;
|
|
|
709 |
|
|
|
710 |
ACCESS(offset - 4, 4, pmetrics);
|
|
|
711 |
width = U16(pmetrics);
|
|
|
712 |
if (glyph_offset >= pmtx->length)
|
|
|
713 |
glyph_offset = pmtx->length - 2;
|
|
|
714 |
ACCESS(offset + glyph_offset, 2, plsb);
|
|
|
715 |
lsb = S16(plsb);
|
|
|
716 |
}
|
|
|
717 |
}
|
|
|
718 |
if (wmode) {
|
|
|
719 |
factor = -factor; /* lsb and width go down the page */
|
|
|
720 |
sbw[0] = 0, sbw[1] = lsb * factor;
|
|
|
721 |
sbw[2] = 0, sbw[3] = width * factor;
|
|
|
722 |
} else {
|
|
|
723 |
sbw[0] = lsb * factor, sbw[1] = 0;
|
|
|
724 |
sbw[2] = width * factor, sbw[3] = 0;
|
|
|
725 |
}
|
|
|
726 |
return 0;
|
|
|
727 |
}
|
|
|
728 |
|
|
|
729 |
/* Get the metrics of a glyph. */
|
|
|
730 |
int
|
|
|
731 |
gs_type42_default_get_metrics(gs_font_type42 * pfont, uint glyph_index,
|
|
|
732 |
int wmode, float sbw[4])
|
|
|
733 |
{
|
|
|
734 |
gs_glyph_data_t glyph_data;
|
|
|
735 |
int code;
|
|
|
736 |
int result;
|
|
|
737 |
|
|
|
738 |
glyph_data.memory = pfont->memory;
|
|
|
739 |
code = pfont->data.get_outline(pfont, glyph_index, &glyph_data);
|
|
|
740 |
if (code < 0)
|
|
|
741 |
return code;
|
|
|
742 |
if (glyph_data.bits.size != 0 && S16(glyph_data.bits.data) == -1) {
|
|
|
743 |
/* This is a composite glyph. */
|
|
|
744 |
uint flags;
|
|
|
745 |
const byte *gdata = glyph_data.bits.data + 10;
|
|
|
746 |
gs_matrix_fixed mat;
|
|
|
747 |
|
|
|
748 |
memset(&mat, 0, sizeof(mat)); /* arbitrary */
|
|
|
749 |
do {
|
|
|
750 |
uint comp_index = U16(gdata + 2);
|
|
|
751 |
|
|
|
752 |
parse_component(&gdata, &flags, &mat, NULL, pfont, &mat);
|
|
|
753 |
if (flags & TT_CG_USE_MY_METRICS) {
|
|
|
754 |
result = gs_type42_wmode_metrics(pfont, comp_index, wmode, sbw);
|
|
|
755 |
goto done;
|
|
|
756 |
}
|
|
|
757 |
}
|
|
|
758 |
while (flags & TT_CG_MORE_COMPONENTS);
|
|
|
759 |
}
|
|
|
760 |
result = simple_glyph_metrics(pfont, glyph_index, wmode, sbw);
|
|
|
761 |
done:
|
|
|
762 |
gs_glyph_data_free(&glyph_data, "gs_type42_default_get_metrics");
|
|
|
763 |
return result;
|
|
|
764 |
}
|
|
|
765 |
int
|
|
|
766 |
gs_type42_wmode_metrics(gs_font_type42 * pfont, uint glyph_index, int wmode,
|
|
|
767 |
float sbw[4])
|
|
|
768 |
{
|
|
|
769 |
return pfont->data.get_metrics(pfont, glyph_index, wmode, sbw);
|
|
|
770 |
}
|
|
|
771 |
int
|
|
|
772 |
gs_type42_get_metrics(gs_font_type42 * pfont, uint glyph_index,
|
|
|
773 |
float sbw[4])
|
|
|
774 |
{
|
|
|
775 |
return gs_type42_wmode_metrics(pfont, glyph_index, pfont->WMode, sbw);
|
|
|
776 |
}
|
|
|
777 |
|
|
|
778 |
/* Define the bits in the glyph flags. */
|
|
|
779 |
#define gf_OnCurve 1
|
|
|
780 |
#define gf_xShort 2
|
|
|
781 |
#define gf_yShort 4
|
|
|
782 |
#define gf_Repeat 8
|
|
|
783 |
#define gf_xPos 16 /* xShort */
|
|
|
784 |
#define gf_xSame 16 /* !xShort */
|
|
|
785 |
#define gf_yPos 32 /* yShort */
|
|
|
786 |
#define gf_ySame 32 /* !yShort */
|
|
|
787 |
|
|
|
788 |
/* Append a TrueType outline to a path. */
|
|
|
789 |
/* Note that this does not append the final moveto for the width. */
|
|
|
790 |
int
|
|
|
791 |
gs_type42_append(uint glyph_index, gs_imager_state * pis,
|
|
|
792 |
gx_path * ppath, const gs_log2_scale_point * pscale,
|
|
|
793 |
bool charpath_flag, int paint_type, cached_fm_pair *pair)
|
|
|
794 |
{
|
|
|
795 |
int code = append_outline_fitted(glyph_index, &ctm_only(pis), ppath,
|
|
|
796 |
pair, pscale, charpath_flag);
|
|
|
797 |
|
|
|
798 |
if (code < 0)
|
|
|
799 |
return code;
|
|
|
800 |
code = gx_setcurrentpoint_from_path(pis, ppath);
|
|
|
801 |
if (code < 0)
|
|
|
802 |
return code;
|
|
|
803 |
/* Set the flatness for curve rendering. */
|
|
|
804 |
return gs_imager_setflat(pis, gs_char_flatness(pis, 1.0));
|
|
|
805 |
}
|
|
|
806 |
|
|
|
807 |
/* Add 2nd degree Bezier to the path */
|
|
|
808 |
private int
|
|
|
809 |
add_quadratic_curve(gx_path * const ppath, const gs_fixed_point * const a,
|
|
|
810 |
const gs_fixed_point * const b, const gs_fixed_point * const c)
|
|
|
811 |
{
|
|
|
812 |
return gx_path_add_curve(ppath, (a->x + 2*b->x)/3, (a->y + 2*b->y)/3,
|
|
|
813 |
(c->x + 2*b->x)/3, (c->y + 2*b->y)/3, c->x, c->y);
|
|
|
814 |
}
|
|
|
815 |
|
|
|
816 |
/*
|
|
|
817 |
* Append a simple glyph outline to a path (ppath != 0) and/or return
|
|
|
818 |
* its list of points (ppts != 0).
|
|
|
819 |
*/
|
|
|
820 |
private int
|
|
|
821 |
append_simple(const byte *gdata, float sbw[4], const gs_matrix_fixed *pmat,
|
|
|
822 |
gx_path *ppath, gs_fixed_point *ppts, gs_font_type42 * pfont,
|
|
|
823 |
bool subglyph)
|
|
|
824 |
{
|
|
|
825 |
int numContours = S16(gdata);
|
|
|
826 |
const byte *pends = gdata + 10;
|
|
|
827 |
const byte *pinstr = pends + numContours * 2;
|
|
|
828 |
const byte *pflags;
|
|
|
829 |
uint npoints;
|
|
|
830 |
const byte *pxc, *pyc;
|
|
|
831 |
int code;
|
|
|
832 |
|
|
|
833 |
if (numContours == 0)
|
|
|
834 |
return 0;
|
|
|
835 |
/*
|
|
|
836 |
* It appears that the only way to find the X and Y coordinate
|
|
|
837 |
* tables is to parse the flags. If this is true, it is an
|
|
|
838 |
* incredible piece of bad design.
|
|
|
839 |
*/
|
|
|
840 |
{
|
|
|
841 |
const byte *pf = pflags = pinstr + 2 + U16(pinstr);
|
|
|
842 |
uint xbytes = npoints = U16(pinstr - 2) + 1;
|
|
|
843 |
uint np = npoints;
|
|
|
844 |
|
|
|
845 |
while (np > 0) {
|
|
|
846 |
byte flags = *pf++;
|
|
|
847 |
uint reps = (flags & gf_Repeat ? *pf++ + 1 : 1);
|
|
|
848 |
|
|
|
849 |
if (!(flags & gf_xShort)) {
|
|
|
850 |
if (flags & gf_xSame)
|
|
|
851 |
xbytes -= reps;
|
|
|
852 |
else
|
|
|
853 |
xbytes += reps;
|
|
|
854 |
}
|
|
|
855 |
np -= reps;
|
|
|
856 |
}
|
|
|
857 |
pxc = pf;
|
|
|
858 |
pyc = pxc + xbytes;
|
|
|
859 |
}
|
|
|
860 |
|
|
|
861 |
/* Interpret the contours. */
|
|
|
862 |
|
|
|
863 |
{
|
|
|
864 |
uint i, np;
|
|
|
865 |
float offset = 0;
|
|
|
866 |
gs_fixed_point pt;
|
|
|
867 |
double factor = recipunitsperem(pfont);
|
|
|
868 |
/*
|
|
|
869 |
* Decode the first flag byte outside the loop, to avoid a
|
|
|
870 |
* compiler warning about uninitialized variables.
|
|
|
871 |
*/
|
|
|
872 |
byte flags = *pflags++;
|
|
|
873 |
uint reps = (flags & gf_Repeat ? *pflags++ + 1 : 1);
|
|
|
874 |
|
|
|
875 |
if (!subglyph) {
|
|
|
876 |
int xmin = S16(gdata + 2); /* We like to see it with debugger. */
|
|
|
877 |
|
|
|
878 |
offset = sbw[0] - xmin * factor;
|
|
|
879 |
}
|
|
|
880 |
gs_point_transform2fixed(pmat, offset, 0.0, &pt);
|
|
|
881 |
for (i = 0, np = 0; i < numContours; ++i) {
|
|
|
882 |
bool move = true;
|
|
|
883 |
bool off_curve = false;
|
|
|
884 |
bool is_start_off = false;
|
|
|
885 |
uint last_point = U16(pends + i * 2);
|
|
|
886 |
float dx, dy;
|
|
|
887 |
gs_fixed_point start,pt_start_off;
|
|
|
888 |
gs_fixed_point cpoints[2];
|
|
|
889 |
|
|
|
890 |
if_debug1('1', "[1t]start %d\n", i);
|
|
|
891 |
|
|
|
892 |
for (; np <= last_point; --reps, ++np) {
|
|
|
893 |
gs_fixed_point dpt;
|
|
|
894 |
|
|
|
895 |
if (reps == 0) {
|
|
|
896 |
flags = *pflags++;
|
|
|
897 |
reps = (flags & gf_Repeat ? *pflags++ + 1 : 1);
|
|
|
898 |
}
|
|
|
899 |
if (flags & gf_xShort) {
|
|
|
900 |
/*
|
|
|
901 |
* A bug in the Watcom compiler prevents us from doing
|
|
|
902 |
* the following with the obvious conditional expression.
|
|
|
903 |
*/
|
|
|
904 |
if (flags & gf_xPos)
|
|
|
905 |
dx = *pxc++ * factor;
|
|
|
906 |
else
|
|
|
907 |
dx = -(int)*pxc++ * factor;
|
|
|
908 |
} else if (!(flags & gf_xSame))
|
|
|
909 |
dx = S16(pxc) * factor, pxc += 2;
|
|
|
910 |
else
|
|
|
911 |
dx = 0;
|
|
|
912 |
if (flags & gf_yShort) {
|
|
|
913 |
/* See above under dx. */
|
|
|
914 |
if (flags & gf_yPos)
|
|
|
915 |
dy = *pyc++ * factor;
|
|
|
916 |
else
|
|
|
917 |
dy = -(int)*pyc++ * factor;
|
|
|
918 |
} else if (!(flags & gf_ySame))
|
|
|
919 |
dy = S16(pyc) * factor, pyc += 2;
|
|
|
920 |
else
|
|
|
921 |
dy = 0;
|
|
|
922 |
code = gs_distance_transform2fixed(pmat, dx, dy, &dpt);
|
|
|
923 |
if (code < 0)
|
|
|
924 |
return code;
|
|
|
925 |
pt.x += dpt.x, pt.y += dpt.y;
|
|
|
926 |
|
|
|
927 |
if (ppts) /* return the points */
|
|
|
928 |
ppts[np] = pt;
|
|
|
929 |
|
|
|
930 |
if (ppath) {
|
|
|
931 |
/* append to a path */
|
|
|
932 |
if_debug3('1', "[1t]%s (%g %g)\n",
|
|
|
933 |
(flags & gf_OnCurve ? "on " : "off"), fixed2float(pt.x), fixed2float(pt.y));
|
|
|
934 |
|
|
|
935 |
if (move) {
|
|
|
936 |
if(is_start_off) {
|
|
|
937 |
if(flags & gf_OnCurve)
|
|
|
938 |
start = pt;
|
|
|
939 |
else {
|
|
|
940 |
start.x = (pt_start_off.x + pt.x)/2;
|
|
|
941 |
start.y = (pt_start_off.y + pt.y)/2;
|
|
|
942 |
cpoints[1]=pt;
|
|
|
943 |
off_curve=true;
|
|
|
944 |
}
|
|
|
945 |
move = false;
|
|
|
946 |
cpoints[0] = start;
|
|
|
947 |
code = gx_path_add_point(ppath, start.x, start.y);
|
|
|
948 |
} else {
|
|
|
949 |
if(flags & gf_OnCurve) {
|
|
|
950 |
cpoints[0] = start = pt;
|
|
|
951 |
code = gx_path_add_point(ppath, pt.x, pt.y);
|
|
|
952 |
move = false;
|
|
|
953 |
} else {
|
|
|
954 |
is_start_off = true;
|
|
|
955 |
pt_start_off = pt;
|
|
|
956 |
}
|
|
|
957 |
}
|
|
|
958 |
} else if (flags & gf_OnCurve) {
|
|
|
959 |
if (off_curve)
|
|
|
960 |
code = add_quadratic_curve(ppath, cpoints, cpoints+1, &pt);
|
|
|
961 |
else
|
|
|
962 |
code = gx_path_add_line(ppath, pt.x, pt.y);
|
|
|
963 |
cpoints[0] = pt;
|
|
|
964 |
off_curve = false;
|
|
|
965 |
} else {
|
|
|
966 |
if(off_curve) {
|
|
|
967 |
gs_fixed_point p;
|
|
|
968 |
p.x = (cpoints[1].x + pt.x)/2;
|
|
|
969 |
p.y = (cpoints[1].y + pt.y)/2;
|
|
|
970 |
code = add_quadratic_curve(ppath, cpoints, cpoints+1, &p);
|
|
|
971 |
cpoints[0] = p;
|
|
|
972 |
}
|
|
|
973 |
off_curve = true;
|
|
|
974 |
cpoints[1] = pt;
|
|
|
975 |
}
|
|
|
976 |
if (code < 0)
|
|
|
977 |
return code;
|
|
|
978 |
}
|
|
|
979 |
}
|
|
|
980 |
if (ppath) {
|
|
|
981 |
if (is_start_off) {
|
|
|
982 |
if (off_curve) {
|
|
|
983 |
gs_fixed_point p;
|
|
|
984 |
p.x = (cpoints[1].x + pt_start_off.x)/2;
|
|
|
985 |
p.y = (cpoints[1].y + pt_start_off.y)/2;
|
|
|
986 |
code = add_quadratic_curve(ppath, cpoints, cpoints+1, &p);
|
|
|
987 |
if (code < 0)
|
|
|
988 |
return code;
|
|
|
989 |
code = add_quadratic_curve(ppath, &p, &pt_start_off, &start);
|
|
|
990 |
if (code < 0)
|
|
|
991 |
return code;
|
|
|
992 |
} else {
|
|
|
993 |
code = add_quadratic_curve(ppath, cpoints, &pt_start_off, &start);
|
|
|
994 |
if (code < 0)
|
|
|
995 |
return code;
|
|
|
996 |
}
|
|
|
997 |
} else {
|
|
|
998 |
if (off_curve) {
|
|
|
999 |
code = add_quadratic_curve(ppath, cpoints, cpoints+1, &start);
|
|
|
1000 |
if (code < 0)
|
|
|
1001 |
return code;
|
|
|
1002 |
}
|
|
|
1003 |
}
|
|
|
1004 |
code = gx_path_close_subpath(ppath);
|
|
|
1005 |
if (code < 0)
|
|
|
1006 |
return code;
|
|
|
1007 |
}
|
|
|
1008 |
}
|
|
|
1009 |
}
|
|
|
1010 |
return 0;
|
|
|
1011 |
}
|
|
|
1012 |
|
|
|
1013 |
/* Append a glyph outline. */
|
|
|
1014 |
private int
|
|
|
1015 |
check_component(uint glyph_index, const gs_matrix_fixed *pmat,
|
|
|
1016 |
gx_path *ppath, gs_font_type42 *pfont, gs_fixed_point *ppts,
|
|
|
1017 |
gs_glyph_data_t *pgd, bool subglyph)
|
|
|
1018 |
{
|
|
|
1019 |
gs_glyph_data_t glyph_data;
|
|
|
1020 |
const byte *gdata;
|
|
|
1021 |
float sbw[4];
|
|
|
1022 |
int numContours;
|
|
|
1023 |
int code;
|
|
|
1024 |
|
|
|
1025 |
glyph_data.memory = pfont->memory;
|
|
|
1026 |
code = pfont->data.get_outline(pfont, glyph_index, &glyph_data);
|
|
|
1027 |
if (code < 0)
|
|
|
1028 |
return code;
|
|
|
1029 |
gdata = glyph_data.bits.data;
|
|
|
1030 |
if (gdata == 0 || glyph_data.bits.size == 0) /* empty glyph */
|
|
|
1031 |
return 0;
|
|
|
1032 |
numContours = S16(gdata);
|
|
|
1033 |
if (numContours >= 0) {
|
|
|
1034 |
gs_type42_get_metrics(pfont, glyph_index, sbw);
|
|
|
1035 |
code = append_simple(gdata, sbw, pmat, ppath, ppts, pfont, subglyph);
|
|
|
1036 |
gs_glyph_data_free(&glyph_data, "check_component");
|
|
|
1037 |
return (code < 0 ? code : 0); /* simple */
|
|
|
1038 |
}
|
|
|
1039 |
if (numContours != -1)
|
|
|
1040 |
return_error(gs_error_rangecheck);
|
|
|
1041 |
*pgd = glyph_data;
|
|
|
1042 |
return 1; /* composite */
|
|
|
1043 |
}
|
|
|
1044 |
private int
|
|
|
1045 |
append_component(uint glyph_index, const gs_matrix_fixed * pmat,
|
|
|
1046 |
gx_path * ppath, gs_fixed_point *ppts, int point_index,
|
|
|
1047 |
gs_font_type42 * pfont, bool subglyph)
|
|
|
1048 |
{
|
|
|
1049 |
gs_glyph_data_t glyph_data;
|
|
|
1050 |
int code;
|
|
|
1051 |
|
|
|
1052 |
glyph_data.memory = pfont->memory;
|
|
|
1053 |
code = check_component(glyph_index, pmat, ppath, pfont, ppts + point_index,
|
|
|
1054 |
&glyph_data, subglyph);
|
|
|
1055 |
if (code != 1)
|
|
|
1056 |
return code;
|
|
|
1057 |
/*
|
|
|
1058 |
* This is a composite glyph. Because of the "point matching" feature,
|
|
|
1059 |
* we have to do an extra pass over each component to fill in the
|
|
|
1060 |
* table of points.
|
|
|
1061 |
*/
|
|
|
1062 |
{
|
|
|
1063 |
uint flags;
|
|
|
1064 |
const byte *gdata = glyph_data.bits.data + 10;
|
|
|
1065 |
|
|
|
1066 |
do {
|
|
|
1067 |
uint comp_index = U16(gdata + 2);
|
|
|
1068 |
gs_matrix_fixed mat;
|
|
|
1069 |
int mp[2];
|
|
|
1070 |
|
|
|
1071 |
parse_component(&gdata, &flags, &mat, mp, pfont, pmat);
|
|
|
1072 |
if (mp[0] >= 0) {
|
|
|
1073 |
/* Match up points. What a nuisance! */
|
|
|
1074 |
const gs_fixed_point *const pfrom = ppts + mp[0];
|
|
|
1075 |
/*
|
|
|
1076 |
* Contrary to the TrueType documentation, mp[1] is not
|
|
|
1077 |
* relative to the start of the compound glyph, but is
|
|
|
1078 |
* relative to the start of the component.
|
|
|
1079 |
*/
|
|
|
1080 |
const gs_fixed_point *const pto = ppts + point_index + mp[1];
|
|
|
1081 |
gs_fixed_point diff;
|
|
|
1082 |
|
|
|
1083 |
code = append_component(comp_index, &mat, NULL, ppts,
|
|
|
1084 |
point_index, pfont, true);
|
|
|
1085 |
if (code < 0)
|
|
|
1086 |
break;
|
|
|
1087 |
diff.x = pfrom->x - pto->x;
|
|
|
1088 |
diff.y = pfrom->y - pto->y;
|
|
|
1089 |
mat.tx = fixed2float(mat.tx_fixed += diff.x);
|
|
|
1090 |
mat.ty = fixed2float(mat.ty_fixed += diff.y);
|
|
|
1091 |
}
|
|
|
1092 |
code = append_component(comp_index, &mat, ppath, ppts,
|
|
|
1093 |
point_index, pfont, true);
|
|
|
1094 |
if (code < 0)
|
|
|
1095 |
break;
|
|
|
1096 |
point_index += total_points(pfont, comp_index);
|
|
|
1097 |
}
|
|
|
1098 |
while (flags & TT_CG_MORE_COMPONENTS);
|
|
|
1099 |
}
|
|
|
1100 |
gs_glyph_data_free(&glyph_data, "append_component");
|
|
|
1101 |
return code;
|
|
|
1102 |
}
|
|
|
1103 |
|
|
|
1104 |
private int
|
|
|
1105 |
append_outline_fitted(uint glyph_index, const gs_matrix * pmat,
|
|
|
1106 |
gx_path * ppath, cached_fm_pair * pair,
|
|
|
1107 |
const gs_log2_scale_point * pscale, bool design_grid)
|
|
|
1108 |
{
|
|
|
1109 |
gs_font_type42 *pfont = (gs_font_type42 *)pair->font;
|
|
|
1110 |
int code;
|
|
|
1111 |
|
|
|
1112 |
gx_ttfReader__set_font(pair->ttr, pfont);
|
|
|
1113 |
code = gx_ttf_outline(pair->ttf, pair->ttr, pfont, (uint)glyph_index,
|
|
|
1114 |
pmat, pscale, ppath, design_grid);
|
|
|
1115 |
gx_ttfReader__set_font(pair->ttr, NULL);
|
|
|
1116 |
return code;
|
|
|
1117 |
}
|
|
|
1118 |
|