Coverage Report

Created: 2026-04-01 07:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gxttfb.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* A bridge to True Type interpreter. */
18
19
#include "gx.h"
20
#include "gxfont.h"
21
#include "gxfont42.h"
22
#include "gxttfb.h"
23
#include "gxfixed.h"
24
#include "gxpath.h"
25
#include "gxfcache.h"
26
#include "gxmatrix.h"
27
#include "gxhintn.h"
28
#include "gzpath.h"
29
#include "ttfmemd.h"
30
#include "gsstruct.h"
31
#include "gserrors.h"
32
#include "gsfont.h"
33
#include "gdebug.h"
34
#include "memory_.h"
35
#include "math_.h"
36
#include "gxgstate.h"
37
#include "gxpaint.h"
38
#include "gzspotan.h"
39
#include <stdarg.h>
40
41
gs_public_st_composite(st_gx_ttfReader, gx_ttfReader,
42
    "gx_ttfReader", gx_ttfReader_enum_ptrs, gx_ttfReader_reloc_ptrs);
43
44
static
45
0
ENUM_PTRS_WITH(gx_ttfReader_enum_ptrs, gx_ttfReader *mptr)
46
0
    {
47
        /* The fields 'pfont' and 'glyph_data' may contain pointers from global
48
           to local memory ( see a comment in gxttfb.h).
49
           They must be NULL when a garbager is invoked.
50
           Due to that we don't enumerate and don't relocate them.
51
         */
52
0
        DISCARD(mptr);
53
0
        return 0;
54
0
    }
55
0
    ENUM_PTR(0, gx_ttfReader, memory);
56
0
ENUM_PTRS_END
57
58
0
static RELOC_PTRS_WITH(gx_ttfReader_reloc_ptrs, gx_ttfReader *mptr)
59
0
    DISCARD(mptr);
60
0
    RELOC_PTR(gx_ttfReader, memory);
61
0
RELOC_PTRS_END
62
63
static bool gx_ttfReader__Eof(ttfReader *self)
64
2.10M
{
65
2.10M
    gx_ttfReader *r = (gx_ttfReader *)self;
66
67
2.10M
    if (r->extra_glyph_index != -1)
68
68.3k
        return r->pos >= r->glyph_data.bits.size;
69
    /* We can't know whether pfont->data.string_proc has more bytes,
70
       so we never report Eof for it. */
71
2.03M
    return false;
72
2.10M
}
73
74
static void gx_ttfReader__Read(ttfReader *self, void *p, int n)
75
6.83M
{
76
6.83M
    gx_ttfReader *r = (gx_ttfReader *)self;
77
6.83M
    const byte *q;
78
79
6.83M
    if (r->error >= 0) {
80
6.76M
        if (r->extra_glyph_index != -1) {
81
4.52M
            q = r->glyph_data.bits.data + r->pos;
82
4.52M
            r->error = ((r->pos >= r->glyph_data.bits.size ||
83
4.52M
                        r->glyph_data.bits.size - r->pos < n) ?
84
4.52M
                            gs_note_error(gs_error_invalidfont) : 0);
85
4.52M
            if (r->error == 0)
86
4.52M
                memcpy(p, q, n);
87
4.52M
        } else {
88
2.23M
            unsigned int cnt;
89
2.23M
            r->error = 0;
90
91
2.23M
            for (cnt = 0; cnt < (uint)n; cnt += r->error) {
92
2.23M
                r->error = r->pfont->data.string_proc(r->pfont, (ulong)r->pos + cnt, (ulong)n - cnt, &q);
93
2.23M
                if (r->error < 0)
94
0
                    break;
95
2.23M
                else if ( r->error == 0) {
96
2.23M
                    memcpy((char *)p + cnt, q, n - cnt);
97
2.23M
                    break;
98
2.23M
                } else {
99
0
                    memcpy((char *)p + cnt, q, r->error);
100
0
                }
101
2.23M
            }
102
2.23M
        }
103
6.76M
    }
104
6.83M
    if (r->error < 0) {
105
63.9k
        memset(p, 0, n);
106
63.9k
        return;
107
63.9k
    }
108
6.76M
    r->pos += n;
109
6.76M
}
110
111
static void gx_ttfReader__Seek(ttfReader *self, int nPos)
112
89.3k
{
113
89.3k
    gx_ttfReader *r = (gx_ttfReader *)self;
114
115
89.3k
    r->pos = nPos;
116
89.3k
}
117
118
static int gx_ttfReader__Tell(ttfReader *self)
119
120k
{
120
120k
    gx_ttfReader *r = (gx_ttfReader *)self;
121
122
120k
    return r->pos;
123
120k
}
124
125
static bool gx_ttfReader__Error(ttfReader *self)
126
182k
{
127
182k
    gx_ttfReader *r = (gx_ttfReader *)self;
128
129
182k
    return r->error;
130
182k
}
131
132
static int gx_ttfReader__LoadGlyph(ttfReader *self, int glyph_index, const byte **p, int *size)
133
68.0k
{
134
68.0k
    gx_ttfReader *r = (gx_ttfReader *)self;
135
68.0k
    gs_font_type42 *pfont = r->pfont;
136
68.0k
    int code;
137
138
68.0k
    if (r->extra_glyph_index != -1)
139
0
        return 0; /* We only maintain a single glyph buffer.
140
                     It's enough because ttfOutliner__BuildGlyphOutline
141
                     is optimized for that, and pfont->data.get_outline
142
                     implements a charstring cache. */
143
68.0k
    r->glyph_data.memory = pfont->memory;
144
68.0k
    code = pfont->data.get_outline(pfont, (uint)glyph_index, &r->glyph_data);
145
68.0k
    r->extra_glyph_index = glyph_index;
146
68.0k
    r->pos = 0;
147
68.0k
    if (code < 0)
148
0
        r->error = code;
149
68.0k
    else if (code > 0) {
150
        /* Should not happen. */
151
0
        r->error = gs_note_error(gs_error_unregistered);
152
68.0k
    } else {
153
68.0k
        *p = r->glyph_data.bits.data;
154
68.0k
        *size = r->glyph_data.bits.size;
155
68.0k
    }
156
68.0k
    return 2; /* found */
157
68.0k
}
158
159
static void gx_ttfReader__ReleaseGlyph(ttfReader *self, int glyph_index)
160
68.4k
{
161
68.4k
    gx_ttfReader *r = (gx_ttfReader *)self;
162
163
68.4k
    if (r->extra_glyph_index != glyph_index)
164
456
        return;
165
68.0k
    r->extra_glyph_index = -1;
166
68.0k
    gs_glyph_data_free(&r->glyph_data, "gx_ttfReader__ReleaseExtraGlyph");
167
68.0k
}
168
169
static void gx_ttfReader__Reset(gx_ttfReader *self)
170
70.0k
{
171
70.0k
    if (self->extra_glyph_index != -1) {
172
0
        self->extra_glyph_index = -1;
173
0
        gs_glyph_data_free(&self->glyph_data, "gx_ttfReader__Reset");
174
0
    }
175
70.0k
    self->error = 0;
176
70.0k
    self->pos = 0;
177
70.0k
}
178
179
gx_ttfReader *gx_ttfReader__create(gs_memory_t *mem)
180
3.00k
{
181
3.00k
    gx_ttfReader *r = gs_alloc_struct(mem, gx_ttfReader, &st_gx_ttfReader, "gx_ttfReader__create");
182
183
3.00k
    if (r != NULL) {
184
3.00k
        r->super.Eof = gx_ttfReader__Eof;
185
3.00k
        r->super.Read = gx_ttfReader__Read;
186
3.00k
        r->super.Seek = gx_ttfReader__Seek;
187
3.00k
        r->super.Tell = gx_ttfReader__Tell;
188
3.00k
        r->super.Error = gx_ttfReader__Error;
189
3.00k
        r->super.LoadGlyph = gx_ttfReader__LoadGlyph;
190
3.00k
        r->super.ReleaseGlyph = gx_ttfReader__ReleaseGlyph;
191
3.00k
        r->pos = 0;
192
3.00k
        r->error = 0;
193
3.00k
        r->extra_glyph_index = -1;
194
3.00k
        memset(&r->glyph_data, 0, sizeof(r->glyph_data));
195
3.00k
        r->pfont = NULL;
196
3.00k
        r->memory = mem;
197
3.00k
        gx_ttfReader__Reset(r);
198
3.00k
    }
199
3.00k
    return r;
200
3.00k
}
201
202
void gx_ttfReader__destroy(gx_ttfReader *self)
203
3.00k
{
204
3.00k
    gs_free_object(self->memory, self, "gx_ttfReader__destroy");
205
3.00k
}
206
207
static int
208
gx_ttfReader__default_get_metrics(const ttfReader *ttf, uint glyph_index, bool bVertical,
209
                                  short *sideBearing, unsigned short *nAdvance)
210
68.0k
{
211
68.0k
    gx_ttfReader *self = (gx_ttfReader *)ttf;
212
68.0k
    float sbw[4];
213
68.0k
    int sbw_offset = bVertical;
214
68.0k
    int code;
215
68.0k
    int factor = self->pfont->data.unitsPerEm;
216
217
68.0k
    code = self->pfont->data.get_metrics(self->pfont, glyph_index, bVertical, sbw);
218
68.0k
    if (code < 0)
219
70
        return code;
220
    /* Due to an obsolete convention, simple_glyph_metrics scales
221
       the metrics into 1x1 rectangle as Postscript like.
222
       In same time, the True Type interpreter needs
223
       the original design units.
224
       Undo the scaling here with accurate rounding. */
225
67.9k
    *sideBearing = (short)floor(sbw[0 + sbw_offset] * factor + 0.5);
226
67.9k
    *nAdvance = (short)floor(sbw[2 + sbw_offset] * factor + 0.5);
227
67.9k
    return 0;
228
68.0k
}
229
230
void gx_ttfReader__set_font(gx_ttfReader *self, gs_font_type42 *pfont)
231
140k
{
232
140k
    self->pfont = pfont;
233
140k
    self->super.get_metrics = gx_ttfReader__default_get_metrics;
234
140k
}
235
236
/*----------------------------------------------*/
237
238
static void DebugRepaint(ttfFont *ttf)
239
0
{
240
0
}
241
242
#ifdef DEBUG
243
static int DebugPrint(ttfFont *ttf, const char *fmt, ...)
244
{
245
    char buf[500];
246
    va_list args;
247
    int count;
248
249
    if (gs_debug_c('Y')) {
250
        va_start(args, fmt);
251
        count = vsnprintf(buf, sizeof(buf), fmt, args);
252
        /* NB: moved debug output from stdout to stderr
253
         */
254
        errwrite(ttf->DebugMem, buf, count);
255
        va_end(args);
256
    }
257
    return 0;
258
}
259
#endif
260
261
static void WarnBadInstruction(gs_font_type42 *pfont, int glyph_index)
262
777
{
263
777
    char buf[gs_font_name_max + 1];
264
777
    int l;
265
777
    gs_font_type42 *base_font = pfont;
266
267
777
    while ((gs_font_type42 *)base_font->base != base_font)
268
0
        base_font = (gs_font_type42 *)base_font->base;
269
777
    if (!base_font->data.warning_bad_instruction) {
270
777
        l = min(sizeof(buf) - 1, base_font->font_name.size);
271
777
        memcpy(buf, base_font->font_name.chars, l);
272
777
        buf[l] = 0;
273
777
        if (glyph_index >= 0)
274
0
            emprintf2(pfont->memory,
275
777
                      "Failed to interpret TT instructions for glyph index %d of font %s. "
276
777
                      "Continue ignoring instructions of the font.\n",
277
777
                      glyph_index, buf);
278
777
        else
279
777
            emprintf1(pfont->memory,
280
777
                      "Failed to interpret TT instructions in font %s. "
281
777
                      "Continue ignoring instructions of the font.\n",
282
777
                      buf);
283
777
        base_font->data.warning_bad_instruction = true;
284
777
    }
285
777
}
286
287
static void WarnPatented(gs_font_type42 *pfont, ttfFont *ttf, const char *txt)
288
6.92k
{
289
6.92k
    if (!ttf->design_grid) {
290
0
        char buf[gs_font_name_max + 1];
291
0
        int l;
292
0
        gs_font_type42 *base_font = pfont;
293
294
0
        while ((gs_font_type42 *)base_font->base != base_font)
295
0
            base_font = (gs_font_type42 *)base_font->base;
296
0
        if (!base_font->data.warning_patented) {
297
0
            l = min(sizeof(buf) - 1, base_font->font_name.size);
298
0
            memcpy(buf, base_font->font_name.chars, l);
299
0
            buf[l] = 0;
300
0
            emprintf2(pfont->memory,
301
0
                      "%s %s requires a patented True Type interpreter.\n",
302
0
                      txt,
303
0
                      buf);
304
0
            base_font->data.warning_patented = true;
305
0
        }
306
0
    }
307
6.92k
}
308
309
/*----------------------------------------------*/
310
311
struct gx_ttfMemory_s {
312
    ttfMemory super;
313
    gs_memory_t *memory;
314
};
315
316
gs_private_st_simple(st_gx_ttfMemory, gx_ttfMemory, "gx_ttfMemory");
317
/* st_gx_ttfMemory::memory points to a root. */
318
319
static void *gx_ttfMemory__alloc_bytes(ttfMemory *self, int size,  const char *cname)
320
55.2k
{
321
55.2k
    gs_memory_t *mem = ((gx_ttfMemory *)self)->memory;
322
323
55.2k
    return gs_alloc_bytes(mem, size, cname);
324
55.2k
}
325
326
static void *gx_ttfMemory__alloc_struct(ttfMemory *self, const ttfMemoryDescriptor *d,  const char *cname)
327
9.49k
{
328
9.49k
    gs_memory_t *mem = ((gx_ttfMemory *)self)->memory;
329
330
9.49k
    return mem->procs.alloc_struct(mem, (const gs_memory_struct_type_t *)d, cname);
331
9.49k
}
332
333
static void gx_ttfMemory__free(ttfMemory *self, void *p,  const char *cname)
334
103k
{
335
103k
    gs_memory_t *mem = ((gx_ttfMemory *)self)->memory;
336
337
103k
    gs_free_object(mem, p, cname);
338
103k
}
339
340
/*----------------------------------------------*/
341
342
static inline float reminder(float v, int x)
343
140k
{
344
140k
    return ((v / x) - floor(v / x)) * x;
345
140k
}
346
347
static void decompose_matrix(const gs_font_type42 *pfont, const gs_matrix * char_tm,
348
    const gs_log2_scale_point *log2_scale, bool design_grid,
349
    gs_point *char_size, gs_point *subpix_origin, gs_matrix *post_transform, bool *dg)
350
70.0k
{
351
    /*
352
     *  char_tm maps to subpixels.
353
     */
354
    /*
355
     *  We use a Free Type 1 True Type interpreter, which cannot perform
356
     *  a grid-fitting with skewing/rotation. It appears acceptable
357
     *  because we want to minimize invocations of patented instructions.
358
     *  We believe that skewing/rotation requires the patented intrivial cases
359
     *  of projection/freedom vectors.
360
     */
361
70.0k
    int scale_x = 1 << log2_scale->x;
362
70.0k
    int scale_y = 1 << log2_scale->y;
363
70.0k
    bool atp = gs_currentaligntopixels(pfont->dir);
364
70.0k
    bool design_grid1;
365
366
70.0k
    char_size->x = hypot(char_tm->xx, char_tm->xy);
367
70.0k
    char_size->y = hypot(char_tm->yx, char_tm->yy);
368
70.0k
    if (char_size->x <= 2 && char_size->y <= 2) {
369
        /* Disable the grid fitting for very small fonts. */
370
0
        design_grid1 = true;
371
0
    } else
372
70.0k
        design_grid1 = design_grid || !(gs_currentgridfittt(pfont->dir) & 1);
373
70.0k
    *dg = design_grid1;
374
70.0k
    subpix_origin->x = (atp ? 0 : reminder(char_tm->tx, scale_x) / scale_x);
375
70.0k
    subpix_origin->y = (atp ? 0 : reminder(char_tm->ty, scale_y) / scale_y);
376
70.0k
    post_transform->xx = char_tm->xx / (design_grid1 ? 1 : char_size->x);
377
70.0k
    post_transform->xy = char_tm->xy / (design_grid1 ? 1 : char_size->x);
378
70.0k
    post_transform->yx = char_tm->yx / (design_grid1 ? 1 : char_size->y);
379
70.0k
    post_transform->yy = char_tm->yy / (design_grid1 ? 1 : char_size->y);
380
70.0k
    post_transform->tx = char_tm->tx - subpix_origin->x;
381
70.0k
    post_transform->ty = char_tm->ty - subpix_origin->y;
382
70.0k
}
383
384
/*----------------------------------------------*/
385
386
ttfFont *ttfFont__create(gs_font_dir *dir)
387
3.00k
{
388
3.00k
    gs_memory_t *mem = dir->memory->stable_memory;
389
3.00k
    ttfFont *ttf;
390
391
3.00k
    if (dir->ttm == NULL) {
392
1.74k
        gx_ttfMemory *m = gs_alloc_struct(mem, gx_ttfMemory, &st_gx_ttfMemory, "ttfFont__create(gx_ttfMemory)");
393
394
1.74k
        if (!m)
395
0
            return 0;
396
1.74k
        m->super.alloc_struct = gx_ttfMemory__alloc_struct;
397
1.74k
        m->super.alloc_bytes = gx_ttfMemory__alloc_bytes;
398
1.74k
        m->super.free = gx_ttfMemory__free;
399
1.74k
        m->memory = mem;
400
1.74k
        dir->ttm = m;
401
1.74k
    }
402
3.00k
    if(ttfInterpreter__obtain(&dir->ttm->super, &dir->tti))
403
0
        return 0;
404
3.00k
    if(gx_san__obtain(mem, &dir->san))
405
0
        return 0;
406
3.00k
    ttf = gs_alloc_struct(mem, ttfFont, &st_ttfFont, "ttfFont__create");
407
3.00k
    if (ttf == NULL)
408
0
        return 0;
409
#ifdef DEBUG
410
    ttfFont__init(ttf, &dir->ttm->super, DebugRepaint,
411
                  (gs_debug_c('Y') ? DebugPrint : NULL), mem);
412
#else
413
3.00k
    ttfFont__init(ttf, &dir->ttm->super, DebugRepaint, NULL, mem);
414
3.00k
#endif
415
416
3.00k
    return ttf;
417
3.00k
}
418
419
void ttfFont__destroy(ttfFont *self, gs_font_dir *dir)
420
3.00k
{
421
3.00k
    gs_memory_t *mem = dir->memory->stable_memory;
422
423
3.00k
    ttfFont__finit(self);
424
3.00k
    gs_free_object(mem, self, "ttfFont__destroy");
425
3.00k
    ttfInterpreter__release(&dir->tti);
426
3.00k
    gx_san__release(&dir->san);
427
3.00k
    if (dir->tti == NULL && dir->ttm != NULL) {
428
1.74k
        gs_free_object(mem, dir->ttm, "ttfFont__destroy(gx_ttfMemory)");
429
1.74k
        dir->ttm = NULL;
430
1.74k
    }
431
3.00k
}
432
433
int ttfFont__Open_aux(ttfFont *self, ttfInterpreter *tti, gx_ttfReader *r, gs_font_type42 *pfont,
434
               const gs_matrix * char_tm, const gs_log2_scale_point *log2_scale,
435
               bool design_grid)
436
3.00k
{
437
3.00k
    gs_point char_size, subpix_origin;
438
3.00k
    gs_matrix post_transform;
439
    /*
440
     * Ghostscript proceses a TTC index in gs/lib/gs_ttf.ps,
441
     * and *pfont already adjusted to it.
442
     * Therefore TTC headers never comes here.
443
     */
444
3.00k
    unsigned int nTTC = 0;
445
3.00k
    bool dg;
446
447
3.00k
    decompose_matrix(pfont, char_tm, log2_scale, design_grid, &char_size, &subpix_origin, &post_transform, &dg);
448
3.00k
    switch(ttfFont__Open(tti, self, &r->super, nTTC, char_size.x, char_size.y, dg)) {
449
2.12k
        case fNoError:
450
2.12k
            return 0;
451
0
        case fMemoryError:
452
0
            return_error(gs_error_VMerror);
453
0
        case fUnimplemented:
454
0
            return_error(gs_error_unregistered);
455
777
        case fBadInstruction:
456
777
            WarnBadInstruction(pfont, -1);
457
777
            goto recover;
458
98
        case fPatented:
459
98
            WarnPatented(pfont, self, "The font");
460
875
        recover:
461
875
            self->patented = true;
462
875
            return 0;
463
0
        default:
464
0
            { int code = r->super.Error(&r->super);
465
466
0
                if (code < 0)
467
0
                    return code;
468
0
                return_error(gs_error_invalidfont);
469
0
            }
470
3.00k
    }
471
3.00k
}
472
473
/*----------------------------------------------*/
474
475
typedef struct gx_ttfExport_s {
476
    ttfExport super;
477
    gx_path *path;
478
    gs_fixed_point w;
479
    int error;
480
    bool monotonize;
481
} gx_ttfExport;
482
483
static void gx_ttfExport__MoveTo(ttfExport *self, FloatPoint *p)
484
80.9k
{
485
80.9k
    gx_ttfExport *e = (gx_ttfExport *)self;
486
487
80.9k
    if (e->error >= 0)
488
80.9k
        e->error = gx_path_add_point(e->path, float2fixed(p->x), float2fixed(p->y));
489
80.9k
}
490
491
static void gx_ttfExport__LineTo(ttfExport *self, FloatPoint *p)
492
406k
{
493
406k
    gx_ttfExport *e = (gx_ttfExport *)self;
494
495
406k
    if (e->error >= 0)
496
406k
        e->error = gx_path_add_line_notes(e->path, float2fixed(p->x), float2fixed(p->y), sn_none);
497
406k
}
498
499
static void gx_ttfExport__CurveTo(ttfExport *self, FloatPoint *p0, FloatPoint *p1, FloatPoint *p2)
500
822k
{
501
822k
    gx_ttfExport *e = (gx_ttfExport *)self;
502
503
822k
    if (e->error >= 0) {
504
822k
        if (e->monotonize) {
505
0
            curve_segment s;
506
507
0
            s.notes = sn_none;
508
0
            s.p1.x = float2fixed(p0->x), s.p1.y = float2fixed(p0->y),
509
0
            s.p2.x = float2fixed(p1->x), s.p2.y = float2fixed(p1->y),
510
0
            s.pt.x = float2fixed(p2->x), s.pt.y = float2fixed(p2->y);
511
0
            e->error = gx_curve_monotonize(e->path, &s);
512
0
        } else
513
822k
            e->error = gx_path_add_curve_notes(e->path, float2fixed(p0->x), float2fixed(p0->y),
514
822k
                                     float2fixed(p1->x), float2fixed(p1->y),
515
822k
                                     float2fixed(p2->x), float2fixed(p2->y), sn_none);
516
822k
    }
517
822k
}
518
519
static void gx_ttfExport__Close(ttfExport *self)
520
80.9k
{
521
80.9k
    gx_ttfExport *e = (gx_ttfExport *)self;
522
523
80.9k
    if (e->error >= 0)
524
80.9k
        e->error = gx_path_close_subpath_notes(e->path, sn_none);
525
80.9k
}
526
527
static void gx_ttfExport__Point(ttfExport *self, FloatPoint *p, bool bOnCurve, bool bNewPath)
528
0
{
529
    /* Never called. */
530
0
}
531
532
static void gx_ttfExport__SetWidth(ttfExport *self, FloatPoint *p)
533
66.7k
{
534
66.7k
    gx_ttfExport *e = (gx_ttfExport *)self;
535
536
66.7k
    e->w.x = float2fixed(p->x);
537
66.7k
    e->w.y = float2fixed(p->y);
538
66.7k
}
539
540
static void gx_ttfExport__DebugPaint(ttfExport *self)
541
0
{
542
0
}
543
544
/*----------------------------------------------*/
545
546
static int
547
path_to_hinter(t1_hinter *h, gx_path *path)
548
0
{   int code;
549
0
    gs_path_enum penum;
550
0
    gs_fixed_point pts[3];
551
0
    gs_fixed_point p = {0, 0}; /* initialize to avoid a warning */
552
0
    bool first = true;
553
0
    int op;
554
555
0
    code = gx_path_enum_init(&penum, path);
556
0
    if (code < 0)
557
0
        return code;
558
0
    while ((op = gx_path_enum_next(&penum, pts)) != 0) {
559
0
        switch (op) {
560
0
            case gs_pe_moveto:
561
0
                if (first) {
562
0
                    first = false;
563
0
                    p = pts[0];
564
0
                    code = t1_hinter__rmoveto(h, p.x, p.y);
565
0
                } else
566
0
                    code = t1_hinter__rmoveto(h, pts[0].x - p.x, pts[0].y - p.y);
567
0
                break;
568
0
            case gs_pe_lineto:
569
0
            case gs_pe_gapto:
570
0
                code = t1_hinter__rlineto(h, pts[0].x - p.x, pts[0].y - p.y);
571
0
                break;
572
0
            case gs_pe_curveto:
573
0
                code = t1_hinter__rcurveto(h, pts[0].x - p.x, pts[0].y - p.y,
574
0
                                        pts[1].x - pts[0].x, pts[1].y - pts[0].y,
575
0
                                        pts[2].x - pts[1].x, pts[2].y - pts[1].y);
576
0
                pts[0] = pts[2];
577
0
                break;
578
0
            case gs_pe_closepath:
579
0
                code = t1_hinter__closepath(h);
580
0
                break;
581
0
            default:
582
0
                return_error(gs_error_unregistered);
583
0
        }
584
0
        if (code < 0)
585
0
            return code;
586
0
        p = pts[0];
587
0
    }
588
0
    return 0;
589
0
}
590
591
0
#define exch(a,b) a^=b; b^=a; a^=b;
592
593
static void
594
transpose_path(gx_path *path)
595
0
{   segment *s = (segment *)path->first_subpath;
596
597
0
    exch(path->bbox.p.x, path->bbox.p.y);
598
0
    exch(path->bbox.q.x, path->bbox.q.y);
599
0
    for (; s; s = s->next) {
600
0
        if (s->type == s_curve) {
601
0
            curve_segment *c = (curve_segment *)s;
602
603
0
            exch(c->p1.x, c->p1.y);
604
0
            exch(c->p2.x, c->p2.y);
605
0
        }
606
0
        exch(s->pt.x, s->pt.y);
607
0
    }
608
0
}
609
610
typedef struct {
611
    t1_hinter super;
612
    int transpose;
613
    fixed midx;
614
} t1_hinter_aux;
615
616
static int
617
stem_hint_handler(void *client_data, gx_san_sect *ss)
618
0
{
619
0
    t1_hinter_aux *h = (t1_hinter_aux *)client_data;
620
621
0
    if (ss->side_mask == 3) {
622
        /* Orient horizontal hints to help with top/bottom alignment zones.
623
           Otherwize glyphs may get a random height due to serif adjustsment. */
624
0
        if (ss->xl > h->midx && h->transpose)
625
0
            return (h->transpose ? t1_hinter__hstem : t1_hinter__vstem)
626
0
                        (&h->super, ss->xr, ss->xl - ss->xr);
627
0
        else
628
0
            return (h->transpose ? t1_hinter__hstem : t1_hinter__vstem)
629
0
                        (&h->super, ss->xl, ss->xr - ss->xl);
630
0
    } else
631
0
        return t1_hinter__overall_hstem(&h->super, ss->xl, ss->xr - ss->xl, ss->side_mask);
632
0
}
633
634
0
#define OVERALL_HINT 0 /* Overall hints help to emulate Type 1 alignment zones
635
                          (except for overshoot suppression.)
636
                          For example, without it comparefiles/type42_glyph_index.ps
637
                          some glyphs have different height due to
638
                          serifs are aligned in same way as horizontal stems,
639
                          but both sides of a stem have same priority.
640
641
                          This stuff appears low useful, because horizontal
642
                          hint orientation performs this job perfectly.
643
                          fixme : remove.
644
                          fixme : remove side_mask from gxhintn.c .
645
                          */
646
647
static int grid_fit(gx_device_spot_analyzer *padev, gx_path *path,
648
        gs_font_type42 *pfont, const gs_log2_scale_point *pscale, gx_ttfExport *e, ttfOutliner *o)
649
0
{
650
    /* Not completed yet. */
651
0
    gs_gstate gs_stub;
652
0
    gx_fill_params params;
653
0
    gx_device_color devc_stub;
654
0
    int code;
655
0
    t1_hinter_aux h;
656
0
    gs_matrix m, fm, fmb;
657
0
    gs_matrix_fixed ctm_temp;
658
0
    bool atp = gs_currentaligntopixels(pfont->dir);
659
0
    int FontType = 1; /* Will apply Type 1 hinter. */
660
0
    fixed sbx = 0, sby = 0; /* stub */
661
0
    double scale = 1.0 / o->pFont->nUnitsPerEm;
662
0
    gs_fixed_rect bbox;
663
664
0
    m.xx = o->post_transform.a;
665
0
    m.xy = o->post_transform.b;
666
0
    m.yx = o->post_transform.c;
667
0
    m.yy = o->post_transform.d;
668
0
    m.tx = o->post_transform.tx;
669
0
    m.ty = o->post_transform.ty;
670
0
    code = gs_matrix_fixed_from_matrix(&ctm_temp, &m);
671
0
    if (code < 0)
672
0
        return code;
673
0
    code = gs_matrix_scale(&pfont->FontMatrix, scale, scale, &fm);
674
0
    if (code < 0)
675
0
        return code;
676
0
    code = gs_matrix_scale(&pfont->base->FontMatrix, scale, scale, &fmb);
677
0
    if (code < 0)
678
0
        return code;
679
0
    t1_hinter__init(&h.super, path); /* Will export to */
680
0
    code = t1_hinter__set_mapping(&h.super, &ctm_temp,
681
0
                        &fm, &fmb,
682
0
                        pscale->x, pscale->x, 0, 0,
683
0
                        ctm_temp.tx_fixed, ctm_temp.ty_fixed, atp);
684
0
    if (code < 0)
685
0
        return code;
686
0
    if (!h.super.disable_hinting) {
687
0
        o->post_transform.a = o->post_transform.d = 1;
688
0
        o->post_transform.b = o->post_transform.c = 0;
689
0
        o->post_transform.tx = o->post_transform.ty = 0;
690
0
        code = ttfOutliner__DrawGlyphOutline(o);
691
0
        if (code < 0)
692
0
            return code;
693
0
        code = t1_hinter__set_font42_data(&h.super, FontType, &pfont->data, false);
694
0
        if (code < 0)
695
0
            return code;
696
0
        code = t1_hinter__sbw(&h.super, sbx, sby, e->w.x, e->w.y);
697
0
        if (code < 0)
698
0
            return code;
699
0
        code = gx_path_bbox(path, &bbox);
700
0
        if (code < 0)
701
0
            return code;
702
0
        memset(&gs_stub, 0, sizeof(gs_stub));
703
0
        gs_stub.memory = padev->memory;
704
0
        set_nonclient_dev_color(&devc_stub, 1);
705
0
        params.rule = gx_rule_winding_number;
706
0
        params.adjust.x = params.adjust.y = 0;
707
0
        params.flatness = fixed2float(max(bbox.q.x - bbox.p.x, bbox.q.y - bbox.p.y)) / 100.0;
708
709
0
        for (h.transpose = 0; h.transpose < 2; h.transpose++) {
710
0
            h.midx = (padev->xmin + padev->xmax) / 2;
711
0
            if (h.transpose)
712
0
                transpose_path(path);
713
0
            gx_san_begin(padev);
714
0
            code = dev_proc(padev, fill_path)((gx_device *)padev,
715
0
                            &gs_stub, path, &params, &devc_stub, NULL);
716
0
            gx_san_end(padev);
717
0
            if (code >= 0)
718
0
                code = gx_san_generate_stems(padev, OVERALL_HINT && h.transpose,
719
0
                                &h, stem_hint_handler);
720
0
            if (h.transpose)
721
0
                transpose_path(path);
722
0
            if (code < 0)
723
0
                return code;
724
0
        }
725
726
        /*  fixme : Storing hints permanently would be useful.
727
            Note that if (gftt & 1), the outline and hints are already scaled.
728
        */
729
0
        code = path_to_hinter(&h.super, path);
730
0
        if (code < 0)
731
0
            return code;
732
0
        code = gx_path_new(path);
733
0
        if (code < 0)
734
0
            return code;
735
0
        code = t1_hinter__endglyph(&h.super);
736
0
    } else {
737
0
        code = ttfOutliner__DrawGlyphOutline(o);
738
0
        if (code < 0)
739
0
            return e->error;
740
0
    }
741
0
    return code;
742
0
}
743
744
int gx_ttf_outline(ttfFont *ttf, gx_ttfReader *r, gs_font_type42 *pfont, int glyph_index,
745
        const gs_matrix *m, const gs_log2_scale_point *pscale,
746
        gx_path *path, bool design_grid)
747
67.0k
{
748
67.0k
    gx_ttfExport e;
749
67.0k
    ttfOutliner o;
750
67.0k
    gs_point char_size, subpix_origin;
751
67.0k
    gs_matrix post_transform;
752
    /* Ghostscript proceses a TTC index in gs/lib/gs_ttf.ps, */
753
    /* so that TTC never comes here. */
754
67.0k
    FloatMatrix m1;
755
67.0k
    bool dg;
756
67.0k
    uint gftt = gs_currentgridfittt(pfont->dir);
757
67.0k
    bool ttin = (gftt & 1);
758
67.0k
    int code;
759
    /*  gs_currentgridfittt values (binary) :
760
        00 - no grid fitting;
761
        01 - Grid fit with TT interpreter; On failure warn and render unhinted.
762
        10 - Interpret in the design grid and then autohint.
763
        11 - Grid fit with TT interpreter; On failure render autohinted.
764
    */
765
67.0k
    bool auth = (gftt & 2);
766
767
67.0k
    decompose_matrix(pfont, m, pscale, design_grid, &char_size, &subpix_origin, &post_transform, &dg);
768
67.0k
    m1.a = post_transform.xx;
769
67.0k
    m1.b = post_transform.xy;
770
67.0k
    m1.c = post_transform.yx;
771
67.0k
    m1.d = post_transform.yy;
772
67.0k
    m1.tx = post_transform.tx;
773
67.0k
    m1.ty = post_transform.ty;
774
67.0k
    e.super.bPoints = false;
775
67.0k
    e.super.bOutline = true;
776
67.0k
    e.super.MoveTo = gx_ttfExport__MoveTo;
777
67.0k
    e.super.LineTo = gx_ttfExport__LineTo;
778
67.0k
    e.super.CurveTo = gx_ttfExport__CurveTo;
779
67.0k
    e.super.Close = gx_ttfExport__Close;
780
67.0k
    e.super.Point = gx_ttfExport__Point;
781
67.0k
    e.super.SetWidth = gx_ttfExport__SetWidth;
782
67.0k
    e.super.DebugPaint = gx_ttfExport__DebugPaint;
783
67.0k
    e.error = 0;
784
67.0k
    e.path = path;
785
67.0k
    e.w.x = 0;
786
67.0k
    e.w.y = 0;
787
67.0k
    e.monotonize = auth;
788
67.0k
    gx_ttfReader__Reset(r);
789
67.0k
    ttfOutliner__init(&o, ttf, &r->super, &e.super, true, false, pfont->WMode != 0);
790
67.0k
    switch(ttfOutliner__Outline(&o, glyph_index, subpix_origin.x, subpix_origin.y, &m1)) {
791
0
        case fBadInstruction:
792
0
            WarnBadInstruction(pfont, glyph_index);
793
0
            goto recover;
794
6.82k
        case fPatented:
795
            /* The returned outline did not apply a bytecode (it is not grid-fitted). */
796
6.82k
            if (!auth)
797
6.82k
                WarnPatented(pfont, ttf, "Some glyphs of the font");
798
6.82k
        recover :
799
6.82k
            if (!design_grid && auth)
800
0
                return grid_fit(pfont->dir->san, path, pfont, pscale, &e, &o);
801
            /* Falls through. */
802
66.7k
        case fNoError:
803
66.7k
            if (!design_grid && !ttin && auth)
804
0
                return grid_fit(pfont->dir->san, path, pfont, pscale, &e, &o);
805
66.7k
            code = ttfOutliner__DrawGlyphOutline(&o);
806
66.7k
            if (code < 0)
807
0
                return code;
808
66.7k
            return 0;
809
0
        case fMemoryError:
810
0
            return_error(gs_error_VMerror);
811
0
        case fUnimplemented:
812
0
            return_error(gs_error_unregistered);
813
326
        case fBadFontData:
814
326
            return_error(gs_error_invalidfont);
815
0
        default:
816
0
            { int code = r->super.Error(&r->super);
817
818
0
                if (code < 0)
819
0
                    return code;
820
0
                return_error(gs_error_invalidfont);
821
0
            }
822
67.0k
    }
823
67.0k
}