Coverage Report

Created: 2025-06-10 07:27

/src/ghostpdl/base/fapi_ft.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2024 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
/*
18
   GhostScript Font API plug-in that allows fonts to be rendered by FreeType.
19
   Started by Graham Asher, 6th June 2002.
20
 */
21
22
/* GhostScript headers. */
23
#include "stdio_.h"
24
#include "malloc_.h"
25
#include "write_t1.h"
26
#include "write_t2.h"
27
#include "math_.h"
28
#include "gserrors.h"
29
#include "gsmemory.h"
30
#include "gsmalloc.h"
31
#include "gxfixed.h"
32
#include "gdebug.h"
33
#include "gxbitmap.h"
34
#include "gsmchunk.h"
35
#include "gxfont.h"
36
#include "gxfont1.h"
37
38
#include "stream.h"
39
#include "gxiodev.h"            /* must come after stream.h */
40
41
#include "gsfname.h"
42
43
#include "gxfapi.h"
44
45
46
/* FreeType headers */
47
#include <ft2build.h>
48
#include FT_FREETYPE_H
49
#include FT_INCREMENTAL_H
50
#include FT_GLYPH_H
51
#include FT_SYSTEM_H
52
#include FT_MODULE_H
53
#include FT_TRIGONOMETRY_H
54
#include FT_BBOX_H
55
#include FT_OUTLINE_H
56
#include FT_IMAGE_H
57
#include FT_BITMAP_H
58
#include FT_TRUETYPE_DRIVER_H
59
#include FT_TRUETYPE_TABLES_H
60
#include FT_MULTIPLE_MASTERS_H
61
#include FT_TYPE1_TABLES_H
62
63
/* Note: structure definitions here start with FF_, which stands for 'FAPI FreeType". */
64
65
#define ft_emprintf(m,s) { outflush(m); emprintf(m, s); outflush(m); }
66
#define ft_emprintf1(m,s,d) { outflush(m); emprintf1(m, s, d); outflush(m); }
67
68
typedef struct ff_server_s
69
{
70
    gs_fapi_server fapi_server;
71
    FT_Library freetype_library;
72
    FT_OutlineGlyph outline_glyph;
73
    FT_BitmapGlyph bitmap_glyph;
74
    gs_memory_t *mem;
75
    FT_Memory ftmemory;
76
    struct FT_MemoryRec_ ftmemory_rec;
77
} ff_server;
78
79
80
81
typedef struct ff_face_s
82
{
83
    FT_Face ft_face;
84
85
    /* Currently in force scaling/transform for this face */
86
    FT_Matrix ft_transform;
87
    FT_F26Dot6 width, height;
88
    FT_UInt horz_res;
89
    FT_UInt vert_res;
90
91
    /* If non-null, the incremental interface object passed to FreeType. */
92
    FT_Incremental_InterfaceRec *ft_inc_int;
93
    /* If non-null, we're using a custom stream object for Freetype to read the font file */
94
    FT_Stream ftstrm;
95
    /* Non-null if font data is owned by this object. */
96
    unsigned char *font_data;
97
    int font_data_len;
98
    bool data_owned;
99
    ff_server *server;
100
} ff_face;
101
102
/* Here we define the struct FT_Incremental that is used as an opaque type
103
 * inside FreeType. This structure has to have the tag FT_IncrementalRec_
104
 * to be compatible with the functions defined in FT_Incremental_FuncsRec.
105
 */
106
typedef struct FT_IncrementalRec_
107
{
108
    gs_fapi_font *fapi_font;    /* The font. */
109
110
    /* If it is already in use glyph data is allocated on the heap. */
111
    unsigned char *glyph_data;  /* A one-shot buffer for glyph data. */
112
    size_t glyph_data_length;   /* Length in bytes of glyph_data. */
113
    bool glyph_data_in_use;     /* True if glyph_data is already in use. */
114
115
    FT_Incremental_MetricsRec glyph_metrics;    /* Incremental glyph metrics supplied by Ghostscript. */
116
    unsigned long glyph_metrics_index;  /* contains data for this glyph index unless it is 0xFFFFFFFF. */
117
    gs_fapi_metrics_type metrics_type;  /* determines whether metrics are replaced, added, etc. */
118
} FT_IncrementalRec;
119
120
121
static void
122
delete_inc_int(gs_fapi_server * a_server,
123
               FT_Incremental_InterfaceRec * a_inc_int);
124
125
static void
126
delete_inc_int_info(gs_fapi_server * a_server,
127
                    FT_IncrementalRec * a_inc_int_info);
128
129
static void *
130
FF_alloc(FT_Memory memory, long size)
131
6.87M
{
132
6.87M
    gs_memory_t *mem = (gs_memory_t *) memory->user;
133
134
6.87M
    return (gs_malloc(mem, size, 1, "FF_alloc"));
135
6.87M
}
136
137
static void *
138
    FF_realloc(FT_Memory memory, long cur_size, long new_size, void *block)
139
342k
{
140
342k
    gs_memory_t *mem = (gs_memory_t *) memory->user;
141
342k
    void *tmp;
142
143
342k
    if (cur_size == new_size) {
144
1.43k
        return (block);
145
1.43k
    }
146
147
341k
    tmp = gs_malloc(mem, new_size, 1, "FF_realloc");
148
341k
    if (tmp && block) {
149
341k
        memcpy(tmp, block, min(cur_size, new_size));
150
151
341k
        gs_free(mem, block, 0, 0, "FF_realloc");
152
341k
    }
153
154
341k
    return (tmp);
155
342k
}
156
157
static void
158
    FF_free(FT_Memory memory, void *block)
159
6.99M
{
160
6.99M
    gs_memory_t *mem = (gs_memory_t *) memory->user;
161
162
6.99M
    gs_free(mem, block, 0, 0, "FF_free");
163
6.99M
}
164
165
/* The following three functions are used in providing a custom stream
166
 * object to Freetype, so file access happens through Ghostscript's
167
 * file i/o. Most importantly, this gives Freetype direct access to
168
 * files in the romfs
169
 */
170
static FT_ULong
171
FF_stream_read(FT_Stream str, unsigned long offset, unsigned char *buffer,
172
               unsigned long count)
173
0
{
174
0
    stream *ps = (stream *) str->descriptor.pointer;
175
0
    unsigned int rlen = 0;
176
0
    int status = 0;
177
178
0
    if (sseek(ps, (gs_offset_t)offset) < 0)
179
0
        return_error(-1);
180
181
0
    if (count) {
182
0
        status = sgets(ps, buffer, count, &rlen);
183
184
0
        if (status < 0 && status != EOFC)
185
0
            return_error (-1);
186
0
    }
187
0
    return (rlen);
188
0
}
189
190
static void
191
FF_stream_close(FT_Stream str)
192
0
{
193
0
    stream *ps = (stream *) str->descriptor.pointer;
194
0
    gs_memory_t *mem = ps->memory;
195
196
0
    (void)sclose(ps);
197
0
    gs_free_object(mem, ps, "FF_stream_close");
198
0
}
199
200
extern const uint file_default_buffer_size;
201
202
static int
203
FF_open_read_stream(gs_memory_t * mem, char *fname, FT_Stream * fts)
204
0
{
205
0
    int code = 0;
206
0
    gs_parsed_file_name_t pfn;
207
0
    stream *ps = (stream *)NULL;
208
0
    gs_offset_t length;
209
0
    FT_Stream ftstrm = NULL;
210
211
0
    code = gs_parse_file_name(&pfn, (const char *)fname, strlen(fname), mem);
212
0
    if (code < 0) {
213
0
        goto error_out;
214
0
    }
215
216
0
    if (!pfn.fname) {
217
0
        code = gs_error_undefinedfilename;
218
0
        goto error_out;
219
0
    }
220
221
0
    if (pfn.iodev == NULL) {
222
0
        pfn.iodev = iodev_default(mem);
223
0
    }
224
225
0
    if (pfn.iodev) {
226
0
        gx_io_device *const iodev = pfn.iodev;
227
228
0
        iodev_proc_open_file((*open_file)) = iodev->procs.open_file;
229
230
0
        if (open_file) {
231
0
            code = open_file(iodev, pfn.fname, pfn.len, "r", &ps, mem);
232
0
            if (code < 0) {
233
0
                goto error_out;
234
0
            }
235
0
        }
236
0
        else {
237
0
            code =
238
0
                file_open_stream(pfn.fname, pfn.len, "r",
239
0
                                 file_default_buffer_size, &ps, pfn.iodev,
240
0
                                 pfn.iodev->procs.gp_fopen, mem);
241
0
            if (code < 0) {
242
0
                goto error_out;
243
0
            }
244
0
        }
245
0
    }
246
0
    else {
247
0
        goto error_out;
248
0
    }
249
250
0
    if ((code = savailable(ps, &length)) < 0) {
251
0
        goto error_out;
252
0
    }
253
254
0
    ftstrm = gs_malloc(mem, sizeof(FT_StreamRec), 1, "FF_open_read_stream");
255
0
    if (!ftstrm) {
256
0
        code = gs_error_VMerror;
257
0
        goto error_out;
258
0
    }
259
0
    memset(ftstrm, 0x00, sizeof(FT_StreamRec));
260
261
0
    ftstrm->descriptor.pointer = ps;
262
0
    ftstrm->read = FF_stream_read;
263
0
    ftstrm->close = FF_stream_close;
264
0
    ftstrm->size = (long)length;
265
0
    *fts = ftstrm;
266
267
0
  error_out:
268
0
    if (code < 0) {
269
0
        if (ps)
270
0
            (void)sclose(ps);
271
0
        if (ftstrm)
272
0
            gs_free(mem, ftstrm, 0, 0, "FF_open_read_stream");
273
0
    }
274
0
    return (code);
275
0
}
276
277
278
static ff_face *
279
new_face(gs_fapi_server * a_server, FT_Face a_ft_face,
280
         FT_Incremental_InterfaceRec * a_ft_inc_int, FT_Stream ftstrm,
281
         unsigned char *a_font_data, int a_font_data_len, bool data_owned)
282
56.7k
{
283
56.7k
    ff_server *s = (ff_server *) a_server;
284
285
56.7k
    ff_face *face = (ff_face *) FF_alloc(s->ftmemory, sizeof(ff_face));
286
287
56.7k
    if (face) {
288
56.7k
        face->ft_face = a_ft_face;
289
56.7k
        face->ft_inc_int = a_ft_inc_int;
290
56.7k
        face->font_data = a_font_data;
291
56.7k
        face->font_data_len = a_font_data_len;
292
56.7k
        face->data_owned = data_owned;
293
56.7k
        face->ftstrm = ftstrm;
294
56.7k
        face->server = (ff_server *) a_server;
295
56.7k
    }
296
56.7k
    return face;
297
56.7k
}
298
299
static void
300
delete_face(gs_fapi_server * a_server, ff_face * a_face)
301
56.7k
{
302
56.7k
    if (a_face) {
303
56.7k
        ff_server *s = (ff_server *) a_server;
304
56.7k
        if (a_face->ft_inc_int) {
305
55.7k
            FT_Incremental a_info = a_face->ft_inc_int->object;
306
307
55.7k
            if (a_info->glyph_data) {
308
40.8k
                gs_free(s->mem, a_info->glyph_data, 0, 0, "delete_face");
309
40.8k
            }
310
55.7k
            a_info->glyph_data = NULL;
311
55.7k
            a_info->glyph_data_length = 0;
312
55.7k
            delete_inc_int(a_server, a_face->ft_inc_int);
313
55.7k
            a_face->ft_inc_int = NULL;
314
55.7k
        }
315
56.7k
        FT_Done_Face(a_face->ft_face);
316
317
56.7k
        FF_free(s->ftmemory, a_face->ft_inc_int);
318
56.7k
        if (a_face->data_owned)
319
55.4k
            FF_free(s->ftmemory, a_face->font_data);
320
56.7k
        if (a_face->ftstrm) {
321
0
            FF_free(s->ftmemory, a_face->ftstrm);
322
0
        }
323
56.7k
        FF_free(s->ftmemory, a_face);
324
56.7k
    }
325
56.7k
}
326
327
static FT_IncrementalRec *
328
new_inc_int_info(gs_fapi_server * a_server, gs_fapi_font * a_fapi_font)
329
55.7k
{
330
55.7k
    ff_server *s = (ff_server *) a_server;
331
332
55.7k
    FT_IncrementalRec *info =
333
55.7k
        (FT_IncrementalRec *) FF_alloc(s->ftmemory,
334
55.7k
                                       sizeof(FT_IncrementalRec));
335
55.7k
    if (info) {
336
55.7k
        info->fapi_font = a_fapi_font;
337
55.7k
        info->glyph_data = NULL;
338
55.7k
        info->glyph_data_length = 0;
339
55.7k
        info->glyph_data_in_use = false;
340
55.7k
        info->glyph_metrics_index = 0xFFFFFFFF;
341
55.7k
        info->metrics_type = gs_fapi_metrics_notdef;
342
55.7k
    }
343
55.7k
    return info;
344
55.7k
}
345
346
static void
347
delete_inc_int_info(gs_fapi_server * a_server,
348
                    FT_IncrementalRec * a_inc_int_info)
349
55.7k
{
350
55.7k
    ff_server *s = (ff_server *) a_server;
351
352
55.7k
    if (a_inc_int_info) {
353
55.7k
        FF_free(s->ftmemory, a_inc_int_info->glyph_data);
354
55.7k
        FF_free(s->ftmemory, a_inc_int_info);
355
55.7k
    }
356
55.7k
}
357
358
static FT_Error
359
get_fapi_glyph_data(FT_Incremental a_info, FT_UInt a_index, FT_Data * a_data)
360
716k
{
361
716k
    gs_fapi_font *ff = a_info->fapi_font;
362
716k
    int length = 0;
363
716k
    ff_face *face = (ff_face *) ff->server_font_data;
364
716k
    gs_memory_t *mem = (gs_memory_t *) face->server->mem;
365
366
    /* Tell the FAPI interface that we need to decrypt the glyph data. */
367
716k
    ff->need_decrypt = true;
368
369
    /* If glyph_data is already in use (as will happen for composite glyphs)
370
     * create a new buffer on the heap.
371
     */
372
716k
    if (a_info->glyph_data_in_use) {
373
2.35k
        unsigned char *buffer = NULL;
374
375
2.35k
        length = ff->get_glyph(ff, a_index, NULL, 0);
376
2.35k
        if (length == gs_fapi_glyph_invalid_format
377
2.35k
            || length == gs_fapi_glyph_invalid_index)
378
0
            return FT_Err_Invalid_Glyph_Index;
379
380
2.35k
        buffer = gs_malloc(mem, length, 1, "get_fapi_glyph_data");
381
2.35k
        if (!buffer)
382
106
            return FT_Err_Out_Of_Memory;
383
384
2.25k
        length = ff->get_glyph(ff, a_index, buffer, length);
385
2.25k
        if (length == gs_fapi_glyph_invalid_format) {
386
0
            gs_free((gs_memory_t *) mem, buffer, 0, 0,
387
0
                    "get_fapi_glyph_data");
388
0
            return FT_Err_Invalid_Glyph_Index;
389
0
        }
390
2.25k
        a_data->pointer = buffer;
391
2.25k
    }
392
714k
    else {
393
        /* Save ff->char_data, which is set to null by FAPI_FF_get_glyph as part of a hack to
394
         * make the deprecated Type 2 endchar ('seac') work, so that it can be restored
395
         * if we need to try again with a longer buffer.
396
         */
397
714k
        const void *saved_char_data = ff->char_data;
398
399
        /* Get as much of the glyph data as possible into the buffer */
400
714k
        length =
401
714k
            ff->get_glyph(ff, a_index, a_info->glyph_data,
402
714k
                          (ushort) a_info->glyph_data_length);
403
714k
        if (length == gs_fapi_glyph_invalid_format) {
404
0
            ff->char_data = saved_char_data;
405
0
            return FT_Err_Unknown_File_Format;
406
0
        }
407
408
714k
        if (length == gs_fapi_glyph_invalid_index) {
409
0
            ff->char_data = saved_char_data;
410
0
            return FT_Err_Invalid_Glyph_Index;
411
0
        }
412
413
        /* If the buffer was too small enlarge it and try again. */
414
714k
        if (length > a_info->glyph_data_length) {
415
91.1k
            if (a_info->glyph_data) {
416
50.0k
                gs_free((gs_memory_t *) mem,
417
50.0k
                        a_info->glyph_data, 0, 0, "get_fapi_glyph_data");
418
50.0k
            }
419
420
91.1k
            a_info->glyph_data =
421
91.1k
                gs_malloc(mem, length, 1, "get_fapi_glyph_data");
422
423
91.1k
            if (!a_info->glyph_data) {
424
170
                a_info->glyph_data_length = 0;
425
170
                return FT_Err_Out_Of_Memory;
426
170
            }
427
90.9k
            a_info->glyph_data_length = length;
428
90.9k
            ff->char_data = saved_char_data;
429
90.9k
            length = ff->get_glyph(ff, a_index, a_info->glyph_data, length);
430
90.9k
            if (length == gs_fapi_glyph_invalid_format)
431
0
                return FT_Err_Unknown_File_Format;
432
90.9k
            if (length == gs_fapi_glyph_invalid_index)
433
0
                return FT_Err_Invalid_Glyph_Index;
434
90.9k
        }
435
436
        /* Set the returned pointer and length. */
437
714k
        a_data->pointer = a_info->glyph_data;
438
439
714k
        a_info->glyph_data_in_use = true;
440
714k
    }
441
442
716k
    a_data->length = length;
443
716k
    return 0;
444
716k
}
445
446
static void
447
free_fapi_glyph_data(FT_Incremental a_info, FT_Data * a_data)
448
716k
{
449
716k
    gs_fapi_font *ff = a_info->fapi_font;
450
716k
    ff_face *face = (ff_face *) ff->server_font_data;
451
716k
    gs_memory_t *mem = (gs_memory_t *) face->server->mem;
452
453
716k
    if (a_data->pointer == (const FT_Byte *)a_info->glyph_data)
454
713k
        a_info->glyph_data_in_use = false;
455
2.22k
    else
456
716k
        gs_free(mem, (FT_Byte *) a_data->pointer, 0, 0, "free_fapi_glyph_data");
457
716k
}
458
459
static FT_Error
460
get_fapi_glyph_metrics(FT_Incremental a_info, FT_UInt a_glyph_index,
461
                       FT_Bool bVertical,
462
                       FT_Incremental_MetricsRec * a_metrics)
463
741k
{
464
    /* FreeType will create synthetic vertical metrics, including a vertical
465
     * advance, if none is present. We don't want this, so if the font uses Truetype outlines
466
     * and the WMode is not 1 (vertical) we ignore the advance by setting it to 0
467
     */
468
741k
    if (bVertical && !a_info->fapi_font->is_type1)
469
27.1k
        a_metrics->advance = 0;
470
471
741k
    if (a_info->glyph_metrics_index == a_glyph_index) {
472
25.4k
        switch (a_info->metrics_type) {
473
25.4k
            case gs_fapi_metrics_add:
474
25.4k
                a_metrics->advance += a_info->glyph_metrics.advance;
475
25.4k
                break;
476
0
            case gs_fapi_metrics_replace_width:
477
0
                a_metrics->advance = a_info->glyph_metrics.advance;
478
0
                break;
479
0
            case gs_fapi_metrics_replace:
480
0
                *a_metrics = a_info->glyph_metrics;
481
                /* We are replacing the horizontal metrics, so the vertical must be 0 */
482
0
                a_metrics->advance_v = 0;
483
0
                break;
484
0
            default:
485
                /* This can't happen. */
486
0
                return FT_Err_Invalid_Argument;
487
25.4k
        }
488
25.4k
    }
489
741k
    return 0;
490
741k
}
491
492
static const FT_Incremental_FuncsRec TheFAPIIncrementalInterfaceFuncs = {
493
    get_fapi_glyph_data,
494
    free_fapi_glyph_data,
495
    get_fapi_glyph_metrics
496
};
497
498
static FT_Incremental_InterfaceRec *
499
new_inc_int(gs_fapi_server * a_server, gs_fapi_font * a_fapi_font)
500
55.7k
{
501
55.7k
    ff_server *s = (ff_server *) a_server;
502
503
55.7k
    FT_Incremental_InterfaceRec *i =
504
55.7k
        (FT_Incremental_InterfaceRec *) FF_alloc(s->ftmemory,
505
55.7k
                                                 sizeof
506
55.7k
                                                 (FT_Incremental_InterfaceRec));
507
55.7k
    if (i) {
508
55.7k
        i->funcs = &TheFAPIIncrementalInterfaceFuncs;
509
55.7k
        i->object = (FT_Incremental) new_inc_int_info(a_server, a_fapi_font);
510
511
55.7k
        if (!i->object) {
512
0
            FF_free(s->ftmemory, i);
513
0
            i = NULL;
514
0
        }
515
55.7k
    }
516
55.7k
    return i;
517
55.7k
}
518
519
static void
520
delete_inc_int(gs_fapi_server * a_server,
521
               FT_Incremental_InterfaceRec * a_inc_int)
522
55.7k
{
523
55.7k
    ff_server *s = (ff_server *) a_server;
524
525
55.7k
    if (a_inc_int) {
526
55.7k
        delete_inc_int_info(a_server, a_inc_int->object);
527
55.7k
        FF_free(s->ftmemory, a_inc_int);
528
55.7k
    }
529
55.7k
}
530
531
/* Convert FreeType error codes to GhostScript ones.
532
 * Very rudimentary because most don't correspond.
533
 */
534
static int
535
ft_to_gs_error(FT_Error a_error)
536
819k
{
537
819k
    if (a_error) {
538
33.1k
        if (a_error == FT_Err_Out_Of_Memory)
539
0
            return_error(gs_error_VMerror);
540
33.1k
        else
541
33.1k
            return_error(gs_error_unknownerror);
542
33.1k
    }
543
786k
    return 0;
544
819k
}
545
546
/* Load a glyph and optionally rasterize it. Return its metrics in a_metrics.
547
 * If a_bitmap is true convert the glyph to a bitmap.
548
 */
549
static gs_fapi_retcode
550
load_glyph(gs_fapi_server * a_server, gs_fapi_font * a_fapi_font,
551
           const gs_fapi_char_ref * a_char_ref, gs_fapi_metrics * a_metrics,
552
           FT_Glyph * a_glyph, bool a_bitmap, int max_bitmap)
553
799k
{
554
799k
    ff_server *s = (ff_server *) a_server;
555
799k
    FT_Error ft_error = 0;
556
799k
    FT_Error ft_error_fb = 1;
557
799k
    ff_face *face = (ff_face *) a_fapi_font->server_font_data;
558
799k
    FT_Face ft_face = face->ft_face;
559
799k
    int index = a_char_ref->char_codes[0];
560
799k
    FT_Long w;
561
799k
    FT_Long h;
562
799k
    FT_Long fflags;
563
799k
    FT_Int32 load_flags = 0;
564
799k
    FT_Vector  delta = {0,0};
565
566
    /* Save a_fapi_font->char_data, which is set to null by FAPI_FF_get_glyph as part of a hack to
567
     * make the deprecated Type 2 endchar ('seac') work, so that it can be restored
568
     * after the first call to FT_Load_Glyph.
569
     */
570
799k
    const void *saved_char_data = a_fapi_font->char_data;
571
799k
    const int saved_char_data_len = a_fapi_font->char_data_len;
572
573
799k
    if (s->bitmap_glyph) {
574
0
        FT_Bitmap_Done(s->freetype_library, &s->bitmap_glyph->bitmap);
575
0
        FF_free(s->ftmemory, s->bitmap_glyph);
576
0
        s->bitmap_glyph = NULL;
577
0
    }
578
799k
    if (s->outline_glyph) {
579
0
        FT_Outline_Done(s->freetype_library, &s->outline_glyph->outline);
580
0
        FF_free(s->ftmemory, s->outline_glyph);
581
0
        s->outline_glyph = NULL;
582
0
    }
583
584
799k
    if (!a_char_ref->is_glyph_index) {
585
684k
        if (ft_face->num_charmaps)
586
682k
            index = FT_Get_Char_Index(ft_face, index);
587
2.13k
        else {
588
            /* If there are no character maps and no glyph index, loading the glyph will still work
589
             * properly if both glyph data and metrics are supplied by the incremental interface.
590
             * In that case we use a dummy glyph index which will be passed
591
             * back to FAPI_FF_get_glyph by get_fapi_glyph_data.
592
             *
593
             * Type 1 fonts don't use the code and can appear to FreeType to have only one glyph,
594
             * so we have to set the index to 0.
595
             *
596
             * For other font types, FAPI_FF_get_glyph requires the character code
597
             * when getting data.
598
             */
599
2.13k
            if (a_fapi_font->is_type1)
600
0
                index = 0;
601
2.13k
            else
602
2.13k
                index = a_char_ref->char_codes[0];
603
2.13k
        }
604
684k
    }
605
114k
    else {
606
        /* This is a heuristic to try to avoid using the TTF notdef (empty rectangle), and replace it
607
           with a non-marking glyph instead. This is only required for fonts where we don't use the
608
           FT incremental interface - when we are using the incremental interface, we handle it in
609
           our own glyph lookup code.
610
         */
611
114k
        if (!a_fapi_font->is_cid && !face->ft_inc_int &&
612
114k
            (index == 0 ||
613
0
            (a_char_ref->client_char_code != gs_no_char &&
614
0
            FT_Get_Char_Index(ft_face, a_char_ref->client_char_code) <= 0))) {
615
0
            int tmp_ind;
616
617
0
            if ((tmp_ind = FT_Get_Char_Index(ft_face, 32)) > 0) {
618
0
                index = tmp_ind;
619
0
            }
620
0
        }
621
114k
    }
622
    /* Refresh the pointer to the FAPI_font held by the incremental interface. */
623
799k
    if (face->ft_inc_int)
624
710k
        face->ft_inc_int->object->fapi_font = a_fapi_font;
625
626
    /* Store the overriding metrics if they have been supplied. */
627
799k
    if (face->ft_inc_int && a_char_ref->metrics_type != gs_fapi_metrics_notdef) {
628
629
25.4k
        FT_Incremental_MetricsRec *m = &face->ft_inc_int->object->glyph_metrics;
630
631
25.4k
        m->bearing_x = a_char_ref->sb_x >> 16;
632
25.4k
        m->bearing_y = a_char_ref->sb_y >> 16;
633
25.4k
        m->advance = a_char_ref->aw_x >> 16;
634
635
25.4k
        face->ft_inc_int->object->glyph_metrics_index = index;
636
637
        /* For most font types, the original metrics come directly from the font, and
638
           what we have here are customized (such as a Matrics dict in Postscript). We
639
           only want to use the width, in that case, because other metrics can mess up
640
           the hinting in Freetype. We'll apply custom lsb outselves, using the "delta"
641
           stuff below.
642
           The exception here is PCL/XL embedded TTF fonts, where the h/vmtx tables can
643
           be missing, and we *have* to use the explicit metrics from the PCL/XL glyph
644
           data. (NOTE: if those do not match the original font's metrics, again, the hinting
645
           can be distorted)
646
         */
647
25.4k
        if (a_char_ref->metrics_type == gs_fapi_metrics_replace && !a_fapi_font->is_mtx_skipped) {
648
0
            face->ft_inc_int->object->glyph_metrics_index = 0xFFFFFFFF;
649
0
            delta.x = FT_MulFix(a_char_ref->sb_x >> 16, ft_face->size->metrics.x_scale);
650
0
            delta.y = FT_MulFix(a_char_ref->sb_y >> 16, ft_face->size->metrics.y_scale);
651
0
            FT_Vector_Transform( &delta, &face->ft_transform);
652
0
        }
653
25.4k
        else {
654
25.4k
            face->ft_inc_int->object->metrics_type = a_char_ref->metrics_type;
655
25.4k
        }
656
25.4k
    }
657
773k
    else if (face->ft_inc_int)
658
        /* Make sure we don't leave this set to the last value, as we may then use inappropriate metrics values */
659
685k
        face->ft_inc_int->object->glyph_metrics_index = 0xFFFFFFFF;
660
661
    /* We have to load the glyph, scale it correctly, and render it if we need a bitmap. */
662
799k
    if (!ft_error) {
663
        /* We disable loading bitmaps because if we allow it then FreeType invents metrics for them, which messes up our glyph positioning */
664
        /* Also the bitmaps tend to look somewhat different (though more readable) than FreeType's rendering. By disabling them we */
665
        /* maintain consistency better.  (FT_LOAD_NO_BITMAP) */
666
799k
        a_fapi_font->char_data = saved_char_data;
667
799k
        if (!a_fapi_font->is_mtx_skipped && !a_fapi_font->is_type1) {
668
            /* grid_fit == 1 is the default - use font's native hints
669
             * with freetype, 1 & 3 are, in practice, the same.
670
             */
671
672
116k
            if (a_server->grid_fit == 0) {
673
0
                load_flags = FT_LOAD_NO_HINTING | FT_LOAD_NO_AUTOHINT;
674
0
            }
675
116k
            else if (a_server->grid_fit == 2) {
676
0
                load_flags = FT_LOAD_FORCE_AUTOHINT;
677
0
            }
678
116k
            load_flags |= FT_LOAD_MONOCHROME | FT_LOAD_NO_BITMAP | FT_LOAD_LINEAR_DESIGN | FT_LOAD_PEDANTIC;
679
116k
        }
680
682k
        else {
681
            /* Current FreeType hinting for type 1 fonts is so poor we are actually better off without it (fewer files render incorrectly) (FT_LOAD_NO_HINTING) */
682
            /* We also need to disable hinting for XL format embedded truetypes */
683
682k
            load_flags |= FT_LOAD_MONOCHROME | FT_LOAD_NO_HINTING | FT_LOAD_NO_BITMAP | FT_LOAD_LINEAR_DESIGN;
684
682k
        }
685
686
799k
        ft_error = FT_Load_Glyph(ft_face, index, load_flags);
687
799k
        if (ft_error == FT_Err_Unknown_File_Format) {
688
0
            return index + 1;
689
0
        }
690
799k
    }
691
692
799k
    if (ft_error == FT_Err_Invalid_Argument
693
799k
        || ft_error == FT_Err_Invalid_Reference
694
799k
        || ft_error == FT_Err_Invalid_Glyph_Index
695
799k
        || ft_error == FT_Err_DEF_In_Glyf_Bytecode
696
799k
        || (ft_error >= FT_Err_Invalid_Opcode
697
794k
            && ft_error <= FT_Err_Too_Many_Instruction_Defs)) {
698
699
16.7k
        a_fapi_font->char_data = saved_char_data;
700
701
        /* We want to prevent hinting, even for a "tricky" font - it shouldn't matter for the notdef */
702
16.7k
        fflags = ft_face->face_flags;
703
16.7k
        ft_face->face_flags &= ~FT_FACE_FLAG_TRICKY;
704
16.7k
        load_flags |= FT_LOAD_NO_HINTING;
705
16.7k
        ft_error = FT_Load_Glyph(ft_face, index, load_flags);
706
707
16.7k
        ft_face->face_flags = fflags;
708
16.7k
    }
709
710
799k
    if (ft_error == FT_Err_Out_Of_Memory
711
799k
        || ft_error == FT_Err_Array_Too_Large) {
712
194
        return (gs_error_VMerror);
713
194
    }
714
715
    /* If FT gives us an error, try to fall back to the notdef - if that doesn't work, we'll throw an error over to Ghostscript */
716
799k
    if (ft_error) {
717
9.17k
        gs_string notdef_str;
718
719
9.17k
        notdef_str.data = (byte *)".notdef";
720
9.17k
        notdef_str.size = 7;
721
722
9.17k
        a_fapi_font->char_data = (void *)(&notdef_str);
723
9.17k
        a_fapi_font->char_data_len = 0;
724
725
        /* We want to prevent hinting, even for a "tricky" font - it shouldn't matter for the notdef */
726
9.17k
        fflags = ft_face->face_flags;
727
9.17k
        ft_face->face_flags &= ~FT_FACE_FLAG_TRICKY;
728
729
9.17k
        ft_error_fb = FT_Load_Glyph(ft_face, 0, load_flags);
730
731
9.17k
        ft_face->face_flags = fflags;
732
733
9.17k
        a_fapi_font->char_data = saved_char_data;
734
9.17k
        a_fapi_font->char_data_len = saved_char_data_len;
735
9.17k
    }
736
737
799k
    if ((!ft_error || !ft_error_fb) && (delta.x != 0 || delta.y != 0)) {
738
0
        FT_Outline_Translate( &ft_face->glyph->outline, delta.x, delta.y);
739
0
    }
740
741
    /* Previously we interpreted the glyph unscaled, and derived the metrics from that. Now we only interpret it
742
     * once, and work out the metrics from the scaled/hinted outline.
743
     */
744
799k
    if ((!ft_error || !ft_error_fb) && a_metrics) {
745
797k
        FT_Long hx;
746
797k
        FT_Long hy;
747
797k
        FT_Long vadv;
748
749
        /* In order to get the metrics in the form we need them, we have to remove the size scaling
750
         * the resolution scaling, and convert to points.
751
         */
752
797k
        hx = (FT_Long) (((double)ft_face->glyph->metrics.horiBearingX *
753
797k
                         ft_face->units_per_EM * 72.0) /
754
797k
                        ((double)face->width * face->horz_res))  + (a_fapi_font->is_mtx_skipped == 1 ? 0 : a_char_ref->sb_x >> 16);
755
797k
        hy = (FT_Long) (((double)ft_face->glyph->metrics.horiBearingY *
756
797k
                         ft_face->units_per_EM * 72.0) /
757
797k
                        ((double)face->height * face->vert_res)) + (a_fapi_font->is_mtx_skipped == 1 ? 0 : a_char_ref->sb_y >> 16);
758
759
797k
        w = (FT_Long) (((double)ft_face->glyph->metrics.width *
760
797k
                        ft_face->units_per_EM * 72.0) / ((double)face->width *
761
797k
                                                         face->horz_res));
762
797k
        h = (FT_Long) (((double)ft_face->glyph->metrics.height *
763
797k
                        ft_face->units_per_EM * 72.0) /
764
797k
                       ((double)face->height * face->vert_res));
765
766
        /* Ugly. FreeType creates verticla metrics for TT fonts, normally we override them in the
767
         * metrics callbacks, but those only work for incremental interface fonts, and TrueType fonts
768
         * loaded as CIDFont replacements are not incrementally handled. So here, if its a CIDFont, and
769
         * its not type 1 outlines, and its not a vertical mode fotn, ignore the advance.
770
         */
771
797k
        if (a_fapi_font->is_type1
772
797k
           || ((a_fapi_font->full_font_buf || a_fapi_font->font_file_path)
773
682k
           && a_fapi_font->is_vertical &&  FT_HAS_VERTICAL(ft_face))) {
774
775
682k
            vadv = ft_face->glyph->linearVertAdvance;
776
682k
        }
777
114k
        else {
778
114k
            vadv = 0;
779
114k
        }
780
781
797k
        a_metrics->bbox_x0 = hx;
782
797k
        a_metrics->bbox_y0 = hy - h;
783
797k
        a_metrics->bbox_x1 = a_metrics->bbox_x0 + w;
784
797k
        a_metrics->bbox_y1 = a_metrics->bbox_y0 + h;
785
797k
        a_metrics->escapement = ft_face->glyph->linearHoriAdvance;
786
797k
        a_metrics->v_escapement = vadv;
787
797k
        a_metrics->em_x = ft_face->units_per_EM;
788
797k
        a_metrics->em_y = ft_face->units_per_EM;
789
797k
    }
790
791
799k
    if ((!ft_error || !ft_error_fb)) {
792
793
797k
        FT_BBox cbox;
794
795
        /* compute the control box, and grid fit it - lifted from ft_raster1_render() */
796
797k
        FT_Outline_Get_CBox(&ft_face->glyph->outline, &cbox);
797
798
        /* These round operations are only to preserve behaviour compared to the 9.00 release
799
           which used the bitmap dimensions as calculated by Freetype.
800
           But FT_PIX_FLOOR/FT_PIX_CEIL aren't public.
801
         */
802
797k
        cbox.xMin = ((cbox.xMin) & ~63);        /* FT_PIX_FLOOR( cbox.xMin ) */
803
797k
        cbox.yMin = ((cbox.yMin) & ~63);
804
797k
        cbox.xMax = (((cbox.xMax) + 63) & ~63);
805
797k
        cbox.yMax = (((cbox.yMax) + 63) & ~63); /* FT_PIX_CEIL( cbox.yMax ) */
806
807
797k
        w = (FT_UInt) ((cbox.xMax - cbox.xMin) >> 6);
808
797k
        h = (FT_UInt) ((cbox.yMax - cbox.yMin) >> 6);
809
810
797k
        if (!a_fapi_font->metrics_only && a_bitmap == true && ft_face->glyph->format != FT_GLYPH_FORMAT_BITMAP
811
797k
            && ft_face->glyph->format != FT_GLYPH_FORMAT_COMPOSITE) {
812
617k
            if ((bitmap_raster(w) * h) < max_bitmap) {
813
577k
                FT_Render_Mode mode = FT_RENDER_MODE_MONO;
814
815
577k
                ft_error = FT_Render_Glyph(ft_face->glyph, mode);
816
577k
                if (ft_error != 0) {
817
2
                    (*a_glyph) = NULL;
818
2
                    return (gs_error_VMerror);
819
2
                }
820
577k
            }
821
39.7k
            else {
822
39.7k
                (*a_glyph) = NULL;
823
39.7k
                return (gs_error_VMerror);
824
39.7k
            }
825
617k
        }
826
797k
    }
827
828
759k
    if (!a_fapi_font->metrics_only) {
829
        /* The following works around the fact that at the scales we deal with
830
         * these values may not fit in a 16.16 fixed point value, and thus cause
831
         * freetype to error due to overflow - but we don't use these values
832
         * and neither does freetype, we can set them to zero and avoid the error
833
         */
834
639k
        ft_face->glyph->advance.x = ft_face->glyph->advance.y = 0;
835
639k
        if ((!ft_error || !ft_error_fb) && a_glyph) {
836
637k
            ft_error = FT_Get_Glyph(ft_face->glyph, a_glyph);
837
637k
        }
838
1.81k
        else {
839
1.81k
            if (ft_face->glyph->format == FT_GLYPH_FORMAT_BITMAP) {
840
0
                FT_BitmapGlyph bmg;
841
842
0
                ft_error = FT_Get_Glyph(ft_face->glyph, (FT_Glyph *) & bmg);
843
0
                if (!ft_error) {
844
0
                    FT_Bitmap_Done(s->freetype_library, &bmg->bitmap);
845
0
                    FF_free(s->ftmemory, bmg);
846
0
                }
847
0
            }
848
1.81k
            else if (ft_face->glyph->format == FT_GLYPH_FORMAT_OUTLINE) {
849
1.11k
                FT_OutlineGlyph olg;
850
851
1.11k
                ft_error = FT_Get_Glyph(ft_face->glyph, (FT_Glyph *) & olg);
852
1.11k
                if (!ft_error) {
853
1.11k
                    FT_Outline_Done(s->freetype_library, &olg->outline);
854
1.11k
                    FF_free(s->ftmemory, olg);
855
1.11k
                }
856
1.11k
            }
857
1.81k
        }
858
639k
    }
859
860
759k
    if (ft_error == FT_Err_Too_Many_Hints) {
861
#ifdef DEBUG
862
        if (gs_debug_c('1')) {
863
            ft_emprintf1(a_fapi_font->memory,
864
                      "TrueType glyph %"PRId64" uses more instructions than the declared maximum in the font.",
865
                      a_char_ref->char_codes[0]);
866
867
            if (!ft_error_fb) {
868
                ft_emprintf(a_fapi_font->memory,
869
                         " Continuing, falling back to notdef\n\n");
870
            }
871
        }
872
#endif
873
0
        if (!ft_error_fb)
874
0
            ft_error = 0;
875
0
    }
876
759k
    if (ft_error == FT_Err_Invalid_Argument) {
877
#ifdef DEBUG
878
        if (gs_debug_c('1')) {
879
            ft_emprintf1(a_fapi_font->memory,
880
                      "TrueType parsing error in glyph %"PRId64" in the font.",
881
                      a_char_ref->char_codes[0]);
882
883
            if (!ft_error_fb) {
884
                ft_emprintf(a_fapi_font->memory,
885
                         " Continuing, falling back to notdef\n\n");
886
            }
887
        }
888
#endif
889
702
        if (!ft_error_fb)
890
0
            ft_error = 0;
891
702
    }
892
759k
    if (ft_error == FT_Err_Too_Many_Function_Defs) {
893
#ifdef DEBUG
894
        if (gs_debug_c('1')) {
895
            ft_emprintf1(a_fapi_font->memory,
896
                      "TrueType instruction error in glyph %"PRId64" in the font.",
897
                      a_char_ref->char_codes[0]);
898
899
            if (!ft_error_fb) {
900
                ft_emprintf(a_fapi_font->memory,
901
                         " Continuing, falling back to notdef\n\n");
902
            }
903
        }
904
#endif
905
0
        if (!ft_error_fb)
906
0
            ft_error = 0;
907
0
    }
908
759k
    if (ft_error == FT_Err_Invalid_Glyph_Index) {
909
#ifdef DEBUG
910
        if (gs_debug_c('1')) {
911
            ft_emprintf1(a_fapi_font->memory,
912
                      "FreeType is unable to find the glyph %"PRId64" in the font.",
913
                      a_char_ref->char_codes[0]);
914
915
            if (!ft_error_fb) {
916
                ft_emprintf(a_fapi_font->memory,
917
                         " Continuing, falling back to notdef\n\n");
918
            }
919
        }
920
#endif
921
0
        if (!ft_error_fb)
922
0
            ft_error = 0;
923
0
    }
924
759k
    return ft_to_gs_error(ft_error);
925
799k
}
926
927
/*
928
 * Ensure that the rasterizer is open.
929
 *
930
 * In the case of FreeType this means creating the FreeType library object.
931
 */
932
static gs_fapi_retcode
933
gs_fapi_ft_ensure_open(gs_fapi_server * a_server, const char * server_param,
934
                       int server_param_size)
935
57.1k
{
936
57.1k
    ff_server *s = (ff_server *) a_server;
937
57.1k
    FT_UInt tt_ins_version = TT_INTERPRETER_VERSION_35;
938
57.1k
    FT_Error ft_error;
939
940
57.1k
    if (s->freetype_library)
941
52.9k
        return 0;
942
943
    /* As we want FT to use our memory management, we cannot use the convenience of
944
     * FT_Init_FreeType(), we have to do each stage "manually"
945
     */
946
4.13k
    s->ftmemory->user = s->mem;
947
4.13k
    s->ftmemory->alloc = FF_alloc;
948
4.13k
    s->ftmemory->free = FF_free;
949
4.13k
    s->ftmemory->realloc = FF_realloc;
950
951
4.13k
    ft_error = FT_New_Library(s->ftmemory, &s->freetype_library);
952
4.13k
    if (ft_error)
953
0
        return ft_to_gs_error(ft_error);
954
955
4.13k
    FT_Add_Default_Modules(s->freetype_library);
956
4.13k
    FT_Property_Set( s->freetype_library, "truetype", "interpreter-version", &tt_ins_version);
957
958
4.13k
    return 0;
959
4.13k
}
960
961
#if 0                           /* Not currently used */
962
static void
963
transform_concat(FT_Matrix * a_A, const FT_Matrix * a_B)
964
{
965
    FT_Matrix result = *a_B;
966
967
    FT_Matrix_Multiply(a_A, &result);
968
    *a_A = result;
969
}
970
971
/* Create a transform representing an angle defined as a vector. */
972
static void
973
make_rotation(FT_Matrix * a_transform, const FT_Vector * a_vector)
974
{
975
    FT_Fixed length, cos, sin;
976
977
    if (a_vector->x >= 0 && a_vector->y == 0) {
978
        a_transform->xx = a_transform->yy = 65536;
979
        a_transform->xy = a_transform->yx = 0;
980
        return;
981
    }
982
983
    length = FT_Vector_Length((FT_Vector *) a_vector);
984
    cos = FT_DivFix(a_vector->x, length);
985
    sin = FT_DivFix(a_vector->y, length);
986
    a_transform->xx = a_transform->yy = cos;
987
    a_transform->xy = -sin;
988
    a_transform->yx = sin;
989
}
990
#endif /* Not currently used */
991
992
/* Divide a transformation into a scaling part and a rotation-and-shear part.
993
 * The scaling part is used for setting the pixel size for hinting.
994
 */
995
static void
996
transform_decompose(FT_Matrix * a_transform, FT_UInt * xresp, FT_UInt * yresp,
997
                    FT_Fixed * a_x_scale, FT_Fixed * a_y_scale, int units_per_EM)
998
213k
{
999
213k
    double scalex, scaley, fact = 1.0;
1000
213k
    double factx = 1.0, facty = 1.0;
1001
213k
    FT_Matrix ftscale_mat;
1002
213k
    FT_UInt xres;
1003
213k
    FT_UInt yres;
1004
    /* We have to account for units_per_EM as we fiddle with the scaling
1005
     * in order to avoid underflow (mostly in the TTF hinting code), but
1006
     * we also want to clamp to a lower value (512, admittedly arrived at
1007
     * via experimentation) in order to preserve the fidelity of the outlines.
1008
     */
1009
213k
    double upe = units_per_EM > 512 ? (float)units_per_EM : 512.0;
1010
1011
213k
    scalex = hypot((double)a_transform->xx, (double)a_transform->xy);
1012
213k
    scaley = hypot((double)a_transform->yx, (double)a_transform->yy);
1013
1014
    /* In addition to all the wrangling below, we have to make sure that
1015
     * that the contents of a_transform can also be understood by Freetype.
1016
     */
1017
213k
    if (scalex < 64.0 || scaley < 64.0) {
1018
178
        factx = 64.0/scalex;
1019
178
        facty = 64.0/scaley;
1020
1021
178
        ftscale_mat.xx = (FT_Fixed)(a_transform->xx * factx);
1022
178
        ftscale_mat.xy = (FT_Fixed)(a_transform->xy * facty);
1023
178
        ftscale_mat.yx = (FT_Fixed)(a_transform->yx * factx);
1024
178
        ftscale_mat.yy = (FT_Fixed)(a_transform->yy * facty);
1025
178
        memcpy(a_transform, &ftscale_mat, sizeof(ftscale_mat));
1026
178
        scalex = hypot((double)a_transform->xx, (double)a_transform->xy);
1027
178
        scaley = hypot((double)a_transform->yx, (double)a_transform->yy);
1028
178
    }
1029
1030
213k
    if (*xresp != *yresp) {
1031
        /* To get good results, we have to pull the implicit scaling from
1032
         * non-square resolutions, and apply it in the matrix. This means
1033
         * we get the correct "shearing" effect for rotated glyphs.
1034
         * The previous solution was only effective for for glyphs whose
1035
         * axes were coincident with the axes of the page.
1036
         */
1037
0
        bool use_x = true;
1038
1039
0
        if (*xresp < *yresp) {
1040
0
            use_x = false;
1041
0
        }
1042
1043
0
        ftscale_mat.xx =
1044
0
            (int)(((double)(*xresp) /
1045
0
                   ((double)(use_x ? (*xresp) : (*yresp)))) * 65536);
1046
0
        ftscale_mat.xy = ftscale_mat.yx = 0;
1047
0
        ftscale_mat.yy =
1048
0
            (int)(((double)(*yresp) /
1049
0
                   ((double)(use_x ? (*xresp) : (*yresp)))) * 65536);
1050
1051
0
        FT_Matrix_Multiply(&ftscale_mat, a_transform);
1052
1053
0
        xres = yres = (use_x ? (*xresp) : (*yresp));
1054
0
        xres = (FT_UInt)(xres / factx);
1055
0
        yres = (FT_UInt)(yres / facty);
1056
0
    }
1057
213k
    else {
1058
        /* Life is considerably easier when square resolutions are in use! */
1059
213k
        xres = (FT_UInt)(*xresp / factx);
1060
213k
        yres = (FT_UInt)(*yresp / facty);
1061
213k
    }
1062
1063
213k
    scalex *= 1.0 / 65536.0;
1064
213k
    scaley *= 1.0 / 65536.0;
1065
1066
213k
    if (scalex < scaley) {
1067
13.6k
        scaley = scalex;
1068
13.6k
    }
1069
200k
    else if (scalex > scaley) {
1070
4.66k
        scalex = scaley;
1071
4.66k
    }
1072
1073
    /* FT clamps the width and height to a lower limit of 1.0 units
1074
     * (note: as FT stores it in 64ths of a unit, that is 64)
1075
     * So if either the width or the height are <1.0 here, we scale
1076
     * the width and height appropriately, and then compensate using
1077
     * the "final" matrix for FT
1078
     */
1079
    /* We use 1 1/64th to calculate the scale, so that we *guarantee* the
1080
     * scalex/y we calculate will be >64 after rounding.
1081
     */
1082
1083
213k
    if (scalex < 1.0) {
1084
68.2k
        fact = 1.016 / scalex;
1085
68.2k
        scalex = scalex * fact;
1086
68.2k
        scaley = scaley * fact;
1087
68.2k
    }
1088
1089
    /* see above */
1090
213k
    if (scalex * xres < 2268.0 / 64.0) {
1091
61
        fact = (2400.0 / 64.0) / (xres * scalex);
1092
61
        scaley *= fact;
1093
61
        scalex *= fact;
1094
61
    }
1095
1096
    /* see above */
1097
213k
    fact = 1.0;
1098
556k
    while (scaley * yres > (double)upe * 72.0 && (xres > 0 && yres > 0)
1099
556k
           && (scalex > 0.0 && scaley > 0.0)) {
1100
342k
        if (scaley < yres) {
1101
98
            xres >>= 1;
1102
98
            yres >>= 1;
1103
98
            fact *= 2.0;
1104
98
        }
1105
342k
        else {
1106
342k
            scalex /= 1.25;
1107
342k
            scaley /= 1.25;
1108
342k
        }
1109
342k
    }
1110
1111
213k
    ftscale_mat.xx = (FT_Fixed) ((65536.0 / scalex) * fact);
1112
213k
    ftscale_mat.xy = 0;
1113
213k
    ftscale_mat.yx = 0;
1114
213k
    ftscale_mat.yy = (FT_Fixed) ((65536.0 / scaley) * fact);
1115
1116
213k
    FT_Matrix_Multiply(a_transform, &ftscale_mat);
1117
213k
    memcpy(a_transform, &ftscale_mat, sizeof(FT_Matrix));
1118
1119
213k
    *xresp = xres;
1120
213k
    *yresp = yres;
1121
    /* Return values ready scaled for FT */
1122
213k
    *a_x_scale = (FT_Fixed) (scalex * 64);
1123
213k
    *a_y_scale = (FT_Fixed) (scaley * 64);
1124
213k
}
1125
1126
/*
1127
 * Open a font and set its size.
1128
 */
1129
static gs_fapi_retcode
1130
gs_fapi_ft_get_scaled_font(gs_fapi_server * a_server, gs_fapi_font * a_font,
1131
                const gs_fapi_font_scale * a_font_scale,
1132
                const char *a_map, gs_fapi_descendant_code a_descendant_code)
1133
214k
{
1134
214k
    ff_server *s = (ff_server *) a_server;
1135
214k
    ff_face *face = (ff_face *) a_font->server_font_data;
1136
214k
    FT_Error ft_error = 0;
1137
214k
    int i, j, code;
1138
214k
    FT_CharMap cmap = NULL;
1139
214k
    bool data_owned = true;
1140
1141
214k
    if (s->bitmap_glyph) {
1142
0
        FT_Bitmap_Done(s->freetype_library, &s->bitmap_glyph->bitmap);
1143
0
        FF_free(s->ftmemory, s->bitmap_glyph);
1144
0
        s->bitmap_glyph = NULL;
1145
0
    }
1146
214k
    if (s->outline_glyph) {
1147
0
        FT_Outline_Done(s->freetype_library, &s->outline_glyph->outline);
1148
0
        FF_free(s->ftmemory, s->outline_glyph);
1149
0
        s->outline_glyph = NULL;
1150
0
    }
1151
1152
    /* dpf("gs_fapi_ft_get_scaled_font enter: is_type1=%d is_cid=%d font_file_path='%s' a_descendant_code=%d\n",
1153
       a_font->is_type1, a_font->is_cid, a_font->font_file_path ? a_font->font_file_path : "", a_descendant_code); */
1154
1155
    /* If this font is the top level font of an embedded CID type 0 font (font type 9)
1156
     * do nothing. See the comment in FAPI_prepare_font. The descendant fonts are
1157
     * passed in individually.
1158
     */
1159
214k
    if (a_font->is_cid && a_font->is_type1 && a_font->font_file_path == NULL
1160
214k
        && (a_descendant_code == gs_fapi_toplevel_begin
1161
621
            || a_descendant_code == gs_fapi_toplevel_complete)) {
1162
        /* dpf("gs_fapi_ft_get_scaled_font return 0\n"); */
1163
302
        return 0;
1164
302
    }
1165
1166
    /* Create the face if it doesn't already exist. */
1167
213k
    if (!face) {
1168
56.9k
        FT_Face ft_face = NULL;
1169
56.9k
        FT_Parameter ft_param;
1170
56.9k
        FT_Incremental_InterfaceRec *ft_inc_int = NULL;
1171
56.9k
        unsigned char *own_font_data = NULL;
1172
56.9k
        int own_font_data_len = -1;
1173
56.9k
        FT_Stream ft_strm = NULL;
1174
1175
        /* dpf("gs_fapi_ft_get_scaled_font creating face\n"); */
1176
1177
56.9k
        if (a_font->full_font_buf) {
1178
1179
1.11k
            own_font_data =
1180
1.11k
                gs_malloc(((gs_memory_t *) (s->ftmemory->user)),
1181
1.11k
                          a_font->full_font_buf_len, 1,
1182
1.11k
                          "gs_fapi_ft_get_scaled_font - full font buf");
1183
1.11k
            if (!own_font_data) {
1184
0
                return_error(gs_error_VMerror);
1185
0
            }
1186
1187
1.11k
            own_font_data_len = a_font->full_font_buf_len;
1188
1.11k
            memcpy(own_font_data, a_font->full_font_buf,
1189
1.11k
                   a_font->full_font_buf_len);
1190
1191
1.11k
            ft_error =
1192
1.11k
                FT_New_Memory_Face(s->freetype_library,
1193
1.11k
                                   (const FT_Byte *)own_font_data,
1194
1.11k
                                   own_font_data_len, a_font->subfont,
1195
1.11k
                                   &ft_face);
1196
1197
1.11k
            if (ft_error) {
1198
70
                gs_memory_t * mem = (gs_memory_t *) s->ftmemory->user;
1199
70
                gs_free(mem, own_font_data, 0, 0, "FF_open_read_stream");
1200
70
                return ft_to_gs_error(ft_error);
1201
70
            }
1202
1.11k
        }
1203
        /* Load a typeface from a file. */
1204
55.7k
        else if (a_font->font_file_path) {
1205
0
            FT_Open_Args args;
1206
1207
0
            memset(&args, 0x00, sizeof(args));
1208
1209
0
            if ((code =
1210
0
                 FF_open_read_stream((gs_memory_t *) (s->ftmemory->user),
1211
0
                                     (char *)a_font->font_file_path,
1212
0
                                     &ft_strm)) < 0) {
1213
0
                return (code);
1214
0
            }
1215
1216
0
            args.flags = FT_OPEN_STREAM;
1217
0
            args.stream = ft_strm;
1218
1219
0
            ft_error =
1220
0
                FT_Open_Face(s->freetype_library, &args, a_font->subfont,
1221
0
                             &ft_face);
1222
0
            if (ft_error) {
1223
                /* in the event of an error, Freetype should cleanup the stream */
1224
0
                return ft_to_gs_error(ft_error);
1225
0
            }
1226
0
        }
1227
1228
        /* Load a typeface from a representation in GhostScript's memory. */
1229
55.7k
        else {
1230
55.7k
            FT_Open_Args open_args;
1231
1232
55.7k
            open_args.flags = FT_OPEN_MEMORY;
1233
55.7k
            open_args.stream = NULL;
1234
1235
55.7k
            if (a_font->is_type1) {
1236
54.4k
                long length;
1237
54.4k
                unsigned short type = 0;
1238
1239
54.4k
                code = a_font->get_word(a_font, gs_fapi_font_feature_FontType, 0, &type);
1240
54.4k
                if (code < 0) {
1241
0
                    return code;
1242
0
                }
1243
1244
                /* Tell the FAPI interface that we need to decrypt the /Subrs data. */
1245
54.4k
                a_font->need_decrypt = true;
1246
1247
                /*
1248
                   Serialise a type 1 font in PostScript source form, or
1249
                   a Type 2 font in binary form, so that FreeType can read it.
1250
                 */
1251
54.4k
                if (type == 1)
1252
53.5k
                    length = gs_fapi_serialize_type1_font(a_font, NULL, 0);
1253
914
                else
1254
914
                    length = gs_fapi_serialize_type2_font(a_font, NULL, 0);
1255
1256
54.4k
                open_args.memory_base = own_font_data =
1257
54.4k
                    FF_alloc(s->ftmemory, length);
1258
54.4k
                if (!open_args.memory_base)
1259
10
                    return_error(gs_error_VMerror);
1260
54.4k
                own_font_data_len = length;
1261
54.4k
                if (type == 1)
1262
53.5k
                    open_args.memory_size =
1263
53.5k
                        gs_fapi_serialize_type1_font(a_font, own_font_data, length);
1264
904
                else
1265
904
                    open_args.memory_size =
1266
904
                        gs_fapi_serialize_type2_font(a_font, own_font_data, length);
1267
1268
54.4k
                if (open_args.memory_size != length)
1269
0
                    return_error(gs_error_unregistered);        /* Must not happen. */
1270
1271
54.4k
                ft_inc_int = new_inc_int(a_server, a_font);
1272
54.4k
                if (!ft_inc_int) {
1273
0
                    FF_free(s->ftmemory, own_font_data);
1274
0
                    return_error(gs_error_VMerror);
1275
0
                }
1276
54.4k
            }
1277
1278
            /* It must be type 42 (see code in FAPI_FF_get_glyph in zfapi.c). */
1279
1.36k
            else {
1280
                /* Get the length of the TrueType data. */
1281
1282
1.36k
                if (a_font->retrieve_tt_font != NULL) {
1283
1.36k
                    unsigned int ms;
1284
1.36k
                    code = a_font->retrieve_tt_font(a_font, (void **)&own_font_data, &ms);
1285
1.36k
                    if (code == 0) {
1286
1.36k
                        data_owned = false;
1287
1.36k
                        open_args.memory_base = own_font_data;
1288
1.36k
                        open_args.memory_size = own_font_data_len = ms;
1289
1.36k
                    }
1290
1.36k
                }
1291
0
                else
1292
0
                    code = gs_error_unregistered;
1293
1294
1.36k
                if (code < 0) {
1295
0
                    unsigned long lms;
1296
0
                    code = a_font->get_long(a_font, gs_fapi_font_feature_TT_size, 0, &lms);
1297
0
                    if (code < 0)
1298
0
                        return code;
1299
0
                    if (lms == 0)
1300
0
                        return_error(gs_error_invalidfont);
1301
1302
0
                    open_args.memory_size = (FT_Long)lms;
1303
1304
                    /* Load the TrueType data into a single buffer. */
1305
0
                    open_args.memory_base = own_font_data =
1306
0
                        FF_alloc(s->ftmemory, open_args.memory_size);
1307
0
                    if (!own_font_data)
1308
0
                        return_error(gs_error_VMerror);
1309
1310
0
                    own_font_data_len = open_args.memory_size;
1311
1312
0
                    code = a_font->serialize_tt_font(a_font, own_font_data,
1313
0
                                          open_args.memory_size);
1314
0
                    if (code < 0)
1315
0
                        return code;
1316
0
                }
1317
1318
                /* We always load incrementally. */
1319
1.36k
                ft_inc_int = new_inc_int(a_server, a_font);
1320
1.36k
                if (!ft_inc_int) {
1321
0
                    if (data_owned)
1322
0
                        FF_free(s->ftmemory, own_font_data);
1323
0
                    return_error(gs_error_VMerror);
1324
0
                }
1325
1.36k
            }
1326
1327
55.7k
            if (ft_inc_int) {
1328
55.7k
                open_args.flags =
1329
55.7k
                    (FT_UInt) (open_args.flags | FT_OPEN_PARAMS);
1330
55.7k
                ft_param.tag = FT_PARAM_TAG_INCREMENTAL;
1331
55.7k
                ft_param.data = ft_inc_int;
1332
55.7k
                open_args.num_params = 1;
1333
55.7k
                open_args.params = &ft_param;
1334
55.7k
            }
1335
55.7k
            ft_error =
1336
55.7k
                FT_Open_Face(s->freetype_library, &open_args, a_font->subfont,
1337
55.7k
                             &ft_face);
1338
55.7k
            if (ft_error) {
1339
76
                delete_inc_int (a_server, ft_inc_int);
1340
76
                if (data_owned)
1341
4
                    FF_free(s->ftmemory, own_font_data);
1342
76
                return ft_to_gs_error(ft_error);
1343
76
            }
1344
55.7k
        }
1345
1346
56.7k
        if (ft_face) {
1347
56.7k
            face =
1348
56.7k
                new_face(a_server, ft_face, ft_inc_int, ft_strm,
1349
56.7k
                         own_font_data, own_font_data_len, data_owned);
1350
56.7k
            if (!face) {
1351
0
                if (data_owned)
1352
0
                    FF_free(s->ftmemory, own_font_data);
1353
0
                FT_Done_Face(ft_face);
1354
0
                delete_inc_int(a_server, ft_inc_int);
1355
0
                return_error(gs_error_VMerror);
1356
0
            }
1357
56.7k
            a_font->server_font_data = face;
1358
1359
56.7k
            if (!a_font->is_type1) {
1360
6.47k
                for (i = 0; i < GS_FAPI_NUM_TTF_CMAP_REQ && !cmap; i++) {
1361
4.57k
                    if (a_font->ttf_cmap_req[i].platform_id > 0) {
1362
7.22k
                        for (j = 0; j < face->ft_face->num_charmaps; j++) {
1363
4.99k
                            if (FT_Get_CMap_Format(face->ft_face->charmaps[j]) >= 0
1364
4.99k
                             && face->ft_face->charmaps[j]->platform_id == a_font->ttf_cmap_req[i].platform_id
1365
4.99k
                             && face->ft_face->charmaps[j]->encoding_id == a_font->ttf_cmap_req[i].encoding_id) {
1366
1367
1.90k
                                cmap = face->ft_face->charmaps[j];
1368
1.90k
                                break;
1369
1.90k
                            }
1370
4.99k
                        }
1371
4.13k
                    }
1372
439
                    else {
1373
439
                        break;
1374
439
                    }
1375
4.57k
                }
1376
2.33k
                if (cmap) {
1377
1.90k
                    (void)FT_Set_Charmap(face->ft_face, cmap);
1378
1.90k
                }
1379
439
                else if (a_font->full_font_buf != NULL || a_font->font_file_path != NULL) {
1380
                    /* If we've passed a complete TTF to Freetype, but *haven't* requested a
1381
                     * specific cmap table above, try to use a Unicode one
1382
                     * If that doesn't work, just leave the default in place.
1383
                     */
1384
314
                    (void)FT_Select_Charmap(face->ft_face, ft_encoding_unicode);
1385
314
                }
1386
                /* For PDF, we have to know which cmap table actually was selected */
1387
2.33k
                if (face->ft_face->charmap != NULL) {
1388
1.94k
                    a_font->ttf_cmap_selected.platform_id = face->ft_face->charmap->platform_id;
1389
1.94k
                    a_font->ttf_cmap_selected.encoding_id = face->ft_face->charmap->encoding_id;
1390
1.94k
                }
1391
396
                else {
1392
                    /* Just in case */
1393
396
                    a_font->ttf_cmap_selected.platform_id = -1;
1394
396
                    a_font->ttf_cmap_selected.encoding_id = -1;
1395
396
                }
1396
2.33k
            }
1397
54.4k
            else {
1398
                /* Just in case */
1399
54.4k
                a_font->ttf_cmap_selected.platform_id = -1;
1400
54.4k
                a_font->ttf_cmap_selected.encoding_id = -1;
1401
54.4k
            }
1402
56.7k
        }
1403
0
        else
1404
0
            a_font->server_font_data = NULL;
1405
56.7k
    }
1406
1407
    /* Set the point size and transformation.
1408
     * The matrix is scaled by the shift specified in the server, 16,
1409
     * so we divide by 65536 when converting to a gs_matrix.
1410
     */
1411
213k
    if (face) {
1412
        /* Convert the GS transform into an FT transform.
1413
         * Ignore the translation elements because they contain very large values
1414
         * derived from the current transformation matrix and so are of no use.
1415
         */
1416
213k
        face->ft_transform.xx = a_font_scale->matrix[0];
1417
213k
        face->ft_transform.xy = a_font_scale->matrix[2];
1418
213k
        face->ft_transform.yx = a_font_scale->matrix[1];
1419
213k
        face->ft_transform.yy = a_font_scale->matrix[3];
1420
1421
213k
        face->horz_res = a_font_scale->HWResolution[0] >> 16;
1422
213k
        face->vert_res = a_font_scale->HWResolution[1] >> 16;
1423
1424
        /* Split the transform into scale factors and a rotation-and-shear
1425
         * transform.
1426
         */
1427
213k
        transform_decompose(&face->ft_transform, &face->horz_res,
1428
213k
                            &face->vert_res, &face->width, &face->height, face->ft_face->units_per_EM);
1429
1430
213k
        ft_error = FT_Set_Char_Size(face->ft_face, face->width, face->height,
1431
213k
                                    face->horz_res, face->vert_res);
1432
1433
213k
        if (ft_error) {
1434
            /* The code originally cleaned up the face data here, but the "top level"
1435
               font object still has references to the face data, and we've no way
1436
               to tell it it's gone. So we defer releasing the data until the garbage
1437
               collector collects the font object, and the font's finalize call will
1438
               free the data correctly for us.
1439
             */
1440
2
            return ft_to_gs_error(ft_error);
1441
2
        }
1442
1443
        /* Concatenate the transform to a reflection around (y=0) so that it
1444
         * produces a glyph that is upside down in FreeType terms, with its
1445
         * first row at the bottom. That is what GhostScript needs.
1446
         */
1447
1448
213k
        FT_Set_Transform(face->ft_face, &face->ft_transform, NULL);
1449
1450
213k
    }
1451
1452
    /* dpf("gs_fapi_ft_get_scaled_font return %d\n", a_font->server_font_data ? 0 : -1); */
1453
213k
    return a_font->server_font_data ? 0 : -1;
1454
213k
}
1455
1456
/*
1457
 * Return the name of a resource which maps names to character codes. Do this
1458
 * by setting a_decoding_id to point to a null-terminated string. The resource
1459
 * is in the 'decoding' directory in the directory named by /GenericResourceDir
1460
 * in lib/gs_res.ps.
1461
 */
1462
static gs_fapi_retcode
1463
gs_fapi_ft_get_decodingID(gs_fapi_server * a_server, gs_fapi_font * a_font,
1464
               const char **a_decoding_id)
1465
1.34k
{
1466
1.34k
    *a_decoding_id = "Unicode";
1467
1.34k
    return 0;
1468
1.34k
}
1469
1470
/*
1471
 * Get the font bounding box in font units.
1472
 */
1473
static gs_fapi_retcode
1474
gs_fapi_ft_get_font_bbox(gs_fapi_server * a_server, gs_fapi_font * a_font, int a_box[4], int unitsPerEm[2])
1475
47.4k
{
1476
47.4k
    ff_face *face = (ff_face *) a_font->server_font_data;
1477
1478
47.4k
    a_box[0] = face->ft_face->bbox.xMin;
1479
47.4k
    a_box[1] = face->ft_face->bbox.yMin;
1480
47.4k
    a_box[2] = face->ft_face->bbox.xMax;
1481
47.4k
    a_box[3] = face->ft_face->bbox.yMax;
1482
1483
47.4k
    unitsPerEm[0] = unitsPerEm[1] = face->ft_face->units_per_EM;
1484
1485
47.4k
    return 0;
1486
47.4k
}
1487
1488
/*
1489
 * Return a boolean value in a_proportional stating whether the font is proportional
1490
 * or fixed-width.
1491
 */
1492
static gs_fapi_retcode
1493
gs_fapi_ft_get_font_proportional_feature(gs_fapi_server * a_server,
1494
                              gs_fapi_font * a_font, bool * a_proportional)
1495
0
{
1496
0
    *a_proportional = true;
1497
0
    return 0;
1498
0
}
1499
1500
/* Convert the character name in a_char_ref.char_name to a character code or
1501
 * glyph index and put it in a_char_ref.char_code, setting
1502
 * a_char_ref.is_glyph_index as appropriate. If this is possible set a_result
1503
 * to true, otherwise set it to false.  The return value is a standard error
1504
 * return code.
1505
 */
1506
static gs_fapi_retcode
1507
gs_fapi_ft_can_retrieve_char_by_name(gs_fapi_server * a_server, gs_fapi_font * a_font,
1508
                          gs_fapi_char_ref * a_char_ref, bool * a_result)
1509
0
{
1510
0
    ff_face *face = (ff_face *) a_font->server_font_data;
1511
0
    char name[128];
1512
1513
0
    if (FT_HAS_GLYPH_NAMES(face->ft_face)
1514
0
        && a_char_ref->char_name_length < sizeof(name)) {
1515
0
        memcpy(name, a_char_ref->char_name, a_char_ref->char_name_length);
1516
0
        name[a_char_ref->char_name_length] = 0;
1517
0
        a_char_ref->char_codes[0] = FT_Get_Name_Index(face->ft_face, name);
1518
0
        *a_result = a_char_ref->char_codes[0] != 0;
1519
0
        if (*a_result)
1520
0
            a_char_ref->is_glyph_index = true;
1521
0
    }
1522
0
    else
1523
0
        *a_result = false;
1524
0
    return 0;
1525
0
}
1526
1527
/*
1528
 * Return non-zero if the metrics can be replaced.
1529
 */
1530
static gs_fapi_retcode
1531
gs_fapi_ft_can_replace_metrics(gs_fapi_server * a_server, gs_fapi_font * a_font,
1532
                    gs_fapi_char_ref * a_char_ref, int *a_result)
1533
758k
{
1534
    /* Replace metrics only if the metrics are supplied in font units. */
1535
758k
    *a_result = 1;
1536
758k
    return 0;
1537
758k
}
1538
1539
/*
1540
 * Retrieve the metrics of a_char_ref and put them in a_metrics.
1541
 */
1542
static gs_fapi_retcode
1543
gs_fapi_ft_get_char_width(gs_fapi_server * a_server, gs_fapi_font * a_font,
1544
               gs_fapi_char_ref * a_char_ref, gs_fapi_metrics * a_metrics)
1545
0
{
1546
0
    ff_server *s = (ff_server *) a_server;
1547
1548
0
    return load_glyph(a_server, a_font, a_char_ref, a_metrics,
1549
0
                      (FT_Glyph *) & s->outline_glyph,
1550
0
                      false, a_server->max_bitmap);
1551
0
}
1552
1553
static gs_fapi_retcode
1554
gs_fapi_ft_get_fontmatrix(gs_fapi_server * server, gs_matrix * m)
1555
1.52M
{
1556
1.52M
    m->xx = 1.0;
1557
1.52M
    m->xy = 0.0;
1558
1.52M
    m->yx = 0.0;
1559
1.52M
    m->yy = 1.0;
1560
1.52M
    m->tx = 0.0;
1561
1.52M
    m->ty = 0.0;
1562
1.52M
    return 0;
1563
1.52M
}
1564
1565
/*
1566
 * Rasterize the character a_char and return its metrics. Do not return the
1567
 * bitmap but store this. It can be retrieved by a subsequent call to
1568
 * gs_fapi_ft_get_char_raster.
1569
 */
1570
static gs_fapi_retcode
1571
gs_fapi_ft_get_char_raster_metrics(gs_fapi_server * a_server, gs_fapi_font * a_font,
1572
                        gs_fapi_char_ref * a_char_ref,
1573
                        gs_fapi_metrics * a_metrics)
1574
619k
{
1575
619k
    ff_server *s = (ff_server *) a_server;
1576
619k
    gs_fapi_retcode error =
1577
619k
        load_glyph(a_server, a_font, a_char_ref, a_metrics,
1578
619k
                   (FT_Glyph *) & s->bitmap_glyph, true,
1579
619k
                   a_server->max_bitmap);
1580
619k
    return error;
1581
619k
}
1582
1583
/*
1584
 * Return the bitmap created by the last call to gs_fapi_ft_get_char_raster_metrics.
1585
 */
1586
static gs_fapi_retcode
1587
gs_fapi_ft_get_char_raster(gs_fapi_server * a_server, gs_fapi_raster * a_raster)
1588
754k
{
1589
754k
    ff_server *s = (ff_server *) a_server;
1590
1591
754k
    if (!s->bitmap_glyph)
1592
176k
        return(gs_error_unregistered);
1593
577k
    a_raster->p = s->bitmap_glyph->bitmap.buffer;
1594
577k
    a_raster->width = s->bitmap_glyph->bitmap.width;
1595
577k
    a_raster->height = s->bitmap_glyph->bitmap.rows;
1596
577k
    a_raster->line_step = s->bitmap_glyph->bitmap.pitch;
1597
577k
    a_raster->orig_x = s->bitmap_glyph->left * 16;
1598
577k
    a_raster->orig_y = s->bitmap_glyph->top * 16;
1599
577k
    a_raster->left_indent = a_raster->top_indent = a_raster->black_height =
1600
577k
        a_raster->black_width = 0;
1601
577k
    return 0;
1602
754k
}
1603
1604
/*
1605
 * Create an outline for the character a_char and return its metrics. Do not
1606
 * return the outline but store this.
1607
 * It can be retrieved by a subsequent call to gs_fapi_ft_get_char_outline.
1608
 */
1609
static gs_fapi_retcode
1610
gs_fapi_ft_get_char_outline_metrics(gs_fapi_server * a_server, gs_fapi_font * a_font,
1611
                         gs_fapi_char_ref * a_char_ref,
1612
                         gs_fapi_metrics * a_metrics)
1613
180k
{
1614
180k
    ff_server *s = (ff_server *) a_server;
1615
1616
180k
    return load_glyph(a_server, a_font, a_char_ref, a_metrics,
1617
180k
                      (FT_Glyph *) & s->outline_glyph, false,
1618
180k
                      a_server->max_bitmap);
1619
180k
}
1620
1621
typedef struct FF_path_info_s
1622
{
1623
    gs_fapi_path *path;
1624
    int64_t x;
1625
    int64_t y;
1626
    FT_Vector currentp;
1627
} FF_path_info;
1628
1629
static inline int
1630
FF_points_equal(const FT_Vector *p1, const FT_Vector *p2)
1631
536k
{
1632
536k
    if (p1->x == p2->x && p1->y == p2->y)
1633
187
        return 1;
1634
536k
    else
1635
536k
        return 0;
1636
536k
}
1637
1638
static int
1639
move_to(const FT_Vector * aTo, void *aObject)
1640
72.6k
{
1641
72.6k
    FF_path_info *p = (FF_path_info *) aObject;
1642
1643
72.6k
    p->currentp = *aTo;
1644
1645
    /* FAPI expects that co-ordinates will be as implied by frac_shift
1646
     * in our case 16.16 fixed precision. True for 'low level' FT
1647
     * routines (apparently), it isn't true for these routines where
1648
     * FT returns a 26.6 format. Rescale to 16.16 so that FAPI will
1649
     * be able to convert to GS co-ordinates properly.
1650
     */
1651
    /* FAPI now expects these coordinates in 32.32 */
1652
72.6k
    p->x = ((int64_t) aTo->x) << 26;
1653
72.6k
    p->y = ((int64_t) aTo->y) << 26;
1654
1655
72.6k
    return p->path->moveto(p->path, p->x, p->y) ? -1 : 0;
1656
72.6k
}
1657
1658
static int
1659
line_to(const FT_Vector * aTo, void *aObject)
1660
246k
{
1661
246k
    FF_path_info *p = (FF_path_info *) aObject;
1662
1663
246k
    if (!FF_points_equal(&p->currentp, aTo)) {
1664
246k
        p->currentp = *aTo;
1665
1666
        /* See move_to() above */
1667
246k
        p->x = ((int64_t) aTo->x) << 26;
1668
246k
        p->y = ((int64_t) aTo->y) << 26;
1669
1670
246k
        return p->path->lineto(p->path, p->x, p->y) ? -1 : 0;
1671
246k
    }
1672
37
    return 0;
1673
246k
}
1674
1675
static int
1676
conic_to(const FT_Vector * aControl, const FT_Vector * aTo, void *aObject)
1677
42.0k
{
1678
42.0k
    FF_path_info *p = (FF_path_info *) aObject;
1679
42.0k
    double x, y, Controlx, Controly;
1680
42.0k
    int64_t Control1x, Control1y, Control2x, Control2y;
1681
42.0k
    double sx, sy;
1682
1683
42.0k
    if (!FF_points_equal(&p->currentp, aControl) ||
1684
42.0k
        !FF_points_equal(&p->currentp, aTo) ||
1685
42.0k
        !FF_points_equal(aControl, aTo)) {
1686
42.0k
        p->currentp = *aTo;
1687
1688
        /* More complicated than above, we need to do arithmetic on the
1689
         * co-ordinates, so we want them as floats and we will convert the
1690
         * result into 16.16 fixed precision for FAPI
1691
         *
1692
         * NB this code is funcitonally the same as the original, but I don't believe
1693
         * the comment (below) to be what the code is actually doing....
1694
         *
1695
         * NB2: the comment below was wrong, even though the code was correct(!!)
1696
         * The comment has now been amended.
1697
         *
1698
         * Convert a quadratic spline to a cubic. Do this by changing the three points
1699
         * A, B and C to A, 2/3(B,A), 2/3(B,C), C - that is, the two cubic control points are
1700
         * a third of the way from the single quadratic control point to the end points. This
1701
         * gives the same curve as the original quadratic.
1702
         */
1703
1704
42.0k
        sx = (double) (p->x >> 32);
1705
42.0k
        sy = (double) (p->y >> 32);
1706
1707
42.0k
        x = aTo->x / 64.0;
1708
42.0k
        p->x = ((int64_t) float2fixed(x)) << 24;
1709
42.0k
        y = aTo->y / 64.0;
1710
42.0k
        p->y = ((int64_t) float2fixed(y)) << 24;
1711
42.0k
        Controlx = aControl->x / 64.0;
1712
42.0k
        Controly = aControl->y / 64.0;
1713
1714
42.0k
        Control1x = ((int64_t) float2fixed((sx + Controlx * 2) / 3)) << 24;
1715
42.0k
        Control1y = ((int64_t) float2fixed((sy + Controly * 2) / 3)) << 24;
1716
42.0k
        Control2x = ((int64_t) float2fixed((x + Controlx * 2) / 3)) << 24;
1717
42.0k
        Control2y = ((int64_t) float2fixed((y + Controly * 2) / 3)) << 24;
1718
1719
42.0k
        return p->path->curveto(p->path, Control1x,
1720
42.0k
                                Control1y,
1721
42.0k
                                Control2x, Control2y, p->x, p->y) ? -1 : 0;
1722
42.0k
    }
1723
14
    return 0;
1724
42.0k
}
1725
1726
static int
1727
cubic_to(const FT_Vector * aControl1, const FT_Vector * aControl2,
1728
         const FT_Vector * aTo, void *aObject)
1729
248k
{
1730
248k
    FF_path_info *p = (FF_path_info *) aObject;
1731
248k
    int64_t Control1x, Control1y, Control2x, Control2y;
1732
1733
248k
    if (!FF_points_equal(&p->currentp, aControl1) ||
1734
248k
        !FF_points_equal(&p->currentp, aControl2) ||
1735
248k
        !FF_points_equal(&p->currentp, aTo) ||
1736
248k
        !FF_points_equal(aControl1, aControl2) ||
1737
248k
        !FF_points_equal(aControl1, aTo) ||
1738
248k
        !FF_points_equal(aControl2, aTo)) {
1739
248k
        p->currentp = *aTo;
1740
1741
        /* See move_to() above */
1742
248k
        p->x = ((int64_t) aTo->x) << 26;
1743
248k
        p->y = ((int64_t) aTo->y) << 26;
1744
1745
248k
        Control1x = ((int64_t) aControl1->x) << 26;
1746
248k
        Control1y = ((int64_t) aControl1->y) << 26;
1747
248k
        Control2x = ((int64_t) aControl2->x) << 26;
1748
248k
        Control2y = ((int64_t) aControl2->y) << 26;
1749
248k
        return p->path->curveto(p->path, Control1x, Control1y, Control2x,
1750
248k
                                Control2y, p->x, p->y) ? -1 : 0;
1751
248k
    }
1752
0
    return 0;
1753
248k
}
1754
1755
static const FT_Outline_Funcs TheFtOutlineFuncs = {
1756
    move_to,
1757
    line_to,
1758
    conic_to,
1759
    cubic_to,
1760
    0,
1761
    0
1762
};
1763
1764
/*
1765
 * Return the outline created by the last call to gs_fapi_ft_get_char_outline_metrics.
1766
 */
1767
static gs_fapi_retcode
1768
gs_fapi_ft_get_char_outline(gs_fapi_server * a_server, gs_fapi_path * a_path)
1769
60.0k
{
1770
60.0k
    ff_server *s = (ff_server *) a_server;
1771
60.0k
    FF_path_info p;
1772
60.0k
    FT_Error ft_error = 0;
1773
1774
60.0k
    p.path = a_path;
1775
60.0k
    p.x = 0;
1776
60.0k
    p.y = 0;
1777
    /* If we got an error during glyph creation, we can get
1778
     * here with s->outline_glyph == NULL
1779
     */
1780
60.0k
    if (s->outline_glyph) {
1781
60.0k
        ft_error =
1782
60.0k
            FT_Outline_Decompose(&s->outline_glyph->outline, &TheFtOutlineFuncs,
1783
60.0k
                                 &p);
1784
60.0k
    }
1785
7
    else {
1786
7
        a_path->moveto(a_path, 0, 0);
1787
7
    }
1788
1789
60.0k
    if (a_path->gs_error == 0)
1790
27.8k
        a_path->closepath(a_path);
1791
60.0k
    return ft_to_gs_error(ft_error);
1792
60.0k
}
1793
1794
static gs_fapi_retcode
1795
gs_fapi_ft_release_char_data(gs_fapi_server * a_server)
1796
758k
{
1797
758k
    ff_server *s = (ff_server *) a_server;
1798
1799
758k
    if (s->outline_glyph) {
1800
60.0k
        FT_Outline_Done(s->freetype_library, &s->outline_glyph->outline);
1801
60.0k
        FF_free(s->ftmemory, s->outline_glyph);
1802
60.0k
    }
1803
1804
758k
    if (s->bitmap_glyph) {
1805
577k
        FT_Bitmap_Done(s->freetype_library, &s->bitmap_glyph->bitmap);
1806
577k
        FF_free(s->ftmemory, s->bitmap_glyph);
1807
577k
    }
1808
1809
758k
    s->outline_glyph = NULL;
1810
758k
    s->bitmap_glyph = NULL;
1811
758k
    return 0;
1812
758k
}
1813
1814
static gs_fapi_retcode
1815
gs_fapi_ft_release_typeface(gs_fapi_server * a_server, void *a_server_font_data)
1816
56.7k
{
1817
56.7k
    ff_face *face = (ff_face *) a_server_font_data;
1818
1819
56.7k
    delete_face(a_server, face);
1820
56.7k
    return 0;
1821
56.7k
}
1822
1823
static gs_fapi_retcode
1824
gs_fapi_ft_check_cmap_for_GID(gs_fapi_server * server, uint * index)
1825
215k
{
1826
215k
    ff_face *face = (ff_face *) (server->ff.server_font_data);
1827
215k
    FT_Face ft_face = face->ft_face;
1828
1829
215k
    *index = FT_Get_Char_Index(ft_face, *index);
1830
215k
    return 0;
1831
215k
}
1832
1833
static gs_fapi_retcode
1834
gs_fapi_ft_set_mm_weight_vector(gs_fapi_server *server, gs_fapi_font *ff, float *wvector, int length)
1835
0
{
1836
#if defined(SHARE_FT) && SHARE_FT == 1 && \
1837
    FREETYPE_MAJOR <= 2 && FREETYPE_MINOR <= 9 && FREETYPE_PATCH <= 1
1838
1839
    return gs_error_invalidaccess;
1840
#else
1841
0
    ff_face *face = (ff_face *) ff->server_font_data;
1842
0
    FT_Fixed nwv[16] = {0};
1843
0
    FT_Fixed cwv[16] = {0};
1844
0
    FT_UInt len = 16;
1845
0
    int i;
1846
0
    bool setit = false;
1847
0
    FT_Error ft_error;
1848
0
    (void)server;
1849
1850
0
    ft_error = FT_Get_MM_WeightVector(face->ft_face, &len, cwv);
1851
0
    if (ft_error != 0) return_error(gs_error_invalidaccess);
1852
1853
0
    for (i = 0; i < length; i++) {
1854
0
        nwv[i] = (FT_Fixed)(wvector[i] * 65536.0);
1855
0
        if (nwv[i] != cwv[i]) {
1856
0
            setit = true;
1857
0
        }
1858
0
    }
1859
1860
0
    if (setit == true) {
1861
0
        ft_error = FT_Set_MM_WeightVector(face->ft_face, length, nwv);
1862
0
        if (ft_error != 0) return_error(gs_error_invalidaccess);
1863
0
    }
1864
1865
0
    return 0;
1866
0
#endif
1867
0
}
1868
1869
static void gs_fapi_freetype_destroy(gs_fapi_server ** serv);
1870
1871
static const gs_fapi_server_descriptor freetypedescriptor = {
1872
    (const char *)"FAPI",
1873
    (const char *)"FreeType",
1874
    gs_fapi_freetype_destroy
1875
};
1876
1877
static const gs_fapi_server freetypeserver = {
1878
    {&freetypedescriptor},
1879
    NULL,                       /* client_ctx_p */
1880
    16,                         /* frac_shift */
1881
    {gs_no_id},
1882
    {0},
1883
    0,
1884
    false,
1885
    false,
1886
    {1, 0, 0, 1, 0, 0},
1887
    1,
1888
    {1, 0, 0, 1, 0, 0},
1889
    gs_fapi_ft_ensure_open,
1890
    gs_fapi_ft_get_scaled_font,
1891
    gs_fapi_ft_get_decodingID,
1892
    gs_fapi_ft_get_font_bbox,
1893
    gs_fapi_ft_get_font_proportional_feature,
1894
    gs_fapi_ft_can_retrieve_char_by_name,
1895
    gs_fapi_ft_can_replace_metrics,
1896
    NULL,                       /* can_simulate_style */
1897
    gs_fapi_ft_get_fontmatrix,
1898
    gs_fapi_ft_get_char_width,
1899
    gs_fapi_ft_get_char_raster_metrics,
1900
    gs_fapi_ft_get_char_raster,
1901
    gs_fapi_ft_get_char_outline_metrics,
1902
    gs_fapi_ft_get_char_outline,
1903
    gs_fapi_ft_release_char_data,
1904
    gs_fapi_ft_release_typeface,
1905
    gs_fapi_ft_check_cmap_for_GID,
1906
    NULL,                        /* get_font_info */
1907
    gs_fapi_ft_set_mm_weight_vector,
1908
};
1909
1910
int gs_fapi_ft_init(gs_memory_t * mem, gs_fapi_server ** server);
1911
1912
int
1913
gs_fapi_ft_init(gs_memory_t * mem, gs_fapi_server ** server)
1914
10.8k
{
1915
10.8k
    ff_server *serv;
1916
10.8k
    int code = 0;
1917
10.8k
    gs_memory_t *cmem = mem->non_gc_memory;
1918
1919
10.8k
    code = gs_memory_chunk_wrap(&(cmem), mem);
1920
10.8k
    if (code != 0) {
1921
0
        return (code);
1922
0
    }
1923
1924
1925
10.8k
    serv = (ff_server *) gs_alloc_bytes_immovable(cmem, sizeof(ff_server), "gs_fapi_ft_init");
1926
10.8k
    if (!serv) {
1927
0
        gs_memory_chunk_release(cmem);
1928
0
        return_error(gs_error_VMerror);
1929
0
    }
1930
10.8k
    memset(serv, 0, sizeof(*serv));
1931
10.8k
    serv->mem = cmem;
1932
10.8k
    serv->fapi_server = freetypeserver;
1933
1934
10.8k
    serv->ftmemory = (FT_Memory) (&(serv->ftmemory_rec));
1935
1936
10.8k
    (*server) = (gs_fapi_server *) serv;
1937
10.8k
    return (0);
1938
10.8k
}
1939
1940
1941
void
1942
gs_fapi_freetype_destroy(gs_fapi_server ** serv)
1943
10.8k
{
1944
10.8k
    ff_server *server = (ff_server *) * serv;
1945
10.8k
    gs_memory_t *cmem = server->mem;
1946
1947
10.8k
    FT_Done_Glyph(&server->outline_glyph->root);
1948
10.8k
    FT_Done_Glyph(&server->bitmap_glyph->root);
1949
1950
    /* As with initialization: since we're supplying memory management to
1951
     * FT, we cannot just to use FT_Done_FreeType (), we have to use
1952
     * FT_Done_Library () and then discard the memory ourselves
1953
     */
1954
10.8k
    FT_Done_Library(server->freetype_library);
1955
10.8k
    gs_free(cmem, *serv, 0, 0, "gs_fapi_freetype_destroy: ff_server");
1956
10.8k
    *serv = NULL;
1957
10.8k
    gs_memory_chunk_release(cmem);
1958
10.8k
}