Coverage Report

Created: 2026-07-24 07:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gxfapi.c
Line
Count
Source
1
/* Copyright (C) 2001-2025 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
#include "memory_.h"
18
19
#include "gsmemory.h"
20
#include "gserrors.h"
21
#include "gxdevice.h"
22
#include "gxfont.h"
23
#include "gxfont1.h"
24
#include "gxpath.h"
25
#include "gxfcache.h"
26
#include "gxchrout.h"
27
#include "gximask.h"
28
#include "gscoord.h"
29
#include "gspaint.h"
30
#include "gspath.h"
31
#include "gzstate.h"
32
#include "gxfcid.h"
33
#include "gxchar.h"             /* for st_gs_show_enum and MAX_CCACHE_TEMP_BITMAP_BITS */
34
#include "gdebug.h"
35
#include "gsimage.h"
36
#include "gsbittab.h"
37
#include "gzpath.h"
38
#include "gxdevsop.h"
39
40
#include "gxfapi.h"
41
42
19.2M
#define FAPI_ROUND(v) (v >= 0 ? v + 0.5 : v - 0.5)
43
19.2M
#define FAPI_ROUND_TO_FRACINT(v) ((fracint)FAPI_ROUND(v))
44
45
extern_gs_get_fapi_server_inits();
46
47
/* FIXME */
48
static int
49
gs_fapi_renderer_retcode(gs_memory_t *mem, gs_fapi_server *I,
50
                         gs_fapi_retcode rc)
51
41.6M
{
52
41.6M
    if (rc == 0)
53
41.4M
        return 0;
54
212k
    if (gs_debug_c('1')) {
55
0
        emprintf2(mem,
56
0
                  "Error: Font Renderer Plugin ( %s ) return code = %d\n",
57
0
                  I->ig.d->subtype, rc);
58
0
    }
59
212k
    return rc < 0 ? rc : gs_error_invalidfont;
60
41.6M
}
61
62
typedef struct gs_fapi_outline_handler_s
63
{
64
    gs_fapi_server *fserver;
65
    struct gx_path_s *path;
66
    fixed x0;
67
    fixed y0;
68
    bool close_path;
69
    bool need_close;            /* This stuff fixes unclosed paths being rendered with UFST */
70
} gs_fapi_outline_handler;
71
72
static inline int64_t
73
import_shift(int64_t x, int64_t n)
74
239M
{
75
239M
    return (n > 0 ? (x << n) : (x >> -n));
76
239M
}
77
78
static inline int
79
export_shift(int x, int n)
80
305k
{
81
305k
    return (n > 0 ? (x >> n) : (x << -n));
82
305k
}
83
84
static inline int
85
fapi_round(double x)
86
0
{
87
0
    return (int)(x + 0.5);
88
0
}
89
90
static int
91
add_closepath(gs_fapi_path *I)
92
5.92M
{
93
5.92M
    gs_fapi_outline_handler *olh = (gs_fapi_outline_handler *) I->olh;
94
95
5.92M
    if (olh->need_close == true) {
96
4.88M
        olh->need_close = false;
97
4.88M
        I->gs_error = gx_path_close_subpath_notes(olh->path, 0);
98
4.88M
    }
99
5.92M
    return (I->gs_error);
100
5.92M
}
101
102
static int
103
add_move(gs_fapi_path *I, int64_t x, int64_t y)
104
5.09M
{
105
5.09M
    gs_fapi_outline_handler *olh = (gs_fapi_outline_handler *) I->olh;
106
107
5.09M
    x = import_shift(x, I->shift);
108
5.09M
    y = -import_shift(y, I->shift);
109
5.09M
    if (olh->fserver->transform_outline) {
110
92.4k
        gs_point pt;
111
92.4k
        I->gs_error = gs_distance_transform((double)fixed2float((float)x), (double)fixed2float((float)y), &olh->fserver->outline_mat, &pt);
112
92.4k
        if (I->gs_error < 0)
113
0
            return I->gs_error;
114
92.4k
        x = float2fixed(pt.x);
115
92.4k
        y = float2fixed(pt.y);
116
92.4k
    }
117
5.09M
    x += olh->x0;
118
5.09M
    y += olh->y0;
119
120
5.09M
    if (x > (int64_t) max_coord_fixed || x < (int64_t) min_coord_fixed
121
4.99M
     || y > (int64_t) max_coord_fixed || y < (int64_t) min_coord_fixed) {
122
139k
         I->gs_error = gs_error_undefinedresult;
123
139k
    }
124
4.95M
    else {
125
126
4.95M
        if (olh->need_close && olh->close_path)
127
1.66M
            if ((I->gs_error = add_closepath(I)) < 0)
128
0
                return (I->gs_error);
129
4.95M
        olh->need_close = false;
130
131
/*        dprintf2("%f %f moveto\n", fixed2float(x), fixed2float(y)); */
132
4.95M
        I->gs_error = gx_path_add_point(olh->path, (fixed) x, (fixed) y);
133
4.95M
    }
134
5.09M
    return (I->gs_error);
135
5.09M
}
136
137
static int
138
add_line(gs_fapi_path *I, int64_t x, int64_t y)
139
22.5M
{
140
22.5M
    gs_fapi_outline_handler *olh = (gs_fapi_outline_handler *) I->olh;
141
142
22.5M
    x = import_shift(x, I->shift);
143
22.5M
    y = -import_shift(y, I->shift);
144
22.5M
    if (olh->fserver->transform_outline) {
145
72.1k
        gs_point pt;
146
72.1k
        I->gs_error = gs_distance_transform((double)fixed2float((float)x), (double)fixed2float((float)y), &olh->fserver->outline_mat, &pt);
147
72.1k
        if (I->gs_error < 0)
148
0
            return I->gs_error;
149
72.1k
        x = float2fixed(pt.x);
150
72.1k
        y = float2fixed(pt.y);
151
72.1k
    }
152
22.5M
    x += olh->x0;
153
22.5M
    y += olh->y0;
154
155
22.5M
    if (x > (int64_t) max_coord_fixed || x < (int64_t) min_coord_fixed
156
22.5M
     || y > (int64_t) max_coord_fixed || y < (int64_t) min_coord_fixed) {
157
17.1k
         I->gs_error = gs_error_undefinedresult;
158
17.1k
    }
159
22.5M
    else {
160
22.5M
        olh->need_close = true;
161
162
/*        dprintf2("%f %f lineto\n", fixed2float(x), fixed2float(y)); */
163
22.5M
        I->gs_error = gx_path_add_line_notes(olh->path, (fixed) x, (fixed) y, 0);
164
22.5M
    }
165
22.5M
    return (I->gs_error);
166
22.5M
}
167
168
static int
169
add_curve(gs_fapi_path *I, int64_t x0, int64_t y0, int64_t x1, int64_t y1,
170
          int64_t x2, int64_t y2)
171
30.7M
{
172
30.7M
    gs_fapi_outline_handler *olh = (gs_fapi_outline_handler *) I->olh;
173
174
30.7M
    x0 = import_shift(x0, I->shift);
175
30.7M
    y0 = -import_shift(y0, I->shift);
176
30.7M
    x1 = import_shift(x1, I->shift);
177
30.7M
    y1 = -import_shift(y1, I->shift);
178
30.7M
    x2 = import_shift(x2, I->shift);
179
30.7M
    y2 = -import_shift(y2, I->shift);
180
181
30.7M
    if (olh->fserver->transform_outline) {
182
71.8k
        gs_point pt;
183
71.8k
        I->gs_error = gs_distance_transform((double)fixed2float((float)x0), (double)fixed2float((float)y0), &olh->fserver->outline_mat, &pt);
184
71.8k
        if (I->gs_error < 0)
185
0
            return I->gs_error;
186
71.8k
        x0 = float2fixed(pt.x);
187
71.8k
        y0 = float2fixed(pt.y);
188
71.8k
        I->gs_error = gs_distance_transform((double)fixed2float((float)x1), (double)fixed2float((float)y1), &olh->fserver->outline_mat, &pt);
189
71.8k
        if (I->gs_error < 0)
190
0
            return I->gs_error;
191
71.8k
        x1 = float2fixed(pt.x);
192
71.8k
        y1 = float2fixed(pt.y);
193
71.8k
        I->gs_error = gs_distance_transform((double)fixed2float((float)x2), (double)fixed2float((float)y2), &olh->fserver->outline_mat, &pt);
194
71.8k
        if (I->gs_error < 0)
195
0
            return I->gs_error;
196
71.8k
        x2 = float2fixed(pt.x);
197
71.8k
        y2 = float2fixed(pt.y);
198
71.8k
    }
199
30.7M
    x0 += olh->x0;
200
30.7M
    y0 += olh->y0;
201
30.7M
    x1 += olh->x0;
202
30.7M
    y1 += olh->y0;
203
30.7M
    x2 += olh->x0;
204
30.7M
    y2 += olh->y0;
205
206
30.7M
    if (x0 > (int64_t) max_coord_fixed || x0 < (int64_t) min_coord_fixed
207
30.7M
     || y0 > (int64_t) max_coord_fixed || y0 < (int64_t) min_coord_fixed
208
30.7M
     || x1 > (int64_t) max_coord_fixed || x1 < (int64_t) min_coord_fixed
209
30.7M
     || y1 > (int64_t) max_coord_fixed || y1 < (int64_t) min_coord_fixed
210
30.7M
     || x2 > (int64_t) max_coord_fixed || x2 < (int64_t) min_coord_fixed
211
30.7M
     || y2 > (int64_t) max_coord_fixed || y2 < (int64_t) min_coord_fixed)
212
40.0k
    {
213
40.0k
        I->gs_error = gs_error_undefinedresult;
214
40.0k
    }
215
30.7M
    else {
216
30.7M
        olh->need_close = true;
217
218
/*        dprintf6("%f %f %f %f %f %f curveto\n", fixed2float(x0), fixed2float(y0), fixed2float(x1), fixed2float(y1), fixed2float(x2), fixed2float(y2));*/
219
30.7M
        I->gs_error = gx_path_add_curve_notes(olh->path, (fixed) x0, (fixed) y0, (fixed) x1, (fixed) y1, (fixed) x2, (fixed) y2, 0);
220
30.7M
    }
221
30.7M
    return (I->gs_error);
222
30.7M
}
223
224
static gs_fapi_path path_interface_stub =
225
    { NULL, 0, 0, add_move, add_line, add_curve, add_closepath };
226
227
int
228
gs_fapi_get_metrics_count(gs_fapi_font *ff)
229
14.4M
{
230
14.4M
    if (!ff->is_type1 && ff->is_cid) {
231
778k
        gs_font_cid2 *pfcid = (gs_font_cid2 *) ff->client_font_data;
232
233
778k
        return (pfcid->cidata.MetricsCount);
234
778k
    }
235
13.6M
    return 0;
236
14.4M
}
237
238
/*
239
 * Lifted from psi/zchar.c
240
 * Return true if we only need the width from the rasterizer
241
 * and can short-circuit the full rendering of the character,
242
 * false if we need the actual character bits.  This is only safe if
243
 * we know the character is well-behaved, i.e., is not defined by an
244
 * arbitrary PostScript procedure.
245
 */
246
static inline bool
247
fapi_gs_char_show_width_only(const gs_text_enum_t *penum)
248
11.7M
{
249
11.7M
    if (!gs_text_is_width_only(penum))
250
9.52M
        return false;
251
2.25M
    switch (penum->orig_font->FontType) {
252
456k
        case ft_encrypted:
253
456k
        case ft_encrypted2:
254
456k
        case ft_CID_encrypted:
255
456k
        case ft_CID_TrueType:
256
456k
        case ft_CID_bitmap:
257
2.22M
        case ft_TrueType:
258
2.22M
            return true;
259
37.8k
        default:
260
37.8k
            return false;
261
2.25M
    }
262
2.25M
}
263
264
265
266
/* If we're rendering an uncached glyph, we need to know
267
 * whether we're filling it with a pattern, and whether
268
 * transparency is involved - if so, we have to produce
269
 * a path outline, and not a bitmap.
270
 */
271
static inline bool
272
using_transparency_pattern(gs_gstate *pgs)
273
11.1M
{
274
11.1M
    gx_device *dev = gs_currentdevice_inline(pgs);
275
276
11.1M
    return ((!gs_color_writes_pure(pgs)) && (dev_proc(dev, dev_spec_op)(dev, gxdso_supports_pattern_transparency, NULL, 0) > 0));
277
11.1M
}
278
279
static inline bool
280
recreate_multiple_master(gs_font_base *pbfont)
281
11.7M
{
282
11.7M
    bool r = false;
283
11.7M
    gs_fapi_server *I = pbfont->FAPI;
284
11.7M
    bool changed = false;
285
286
11.7M
    if (I && I->face.font_id != gs_no_id &&
287
11.4M
        (pbfont->FontType == ft_encrypted
288
7.03M
        || pbfont->FontType == ft_encrypted2)) {
289
7.03M
        gs_font_type1 *pfont1 = (gs_font_type1 *) pbfont;
290
7.03M
        if (pfont1->data.WeightVector.count != 0
291
0
            && I->face.WeightVector.count != pfont1->data.WeightVector.count) {
292
0
            changed = true;
293
0
        }
294
7.03M
        else if (pfont1->data.WeightVector.count != 0) {
295
0
            changed = (memcmp(I->face.WeightVector.values, pfont1->data.WeightVector.values,
296
0
                             pfont1->data.WeightVector.count * sizeof(pfont1->data.WeightVector.values[0])) != 0);
297
0
        }
298
299
7.03M
        if (changed) {
300
0
            r = (I->set_mm_weight_vector(I, &I->ff, pfont1->data.WeightVector.values, pfont1->data.WeightVector.count) == gs_error_invalidaccess);
301
0
            I->face.WeightVector.count = pfont1->data.WeightVector.count;
302
0
            memcpy(I->face.WeightVector.values, pfont1->data.WeightVector.values,
303
0
                   pfont1->data.WeightVector.count * sizeof(pfont1->data.WeightVector.values[0]));
304
0
        }
305
7.03M
    }
306
11.7M
    return r;
307
11.7M
}
308
309
static bool
310
produce_outline_char(gs_show_enum *penum_s,
311
                     gs_font_base *pbfont, int abits,
312
                     gs_log2_scale_point *log2_scale)
313
11.7M
{
314
11.7M
    gs_gstate *pgs = (gs_gstate *) penum_s->pgs;
315
316
11.7M
    log2_scale->x = 0;
317
11.7M
    log2_scale->y = 0;
318
319
    /* Checking both gx_compute_text_oversampling() result, and abits (below) may seem redundant,
320
     * and hopefully it will be soon, but for now, gx_compute_text_oversampling() could opt to
321
     * "oversample" sufficiently small glyphs (fwiw, I don't think gx_compute_text_oversampling is
322
     * working as intended in that respect), regardless of the device's anti-alias setting.
323
     * This was an old, partial solution for dropouts in small glyphs.
324
     */
325
11.7M
    gx_compute_text_oversampling(penum_s, (gs_font *) pbfont, abits,
326
11.7M
                                 log2_scale);
327
328
11.7M
    return (pgs->in_charpath || pbfont->PaintType != 0 ||
329
11.1M
            (pgs->in_cachedevice != CACHE_DEVICE_CACHING
330
11.1M
             && using_transparency_pattern((gs_gstate *) penum_s->pgs))
331
10.2M
            || (pgs->in_cachedevice != CACHE_DEVICE_CACHING
332
10.2M
                && (log2_scale->x > 0 || log2_scale->y > 0))
333
10.2M
            || (pgs->in_cachedevice != CACHE_DEVICE_CACHING && abits > 1));
334
11.7M
}
335
336
static inline void
337
gs_fapi_release_typeface(gs_fapi_server *I, void **server_font_data)
338
2.62M
{
339
2.62M
    I->release_typeface(I, *server_font_data);
340
2.62M
    I->face.font_id = gs_no_id;
341
2.62M
    if (I->ff.server_font_data == *server_font_data)
342
221k
        I->ff.server_font_data = 0;
343
2.62M
    *server_font_data = 0;
344
2.62M
}
345
346
static int
347
notify_remove_font(void *proc_data, void *event_data)
348
2.64M
{                               /* gs_font_finalize passes event_data == NULL, so check it here. */
349
2.64M
    if (event_data == NULL) {
350
2.64M
        gs_font_base *pbfont = proc_data;
351
2.64M
        gs_fapi_server *I = pbfont->FAPI;
352
353
2.64M
        if (pbfont->FAPI_font_data != 0) {
354
2.62M
            gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
355
2.62M
        }
356
2.64M
    }
357
2.64M
    return 0;
358
2.64M
}
359
360
int
361
gs_fapi_prepare_font(gs_font *pfont, gs_fapi_server *I, int subfont, const char *font_file_path,
362
                     gs_string *full_font_buf, const char *xlatmap, const char **decodingID)
363
2.64M
{                               /* Returns 1 iff BBox is set. */
364
    /* Cleans up server's font data if failed. */
365
366
    /* A renderer may need to access the top level font's data of
367
     * a CIDFontType 0 (FontType 9) font while preparing its subfonts,
368
     * and/or perform a completion action with the top level font after
369
     * its descendants are prepared. Therefore with such fonts
370
     * we first call get_scaled_font(..., FAPI_TOPLEVEL_BEGIN), then
371
     * get_scaled_font(..., i) with eash descendant font index i,
372
     * and then get_scaled_font(..., FAPI_TOPLEVEL_COMPLETE).
373
     * For other fonts we don't call with 'i'.
374
     *
375
     * Actually server's data for top level CIDFontTYpe 0 non-disk fonts should not be important,
376
     * because with non-disk fonts FAPI_do_char never deals with the top-level font,
377
     * but does with its descendants individually.
378
     * Therefore a recommendation for the renderer is don't build any special
379
     * data for the top-level non-disk font of CIDFontType 0, but return immediately
380
     * with success code and NULL data pointer.
381
     *
382
     * get_scaled_font may be called for same font at second time,
383
     * so the renderen must check whether the data is already built.
384
     */
385
2.64M
    gs_memory_t *mem = pfont->memory;
386
2.64M
    gs_font_base *pbfont = (gs_font_base *)pfont;
387
2.64M
    int code, bbox_set = 0;
388
2.64M
    int BBox[4], scale;
389
2.64M
    int units[2];
390
2.64M
    double size;
391
2.64M
    gs_fapi_font_scale font_scale =
392
2.64M
        { {1, 0, 0, 1, 0, 0}, {0, 0}, {1, 1}, true };
393
394
2.64M
    scale = 1 << I->frac_shift;
395
2.64M
    size = 1 / hypot(pbfont->FontMatrix.xx, pbfont->FontMatrix.xy);
396
    /* I believe this is just to ensure minimal rounding problems with scalers that
397
       scale the FontBBox values with the font scale.
398
     */
399
2.64M
    if (size < 1000)
400
2.63M
        size = 1000;
401
402
2.64M
    font_scale.matrix[0] = font_scale.matrix[3] = (int)(size * scale + 0.5);
403
404
2.64M
    font_scale.HWResolution[0] = (fracint) (72 * scale);
405
2.64M
    font_scale.HWResolution[1] = (fracint) (72 * scale);
406
407
    /* The interpreter specific parts of the gs_fapi_font should
408
     * be assinged by the caller - now do the generic parts.
409
     */
410
2.64M
    I->ff.subfont = subfont;
411
2.64M
    I->ff.font_file_path = font_file_path;
412
2.64M
    I->ff.is_type1 = FAPI_ISTYPE1GLYPHDATA(pbfont);
413
2.64M
    I->ff.is_vertical = (pbfont->WMode != 0);
414
2.64M
    I->ff.memory = mem;
415
2.64M
    I->ff.client_ctx_p = I->client_ctx_p;
416
2.64M
    I->ff.client_font_data = pbfont;
417
2.64M
    I->ff.client_font_data2 = pbfont;
418
2.64M
    I->ff.server_font_data = pbfont->FAPI_font_data;    /* Possibly pass it from zFAPIpassfont. */
419
2.64M
    if (full_font_buf) {
420
2.52M
        I->ff.full_font_buf = (char *)full_font_buf->data;
421
2.52M
        I->ff.full_font_buf_len = full_font_buf->size;
422
2.52M
    }
423
116k
    else {
424
116k
        I->ff.full_font_buf = NULL;
425
116k
        I->ff.full_font_buf_len = 0;
426
116k
    }
427
2.64M
    I->ff.is_cid = FAPI_ISCIDFONT(pbfont);
428
2.64M
    I->ff.is_outline_font = pbfont->PaintType != 0;
429
430
2.64M
    if (!I->ff.is_mtx_skipped)
431
2.64M
        I->ff.is_mtx_skipped = (gs_fapi_get_metrics_count(&I->ff) != 0);
432
433
2.64M
    if ((code = gs_fapi_renderer_retcode(mem, I, I->get_scaled_font(I, &I->ff,
434
2.64M
                                                                    (const
435
2.64M
                                                                     gs_fapi_font_scale
436
2.64M
                                                                     *)
437
2.64M
                                                                    &font_scale, xlatmap, gs_fapi_toplevel_begin)))
438
2.64M
        < 0)
439
3.07k
        return code;
440
2.64M
    pbfont->FAPI_font_data = I->ff.server_font_data;    /* Save it back to GS font. */
441
442
    /* We only want to "refine" the FontBBox for fonts where we allow FAPI to be
443
       treated as a "black box", handing over the entire font to the FAPI server.
444
       That is, fonts where we give the server either the file, or a buffer with
445
       the entire font description in it.
446
     */
447
2.64M
    if (I->ff.server_font_data != 0
448
2.64M
        && (font_file_path != NULL || full_font_buf != NULL)) {
449
2.52M
        if ((code =
450
2.52M
             gs_fapi_renderer_retcode(mem, I,
451
2.52M
                                      I->get_font_bbox(I, &I->ff,
452
2.52M
                                                       BBox, units))) < 0) {
453
0
            gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
454
0
            return code;
455
0
        }
456
        /* Refine FontBBox : */
457
2.52M
        pbfont->FontBBox.p.x = ((double)BBox[0] / units[0]);
458
2.52M
        pbfont->FontBBox.p.y = ((double)BBox[1] / units[1]);
459
2.52M
        pbfont->FontBBox.q.x = ((double)BBox[2] / units[0]);
460
2.52M
        pbfont->FontBBox.q.y = ((double)BBox[3] / units[1]);
461
462
2.52M
        bbox_set = 1;
463
2.52M
    }
464
465
2.64M
    if (xlatmap != NULL && pbfont->FAPI_font_data != NULL) {
466
12.1k
        if ((code =
467
12.1k
             gs_fapi_renderer_retcode(mem, I,
468
12.1k
                                      I->get_decodingID(I, &I->ff,
469
12.1k
                                                        decodingID))) < 0) {
470
0
            gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
471
0
            return code;
472
0
        }
473
12.1k
    }
474
475
    /* Prepare descendant fonts : */
476
2.64M
    if (font_file_path == NULL && I->ff.is_type1 && I->ff.is_cid) {     /* Renderers should expect same condition. */
477
1.56k
        gs_font_cid0 *pfcid = (gs_font_cid0 *) pbfont;
478
1.56k
        gs_font_type1 **FDArray = pfcid->cidata.FDArray;
479
1.56k
        int i, n = pfcid->cidata.FDArray_size;
480
481
1.56k
        I->ff.is_type1 = true;
482
1.56k
        I->ff.is_vertical = false;      /* A subfont may be shared with another fonts. */
483
1.56k
        I->ff.memory = mem;
484
1.56k
        I->ff.client_ctx_p = I->client_ctx_p;
485
5.15k
        for (i = 0; i < n; i++) {
486
3.62k
            gs_font_type1 *pbfont1 = FDArray[i];
487
3.62k
            int BBox_temp[4];
488
3.62k
            int units_temp[2];
489
490
3.62k
            pbfont1->FontBBox = pbfont->FontBBox;       /* Inherit FontBBox from the type 9 font. */
491
492
3.62k
            I->ff.client_font_data = pbfont1;
493
3.62k
            pbfont1->FAPI = pbfont->FAPI;
494
3.62k
            I->ff.client_font_data2 = pbfont1;
495
3.62k
            I->ff.server_font_data = pbfont1->FAPI_font_data;
496
3.62k
            I->ff.is_cid = true;
497
3.62k
            I->ff.is_outline_font = pbfont1->PaintType != 0;
498
3.62k
            if (!I->ff.is_mtx_skipped)
499
3.62k
                I->ff.is_mtx_skipped = (gs_fapi_get_metrics_count(&I->ff) != 0);
500
3.62k
            I->ff.subfont = 0;
501
3.62k
            if ((code =
502
3.62k
                 gs_fapi_renderer_retcode(mem, I,
503
3.62k
                                          I->get_scaled_font(I, &I->ff,
504
3.62k
                                                             (const
505
3.62k
                                                              gs_fapi_font_scale
506
3.62k
                                                              *)&font_scale,
507
3.62k
                                                             NULL, i))) < 0) {
508
40
                break;
509
40
            }
510
511
3.58k
            pbfont1->FAPI_font_data = I->ff.server_font_data;   /* Save it back to GS font. */
512
            /* Try to do something with the descendant font to ensure that it's working : */
513
3.58k
            if ((code =
514
3.58k
                 gs_fapi_renderer_retcode(mem, I,
515
3.58k
                                          I->get_font_bbox(I, &I->ff,
516
3.58k
                                                           BBox_temp, units_temp))) < 0) {
517
0
                break;
518
0
            }
519
3.58k
            code = gs_notify_register(&pbfont1->notify_list, notify_remove_font, pbfont1);
520
3.58k
            if (code < 0) {
521
0
                emprintf(mem,
522
0
                         "Ignoring gs_notify_register() failure for FAPI font.....");
523
0
            }
524
3.58k
        }
525
1.56k
        if (i == n) {
526
1.52k
            code =
527
1.52k
                gs_fapi_renderer_retcode(mem, I,
528
1.52k
                                         I->get_scaled_font(I, &I->ff,
529
1.52k
                                                            (const
530
1.52k
                                                             gs_fapi_font_scale
531
1.52k
                                                             *)&font_scale,
532
1.52k
                                                            NULL,
533
1.52k
                                                            gs_fapi_toplevel_complete));
534
1.52k
            if (code >= 0)
535
1.52k
                return bbox_set;        /* Full success. */
536
1.52k
        }
537
        /* Fail, release server's font data : */
538
80
        for (i = 0; i < n; i++) {
539
40
            gs_font_type1 *pbfont1 = FDArray[i];
540
541
40
            if (pbfont1->FAPI_font_data != NULL)
542
0
                gs_fapi_release_typeface(I, &pbfont1->FAPI_font_data);
543
40
        }
544
545
40
        if (pbfont->FAPI_font_data != NULL) {
546
0
            gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
547
0
        }
548
40
        return_error(gs_error_invalidfont);
549
1.56k
    }
550
551
    /* This was an "else", but could elicit a warning from static analysis tools
552
     * about the potential for a non-void function without a return value.
553
     */
554
2.64M
    code = gs_fapi_renderer_retcode(mem, I, I->get_scaled_font(I, &I->ff,
555
2.64M
                                                               (const
556
2.64M
                                                                gs_fapi_font_scale
557
2.64M
                                                                *)&font_scale,
558
2.64M
                                                               xlatmap,
559
2.64M
                                                               gs_fapi_toplevel_complete));
560
2.64M
    if (code < 0) {
561
0
        gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
562
0
        return code;
563
0
    }
564
2.64M
    code =
565
2.64M
        gs_notify_register(&pbfont->notify_list, notify_remove_font, pbfont);
566
2.64M
    if (code < 0) {
567
0
        gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
568
0
        return code;
569
0
    }
570
571
2.64M
    return bbox_set;
572
2.64M
}
573
574
575
static int
576
outline_char(gs_memory_t *mem, gs_fapi_server *I, int import_shift_v,
577
             gs_show_enum *penum_s, struct gx_path_s *path, bool close_path)
578
4.45M
{
579
4.45M
    gs_fapi_path path_interface = path_interface_stub;
580
4.45M
    gs_fapi_outline_handler olh;
581
4.45M
    int code = 0;
582
4.45M
    gs_gstate *pgs = penum_s->pgs;
583
4.45M
    struct gx_path_s path1;
584
585
4.45M
    (void)gx_path_init_local(&path1, mem);
586
587
4.45M
    olh.fserver = I;
588
4.45M
    olh.path = &path1;
589
4.45M
    olh.x0 = pgs->ctm.tx_fixed - float2fixed(penum_s->fapi_glyph_shift.x);
590
4.45M
    olh.y0 = pgs->ctm.ty_fixed - float2fixed(penum_s->fapi_glyph_shift.y);
591
4.45M
    olh.close_path = close_path;
592
4.45M
    olh.need_close = false;
593
4.45M
    path_interface.olh = &olh;
594
4.45M
    path_interface.shift = import_shift_v;
595
4.45M
    if ((code =
596
4.45M
         gs_fapi_renderer_retcode(mem, I,
597
4.45M
                                  I->get_char_outline(I,
598
4.45M
                                                      &path_interface))) < 0
599
4.26M
        || path_interface.gs_error != 0) {
600
197k
        if (path_interface.gs_error != 0) {
601
197k
            code = path_interface.gs_error;
602
197k
            goto done;
603
197k
        }
604
0
        else {
605
0
            goto done;
606
0
        }
607
197k
    }
608
4.26M
    if (olh.need_close && olh.close_path)
609
0
        if ((code = add_closepath(&path_interface)) < 0)
610
0
            goto done;
611
4.26M
    code = gx_path_copy(&path1, path);
612
4.45M
done:
613
4.45M
    code = code >= 0 || code == gs_error_undefinedresult ? 0 : code;
614
4.45M
    gx_path_free(&path1, "outline_char");
615
4.45M
    return code;
616
4.26M
}
617
618
static void
619
compute_em_scale(const gs_font_base *pbfont, gs_fapi_metrics *metrics,
620
                 double FontMatrix_div, double *em_scale_x,
621
                 double *em_scale_y)
622
11.7M
{                               /* optimize : move this stuff to FAPI_refine_font */
623
11.7M
    gs_matrix mat;
624
11.7M
    gs_matrix *m = &mat;
625
11.7M
    int rounding_x, rounding_y; /* Striking out the 'float' representation error in FontMatrix. */
626
11.7M
    double sx, sy;
627
11.7M
    gs_fapi_server *I = pbfont->FAPI;
628
629
11.7M
#if 1
630
11.7M
    I->get_fontmatrix(I, m);
631
#else
632
    /* Temporary: replace with a FAPI call to check *if* the library needs a replacement matrix */
633
    memset(m, 0x00, sizeof(gs_matrix));
634
    m->xx = m->yy = 1.0;
635
#endif
636
637
11.7M
    if (m->xx == 0 && m->xy == 0 && m->yx == 0 && m->yy == 0)
638
0
        m = &pbfont->base->FontMatrix;
639
11.7M
    sx = hypot(m->xx, m->xy) * metrics->em_x / FontMatrix_div;
640
11.7M
    sy = hypot(m->yx, m->yy) * metrics->em_y / FontMatrix_div;
641
11.7M
    rounding_x = (int)(0x00800000 / sx);
642
11.7M
    rounding_y = (int)(0x00800000 / sy);
643
11.7M
    *em_scale_x = (int)(sx * rounding_x + 0.5) / (double)rounding_x;
644
11.7M
    *em_scale_y = (int)(sy * rounding_y + 0.5) / (double)rounding_y;
645
11.7M
}
646
647
static int
648
fapi_copy_mono(gx_device *dev1, gs_fapi_raster *rast, int dx, int dy)
649
4.88M
{
650
4.88M
    int line_step = bitmap_raster(rast->width), code;
651
652
4.88M
    if (rast->line_step >= line_step) {
653
30.4k
        return dev_proc(dev1, copy_mono) (dev1, rast->p, 0, rast->line_step,
654
30.4k
                                          0, dx, dy, rast->width,
655
30.4k
                                          rast->height, 0, 1);
656
30.4k
    }
657
4.85M
    else {                      /* bitmap data needs to be aligned, make the aligned copy : */
658
4.85M
        byte *p = gs_alloc_byte_array(dev1->memory, rast->height, line_step,
659
4.85M
                                      "fapi_copy_mono");
660
4.85M
        byte *q = p, *r = rast->p, *pe;
661
662
4.85M
        if (p == NULL)
663
0
            return_error(gs_error_VMerror);
664
4.85M
        pe = p + rast->height * line_step;
665
76.4M
        for (; q < pe; q += line_step, r += rast->line_step) {
666
71.5M
            memcpy(q, r, rast->line_step);
667
71.5M
            memset(q + rast->line_step, 0, line_step - rast->line_step);
668
71.5M
        }
669
4.85M
        code =
670
4.85M
            dev_proc(dev1, copy_mono) (dev1, p, 0, line_step, 0, dx, dy,
671
4.85M
                                       rast->width, rast->height, 0, 1);
672
4.85M
        gs_free_object(dev1->memory, p, "fapi_copy_mono");
673
4.85M
        return code;
674
4.85M
    }
675
4.88M
}
676
677
/*
678
 * For PCL/PXL pseudo-bolding, we have to "smear" a bitmap horizontally and
679
 * vertically by ORing together a rectangle of bits below and to the left of
680
 * each output bit.  We do this separately for horizontal and vertical
681
 * smearing.  Eventually, we will replace the current procedure, which takes
682
 * time proportional to W * H * (N + log2(N)), with one that is only
683
 * proportional to N (but takes W * N additional buffer space).
684
 */
685
686
/* Allocate the line buffer for bolding.  We need 2 + bold scan lines. */
687
static byte *
688
alloc_bold_lines(gs_memory_t *mem, uint width, int bold, client_name_t cname)
689
0
{
690
0
    return gs_alloc_byte_array(mem, 2 + bold, bitmap_raster(width + bold), cname);
691
0
}
692
693
/* Merge one (aligned) scan line into another, for vertical smearing. */
694
void
695
gx_fapi_bits_merge(byte *dest, const byte *src, uint nbytes)
696
0
{
697
0
        long *dp = (long *)dest;
698
0
        const long *sp = (const long *)src;
699
0
        uint n = (nbytes + sizeof(long) - 1) >> ARCH_LOG2_SIZEOF_LONG;
700
701
0
        for ( ; n >= 4; sp += 4, dp += 4, n -= 4 ) {
702
0
            dp[0] |= sp[0];
703
0
            dp[1] |= sp[1];
704
0
            dp[2] |= sp[2];
705
0
            dp[3] |= sp[3];
706
0
        }
707
0
        for ( ; n; ++sp, ++dp, --n ) {
708
0
            *dp |= *sp;
709
0
        }
710
0
}
711
712
/* Smear a scan line horizontally.  Note that the output is wider than */
713
/* the input by the amount of bolding (smear_width). */
714
void
715
gx_fapi_bits_smear_horizontally(byte *dest, const byte *src, uint width, uint smear_width)
716
0
{
717
0
        uint32_t bits_on = 0;
718
0
        const byte *sp = src;
719
0
        uint sbyte = *sp;
720
0
        byte *dp = dest;
721
0
        uint dbyte = sbyte;
722
0
        uint sdmask = 0x80;
723
0
        const byte *zp = src;
724
0
        uint zmask = 0x80;
725
0
        uint i = 0;
726
0
        uint stop;
727
728
        /* Process the first smear_width bits. */
729
0
        stop = min(smear_width, width);
730
731
0
        for ( ; i < stop; ++i ) {
732
0
            if ( sbyte & sdmask ) {
733
0
              bits_on++;
734
0
            }
735
0
            else if ( bits_on ) {
736
0
              dbyte |= sdmask;
737
0
            }
738
0
            if ( (sdmask >>= 1) == 0 ) {
739
0
                sdmask = 0x80;
740
0
                *dp++ = dbyte;
741
0
                dbyte = sbyte = *++sp;
742
0
            }
743
0
        }
744
745
        /* Process all but the last smear_width bits. */
746
0
        for ( ; i < width; ++i ) {
747
0
            if ( sbyte & sdmask ) {
748
                /* In practice, bits_on should never overflow,
749
                   but if it doesn, handle it gracefully
750
                 */
751
0
                bits_on = (uint32_t)(((uint64_t)bits_on + 1) & 0xffffffff);
752
0
            }
753
0
            else if ( bits_on ) {
754
0
                dbyte |= sdmask;
755
0
            }
756
0
            if ( *zp & zmask && bits_on > 0) {
757
0
                --bits_on;
758
0
            }
759
0
            if ( (sdmask >>= 1) == 0 ) {
760
0
                sdmask = 0x80;
761
0
                *dp++ = dbyte;
762
0
on:             switch ( (dbyte = sbyte = *++sp) ) {
763
0
                  case 0xff:
764
0
                    if ( width - i <= 8 )
765
0
                        break;
766
0
                    *dp++ = 0xff;
767
0
                    bits_on += 8 - byte_count_bits[(*zp & (zmask - 1)) + (zp[1] & -(int)zmask)];
768
0
                    ++zp;
769
0
                    i += 8;
770
0
                    goto on;
771
0
                  case 0:
772
0
                    if ( bits_on || width - i <= 8 )
773
0
                      break;
774
0
                    *dp++ = 0;
775
                    /* We know there can't be any bits to be zeroed, */
776
                    /* because bits_on can't go negative. */
777
0
                    ++zp;
778
0
                    i += 8;
779
0
                    goto on;
780
0
                  default:
781
0
                    ;
782
0
                }
783
0
            }
784
0
            if ( (zmask >>= 1) == 0 ) {
785
0
              zmask = 0x80;
786
0
              ++zp;
787
0
            }
788
0
        }
789
790
        /* Process the last smear_width bits. */
791
        /****** WRONG IF width < smear_width ******/
792
0
        stop = width + smear_width;
793
794
0
        for ( ; i < stop; ++i ) {
795
0
            if ( bits_on ) {
796
0
                dbyte |= sdmask;
797
0
            }
798
0
            if ( (sdmask >>= 1) == 0 ) {
799
0
                sdmask = 0x80;
800
0
                *dp++ = dbyte;
801
0
                dbyte = 0;
802
0
            }
803
0
            if ( *zp & zmask && bits_on > 0) {
804
0
                --bits_on;
805
0
            }
806
0
            if ( (zmask >>= 1) == 0 ) {
807
0
                zmask = 0x80;
808
0
                ++zp;
809
0
            }
810
0
        }
811
812
0
        if ( sdmask != 0x80 ) {
813
0
          *dp = dbyte;
814
0
        }
815
0
}
816
817
static const int frac_pixel_shift = 4;
818
819
/* NOTE: fapi_image_uncached_glyph() doesn't check various paramters: it assumes fapi_finish_render_aux()
820
 * has done so: if it gets called from another function, the function must either do all the parameter
821
 * validation, or fapi_image_uncached_glyph() must be changed to include the validation.
822
 */
823
static int
824
fapi_image_uncached_glyph(gs_font *pfont, gs_gstate *pgs, gs_show_enum *penum,
825
                          gs_fapi_raster *rast, const int import_shift_v)
826
202k
{
827
202k
    gx_device *dev = penum->dev;
828
202k
    gs_gstate *penum_pgs = (gs_gstate *) penum->pgs;
829
202k
    int code;
830
202k
    const gx_clip_path *pcpath = pgs->clip_path;
831
202k
    const gx_drawing_color *pdcolor = gs_currentdevicecolor_inline(penum->pgs);
832
202k
    int rast_orig_x = rast->orig_x;
833
202k
    int rast_orig_y = -rast->orig_y;
834
202k
    gs_font_base *pbfont = (gs_font_base *)pfont;
835
202k
    gs_fapi_server *I = pbfont->FAPI;
836
837
202k
    extern_st(st_gs_show_enum);
838
839
202k
    byte *r = rast->p;
840
202k
    byte *src, *dst;
841
202k
    int h, padbytes, cpbytes, dstr = bitmap_raster(rast->width);
842
202k
    int sstr = rast->line_step;
843
844
202k
    double dx = penum_pgs->ctm.tx + (double)rast_orig_x / (1 << frac_pixel_shift) + 0.5;
845
202k
    double dy = penum_pgs->ctm.ty + (double)rast_orig_y / (1 << frac_pixel_shift) + 0.5;
846
847
    /* we can only safely use the gx_image_fill_masked() "shortcut" if we're drawing
848
     * a "simple" colour, rather than a pattern.
849
     */
850
202k
    if (gs_color_writes_pure(penum_pgs) && I->ff.embolden == 0.0) {
851
133k
        if (dstr != sstr) {
852
853
            /* If the stride of the bitmap we've got doesn't match what the rest
854
             * of the Ghostscript world expects, make one that does.
855
             * Ghostscript aligns bitmap raster memory in a platform specific
856
             * manner, so see gxbitmap.h for details.
857
             *
858
             * Ideally the padding bytes wouldn't matter, but currently the
859
             * clist code ends up compressing it using bitmap compression. To
860
             * ensure consistency across runs (and to get the best possible
861
             * compression ratios) we therefore set such bytes to zero. It would
862
             * be nicer if this was fixed in future.
863
             */
864
121k
            r = gs_alloc_bytes(penum->memory, (size_t)dstr * rast->height,
865
121k
                               "fapi_finish_render_aux");
866
121k
            if (!r) {
867
0
                return_error(gs_error_VMerror);
868
0
            }
869
870
121k
            cpbytes = sstr < dstr ? sstr : dstr;
871
121k
            padbytes = dstr - cpbytes;
872
121k
            h = rast->height;
873
121k
            src = rast->p;
874
121k
            dst = r;
875
121k
            if (padbytes > 0) {
876
7.18M
                while (h-- > 0) {
877
7.05M
                    memcpy(dst, src, cpbytes);
878
7.05M
                    memset(dst + cpbytes, 0, padbytes);
879
7.05M
                    src += sstr;
880
7.05M
                    dst += dstr;
881
7.05M
                }
882
121k
            }
883
0
            else {
884
0
                while (h-- > 0) {
885
0
                    memcpy(dst, src, cpbytes);
886
0
                    src += sstr;
887
0
                    dst += dstr;
888
0
                }
889
0
            }
890
121k
        }
891
892
133k
        if (gs_object_type(penum->memory, penum) == &st_gs_show_enum) {
893
133k
            dx += penum->fapi_glyph_shift.x;
894
133k
            dy += penum->fapi_glyph_shift.y;
895
133k
        }
896
        /* Processing an image object operation, but this may be for a text object */
897
133k
        ensure_tag_is_set(pgs, pgs->device, GS_TEXT_TAG); /* NB: may unset_dev_color */
898
133k
        code = gx_set_dev_color(pgs);
899
133k
        if (code != 0)
900
0
            return code;
901
133k
        code = gs_gstate_color_load(pgs);
902
133k
        if (code < 0)
903
0
            return code;
904
905
133k
        code = gx_image_fill_masked(dev, r, 0, dstr, gx_no_bitmap_id,
906
133k
                                    (int)dx, (int)dy,
907
133k
                                    rast->width, rast->height,
908
133k
                                    pdcolor, 1, rop3_default, pcpath);
909
133k
        if (rast->p != r) {
910
121k
            gs_free_object(penum->memory, r, "fapi_finish_render_aux");
911
121k
        }
912
133k
    }
913
69.0k
    else {
914
69.0k
        gs_memory_t *mem = penum->memory->non_gc_memory;
915
69.0k
        gs_image_enum *pie;
916
69.0k
        gs_image_t image;
917
69.0k
        int iy, nbytes;
918
69.0k
        uint used;
919
69.0k
        int code1;
920
69.0k
        int w, h;
921
69.0k
        int x = (int)dx;
922
69.0k
        int y = (int)dy;
923
69.0k
        uint bold = 0;
924
69.0k
        byte *bold_lines = NULL;
925
69.0k
        byte *line = NULL;
926
69.0k
        int ascent = 0;
927
928
69.0k
        pie = gs_image_enum_alloc(mem, "image_char(image_enum)");
929
69.0k
        if (!pie) {
930
0
            return_error(gs_error_VMerror);
931
0
        }
932
933
69.0k
        w = rast->width;
934
69.0k
        h = rast->height;
935
69.0k
        if (I->ff.embolden != 0.0) {
936
0
            bold = (uint)(2 * h * I->ff.embolden + 0.5);
937
0
            ascent += bold;
938
0
            bold_lines = alloc_bold_lines(pgs->memory, w, bold, "fapi_image_uncached_glyph(bold_line)");
939
0
            if (bold_lines == NULL) {
940
0
                code = gs_note_error(gs_error_VMerror);
941
0
                return(code);
942
0
            }
943
0
            line = gs_alloc_byte_array(pgs->memory, 1, bitmap_raster(w + bold) + 1, "fapi_copy_mono");
944
0
            if (line == 0) {
945
0
                gs_free_object(pgs->memory, bold_lines, "fapi_image_uncached_glyph(bold_lines)");
946
0
                code = gs_note_error(gs_error_VMerror);
947
0
                return(code);
948
0
            }
949
0
        }
950
951
        /* Make a matrix that will place the image */
952
        /* at (x,y) with no transformation. */
953
69.0k
        gs_image_t_init_mask(&image, true);
954
69.0k
        gs_make_translation((double) - x, (double) (- y + ascent), &image.ImageMatrix);
955
69.0k
        gs_matrix_multiply(&ctm_only(penum_pgs), &image.ImageMatrix, &image.ImageMatrix);
956
69.0k
        image.Width = w + bold;
957
69.0k
        image.Height = h + bold;
958
69.0k
        image.adjust = false;
959
69.0k
        code = gs_image_init(pie, &image, false, true, penum_pgs);
960
69.0k
        nbytes = (rast->width + 7) >> 3;
961
962
69.0k
        switch (code) {
963
0
            case 1:            /* empty image */
964
0
                code = 0;
965
87
            default:
966
87
                break;
967
68.9k
            case 0:
968
68.9k
                if (bold == 0) {
969
9.30M
                    for (iy = 0; iy < h && code >= 0; iy++, r += sstr) {
970
9.23M
                        code = gs_image_next(pie, r, nbytes, &used);
971
9.23M
                    }
972
68.9k
                }
973
0
                else {
974
0
                    uint dest_raster = bitmap_raster(image.Width);
975
0
                    uint dest_bytes = (image.Width + 7) >> 3;
976
0
                    int n1 = bold + 1;
977
0
#define merged_line(i) (bold_lines + ((i) % n1 + 1) * dest_raster)
978
979
0
                    for ( y = 0; y < image.Height; y++ ) {
980
0
                        int y0 = (y < bold ? 0 : y - bold);
981
0
                        int y1 = min(y + 1, rast->height);
982
0
                        int kmask;
983
0
                        bool first = true;
984
985
0
                        if ( y < rast->height ) {
986
0
                            memcpy(line, r + y * rast->line_step, rast->line_step);
987
0
                            memset(line + rast->line_step, 0x00, (dest_raster + 1) -  rast->line_step);
988
989
0
                            gx_fapi_bits_smear_horizontally(merged_line(y), line, rast->width, bold);
990
                            /* Now re-establish the invariant -- see below. */
991
0
                            kmask = 1;
992
993
0
                            for ( ; (y & kmask) == kmask && y - kmask >= y0;
994
0
                                  kmask = (kmask << 1) + 1) {
995
996
0
                                gx_fapi_bits_merge(merged_line(y - kmask), merged_line(y - (kmask >> 1)), dest_bytes);
997
0
                            }
998
0
                        }
999
1000
                       /*
1001
                        * As of this point in the loop, we maintain the following
1002
                        * invariant to cache partial merges of groups of lines: for
1003
                        * each Y, y0 <= Y < y1, let K be the maximum k such that Y
1004
                        * mod 2^k = 0 and Y + 2^k < y1; then merged_line(Y) holds
1005
                        * the union of horizontally smeared source lines Y through
1006
                        * Y + 2^k - 1.  The idea behind this is similar to the idea
1007
                        * of quicksort.
1008
                        */
1009
1010
                        /* Now construct the output line. */
1011
0
                        first = true;
1012
1013
0
                        for ( iy = y1 - 1; iy >= y0; --iy ) {
1014
0
                          kmask = 1;
1015
1016
0
                          while ( (iy & kmask) == kmask && iy - kmask >= y0 )
1017
0
                            iy -= kmask, kmask <<= 1;
1018
0
                          if ( first ) {
1019
0
                            memcpy(bold_lines, merged_line(iy), dest_bytes);
1020
0
                            first = false;
1021
0
                          }
1022
0
                          else
1023
0
                            gx_fapi_bits_merge(bold_lines, merged_line(iy), dest_bytes);
1024
0
                        }
1025
0
                        code = gs_image_next(pie, bold_lines, dest_bytes, &used);
1026
0
                    }
1027
0
                }
1028
69.0k
#undef merged_line
1029
69.0k
        }
1030
1031
69.0k
        if (bold_lines)
1032
0
            gs_free_object(pgs->memory, bold_lines, "fapi_image_uncached_glyph(bold_lines)");
1033
1034
69.0k
        if (line)
1035
0
            gs_free_object(pgs->memory, line, "fapi_image_uncached_glyph(line)");
1036
1037
69.0k
        code1 = gs_image_cleanup_and_free_enum(pie, penum_pgs);
1038
69.0k
        if (code >= 0 && code1 < 0)
1039
0
            code = code1;
1040
69.0k
    }
1041
202k
    return (code);
1042
202k
}
1043
1044
int
1045
gs_fapi_finish_render(gs_font *pfont, gs_gstate *pgs, gs_text_enum_t *penum, gs_fapi_server *I)
1046
10.0M
{
1047
10.0M
    gs_show_enum *penum_s = (gs_show_enum *) penum;
1048
10.0M
    gs_gstate *penum_pgs;
1049
10.0M
    gx_device *dev1;
1050
10.0M
    const int import_shift_v = _fixed_shift - 32;       /* we always 32.32 values for the outline interface now */
1051
10.0M
    gs_fapi_raster rast;
1052
10.0M
    int code;
1053
10.0M
    gs_memory_t *mem = pfont->memory;
1054
10.0M
    gs_font_base *pbfont = (gs_font_base *)pfont;
1055
1056
10.0M
    if (penum == NULL)
1057
0
        return_error(gs_error_undefined);
1058
1059
10.0M
    penum_pgs = penum_s->pgs;
1060
1061
10.0M
    dev1 = gs_currentdevice_inline(penum_pgs);  /* Possibly changed by zchar_set_cache. */
1062
1063
    /* Even for "non-marking" text operations (for example, stringwidth) we are expected
1064
     * to have a glyph bitmap for the cache, if we're using the cache. For the
1065
     * non-cacheing, non-marking cases, we must not draw the glyph.
1066
     */
1067
10.0M
    if (pgs->in_charpath && !SHOW_IS(penum, TEXT_DO_NONE)) {
1068
594k
        gs_point pt;
1069
1070
594k
        if ((code = gs_currentpoint(penum_pgs, &pt)) < 0)
1071
1
            return code;
1072
1073
594k
        if ((code =
1074
594k
             outline_char(mem, I, import_shift_v, penum_s, penum_pgs->path,
1075
594k
                          !pbfont->PaintType)) < 0) {
1076
0
            return code;
1077
0
        }
1078
1079
594k
        if ((code =
1080
594k
             gx_path_add_char_path(penum_pgs->show_gstate->path,
1081
594k
                                   penum_pgs->path,
1082
594k
                                   penum_pgs->in_charpath)) < 0) {
1083
0
            return code;
1084
0
        }
1085
1086
594k
    }
1087
9.43M
    else {
1088
9.43M
        int code;
1089
9.43M
        memset(&rast, 0x00, sizeof(rast));
1090
1091
9.43M
        if ((code = I->get_char_raster(I, &rast)) < 0 && code != gs_error_unregistered)
1092
0
            return code;
1093
1094
9.43M
        if (!SHOW_IS(penum, TEXT_DO_NONE) && I->use_outline) {
1095
            /* The server provides an outline instead the raster. */
1096
3.86M
            gs_point pt;
1097
1098
            /* This mimics code which is used below in the case where I->Use_outline is set.
1099
             * This is usually caused by setting -dTextAlphaBits, and will result in 'undefinedresult'
1100
             * errors. We want the code to work the same regardless off the setting of -dTextAlphaBits
1101
             * and it seems the simplest way to provoke the same error is to do the same steps....
1102
             * Note that we do not actually ever use the returned value.
1103
             */
1104
3.86M
            if ((code = gs_currentpoint(penum_pgs, &pt)) < 0)
1105
1.01k
                return code;
1106
1107
3.86M
            if ((code =
1108
3.86M
                 outline_char(mem, I, import_shift_v, penum_s,
1109
3.86M
                              penum_pgs->path, !pbfont->PaintType)) < 0)
1110
0
                return code;
1111
3.86M
            if ((code =
1112
3.86M
                 gs_gstate_setflat((gs_gstate *) penum_pgs,
1113
3.86M
                                   gs_char_flatness(penum_pgs->show_gstate, 1.0))) < 0)
1114
0
                return code;
1115
3.86M
            if (pbfont->PaintType) {
1116
0
                float lw = gs_currentlinewidth(penum_pgs);
1117
1118
0
                gs_setlinewidth(penum_pgs, pbfont->StrokeWidth);
1119
0
                code = gs_stroke(penum_pgs);
1120
0
                gs_setlinewidth(penum_pgs, lw);
1121
0
                if (code < 0)
1122
0
                    return code;
1123
0
            }
1124
3.86M
            else {
1125
3.86M
                gs_in_cache_device_t in_cachedevice =
1126
3.86M
                    penum_pgs->in_cachedevice;
1127
1128
3.86M
                penum_pgs->in_cachedevice = CACHE_DEVICE_NOT_CACHING;
1129
1130
3.86M
                penum_pgs->fill_adjust.x = penum_pgs->fill_adjust.y = 0;
1131
1132
3.86M
                code = gs_fill(penum_pgs);
1133
1134
3.86M
                penum_pgs->in_cachedevice = in_cachedevice;
1135
1136
3.86M
                if (code < 0)
1137
15
                    return code;
1138
3.86M
            }
1139
3.86M
            if ((code = gs_moveto(penum_pgs, pt.x, pt.y)) < 0)
1140
0
                return code;
1141
3.86M
        }
1142
5.57M
        else {
1143
5.57M
            int rast_orig_x = rast.orig_x;
1144
5.57M
            int rast_orig_y = -rast.orig_y;
1145
5.57M
            gs_point pt;
1146
1147
            /* This mimics code which is used above in the case where I->Use_outline is set.
1148
             * This is usually caused by setting -dTextAlphaBits, and will result in 'undefinedresult'
1149
             * errors. We want the code to work the same regardless off the setting of -dTextAlphaBits
1150
             * and it seems the simplest way to provoke the same error is to do the same steps....
1151
             * Note that we do not actually ever use the returned value.
1152
             */
1153
5.57M
            if ((code = gs_currentpoint(penum_pgs, &pt)) < 0)
1154
367
                return code;
1155
1156
5.57M
            if (penum_pgs->in_cachedevice == CACHE_DEVICE_CACHING) {    /* Using GS cache */
1157
                /*  GS and renderer may transform coordinates few differently.
1158
                   The best way is to make set_cache_device to take the renderer's bitmap metrics immediately,
1159
                   but we need to account CDevProc, which may truncate the bitmap.
1160
                   Perhaps GS overestimates the bitmap size,
1161
                   so now we only add a compensating shift - the dx and dy.
1162
                 */
1163
4.88M
                if (rast.width != 0) {
1164
4.88M
                    int shift_rd = _fixed_shift - frac_pixel_shift;
1165
4.88M
                    int rounding = 1 << (frac_pixel_shift - 1);
1166
4.88M
                    int dx =
1167
4.88M
                        arith_rshift_slow((penum_pgs->
1168
4.88M
                                           ctm.tx_fixed >> shift_rd) +
1169
4.88M
                                          rast_orig_x + rounding,
1170
4.88M
                                          frac_pixel_shift);
1171
4.88M
                    int dy =
1172
4.88M
                        arith_rshift_slow((penum_pgs->
1173
4.88M
                                           ctm.ty_fixed >> shift_rd) +
1174
4.88M
                                          rast_orig_y + rounding,
1175
4.88M
                                          frac_pixel_shift);
1176
1177
4.88M
                    if (dx + rast.left_indent < 0
1178
4.88M
                        || dx + rast.left_indent + rast.black_width >
1179
4.88M
                        dev1->width) {
1180
#ifdef DEBUG
1181
                        if (gs_debug_c('m')) {
1182
                            emprintf2(dev1->memory,
1183
                                      "Warning : Cropping a FAPI glyph while caching : dx=%d,%d.\n",
1184
                                      dx + rast.left_indent,
1185
                                      dx + rast.left_indent +
1186
                                      rast.black_width - dev1->width);
1187
                        }
1188
#endif
1189
174
                        if (dx + rast.left_indent < 0)
1190
5
                            dx -= dx + rast.left_indent;
1191
174
                    }
1192
4.88M
                    if (dy + rast.top_indent < 0
1193
4.88M
                        || dy + rast.top_indent + rast.black_height >
1194
4.88M
                        dev1->height) {
1195
#ifdef DEBUG
1196
                        if (gs_debug_c('m')) {
1197
                            emprintf2(dev1->memory,
1198
                                      "Warning : Cropping a FAPI glyph while caching : dx=%d,%d.\n",
1199
                                      dy + rast.top_indent,
1200
                                      dy + rast.top_indent +
1201
                                      rast.black_height - dev1->height);
1202
                        }
1203
#endif
1204
1
                        if (dy + rast.top_indent < 0)
1205
1
                            dy -= dy + rast.top_indent;
1206
1
                    }
1207
4.88M
                    if ((code = fapi_copy_mono(dev1, &rast, dx, dy)) < 0)
1208
0
                        return code;
1209
1210
4.88M
                    if (penum_s->cc != NULL) {
1211
4.88M
                        penum_s->cc->offset.x +=
1212
4.88M
                            float2fixed(penum_s->fapi_glyph_shift.x);
1213
4.88M
                        penum_s->cc->offset.y +=
1214
4.88M
                            float2fixed(penum_s->fapi_glyph_shift.y);
1215
4.88M
                    }
1216
4.88M
                }
1217
4.88M
            }
1218
690k
            else if (!SHOW_IS(penum, TEXT_DO_NONE)) {   /* Not using GS cache */
1219
202k
                if ((code =
1220
202k
                     fapi_image_uncached_glyph(pfont, pgs, penum_s, &rast,
1221
202k
                                               import_shift_v)) < 0)
1222
87
                    return code;
1223
202k
            }
1224
5.57M
        }
1225
9.43M
    }
1226
1227
10.0M
    return 0;
1228
10.0M
}
1229
1230
1231
0
#define GET_U16_MSB(p) (((uint)((p)[0]) << 8) + (p)[1])
1232
0
#define GET_S16_MSB(p) (int)((GET_U16_MSB(p) ^ 0x8000) - 0x8000)
1233
1234
28.7M
#define MTX_EQ(mtx1,mtx2) (mtx1->xx == mtx2->xx && mtx1->xy == mtx2->xy && \
1235
14.1M
                           mtx1->yx == mtx2->yx && mtx1->yy == mtx2->yy)
1236
1237
int
1238
gs_fapi_do_char(gs_font *pfont, gs_gstate *pgs, gs_text_enum_t *penum, char *font_file_path,
1239
                bool bBuildGlyph, gs_string *charstring, gs_string *glyphname,
1240
                gs_char chr, gs_glyph index, int subfont)
1241
11.7M
{                               /* Stack : <font> <code|name> --> - */
1242
11.7M
    gs_show_enum *penum_s = (gs_show_enum *) penum;
1243
11.7M
    gx_device *dev = gs_currentdevice_inline(pgs);
1244
1245
    /*
1246
       fixme: the following code needs to optimize with a maintainence of scaled font objects
1247
       in graphics library and in interpreter. Now we suppose that the renderer
1248
       uses font cache, so redundant font opening isn't a big expense.
1249
     */
1250
11.7M
    gs_fapi_char_ref cr =
1251
11.7M
        { 0, {0}, 0, false, NULL, 0, 0, 0, 0, 0, gs_fapi_metrics_notdef };
1252
11.7M
    gs_font_base *pbfont = (gs_font_base *)pfont;
1253
11.7M
    const gs_matrix *ctm = &ctm_only(pgs);
1254
11.7M
    int scale;
1255
11.7M
    gs_fapi_metrics metrics;
1256
11.7M
    gs_fapi_server *I = pbfont->FAPI;
1257
1258
11.7M
    gs_string enc_char_name_string;
1259
11.7M
    bool bCID = (FAPI_ISCIDFONT(pbfont) || charstring != NULL);
1260
11.7M
    bool bIsType1GlyphData = FAPI_ISTYPE1GLYPHDATA(pbfont);
1261
11.7M
    gs_log2_scale_point log2_scale = { 0, 0 };
1262
11.7M
    int alpha_bits = (*dev_proc(dev, get_alpha_bits)) (dev, go_text);
1263
11.7M
    double FontMatrix_div = 1;
1264
11.7M
    bool bVertical = (gs_rootfont(pgs)->WMode != 0), bVertical0 = bVertical;
1265
11.7M
    double *sbwp, sbw[4] = { 0, 0, 0, 0 };
1266
11.7M
    double em_scale_x, em_scale_y;
1267
11.7M
    gs_rect char_bbox;
1268
11.7M
    int code;
1269
11.7M
    bool imagenow = false;
1270
11.7M
    bool align_to_pixels = gs_currentaligntopixels(pbfont->dir);
1271
11.7M
    gs_memory_t *mem = pfont->memory;
1272
11.7M
    enum
1273
11.7M
    {
1274
11.7M
        SBW_DONE,
1275
11.7M
        SBW_SCALE,
1276
11.7M
        SBW_FROM_RENDERER
1277
11.7M
    } sbw_state = SBW_SCALE;
1278
1279
11.7M
    if ( index == GS_NO_GLYPH )
1280
152
        return 0;
1281
1282
11.7M
    I->use_outline = false;
1283
11.7M
    I->transform_outline = false;
1284
1285
11.7M
    if (penum == 0)
1286
0
        return_error(gs_error_undefined);
1287
1288
11.7M
    I->use_outline =
1289
11.7M
        produce_outline_char(penum_s, pbfont, alpha_bits, &log2_scale);
1290
1291
11.7M
    if (I->use_outline) {
1292
1.51M
        I->max_bitmap = 0;
1293
1.51M
    }
1294
10.2M
    else {
1295
        /* FIX ME: It can be a very bad thing, right now, for the FAPI code to decide unilaterally to
1296
         * produce an outline, when the rest of GS expects a bitmap, so we give ourselves a
1297
         * 50% leeway on the maximum cache bitmap, just to be sure. Or the same maximum bitmap size
1298
         * used in gxchar.c
1299
         */
1300
10.2M
        I->max_bitmap =
1301
10.2M
            pbfont->dir->ccache.upper + (pbfont->dir->ccache.upper >> 1) <
1302
10.2M
            MAX_CCACHE_TEMP_BITMAP_BITS ? pbfont->dir->ccache.upper +
1303
10.2M
            (pbfont->dir->ccache.upper >> 1) : MAX_CCACHE_TEMP_BITMAP_BITS;
1304
10.2M
    }
1305
1306
11.7M
    if (pbfont->memory->gs_lib_ctx->font_dir != NULL)
1307
8.69M
        I->grid_fit = pbfont->memory->gs_lib_ctx->font_dir->grid_fit_tt;
1308
3.08M
    else
1309
3.08M
        I->grid_fit = pbfont->dir->grid_fit_tt;
1310
1311
    /* Compute the scale : */
1312
11.7M
    if (!SHOW_IS(penum, TEXT_DO_NONE) && !I->use_outline) {
1313
8.01M
        gs_currentcharmatrix(pgs, NULL, 1);     /* make char_tm valid */
1314
8.01M
        penum_s->fapi_log2_scale = log2_scale;
1315
8.01M
    }
1316
3.77M
    else {
1317
3.77M
        log2_scale.x = 0;
1318
3.77M
        log2_scale.y = 0;
1319
3.77M
    }
1320
1321
    /* Prepare font data
1322
     * This needs done here (earlier than it used to be) because FAPI/UFST has conflicting
1323
     * requirements in what I->get_fontmatrix() returns based on font type, so it needs to
1324
     * find the font type.
1325
     */
1326
1327
11.7M
    I->ff.memory = pbfont->memory;
1328
11.7M
    I->ff.subfont = subfont;
1329
11.7M
    I->ff.font_file_path = font_file_path;
1330
11.7M
    I->ff.client_font_data = pbfont;
1331
11.7M
    I->ff.client_font_data2 = pbfont;
1332
11.7M
    I->ff.server_font_data = pbfont->FAPI_font_data;
1333
11.7M
    I->ff.is_type1 = bIsType1GlyphData;
1334
11.7M
    I->ff.is_cid = bCID;
1335
11.7M
    I->ff.is_outline_font = pbfont->PaintType != 0;
1336
11.7M
    I->ff.metrics_only = fapi_gs_char_show_width_only(penum);
1337
1338
11.7M
    if (!I->ff.is_mtx_skipped)
1339
11.7M
        I->ff.is_mtx_skipped = (gs_fapi_get_metrics_count(&I->ff) != 0);
1340
1341
11.7M
    I->ff.is_vertical = bVertical;
1342
11.7M
    I->ff.client_ctx_p = I->client_ctx_p;
1343
1344
11.7M
    if (recreate_multiple_master(pbfont)) {
1345
0
        if ((void *)pbfont->base == (void *)pbfont) {
1346
0
           gs_fapi_release_typeface(I, &pbfont->FAPI_font_data);
1347
0
        }
1348
0
        else {
1349
0
            pbfont->FAPI_font_data = NULL;
1350
0
            pbfont->FAPI->face.font_id = gs_no_id;
1351
0
        }
1352
0
    }
1353
1354
11.7M
   scale = 1 << I->frac_shift;
1355
14.6M
retry_oversampling:
1356
14.6M
    if (I->face.font_id != pbfont->id ||
1357
14.1M
        !MTX_EQ((&I->face.ctm), ctm) ||
1358
11.4M
        I->face.log2_scale.x != log2_scale.x ||
1359
11.4M
        I->face.log2_scale.y != log2_scale.y ||
1360
11.4M
        I->face.align_to_pixels != align_to_pixels ||
1361
11.4M
        I->face.HWResolution[0] != dev->HWResolution[0] ||
1362
11.4M
        I->face.HWResolution[1] != dev->HWResolution[1]
1363
14.6M
        ) {
1364
3.20M
        gs_fapi_font_scale font_scale = { {1, 0, 0, 1, 0, 0}
1365
3.20M
        , {0, 0}
1366
3.20M
        , {1, 1}
1367
3.20M
        , true
1368
3.20M
        };
1369
1370
3.20M
        gs_matrix lctm, scale_mat, scale_ctm;
1371
3.20M
        I->face.font_id = pbfont->id;
1372
3.20M
        I->face.log2_scale = log2_scale;
1373
3.20M
        I->face.align_to_pixels = align_to_pixels;
1374
3.20M
        I->face.HWResolution[0] = dev->HWResolution[0];
1375
3.20M
        I->face.HWResolution[1] = dev->HWResolution[1];
1376
1377
3.20M
        font_scale.subpixels[0] = 1 << log2_scale.x;
1378
3.20M
        font_scale.subpixels[1] = 1 << log2_scale.y;
1379
3.20M
        font_scale.align_to_pixels = align_to_pixels;
1380
1381
        /* We apply the entire transform to the glyph (that is ctm x FontMatrix)
1382
         * at render time.
1383
         */
1384
3.20M
        lctm = *ctm;
1385
3.32M
retry_scaling:
1386
3.32M
        I->face.ctm = lctm;
1387
3.32M
        memset(&scale_ctm, 0x00, sizeof(gs_matrix));
1388
3.32M
        scale_ctm.xx = dev->HWResolution[0] / 72;
1389
3.32M
        scale_ctm.yy = dev->HWResolution[1] / 72;
1390
1391
3.32M
        if ((code = gs_matrix_invert((const gs_matrix *)&scale_ctm, &scale_ctm)) < 0)
1392
0
            return code;
1393
1394
3.32M
        if ((code = gs_matrix_multiply(&lctm, &scale_ctm, &scale_mat)) < 0)  /* scale_mat ==  CTM - resolution scaling */
1395
0
            return code;
1396
1397
3.32M
        if ((code = I->get_fontmatrix(I, &scale_ctm)) < 0)
1398
0
            return code;
1399
1400
3.32M
        if ((code = gs_matrix_invert((const gs_matrix *)&scale_ctm, &scale_ctm)) < 0)
1401
0
            return code;
1402
1403
3.32M
        if ((code = gs_matrix_multiply(&scale_mat, &scale_ctm, &scale_mat)) < 0)  /* scale_mat ==  CTM - resolution scaling - FontMatrix scaling */
1404
0
            return code;
1405
1406
3.32M
        if (((int64_t)(scale_mat.xx * FontMatrix_div * scale + 0.5)) != ((int32_t)(scale_mat.xx * FontMatrix_div * scale + 0.5))
1407
3.24M
        ||  ((int64_t)(scale_mat.xy * FontMatrix_div * scale + 0.5)) != ((int32_t)(scale_mat.xy * FontMatrix_div * scale + 0.5))
1408
3.22M
        ||  ((int64_t)(scale_mat.yx * FontMatrix_div * scale + 0.5)) != ((int32_t)(scale_mat.yx * FontMatrix_div * scale + 0.5))
1409
3.21M
        ||  ((int64_t)(scale_mat.yy * FontMatrix_div * scale + 0.5)) != ((int32_t)(scale_mat.yy * FontMatrix_div * scale + 0.5))) {
1410
            /* Overflow
1411
               If the scaling is large enough to overflow the 16.16 representation, we forcibly produce an outline
1412
               unscaled except an arbitrary "midrange" scale (chosen to avoid under/overflow issues). And
1413
               then scale the points as we create the Ghostscript path outline_char().
1414
               If the glyph is this large, we're really not worried about hinting or dropout detection etc.
1415
             */
1416
1417
114k
            memset(&lctm, 0x00, sizeof(gs_matrix));
1418
114k
            lctm.xx = 256.0;
1419
114k
            lctm.yy = 256.0;
1420
114k
            I->transform_outline = true;
1421
114k
            I->use_outline = true;
1422
114k
            if ((code = gs_matrix_invert((const gs_matrix *)&lctm, &scale_ctm)) < 0)
1423
0
                 return code;
1424
114k
            if ((code = gs_matrix_multiply(ctm, &scale_ctm, &scale_mat)) < 0)  /* scale_mat ==  CTM - resolution scaling */
1425
0
                return code;
1426
1427
114k
            I->outline_mat = scale_mat;
1428
114k
            goto retry_scaling;
1429
114k
        }
1430
3.20M
        else {
1431
3.20M
            font_scale.matrix[0] =  FAPI_ROUND_TO_FRACINT(scale_mat.xx * FontMatrix_div * scale);
1432
3.20M
            font_scale.matrix[1] = -FAPI_ROUND_TO_FRACINT(scale_mat.xy * FontMatrix_div * scale);
1433
3.20M
            font_scale.matrix[2] =  FAPI_ROUND_TO_FRACINT(scale_mat.yx * FontMatrix_div * scale);
1434
3.20M
            font_scale.matrix[3] = -FAPI_ROUND_TO_FRACINT(scale_mat.yy * FontMatrix_div * scale);
1435
3.20M
            font_scale.matrix[4] =  FAPI_ROUND_TO_FRACINT(scale_mat.tx * FontMatrix_div * scale);
1436
3.20M
            font_scale.matrix[5] =  FAPI_ROUND_TO_FRACINT(scale_mat.ty * FontMatrix_div * scale);
1437
3.20M
        }
1438
1439
        /* Note: the ctm mapping here is upside down. */
1440
3.20M
        font_scale.HWResolution[0] =
1441
3.20M
            (fracint) ((double)dev->HWResolution[0] *
1442
3.20M
                       font_scale.subpixels[0] * scale);
1443
3.20M
        font_scale.HWResolution[1] =
1444
3.20M
            (fracint) ((double)dev->HWResolution[1] *
1445
3.20M
                       font_scale.subpixels[1] * scale);
1446
1447
1448
3.20M
        if ((hypot((double)font_scale.matrix[0], (double)font_scale.matrix[2])
1449
3.20M
             == 0.0
1450
3.20M
             || hypot((double)font_scale.matrix[1],
1451
3.20M
                      (double)font_scale.matrix[3]) == 0.0)) {
1452
1453
            /* If the matrix is degenerate, force a scale to 1 unit. */
1454
1.64k
            memset(&font_scale.matrix, 0x00, sizeof(font_scale.matrix));
1455
1.64k
            if (!font_scale.matrix[0])
1456
1.64k
                font_scale.matrix[0] = 1;
1457
1.64k
            if (!font_scale.matrix[3])
1458
1.64k
                font_scale.matrix[3] = 1;
1459
1.64k
        }
1460
1461
3.20M
        if ((code =
1462
3.20M
             gs_fapi_renderer_retcode(mem, I,
1463
3.20M
                                      I->get_scaled_font(I, &I->ff,
1464
3.20M
                                                         &font_scale, NULL,
1465
3.20M
                                                         gs_fapi_toplevel_prepared))) < 0) {
1466
151
            return code;
1467
151
        }
1468
3.20M
        pbfont->FAPI_font_data = I->ff.server_font_data;    /* Save it back to GS font. */
1469
3.20M
    }
1470
1471
14.6M
    cr.char_codes_count = 1;
1472
14.6M
    cr.char_codes[0] = index;
1473
14.6M
    cr.client_char_code = chr;
1474
14.6M
    cr.is_glyph_index = true;
1475
14.6M
    enc_char_name_string.data = NULL;
1476
14.6M
    enc_char_name_string.size = 0;
1477
1478
14.6M
    if (I->ff.get_glyphname_or_cid) {
1479
14.6M
        if ((code =
1480
14.6M
             I->ff.get_glyphname_or_cid(penum, pbfont, charstring, glyphname, index,
1481
14.6M
                                        &enc_char_name_string, font_file_path,
1482
14.6M
                                        &cr, bCID)) < 0)
1483
0
            return (code);
1484
14.6M
    }
1485
1486
    /* Compute the metrics replacement : */
1487
14.6M
    if (bCID && !bIsType1GlyphData) {
1488
1.04M
        gs_font_cid2 *pfcid = (gs_font_cid2 *) pbfont;
1489
1.04M
        int MetricsCount = pfcid->cidata.MetricsCount;
1490
1491
1.04M
        if (MetricsCount > 0) {
1492
0
            const byte *data_ptr;
1493
0
            int l = I->ff.get_glyphdirectory_data(&(I->ff), cr.char_codes[0],
1494
0
                                                  &data_ptr);
1495
1496
            /* We do not need to apply the unitsPerEm scale here because
1497
             * these values are read directly from the glyph data.
1498
             */
1499
0
            if (MetricsCount == 2 && l >= 4) {
1500
0
                if (!bVertical0) {
1501
0
                    cr.sb_x = GET_S16_MSB(data_ptr + 2) * scale;
1502
0
                    cr.aw_x = GET_U16_MSB(data_ptr + 0) * scale;
1503
0
                    cr.metrics_type = gs_fapi_metrics_replace;
1504
0
                }
1505
0
            }
1506
0
            else if (l >= 8) {
1507
0
                cr.sb_y = GET_S16_MSB(data_ptr + 2) * scale;
1508
0
                cr.aw_y = GET_U16_MSB(data_ptr + 0) * scale;
1509
0
                cr.sb_x = GET_S16_MSB(data_ptr + 6) * scale;
1510
0
                cr.aw_x = GET_U16_MSB(data_ptr + 4) * scale;
1511
0
                cr.metrics_type = gs_fapi_metrics_replace;
1512
0
            }
1513
0
        }
1514
1.04M
    }
1515
    /* Metrics in GS are scaled to a 1.0x1.0 square, as that's what Postscript
1516
     * fonts expect. But for Truetype we need the "native" units,
1517
     */
1518
14.6M
    em_scale_x = 1.0;
1519
14.6M
    if (pfont->FontType == ft_TrueType) {
1520
3.93M
        gs_font_type42 *pfont42 = (gs_font_type42 *) pfont;
1521
3.93M
        em_scale_x = pfont42->data.unitsPerEm;
1522
3.93M
    }
1523
1524
14.6M
    if (cr.metrics_type != gs_fapi_metrics_replace && bVertical) {
1525
7.10k
        double pwv[4];
1526
1527
7.10k
        code =
1528
7.10k
            I->ff.fapi_get_metrics(&I->ff, &enc_char_name_string, index, pwv,
1529
7.10k
                                   bVertical);
1530
7.10k
        if (code < 0)
1531
0
            return code;
1532
7.10k
        if (code == 0 /* metricsNone */ ) {
1533
7.10k
            if (bCID && (!bIsType1GlyphData && font_file_path)) {
1534
0
                cr.sb_x = (fracint)(fapi_round( (sbw[2] / 2)         * scale) * em_scale_x);
1535
0
                cr.sb_y = (fracint)(fapi_round( pbfont->FontBBox.q.y * scale) * em_scale_x);
1536
0
                cr.aw_y = (fracint)(fapi_round(-pbfont->FontBBox.q.x * scale) * em_scale_x);    /* Sic ! */
1537
0
                cr.metrics_scale = 1;
1538
0
                cr.metrics_type = gs_fapi_metrics_replace;
1539
0
                sbw[0] = sbw[2] / 2;
1540
0
                sbw[1] = pbfont->FontBBox.q.y;
1541
0
                sbw[2] = 0;
1542
0
                sbw[3] = -pbfont->FontBBox.q.x; /* Sic ! */
1543
0
                sbw_state = SBW_DONE;
1544
0
            }
1545
7.10k
            else {
1546
7.10k
                bVertical = false;
1547
7.10k
            }
1548
7.10k
        }
1549
0
        else {
1550
0
            cr.sb_x = (fracint)(fapi_round(pwv[2] * scale) * em_scale_x);
1551
0
            cr.sb_y = (fracint)(fapi_round(pwv[3] * scale) * em_scale_x);
1552
0
            cr.aw_x = (fracint)(fapi_round(pwv[0] * scale) * em_scale_x);
1553
0
            cr.aw_y = (fracint)(fapi_round(pwv[1] * scale) * em_scale_x);
1554
0
            cr.metrics_scale = (bIsType1GlyphData ? 1000 : 1);
1555
0
            cr.metrics_type = (code == 2 /* metricsSideBearingAndWidth */ ? gs_fapi_metrics_replace
1556
0
                               : gs_fapi_metrics_replace_width);
1557
0
            sbw[0] = pwv[2];
1558
0
            sbw[1] = pwv[3];
1559
0
            sbw[2] = pwv[0];
1560
0
            sbw[3] = pwv[1];
1561
0
            sbw_state = SBW_DONE;
1562
0
        }
1563
7.10k
    }
1564
14.6M
    if (cr.metrics_type == gs_fapi_metrics_notdef && !bVertical) {
1565
14.4M
        code =
1566
14.4M
            I->ff.fapi_get_metrics(&I->ff, &enc_char_name_string, (int)index, sbw,
1567
14.4M
                                   bVertical);
1568
14.4M
        if (code < 0)
1569
0
            return code;
1570
14.4M
        if (code == 0 /* metricsNone */ ) {
1571
14.4M
            sbw_state = SBW_FROM_RENDERER;
1572
14.4M
            if (pbfont->FontType == 2) {
1573
305k
                gs_font_type1 *pfont1 = (gs_font_type1 *) pbfont;
1574
1575
305k
                cr.aw_x =
1576
305k
                    export_shift(pfont1->data.defaultWidthX,
1577
305k
                                 _fixed_shift - I->frac_shift);
1578
305k
                cr.metrics_scale = 1000;
1579
305k
                cr.metrics_type = gs_fapi_metrics_add;
1580
305k
            }
1581
14.4M
        }
1582
0
        else {
1583
0
            cr.sb_x = fapi_round(sbw[0] * scale * em_scale_x);
1584
0
            cr.sb_y = fapi_round(sbw[1] * scale * em_scale_x);
1585
0
            cr.aw_x = fapi_round(sbw[2] * scale * em_scale_x);
1586
0
            cr.aw_y = fapi_round(sbw[3] * scale * em_scale_x);
1587
0
            cr.metrics_scale = (bIsType1GlyphData ? 1000 : 1);
1588
0
            cr.metrics_type = (code == 2 /* metricsSideBearingAndWidth */ ? gs_fapi_metrics_replace
1589
0
                               : gs_fapi_metrics_replace_width);
1590
0
            sbw_state = SBW_DONE;
1591
0
        }
1592
14.4M
    }
1593
14.6M
    memset(&metrics, 0x00, sizeof(metrics));
1594
    /* Take metrics from font : */
1595
14.6M
    if (I->ff.metrics_only) {
1596
2.22M
        code = I->get_char_outline_metrics(I, &I->ff, &cr, &metrics);
1597
2.22M
    }
1598
12.4M
    else if (I->use_outline) {
1599
4.47M
        code = I->get_char_outline_metrics(I, &I->ff, &cr, &metrics);
1600
4.47M
    }
1601
7.93M
    else {
1602
7.93M
        code = I->get_char_raster_metrics(I, &I->ff, &cr, &metrics);
1603
        /* A VMerror could be a real out of memory, or the glyph being too big for a bitmap
1604
         * so it's worth retrying as an outline glyph
1605
         */
1606
7.93M
        if (code == gs_error_VMerror) {
1607
2.84M
            I->use_outline = true;
1608
2.84M
            goto retry_oversampling;
1609
2.84M
        }
1610
5.09M
        if (code == gs_error_limitcheck) {
1611
0
            if (log2_scale.x > 0 || log2_scale.y > 0) {
1612
0
                penum_s->fapi_log2_scale.x = log2_scale.x =
1613
0
                    penum_s->fapi_log2_scale.y = log2_scale.y = 0;
1614
0
                I->release_char_data(I);
1615
0
                goto retry_oversampling;
1616
0
            }
1617
0
            code = I->get_char_outline_metrics(I, &I->ff, &cr, &metrics);
1618
0
        }
1619
5.09M
    }
1620
1621
    /* This handles the situation where a charstring has been replaced with a PS procedure.
1622
     * against the rules, but not *that* rare.
1623
     * It's also something that GS does internally to simulate font styles.
1624
     */
1625
11.7M
    if (code > 0) {
1626
0
        return (gs_error_unregistered);
1627
0
    }
1628
1629
11.7M
    if ((code = gs_fapi_renderer_retcode(mem, I, code)) < 0)
1630
12.2k
        return code;
1631
1632
11.7M
    compute_em_scale(pbfont, &metrics, FontMatrix_div, &em_scale_x,
1633
11.7M
                     &em_scale_y);
1634
11.7M
    char_bbox.p.x = metrics.bbox_x0 / em_scale_x;
1635
11.7M
    char_bbox.p.y = metrics.bbox_y0 / em_scale_y;
1636
11.7M
    char_bbox.q.x = metrics.bbox_x1 / em_scale_x;
1637
11.7M
    char_bbox.q.y = metrics.bbox_y1 / em_scale_y;
1638
1639
    /* We must use the FontBBox, but it seems some buggy fonts have glyphs which extend outside the
1640
     * FontBBox, so we have to do this....
1641
     */
1642
11.7M
    if (pbfont->FontType != ft_MicroType && !bCID
1643
11.0M
        && pbfont->FontBBox.q.x > pbfont->FontBBox.p.x
1644
10.9M
        && pbfont->FontBBox.q.y > pbfont->FontBBox.p.y) {
1645
10.9M
        char_bbox.p.x = min(char_bbox.p.x, pbfont->FontBBox.p.x);
1646
10.9M
        char_bbox.p.y = min(char_bbox.p.y, pbfont->FontBBox.p.y);
1647
10.9M
        char_bbox.q.x = max(char_bbox.q.x, pbfont->FontBBox.q.x);
1648
10.9M
        char_bbox.q.y = max(char_bbox.q.y, pbfont->FontBBox.q.y);
1649
10.9M
    }
1650
1651
11.7M
    if (pbfont->PaintType != 0) {
1652
0
        float w = pbfont->StrokeWidth / 2;
1653
1654
0
        char_bbox.p.x -= w;
1655
0
        char_bbox.p.y -= w;
1656
0
        char_bbox.q.x += w;
1657
0
        char_bbox.q.y += w;
1658
0
    }
1659
11.7M
    penum_s->fapi_glyph_shift.x = penum_s->fapi_glyph_shift.y = 0;
1660
11.7M
    if (sbw_state == SBW_FROM_RENDERER) {
1661
11.7M
        int can_replace_metrics;
1662
1663
11.7M
        if ((code =
1664
11.7M
             gs_fapi_renderer_retcode(mem, I,
1665
11.7M
                                      I->can_replace_metrics(I, &I->ff, &cr,
1666
11.7M
                                                             &can_replace_metrics)))
1667
11.7M
            < 0)
1668
0
            return code;
1669
1670
11.7M
        sbw[2] = metrics.escapement / em_scale_x;
1671
11.7M
        sbw[3] = metrics.v_escapement / em_scale_y;
1672
11.7M
        if (pbfont->FontType == 2 && !can_replace_metrics) {
1673
0
            gs_font_type1 *pfont1 = (gs_font_type1 *) pbfont;
1674
1675
0
            sbw[2] += fixed2float(pfont1->data.nominalWidthX);
1676
0
        }
1677
11.7M
    }
1678
0
    else if (sbw_state == SBW_SCALE) {
1679
0
        sbw[0] = (double)cr.sb_x / scale / em_scale_x;
1680
0
        sbw[1] = (double)cr.sb_y / scale / em_scale_y;
1681
0
        sbw[2] = (double)cr.aw_x / scale / em_scale_x;
1682
0
        sbw[3] = (double)cr.aw_y / scale / em_scale_y;
1683
0
    }
1684
1685
    /* Setup cache and render : */
1686
11.7M
    if (cr.metrics_type == gs_fapi_metrics_replace) {
1687
        /*
1688
         * Here we don't take care of replaced advance width
1689
         * because gs_text_setcachedevice handles it.
1690
         */
1691
0
        int can_replace_metrics;
1692
1693
0
        if ((code =
1694
0
             gs_fapi_renderer_retcode(mem, I,
1695
0
                                      I->can_replace_metrics(I, &I->ff, &cr,
1696
0
                                                             &can_replace_metrics)))
1697
0
            < 0)
1698
0
            return code;
1699
0
        if (!can_replace_metrics) {
1700
            /*
1701
             * The renderer should replace the lsb, but it can't.
1702
             * To work around we compute a displacement in integral pixels
1703
             * and later shift the bitmap to it. The raster will be inprecise
1704
             * with non-integral pixels shift.
1705
             */
1706
0
            char_bbox.q.x -= char_bbox.p.x;
1707
0
            char_bbox.p.x = 0;
1708
0
            gs_distance_transform((metrics.bbox_x0 / em_scale_x - sbw[0]),
1709
0
                                  0, ctm, &penum_s->fapi_glyph_shift);
1710
0
            penum_s->fapi_glyph_shift.x *= 1 << log2_scale.x;
1711
0
            penum_s->fapi_glyph_shift.y *= 1 << log2_scale.y;
1712
0
        }
1713
0
    }
1714
1715
    /*
1716
     * We assume that if bMetricsFromGlyphDirectory is true,
1717
     * the font does not specify Metrics[2] and/or CDevProc
1718
     * If someday we meet a font contradicting this assumption,
1719
     * zchar_set_cache to be improved with additional flag,
1720
     * to ignore Metrics[2] and CDevProc.
1721
     *
1722
     * Note that for best quality the result of CDevProc
1723
     * to be passed to I->get_char_raster_metrics, because
1724
     * both raster and metrics depend on replaced lsb.
1725
     * Perhaps in many cases the metrics from font is
1726
     * used as an argument for CDevProc. Only way to resolve
1727
     * is to call I->get_char_raster_metrics twice (before
1728
     * and after CDevProc), or better to split it into
1729
     * smaller functions. Unfortunately UFST cannot retrieve metrics
1730
     * quickly and separately from raster. Only way to resolve is
1731
     * to devide the replaced lsb into 2 parts, which correspond to
1732
     * integral and fractinal pixels, then pass the fractional shift
1733
     * to renderer and apply the integer shift after it.
1734
     *
1735
     * Besides that, we are not sure what to do if a font
1736
     * contains both Metrics[2] and CDevProc. Should
1737
     * CDevProc to be applied to Metrics[2] or to the metrics
1738
     * from glyph code ? Currently we keep a compatibility
1739
     * to the native GS font renderer without a deep analyzis.
1740
     */
1741
1742
    /* Don't allow caching if we're only returning the metrics */
1743
11.7M
    if (I->ff.metrics_only) {
1744
2.22M
        pgs->in_cachedevice = CACHE_DEVICE_NOT_CACHING;
1745
2.22M
    }
1746
1747
11.7M
    if (pgs->in_cachedevice == CACHE_DEVICE_CACHING) {
1748
0
        sbwp = sbw;
1749
0
    }
1750
11.7M
    else {
1751
        /* Very occasionally, if we don't do this, setcachedevice2
1752
         * will decide we are cacheing, when we're not, and this
1753
         * causes problems when we get to show_update().
1754
         */
1755
11.7M
        sbwp = NULL;
1756
1757
11.7M
        if (I->use_outline) {
1758
            /* HACK!!
1759
             * The decision about whether to cache has already been
1760
             * we need to prevent it being made again....
1761
             */
1762
4.47M
            pgs->in_cachedevice = CACHE_DEVICE_NOT_CACHING;
1763
4.47M
        }
1764
11.7M
    }
1765
1766
11.7M
    if (bCID) {
1767
759k
        code =
1768
759k
            I->ff.fapi_set_cache(penum, pbfont, &enc_char_name_string, index + GS_MIN_CID_GLYPH,
1769
759k
                                 sbw + 2, &char_bbox, sbwp, &imagenow);
1770
759k
    }
1771
11.0M
    else {
1772
11.0M
        code =
1773
11.0M
            I->ff.fapi_set_cache(penum, pbfont, &enc_char_name_string, index,
1774
11.0M
                                 sbw + 2, &char_bbox, sbwp, &imagenow);
1775
11.0M
    }
1776
1777
    /* If we can render the glyph now, do so.
1778
     * we may not be able to in the PS world if there's a CDevProc in the font
1779
     * in which case gs_fapi_finish_render() will be called from the PS
1780
     * "function" zfapi_finish_render() which has been pushed onto the
1781
     * stack.
1782
     */
1783
11.7M
    if (code >= 0 && imagenow == true) {
1784
10.0M
        code = gs_fapi_finish_render(pfont, pgs, penum, I);
1785
10.0M
        I->release_char_data(I);
1786
10.0M
    }
1787
1788
11.7M
    if (code != 0) {
1789
1.74M
        if (code < 0) {
1790
            /* An error */
1791
1.74M
            I->release_char_data(I);
1792
1.74M
        }
1793
3.53k
        else {
1794
            /* Callout to CDevProc, zsetcachedevice2, zfapi_finish_render. */
1795
3.53k
        }
1796
1.74M
    }
1797
1798
11.7M
    return code;
1799
11.7M
}
1800
1801
int
1802
gs_fapi_get_font_info(gs_font *pfont, gs_fapi_font_info item, int index,
1803
                      void *data, int *data_len)
1804
0
{
1805
0
    int code = 0;
1806
0
    gs_font_base *pbfont = (gs_font_base *) pfont;
1807
0
    gs_fapi_server *I = pbfont->FAPI;
1808
1809
0
    code = I->get_font_info(I, &I->ff, item, index, data, data_len);
1810
0
    return (code);
1811
0
}
1812
1813
/* On finding a suitable FAPI instance, fapi_id will be set to point to the string of the instance name.
1814
 * A specific FAPI instance can be requested with the "fapi_request" parameter, but if the requested
1815
 * isn't found, or rejects the font, we're re-search the available instances to find one that can handle
1816
 * the font. If only an exact match is suitable, it is up to the *caller* to enforce that.
1817
 */
1818
int
1819
gs_fapi_passfont(gs_font *pfont, int subfont, char *font_file_path,
1820
                 gs_string *full_font_buf, char *fapi_request, char *xlatmap,
1821
                 char **fapi_id, char **decodingID, gs_fapi_get_server_param_callback get_server_param_cb)
1822
2.56M
{
1823
2.56M
    gs_font_base *pbfont;
1824
2.56M
    int code = 0;
1825
2.56M
    gs_fapi_server *I, **list;
1826
2.56M
    bool free_params = false;
1827
2.56M
    gs_memory_t *mem = pfont->memory;
1828
2.56M
    const char *ldecodingID = NULL;
1829
2.56M
    bool do_restart = false;
1830
1831
2.56M
    list = gs_fapi_get_server_list(mem);
1832
1833
2.56M
    if (!list) /* Should never happen */
1834
0
      return_error(gs_error_unregistered);
1835
1836
2.56M
    (*fapi_id) = NULL;
1837
1838
2.56M
    pbfont = (gs_font_base *) pfont;
1839
1840
2.56M
    I = *list;
1841
1842
2.56M
    if (fapi_request) {
1843
0
        if (gs_debug_c('1'))
1844
0
            dprintf1("Requested FAPI plugin: %s ", fapi_request);
1845
1846
0
        while ((I = *list) != NULL
1847
0
               && strncmp(I->ig.d->subtype, fapi_request,
1848
0
                          strlen(fapi_request)) != 0) {
1849
0
            list++;
1850
0
        }
1851
0
        if (!I) {
1852
0
            if (gs_debug_c('1'))
1853
0
                dprintf("not found. Falling back to normal plugin search\n");
1854
0
            list = (gs_fapi_server **) gs_fapi_get_server_list(mem);
1855
0
            I = *list;
1856
0
        }
1857
0
        else {
1858
0
            if (gs_debug_c('1'))
1859
0
                dprintf("found.\n");
1860
0
            do_restart = true;
1861
0
        }
1862
0
    }
1863
1864
2.56M
    while (I) {
1865
2.56M
        char *server_param = NULL;
1866
2.56M
        int server_param_size = 0;
1867
1868
2.56M
        code = (*get_server_param_cb) (I, (const char *)I->ig.d->subtype,
1869
2.56M
                                &server_param, &server_param_size);
1870
1871
2.56M
        if (code < 0)
1872
0
            return code;
1873
1874
2.56M
        if (server_param == NULL && server_param_size > 0) {
1875
1.95M
            server_param =
1876
1.95M
                (char *)gs_alloc_bytes_immovable(mem->non_gc_memory,
1877
1.95M
                                         server_param_size,
1878
1.95M
                                         "gs_fapi_passfont server params");
1879
1.95M
            if (!server_param) {
1880
0
                return_error(gs_error_VMerror);
1881
0
            }
1882
1.95M
            free_params = true;
1883
1.95M
            (*get_server_param_cb) (I, (const char *)I->ig.d->subtype,
1884
1.95M
                                    &server_param, &server_param_size);
1885
1.95M
        }
1886
1887
2.56M
        if ((code =
1888
2.56M
             gs_fapi_renderer_retcode(mem, I,
1889
2.56M
                                      I->ensure_open(I, server_param,
1890
2.56M
                                                     server_param_size))) < 0) {
1891
0
            gs_free_object(mem->non_gc_memory, server_param,
1892
0
                           "gs_fapi_passfont server params");
1893
0
            return code;
1894
0
        }
1895
1896
2.56M
        if (free_params) {
1897
1.95M
            gs_free_object(mem->non_gc_memory, server_param,
1898
1.95M
                           "gs_fapi_passfont server params");
1899
1.95M
        }
1900
1901
2.56M
        pbfont->FAPI = I;       /* we need the FAPI server during this stage */
1902
2.56M
        code =
1903
2.56M
            gs_fapi_prepare_font(pfont, I, subfont, font_file_path,
1904
2.56M
                                 full_font_buf, xlatmap, &ldecodingID);
1905
2.56M
        if (code >= 0) {
1906
2.55M
            if (decodingID != NULL)
1907
590k
                *decodingID = (char *)ldecodingID;
1908
2.55M
            (*fapi_id) = (char *)I->ig.d->subtype;
1909
2.55M
            return 0;
1910
2.55M
        }
1911
1912
        /* renderer failed, continue search */
1913
3.11k
        pbfont->FAPI = NULL;
1914
3.11k
        if (do_restart == true) {
1915
0
            if (gs_debug_c('1'))
1916
0
                dprintf1
1917
0
                    ("Requested FAPI plugin %s failed, searching for alternative plugin\n",
1918
0
                     I->ig.d->subtype);
1919
0
            list = (gs_fapi_server **) gs_fapi_get_server_list(mem);
1920
0
            do_restart = false;
1921
0
        }
1922
3.11k
        else {
1923
3.11k
            I = *list;
1924
3.11k
            list++;
1925
3.11k
        }
1926
3.11k
    }
1927
1.55k
    return (code);
1928
2.56M
}
1929
1930
bool
1931
gs_fapi_available(gs_memory_t *mem, char *server)
1932
2.89M
{
1933
2.89M
    bool retval = false;
1934
1935
2.89M
    if (server) {
1936
174k
        gs_fapi_server *serv = NULL;
1937
1938
174k
        retval = (gs_fapi_find_server(mem, server, &serv, NULL) >= 0);
1939
174k
    }
1940
2.72M
    else {
1941
2.72M
        retval = ((mem->gs_lib_ctx->fapi_servers) != NULL) && (*(mem->gs_lib_ctx->fapi_servers) != NULL);
1942
2.72M
    }
1943
2.89M
    return (retval);
1944
2.89M
}
1945
1946
void
1947
gs_fapi_set_servers_client_data(gs_memory_t *mem, const gs_fapi_font *ff_proto, void *ctx_ptr)
1948
2.71M
{
1949
2.71M
    gs_fapi_server **servs = gs_fapi_get_server_list(mem);
1950
1951
2.71M
    if (servs) {
1952
5.42M
        while (*servs) {
1953
2.71M
            (*servs)->client_ctx_p = ctx_ptr;
1954
2.71M
            if (ff_proto)
1955
2.63M
                (*servs)->ff = *ff_proto;
1956
2.71M
            servs++;
1957
2.71M
        }
1958
2.71M
    }
1959
2.71M
}
1960
1961
gs_fapi_server **
1962
gs_fapi_get_server_list(gs_memory_t *mem)
1963
5.53M
{
1964
5.53M
    return (mem->gs_lib_ctx->fapi_servers);
1965
5.53M
}
1966
1967
int
1968
gs_fapi_find_server(gs_memory_t *mem, const char *name, gs_fapi_server **server,
1969
                    gs_fapi_get_server_param_callback get_server_param_cb)
1970
264k
{
1971
264k
    gs_fapi_server **servs = gs_fapi_get_server_list(mem);
1972
264k
    char *server_param = NULL;
1973
264k
    int server_param_size = 0;
1974
264k
    int code = 0;
1975
264k
    bool free_params = false;
1976
1977
264k
    (*server) = NULL;
1978
1979
457k
    while (servs && *servs && strcmp((char *)(*servs)->ig.d->subtype, (char *)name)) {
1980
193k
        servs++;
1981
193k
    }
1982
1983
264k
    if (servs && *servs && get_server_param_cb) {
1984
70.3k
        code = (*get_server_param_cb) ((*servs), (char *) (*servs)->ig.d->subtype,
1985
70.3k
                                &server_param, &server_param_size);
1986
1987
70.3k
        if (code < 0)
1988
0
            return code;
1989
1990
70.3k
        if (server_param == NULL && server_param_size > 0) {
1991
0
            server_param =
1992
0
                (char *)gs_alloc_bytes_immovable(mem->non_gc_memory,
1993
0
                                         server_param_size,
1994
0
                                         "gs_fapi_find_server server params");
1995
0
            if (!server_param) {
1996
0
                return_error(gs_error_VMerror);
1997
0
            }
1998
0
            free_params = true;
1999
0
            (*get_server_param_cb) ((*servs),
2000
0
                                    (const char *)(*servs)->ig.d->subtype,
2001
0
                                    &server_param, &server_param_size);
2002
0
        }
2003
2004
70.3k
        code = gs_fapi_renderer_retcode(mem, (*servs),
2005
70.3k
                                 (*servs)->ensure_open((*servs),
2006
70.3k
                                                       server_param,
2007
70.3k
                                                       server_param_size));
2008
2009
70.3k
        if (free_params) {
2010
0
            gs_free_object(mem->non_gc_memory, server_param,
2011
0
                           "gs_fapi_find_server: server_param");
2012
0
        }
2013
2014
70.3k
        (*server) = (*servs);
2015
70.3k
    }
2016
193k
    else {
2017
193k
        if (!servs || !(*servs)) {
2018
193k
            code = gs_error_invalidaccess;
2019
193k
        }
2020
193k
    }
2021
2022
2023
264k
    return (code);
2024
264k
}
2025
2026
int
2027
gs_fapi_init(gs_memory_t *mem)
2028
190k
{
2029
190k
    int code = 0;
2030
190k
    int i, num_servers = 0;
2031
190k
    gs_fapi_server **servs = NULL;
2032
190k
    const gs_fapi_server_init_func *gs_fapi_server_inits =
2033
190k
        gs_get_fapi_server_inits();
2034
2035
381k
    while (gs_fapi_server_inits[num_servers]) {
2036
190k
        num_servers++;
2037
190k
    }
2038
2039
190k
    servs =
2040
190k
        (gs_fapi_server **) gs_alloc_bytes_immovable(mem->non_gc_memory,
2041
190k
                                                     (size_t)(num_servers +
2042
190k
                                                      1) *
2043
190k
                                                     sizeof(gs_fapi_server *),
2044
190k
                                                     "gs_fapi_init");
2045
190k
    if (!servs) {
2046
0
        return_error(gs_error_VMerror);
2047
0
    }
2048
2049
381k
    for (i = 0; i < num_servers; i++) {
2050
190k
        gs_fapi_server_init_func *f =
2051
190k
            (gs_fapi_server_init_func *) & (gs_fapi_server_inits[i]);
2052
2053
190k
        code = (*f) (mem, &(servs[i]));
2054
190k
        if (code != 0) {
2055
0
            break;
2056
0
        }
2057
        /* No point setting this, as in PS, the interpreter context might move
2058
         * But set it to NULL, just for safety */
2059
190k
        servs[i]->client_ctx_p = NULL;
2060
190k
    }
2061
2062
381k
    for (; i < num_servers + 1; i++) {
2063
190k
        servs[i] = NULL;
2064
190k
    }
2065
2066
190k
    mem->gs_lib_ctx->fapi_servers = servs;
2067
2068
190k
    return (code);
2069
190k
}
2070
2071
void
2072
gs_fapi_finit(gs_memory_t *mem)
2073
190k
{
2074
190k
    gs_fapi_server **servs = mem->gs_lib_ctx->fapi_servers;
2075
2076
381k
    while (servs && *servs) {
2077
190k
        ((*servs)->ig.d->finit) (servs);
2078
190k
        servs++;
2079
190k
    }
2080
190k
    gs_free_object(mem->non_gc_memory, mem->gs_lib_ctx->fapi_servers,
2081
190k
                   "gs_fapi_finit: mem->gs_lib_ctx->fapi_servers");
2082
    mem->gs_lib_ctx->fapi_servers = NULL;
2083
190k
}