Coverage Report

Created: 2025-06-10 06:49

/src/ghostpdl/base/gstrans.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Implementation of transparency, other than rendering */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "gx.h"
21
#include "gserrors.h"
22
#include "gstrans.h"
23
#include "gsutil.h"
24
#include "gzstate.h"
25
#include "gxdevcli.h"
26
#include "gdevdevn.h"
27
#include "gxblend.h"
28
#include "gdevp14.h"
29
#include "gscspace.h"
30
#include "gxarith.h"
31
#include "gxclist.h"
32
#include "gsicc_manage.h"
33
#include "gsicc_cache.h"
34
#include "gxdevsop.h"
35
36
/* ------ Transparency-related graphics state elements ------ */
37
38
int
39
gs_setblendmode(gs_gstate *pgs, gs_blend_mode_t mode)
40
131k
{
41
#ifdef DEBUG
42
    if (gs_debug_c('v')) {
43
        static const char *const bm_names[] = { GS_BLEND_MODE_NAMES };
44
45
        dmlprintf1(pgs->memory, "[v]("PRI_INTPTR")blend_mode = ", (intptr_t)pgs);
46
        if (mode >= 0 && mode < countof(bm_names))
47
            dmprintf1(pgs->memory, "%s\n", bm_names[mode]);
48
        else
49
            dmprintf1(pgs->memory, "%d??\n", (int)mode);
50
    }
51
#endif
52
    /* Map Compatible to Normal so other code treats Compatible as Normal */
53
    /* Often BLEND_MODE_Normal is checked for optimized handling, and     */
54
    /* Compatible is now specified to be the same.                        */
55
131k
    if (mode == BLEND_MODE_Compatible)
56
130k
        mode = BLEND_MODE_Normal;
57
131k
    if ((int)mode < 0 || (int)mode > MAX_BLEND_MODE)
58
0
        return_error(gs_error_rangecheck);
59
131k
    pgs->blend_mode = mode;
60
131k
    return 0;
61
131k
}
62
63
gs_blend_mode_t
64
gs_currentblendmode(const gs_gstate *pgs)
65
31.9k
{
66
31.9k
    return pgs->blend_mode;
67
31.9k
}
68
69
int
70
gs_settextknockout(gs_gstate *pgs, bool knockout)
71
130k
{
72
130k
    if_debug2m('v', pgs->memory, "[v]("PRI_INTPTR")text_knockout = %s\n",
73
130k
              (intptr_t)pgs, (knockout ? "true" : "false"));
74
130k
    pgs->text_knockout = knockout;
75
130k
    return 0;
76
130k
}
77
78
bool
79
gs_currenttextknockout(const gs_gstate *pgs)
80
11.2k
{
81
11.2k
    return pgs->text_knockout;
82
11.2k
}
83
84
/* This is used to keep pdf14 compositor actions from the interpreter from
85
   corrupting pattern renderings.  For example, if the file has a softmask,
86
   the intrepter will send push and pop transparency state commands when
87
   q and Q operations are encountered.  If we are writing out to a pattern
88
   clist that has no trasparency we do not want these state changes to
89
   be entered as compositor actions in the pattern clist */
90
91
static int
92
check_for_nontrans_pattern(gs_gstate *pgs, unsigned char *comp_name)
93
5.05k
{
94
5.05k
    gx_device * dev = pgs->device;
95
5.05k
    bool is_patt_clist = gx_device_is_pattern_clist(dev);
96
5.05k
    bool is_patt_acum = gx_device_is_pattern_accum(dev);
97
98
    /* Check if we are collecting data for a pattern that has no
99
       transparency.  In that case, we need to ignore the state changes */
100
5.05k
    if (is_patt_clist || is_patt_acum) {
101
0
        if (is_patt_clist) {
102
0
            gx_device_clist_writer *clwdev = (gx_device_clist_writer*) dev;
103
0
            const gs_pattern1_instance_t *pinst = clwdev->pinst;
104
105
0
            if (!(pinst->templat.uses_transparency)) {
106
0
                if_debug1m('v', pgs->memory,
107
0
                           "[v]%s NOT sending in pattern\n",comp_name);
108
0
                return(1);
109
0
            }
110
0
        }
111
0
        if (is_patt_acum) {
112
0
            gx_device_pattern_accum *padev = (gx_device_pattern_accum*) dev;
113
0
            const gs_pattern1_instance_t *pinst = padev->instance;
114
115
0
            if (!(pinst->templat.uses_transparency)) {
116
0
                if_debug1m('v', pgs->memory,
117
0
                           "[v]%s NOT sending in pattern\n",comp_name);
118
0
                return(1);
119
0
            }
120
0
        }
121
0
    }
122
5.05k
    return(0);
123
5.05k
}
124
125
/*
126
 * Push a PDF 1.4 transparency compositor onto the current device. Note that
127
 * if the current device already is a PDF 1.4 transparency compositor, the
128
 * composite will update its parameters but not create a new
129
 * compositor device.
130
 */
131
static int
132
gs_gstate_update_pdf14trans2(gs_gstate * pgs, gs_pdf14trans_params_t * pparams, bool retain_on_create)
133
3.25k
{
134
3.25k
    gx_device * dev = pgs->device;
135
3.25k
    gx_device *pdf14dev = NULL;
136
3.25k
    int code;
137
3.25k
    int curr_num = dev->color_info.num_components;
138
139
    /*
140
     * Send the PDF 1.4 create compositor action specified by the parameters.
141
     */
142
3.25k
    code = send_pdf14trans(pgs, dev, &pdf14dev, pparams, pgs->memory);
143
3.25k
    if (code < 0)
144
0
        return code;
145
    /*
146
     * If we created a new PDF 1.4 compositor device then we need to install it
147
     * into the graphics state.
148
     */
149
3.25k
    if (code == 1) {
150
45
        gx_set_device_only(pgs, pdf14dev);
151
45
        gx_device_retain(pdf14dev, retain_on_create);
152
45
        code = 0;
153
45
    }
154
155
    /* If we had a color space change and we are in overprint, then we need to
156
       update the drawn_comps */
157
3.25k
    if (pgs->overprint && curr_num != pdf14dev->color_info.num_components) {
158
0
        code = gs_do_set_overprint(pgs);
159
0
    }
160
161
3.25k
    return code;
162
3.25k
}
163
164
static int
165
gs_gstate_update_pdf14trans(gs_gstate * pgs, gs_pdf14trans_params_t * pparams)
166
3.21k
{
167
3.21k
    return gs_gstate_update_pdf14trans2(pgs, pparams, true);
168
3.21k
}
169
170
void
171
gs_trans_group_params_init(gs_transparency_group_params_t *ptgp, float opacity)
172
15
{
173
15
    ptgp->ColorSpace = NULL;    /* bogus, but can't do better */
174
15
    ptgp->Isolated = false;
175
15
    ptgp->Knockout = false;
176
15
    ptgp->page_group = false;
177
15
    ptgp->text_group = PDF14_TEXTGROUP_NO_BT;
178
15
    ptgp->image_with_SMask = false;
179
15
    ptgp->mask_id = 0;
180
15
    ptgp->iccprofile = NULL;
181
15
    ptgp->group_opacity = opacity;
182
15
    ptgp->group_shape = 1.0;
183
15
    ptgp->shade_group = false;
184
15
}
185
186
int
187
gs_update_trans_marking_params(gs_gstate * pgs)
188
0
{
189
0
    gs_pdf14trans_params_t params = { 0 };
190
0
    int code;
191
192
0
    if_debug0m('v', pgs->memory, "[v]gs_update_trans_marking_params\n");
193
0
    params.pdf14_op = PDF14_SET_BLEND_PARAMS;
194
0
    code = gs_gstate_update_pdf14trans(pgs, &params);
195
0
    if (code == gs_error_unregistered)
196
0
        code = 0;
197
0
    return code;
198
0
}
199
200
int
201
gs_begin_transparency_group(gs_gstate *pgs,
202
                            const gs_transparency_group_params_t *ptgp,
203
                            const gs_rect *pbbox, pdf14_compositor_operations group_type)
204
15
{
205
15
    gs_pdf14trans_params_t params = { 0 };
206
15
    const gs_color_space *blend_color_space;
207
15
    cmm_profile_t *profile;
208
209
15
    if (check_for_nontrans_pattern(pgs,
210
15
                  (unsigned char *)"gs_begin_transparency_group")) {
211
0
        return(0);
212
0
    }
213
    /*
214
     * Put parameters into a compositor parameter and then call the
215
     * composite.  This will pass the data to the PDF 1.4
216
     * transparency device.
217
     */
218
15
    params.pdf14_op = group_type;
219
15
    params.Isolated = ptgp->Isolated;
220
15
    params.Knockout = ptgp->Knockout;
221
15
    if (group_type == PDF14_BEGIN_TRANS_PAGE_GROUP)
222
8
        params.page_group = true;
223
15
    params.image_with_SMask = ptgp->image_with_SMask;
224
15
    params.opacity = ptgp->group_opacity;
225
15
    params.shape = ptgp->group_shape;
226
15
    params.blend_mode = pgs->blend_mode;
227
15
    params.text_group = ptgp->text_group;
228
15
    params.shade_group = ptgp->shade_group;
229
15
    params.ColorSpace = ptgp->ColorSpace;
230
    /* This function is called during the c-list writer side.
231
       Store some information so that we know what the color space is
232
       so that we can adjust according later during the clist reader.
233
       We currently will use the concrete space for any space other than a
234
       device space.  However, if the device is a sep device it will blend
235
       in DeviceN color space as required.  */
236
15
    blend_color_space = gs_currentcolorspace_inline(pgs);
237
15
    if (gs_color_space_get_index(blend_color_space) > gs_color_space_index_DeviceCMYK) {
238
        /* ICC and PS CIE based case.  Note that unidirectional PS CIE color
239
           spaces should not be allowed but end up occuring when processing
240
           PDF files with -dUseCIEColor.  We will end up using the appropriate
241
           ICC default color space in these cases. */
242
15
        blend_color_space = gs_currentcolorspace_inline(pgs);
243
15
    } else {
244
0
        blend_color_space = cs_concrete_space(blend_color_space, pgs);
245
0
        if (!blend_color_space)
246
0
            return_error(gs_error_undefined);
247
0
    }
248
    /* Note that if the /CS parameter was NOT present in the push
249
       of the transparency group, then we must actually inherent
250
       the previous group color space, or the color space of the
251
       target device (process color model).  Here we just want
252
       to set it as a unknown type for clist writing, as we will take care
253
       of using the parent group color space later during clist reading.
254
       Also, if the group was not isolated we MUST use the parent group
255
       color space regardless of what the group color space is specified to be.
256
       Note that the page group should always be isolated */
257
15
    if (group_type == PDF14_BEGIN_TRANS_PAGE_GROUP)
258
8
        params.Isolated = true;
259
260
15
    if (ptgp->ColorSpace == NULL || params.Isolated != true) {
261
7
        params.group_color_type = UNKNOWN;
262
7
        params.group_color_numcomps = 0;
263
8
    } else {
264
        /* The /CS parameter was present.  Use what was set.  Currently
265
           all our Device spaces are actually ICC based.  The other options
266
           are if -dUseCIEColor is set, in which case it could be
267
           coming in as a PS CIE color space, which should not be allowed
268
           but should default to one of the default ICC color spaces.  Note
269
           that CalRGB and CalGray, which are valid bidirectional color spaces
270
           are converted to ICC profiles during installation. PS CIE building
271
           to ICC is delayed. */
272
8
        if ( gs_color_space_is_ICC(blend_color_space) ) {
273
            /* Blending space is ICC based.  If we are doing c-list rendering
274
               we will need to write this color space into the clist.
275
               */
276
8
            params.group_color_type = ICC;
277
8
            params.group_color_numcomps =
278
8
                blend_color_space->cmm_icc_profile_data->num_comps;
279
            /* Get the ICC profile */
280
8
            params.iccprofile = blend_color_space->cmm_icc_profile_data;
281
8
            params.icc_hash = gsicc_get_hash(blend_color_space->cmm_icc_profile_data);
282
8
        } else {
283
            /* Color space was NOT ICC based.  PS CIE space and DeviceN are the only
284
               other option.  Use the ICC default based upon the component count. */
285
0
            switch (cs_num_components(blend_color_space)) {
286
0
                case 1:
287
0
                    profile =  pgs->icc_manager->default_gray;
288
0
                    break;
289
0
                case 3:
290
0
                    profile =  pgs->icc_manager->default_rgb;
291
0
                    break;
292
0
                case 4:
293
0
                    profile =  pgs->icc_manager->default_cmyk;
294
0
                break;
295
0
                default:
296
                    /* We can end up here if we are in a deviceN color space and
297
                       we have a sep output device */
298
0
                    profile = NULL;
299
0
                    params.group_color_type = DEVICEN;
300
0
                    params.group_color_numcomps = cs_num_components(blend_color_space);
301
0
                break;
302
0
            }
303
0
            if (profile != NULL) {
304
0
                params.group_color_type = ICC;
305
0
                params.group_color_numcomps = profile->num_comps;
306
0
                params.iccprofile = profile;
307
0
                params.icc_hash = gsicc_get_hash(profile);
308
0
            }
309
0
        }
310
8
    }
311
#ifdef DEBUG
312
    if (gs_debug_c('v')) {
313
        static const char *const cs_names[] = {
314
            GS_COLOR_SPACE_TYPE_NAMES
315
        };
316
        dmlprintf6(pgs->memory, "[v]("PRI_INTPTR")begin_transparency_group [%g %g %g %g] Num_grp_clr_comp = %d\n",
317
                   (intptr_t)pgs, pbbox->p.x, pbbox->p.y, pbbox->q.x, pbbox->q.y,params.group_color_numcomps);
318
        if (ptgp->ColorSpace)
319
            dmprintf1(pgs->memory, "     CS = %s",
320
                cs_names[(int)gs_color_space_get_index(ptgp->ColorSpace)]);
321
        else
322
            dmputs(pgs->memory, "     (no CS)");
323
324
        dmprintf4(pgs->memory, "  Isolated = %d  Knockout = %d text_group = %d page_group = %d\n",
325
                 ptgp->Isolated, ptgp->Knockout, ptgp->text_group, ptgp->page_group);
326
    }
327
#endif
328
15
    params.bbox = *pbbox;
329
15
    return gs_gstate_update_pdf14trans(pgs, &params);
330
15
}
331
332
int
333
gx_begin_transparency_group(gs_gstate * pgs, gx_device * pdev,
334
                                const gs_pdf14trans_params_t * pparams)
335
1.34k
{
336
1.34k
    gs_transparency_group_params_t tgp = {0};
337
1.34k
    gs_rect bbox;
338
339
1.34k
    if (pparams->Background_components != 0 &&
340
1.34k
        pparams->Background_components != pdev->color_info.num_components)
341
0
        return_error(gs_error_rangecheck);
342
1.34k
    tgp.Isolated = pparams->Isolated;
343
1.34k
    tgp.Knockout = pparams->Knockout;
344
1.34k
    tgp.page_group = pparams->page_group;
345
1.34k
    tgp.idle = pparams->idle;
346
1.34k
    tgp.mask_id = pparams->mask_id;
347
1.34k
    tgp.text_group = pparams->text_group;
348
1.34k
    tgp.shade_group = pparams->shade_group;
349
350
    /* Needed so that we do proper blending */
351
1.34k
    tgp.group_color_type = pparams->group_color_type;
352
1.34k
    tgp.group_color_numcomps = pparams->group_color_numcomps;
353
1.34k
    tgp.iccprofile = pparams->iccprofile;
354
1.34k
    tgp.icc_hashcode = pparams->icc_hash;
355
356
1.34k
    tgp.group_opacity = pparams->opacity;
357
1.34k
    tgp.group_shape = pparams->shape;
358
359
1.34k
    if (tgp.Knockout && tgp.text_group == PDF14_TEXTGROUP_BT_PUSHED &&
360
1.34k
        ((pgs->overprint && pgs->is_fill_color) || (pgs->stroke_overprint && !pgs->is_fill_color)))
361
0
        pgs->blend_mode = BLEND_MODE_CompatibleOverprint;
362
1.34k
    else
363
1.34k
        pgs->blend_mode = pparams->blend_mode;
364
1.34k
    bbox = pparams->bbox;
365
#ifdef DEBUG
366
    if (gs_debug_c('v')) {
367
        static const char *const cs_names[] = {
368
            GS_COLOR_SPACE_TYPE_NAMES
369
        };
370
        dmlprintf6(pdev->memory, "[v]("PRI_INTPTR")gx_begin_transparency_group [%g %g %g %g] Num_grp_clr_comp = %d\n",
371
                   (intptr_t)pgs, bbox.p.x, bbox.p.y, bbox.q.x, bbox.q.y,
372
                   pparams->group_color_numcomps);
373
        dmlprintf2(pdev->memory, "     opacity = %g shape = %g\n", pparams->opacity, pparams->shape);
374
        if (tgp.ColorSpace)
375
            dmprintf1(pdev->memory, "     CS = %s",
376
                cs_names[(int)gs_color_space_get_index(tgp.ColorSpace)]);
377
        else
378
            dmputs(pdev->memory, "     (no CS)");
379
        dmprintf3(pdev->memory, "  Isolated = %d  Knockout = %d  page_group = %d\n",
380
                 tgp.Isolated, tgp.Knockout, tgp.page_group);
381
        if (tgp.iccprofile)
382
            dmprintf(pdev->memory, "     Have ICC Profile for blending\n");
383
384
    }
385
#endif
386
1.34k
    return (*dev_proc(pdev, begin_transparency_group)) (pdev, &tgp, &bbox, pgs,
387
1.34k
                                                            NULL);
388
1.34k
}
389
390
int
391
gs_end_transparency_group(gs_gstate *pgs)
392
15
{
393
15
    gs_pdf14trans_params_t params = { 0 };
394
395
15
    if (check_for_nontrans_pattern(pgs,
396
15
                  (unsigned char *)"gs_end_transparency_group")) {
397
0
        return(0);
398
0
    }
399
15
    if_debug0m('v', pgs->memory, "[v]gs_end_transparency_group\n");
400
15
    params.pdf14_op = PDF14_END_TRANS_GROUP;  /* Other parameters not used */
401
15
    return gs_gstate_update_pdf14trans(pgs, &params);
402
15
}
403
404
int
405
gs_end_transparency_text_group(gs_gstate *pgs)
406
1.62k
{
407
1.62k
    gs_pdf14trans_params_t params = { 0 };
408
409
1.62k
    if (check_for_nontrans_pattern(pgs,
410
1.62k
        (unsigned char *)"gs_end_transparency_text_group")) {
411
0
        return(0);
412
0
    }
413
1.62k
    if_debug0m('v', pgs->memory, "[v]gs_end_transparency_text_group\n");
414
1.62k
    params.pdf14_op = PDF14_END_TRANS_TEXT_GROUP;  /* Other parameters not used */
415
1.62k
    return gs_gstate_update_pdf14trans(pgs, &params);
416
1.62k
}
417
418
int
419
gs_begin_transparency_text_group(gs_gstate *pgs)
420
1.50k
{
421
1.50k
    gs_pdf14trans_params_t params = { 0 };
422
423
1.50k
    if (check_for_nontrans_pattern(pgs,
424
1.50k
        (unsigned char *)"gs_begin_transparency_text_group")) {
425
0
        return(0);
426
0
    }
427
1.50k
    if_debug0m('v', pgs->memory, "[v]gs_begin_transparency_text_group\n");
428
1.50k
    params.pdf14_op = PDF14_BEGIN_TRANS_TEXT_GROUP;  /* Other parameters not used */
429
1.50k
    return gs_gstate_update_pdf14trans(pgs, &params);
430
1.50k
}
431
432
int
433
gx_end_transparency_group(gs_gstate * pgs, gx_device * pdev)
434
1.34k
{
435
1.34k
    if_debug0m('v', pgs->memory, "[v]gx_end_transparency_group\n");
436
1.34k
    return (*dev_proc(pdev, end_transparency_group)) (pdev, pgs);
437
1.34k
}
438
439
/* Commands for handling q softmask Q in graphic states */
440
441
int
442
gs_push_transparency_state(gs_gstate *pgs)
443
951
{
444
951
    gs_pdf14trans_params_t params = { 0 };
445
951
    int code;
446
447
951
    if (check_for_nontrans_pattern(pgs,
448
951
                  (unsigned char *)"gs_push_transparency_state")) {
449
0
        return(0);
450
0
    }
451
    /* Set the pending flag to true, which indicates
452
       that we need to watch for end transparency
453
       soft masks when we are at this graphic state
454
       level */
455
    /* pgs->trans_flags.xstate_pending = true; */
456
    /* Actually I believe the above flag is not
457
       needed.  We really should be watching for
458
       the softmask even at the base level.  What
459
       we need to watch for are q operations after
460
       a soft mask end has occured. */
461
    /* Check if we have a change flag set to true.
462
       this indicates that a softmask is present.
463
       We will need to send a push state to save
464
       the current soft mask, so that we can
465
       restore it later */
466
951
    if (pgs->trans_flags.xstate_change) {
467
0
        if_debug0m('v', pgs->memory, "[v]gs_push_transparency_state sending\n");
468
0
        params.pdf14_op = PDF14_PUSH_TRANS_STATE;
469
0
        code = gs_gstate_update_pdf14trans(pgs, &params);
470
0
        if (code < 0)
471
0
            return(code);
472
951
    } else {
473
951
        if_debug0m('v', pgs->memory, "[v]gs_push_transparency_state NOT sending\n");
474
951
    }
475
951
    return(0);
476
951
}
477
478
int
479
gs_pop_transparency_state(gs_gstate *pgs, bool force)
480
938
{
481
938
    gs_pdf14trans_params_t params = { 0 };
482
938
    int code;
483
484
938
    if (check_for_nontrans_pattern(pgs,
485
938
                  (unsigned char *)"gs_pop_transparency_state")) {
486
0
        return(0);
487
0
    }
488
    /* Check if flag is set, which indicates that we have
489
       an active softmask for the graphic state.  We
490
       need to communicate to the compositor to pop
491
       the softmask */
492
938
    if ( pgs->trans_flags.xstate_change || force) {
493
5
        if_debug0m('v', pgs->memory, "[v]gs_pop_transparency_state sending\n");
494
5
        params.pdf14_op = PDF14_POP_TRANS_STATE;
495
5
        code = gs_gstate_update_pdf14trans(pgs, &params);
496
5
        if ( code < 0 )
497
0
            return (code);
498
933
    } else {
499
933
        if_debug0m('v', pgs->memory, "[v]gs_pop_transparency_state NOT sending\n");
500
933
    }
501
    /* There is no reason to reset any of the flags since
502
       they will be reset by the graphic state restore */
503
938
    return(0);
504
938
}
505
506
int
507
gx_pop_transparency_state(gs_gstate * pgs, gx_device * pdev)
508
5
{
509
5
    if_debug0m('v', pgs->memory, "[v]gx_pop_transparency_state\n");
510
5
    return (*dev_proc(pdev, pop_transparency_state)) (pdev, pgs);
511
5
}
512
513
int
514
gx_push_transparency_state(gs_gstate * pgs, gx_device * pdev)
515
0
{
516
0
    if_debug0m('v', pgs->memory, "[v]gx_push_transparency_state\n");
517
0
    return (*dev_proc(pdev, push_transparency_state)) (pdev, pgs);
518
0
}
519
520
/*
521
 * Handler for identity mask transfer functions.
522
 */
523
static int
524
mask_transfer_identity(double in, float *out, void *proc_data)
525
1.28k
{
526
1.28k
    *out = (float) in;
527
1.28k
    return 0;
528
1.28k
}
529
530
void
531
gs_trans_mask_params_init(gs_transparency_mask_params_t *ptmp,
532
                          gs_transparency_mask_subtype_t subtype)
533
6
{
534
6
    ptmp->ColorSpace = 0;
535
6
    ptmp->subtype = subtype;
536
6
    ptmp->Background_components = 0;
537
6
    ptmp->Matte_components = 0;
538
6
    ptmp->GrayBackground = 0.0;
539
6
    ptmp->TransferFunction = mask_transfer_identity;
540
6
    ptmp->TransferFunction_data = 0;
541
6
    ptmp->replacing = false;
542
6
    ptmp->iccprofile = NULL;
543
6
}
544
545
int
546
gs_begin_transparency_mask(gs_gstate * pgs,
547
                           const gs_transparency_mask_params_t * ptmp,
548
                           const gs_rect * pbbox, bool mask_is_image)
549
6
{
550
6
    gs_pdf14trans_params_t params = { 0 };
551
6
    gs_pdf14trans_params_t params_color = { 0 };
552
6
    const int l = sizeof(params.Background[0]) * ptmp->Background_components;
553
6
    const int m = sizeof(params.Matte[0]) * ptmp->Matte_components;
554
6
    int i, code;
555
6
    gs_color_space *blend_color_space;
556
6
    gsicc_manager_t *icc_manager = pgs->icc_manager;
557
6
    bool deep = device_is_deep(pgs->device);
558
559
6
    if (check_for_nontrans_pattern(pgs,
560
6
                  (unsigned char *)"gs_pop_transparency_state")) {
561
0
        return(0);
562
0
    }
563
6
    params.pdf14_op = PDF14_BEGIN_TRANS_MASK;
564
6
    params.bbox = *pbbox;
565
6
    params.subtype = ptmp->subtype;
566
6
    params.Background_components = ptmp->Background_components;
567
6
    memcpy(params.Background, ptmp->Background, l);
568
6
    params.ColorSpace = ptmp->ColorSpace;
569
6
    params.Matte_components = ptmp->Matte_components;
570
6
    memcpy(params.Matte, ptmp->Matte, m);
571
6
    params.GrayBackground = ptmp->GrayBackground;
572
6
    params.transfer_function = ptmp->TransferFunction_data;
573
6
    params.function_is_identity =
574
6
            (ptmp->TransferFunction == mask_transfer_identity);
575
6
    params.mask_is_image = mask_is_image;
576
6
    params.replacing = ptmp->replacing;
577
578
    /* The eventual state that we want this smask to be moved to
579
       is always gray.  This should provide us with a significant
580
       speed improvement over the old code.  This does not keep us
581
       from having groups within the softmask getting blended in different
582
       color spaces, it just makes the final space be gray, which is what
583
       we will need to get to eventually anyway. In this way we avoid a
584
       final color conversion on a potentially large buffer. */
585
    /* Also check if we have loaded in the transparency icc profiles.  If not
586
       go ahead and take care of that now */
587
6
    if (icc_manager->smask_profiles == NULL) {
588
6
        code = gsicc_initialize_iccsmask(icc_manager);
589
6
        if (code < 0)
590
0
            return(code);
591
6
    }
592
    /* A new soft mask group,  make sure the profiles are set */
593
6
    if_debug0m('v', pgs->memory, "[v]pushing soft mask color sending\n");
594
6
    if (params.subtype != TRANSPARENCY_MASK_None) {
595
5
        params_color.pdf14_op = PDF14_PUSH_SMASK_COLOR;
596
5
        code = gs_gstate_update_pdf14trans(pgs, &params_color);
597
5
        if (code < 0)
598
0
            return(code);
599
5
        blend_color_space = gs_cspace_new_DeviceGray(pgs->memory);
600
5
        if (blend_color_space == NULL)
601
0
            return_error(gs_error_VMerror);
602
5
        blend_color_space->cmm_icc_profile_data = pgs->icc_manager->default_gray;
603
5
        gsicc_adjust_profile_rc(blend_color_space->cmm_icc_profile_data, 1, "gs_begin_transparency_mask");
604
5
        if_debug9m('v', pgs->memory, "[v]("PRI_INTPTR")gs_begin_transparency_mask [%g %g %g %g]\n"
605
5
                   "      subtype = %d  Background_components = %d, Matte_components = %d, %s\n",
606
5
                  (intptr_t)pgs, pbbox->p.x, pbbox->p.y, pbbox->q.x, pbbox->q.y,
607
5
                  (int)ptmp->subtype, ptmp->Background_components,
608
5
                  ptmp->Matte_components,
609
5
                  (ptmp->TransferFunction == mask_transfer_identity ? "no TR" :
610
5
                   "has TR"));
611
        /* Sample the transfer function */
612
        /* For non-deep cases, we sample at 00,01,02..fe,ff.
613
         * For deep cases, we sample from 0000,0100,0200..fe00,ff00 and a final one at ffff.
614
         * This enables us to interpolate easily.
615
         */
616
5
        if (deep) {
617
0
            uint16_t *trans16 = (uint16_t *)params.transfer_fn;
618
0
            float out;
619
0
            for (i = 0; i < MASK_TRANSFER_FUNCTION_SIZE; i++) {
620
0
                float in = (float)(i * (1.0 / MASK_TRANSFER_FUNCTION_SIZE));
621
622
0
                ptmp->TransferFunction(in, &out, ptmp->TransferFunction_data);
623
0
                trans16[i] = (uint16_t)floor((double)(out * 65535 + 0.5));
624
0
            }
625
0
            ptmp->TransferFunction(1.0, &out, ptmp->TransferFunction_data);
626
0
            trans16[MASK_TRANSFER_FUNCTION_SIZE] = (uint16_t)floor((double)(out * 65535 + 0.5));
627
5
        } else {
628
1.28k
            for (i = 0; i < MASK_TRANSFER_FUNCTION_SIZE; i++) {
629
1.28k
                float in = (float)(i * (1.0 / (MASK_TRANSFER_FUNCTION_SIZE - 1)));
630
1.28k
                float out;
631
632
1.28k
                ptmp->TransferFunction(in, &out, ptmp->TransferFunction_data);
633
1.28k
                params.transfer_fn[i] = (byte)floor((double)(out * 255 + 0.5));
634
1.28k
            }
635
5
        }
636
        /* Note:  This function is called during the c-list writer side. */
637
5
        if ( blend_color_space->cmm_icc_profile_data != NULL ) {
638
        /* Blending space is ICC based.  If we are doing c-list rendering we will
639
           need to write this color space into the clist. */
640
5
            params.group_color_type = ICC;
641
5
            params.group_color_numcomps =
642
5
                    blend_color_space->cmm_icc_profile_data->num_comps;
643
            /* Get the ICC profile */
644
            /* We don't reference count this - see comment in
645
             * pdf14_update_device_color_procs_pop_c()
646
             */
647
5
            params.iccprofile = blend_color_space->cmm_icc_profile_data;
648
5
            params.icc_hash = gsicc_get_hash(blend_color_space->cmm_icc_profile_data);
649
5
        } else {
650
0
            params.group_color_type = GRAY_SCALE;
651
0
            params.group_color_numcomps = 1;  /* Need to check */
652
0
        }
653
        /* Explicitly decrement the profile data since blend_color_space may not
654
         * be an ICC color space object.
655
         */
656
5
        gsicc_adjust_profile_rc(blend_color_space->cmm_icc_profile_data, -1, "gs_begin_transparency_mask");
657
5
        rc_decrement_only_cs(blend_color_space, "gs_begin_transparency_mask");
658
5
    }
659
6
    return gs_gstate_update_pdf14trans(pgs, &params);
660
6
}
661
662
/* This occurs on the c-list reader side */
663
664
int
665
gx_begin_transparency_mask(gs_gstate * pgs, gx_device * pdev,
666
                                const gs_pdf14trans_params_t * pparams)
667
6
{
668
6
    gx_transparency_mask_params_t tmp;
669
6
    const int l = sizeof(pparams->Background[0]) * pparams->Background_components;
670
6
    const int m = sizeof(pparams->Matte[0]) * pparams->Matte_components;
671
672
6
    tmp.group_color_type = pparams->group_color_type;
673
6
    tmp.subtype = pparams->subtype;
674
6
    tmp.group_color_numcomps = pparams->group_color_numcomps;
675
6
    tmp.Background_components = pparams->Background_components;
676
6
    memcpy(tmp.Background, pparams->Background, l);
677
6
    tmp.Matte_components = pparams->Matte_components;
678
6
    memcpy(tmp.Matte, pparams->Matte, m);
679
6
    tmp.GrayBackground = pparams->GrayBackground;
680
6
    tmp.function_is_identity = pparams->function_is_identity;
681
6
    tmp.idle = pparams->idle;
682
6
    tmp.replacing = pparams->replacing;
683
6
    tmp.mask_id = pparams->mask_id;
684
685
6
    if (tmp.group_color_type == ICC ) {
686
        /* Do I need to ref count here? */
687
5
        tmp.iccprofile = pparams->iccprofile;
688
5
        tmp.icc_hashcode = pparams->icc_hash;
689
5
    } else {
690
1
        tmp.iccprofile = NULL;
691
1
        tmp.icc_hashcode = 0;
692
1
    }
693
6
    memcpy(tmp.transfer_fn, pparams->transfer_fn, size_of(tmp.transfer_fn));
694
6
    if_debug10m('v', pgs->memory,
695
6
               "[v]("PRI_INTPTR")gx_begin_transparency_mask [%g %g %g %g]\n"
696
6
               "      subtype = %d  Background_components = %d Matte_components = %d Num_grp_clr_comp = %d %s\n",
697
6
              (intptr_t)pgs, pparams->bbox.p.x, pparams->bbox.p.y,
698
6
              pparams->bbox.q.x, pparams->bbox.q.y,
699
6
              (int)tmp.subtype, tmp.Background_components, tmp.Matte_components,
700
6
              tmp.group_color_numcomps,
701
6
              (tmp.function_is_identity ? "no TR" :
702
6
               "has TR"));
703
6
    return (*dev_proc(pdev, begin_transparency_mask))
704
6
                        (pdev, &tmp, &(pparams->bbox), pgs, NULL);
705
6
}
706
707
int
708
gs_end_transparency_mask(gs_gstate *pgs,
709
                         gs_transparency_channel_selector_t csel)
710
5
{
711
5
    gs_pdf14trans_params_t params = { 0 };
712
5
    gs_pdf14trans_params_t params_color = { 0 };
713
5
    int code;
714
715
5
    if (check_for_nontrans_pattern(pgs,
716
5
                  (unsigned char *)"gs_end_transparency_mask")) {
717
0
        return(0);
718
0
    }
719
    /* If we have done a q then set a flag to watch for any Qs */
720
   /* if (pgs->trans_flags.xstate_pending)
721
        pgs->trans_flags.xstate_change = true; */
722
    /* This should not depend upon if we have encountered a q
723
       operation.  We could be setting a softmask, before
724
       there is any q operation.  Unlikely but it could happen.
725
       Then if we encouter a q operation (and this flag
726
       is true) we will need to
727
       push the mask graphic state (PDF14_PUSH_TRANS_STATE). */
728
5
    pgs->trans_flags.xstate_change = true;
729
5
    if_debug1m('v', pgs->memory,
730
5
               "[v]xstate_changed set true, gstate level is %d\n", pgs->level);
731
5
    if_debug2m('v', pgs->memory,
732
5
               "[v]("PRI_INTPTR")gs_end_transparency_mask(%d)\n", (intptr_t)pgs,
733
5
               (int)csel);
734
5
    params.pdf14_op = PDF14_END_TRANS_MASK;  /* Other parameters not used */
735
5
    params.csel = csel;
736
    /* If this is the outer end then return us to our normal defaults */
737
5
    if_debug0m('v', pgs->memory, "[v]popping soft mask color sending\n");
738
5
    params_color.pdf14_op = PDF14_POP_SMASK_COLOR;
739
5
    code = gs_gstate_update_pdf14trans(pgs, &params_color);
740
5
    if (code < 0)
741
0
        return(code);
742
5
    return gs_gstate_update_pdf14trans(pgs, &params);
743
5
}
744
745
int
746
gx_end_transparency_mask(gs_gstate * pgs, gx_device * pdev,
747
                                const gs_pdf14trans_params_t * pparams)
748
5
{
749
5
    if_debug2m('v', pgs->memory,
750
5
               "[v]("PRI_INTPTR")gx_end_transparency_mask(%d)\n", (intptr_t)pgs,
751
5
               (int)pparams->csel);
752
5
    return (*dev_proc(pdev, end_transparency_mask)) (pdev, pgs);
753
5
}
754
755
/*
756
 * We really only care about the number of spot colors when we have
757
 * a device which supports spot colors.  With the other devices we use
758
 * the tint transform function for DeviceN and Separation color spaces
759
 * and convert spot colors into process colors.
760
 */
761
static int
762
get_num_pdf14_spot_colors(gs_gstate * pgs)
763
45
{
764
45
    gx_device * dev = pgs->device;
765
45
    gs_devn_params * pclist_devn_params = dev_proc(dev, ret_devn_params)(dev);
766
767
    /*
768
     * Devices which support spot colors store the PageSpotColors device
769
     * parameter inside their devn_params structure.  (This is done by the
770
     * devn_put_params routine.)  The PageSpotColors device parameter is
771
     * set by pdf_main whenever a PDF page is being processed.  See
772
     * countspotcolors in lib/pdf_main.ps.
773
     */
774
45
    if (pclist_devn_params != NULL) {
775
        /* If the sep order names were specified, then we should only allocate
776
           for those.  But only the nonstandard colorants that are stored
777
           in num_separations.  See devn_put_params for details on this.
778
           Right now, the PDF14 device will always include CMYK.  A future
779
           optimization is to be able to NOT have those included in the buffer
780
           allocations if we don't specify them.  It would then be possible to
781
           output 8 separations at a time without using compressed color. */
782
10
        if (pclist_devn_params->num_separation_order_names == 0) {
783
10
            return pclist_devn_params->page_spot_colors;
784
10
        }
785
0
        return (pclist_devn_params->separations.num_separations);
786
10
    }
787
35
    return 0;
788
45
}
789
790
int
791
gs_push_pdf14trans_device(gs_gstate * pgs, bool is_pattern, bool retain,
792
                          int depth, int spot_color_count)
793
45
{
794
45
    gs_pdf14trans_params_t params = { 0 };
795
45
    cmm_profile_t *icc_profile;
796
45
    gsicc_rendering_param_t render_cond;
797
45
    int code;
798
45
    cmm_dev_profile_t *dev_profile;
799
45
    unsigned char pattern_opsim_setting[2];
800
801
45
    code = dev_proc(pgs->device, get_profile)(pgs->device,  &dev_profile);
802
45
    if (code < 0)
803
0
        return code;
804
45
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile,
805
45
                          &render_cond);
806
45
    params.pdf14_op = PDF14_PUSH_DEVICE;
807
    /*
808
     * We really only care about the number of spot colors when we have
809
     * a device which supports spot colors.  With the other devices we use
810
     * the tint transform function for DeviceN and Separation color spaces
811
     * and convert spot colors into process colors.
812
     */
813
45
    params.num_spot_colors = get_num_pdf14_spot_colors(pgs);
814
45
    params.is_pattern = is_pattern;
815
816
    /* If pattern, get overprint simulation information from
817
       the pattern accumulators target device */
818
45
    if (is_pattern && dev_proc(pgs->device, dev_spec_op)(pgs->device, gxdso_overprintsim_state, &pattern_opsim_setting, sizeof(pattern_opsim_setting))) {
819
        /* Use the target device setting */
820
10
        params.overprint_sim_push = pattern_opsim_setting[0];
821
10
        params.num_spot_colors_int = pattern_opsim_setting[1];
822
35
    } else {
823
        /* Use information from interpreter */
824
35
        params.num_spot_colors_int = spot_color_count;
825
35
        if (depth < 0)
826
0
            params.overprint_sim_push = true;
827
35
    }
828
829
    /* If we have an NCLR ICC profile, the extra spot colorants do
830
    *  get included in the transparency buffers. Trying to avoid
831
    * including them became a rube goldberg mess in terms of knowing
832
    * which colorants are on the page vs what has been specified and
833
    * any aliasing between these two.  Just too many things to go wrong.
834
    * So we allocate all and carry around. If you are doing special
835
    * spot handling with transparency this is the cost. */
836
837
45
    if (dev_profile->spotnames != NULL && dev_profile->spotnames->count > 4) {
838
        /* Making an assumption here, that list is CMYK + extra.
839
           An error should have been thrown by the target device if not. */
840
0
        int avail_page_spots = pgs->device->color_info.num_components - 4;
841
0
        params.num_spot_colors_int = avail_page_spots;
842
0
        params.num_spot_colors = avail_page_spots;
843
844
        /* This should not be possible, but lets be safe. We can't have a negative
845
          number of source spots to carry forward, so apply threshold. */
846
0
        if (params.num_spot_colors_int < 0)
847
0
            params.num_spot_colors_int = 0;
848
0
        if (params.num_spot_colors < 0)
849
0
            params.num_spot_colors = 0;
850
0
    }
851
852
    /* If we happen to be in a situation where we are going out to a device
853
       whose profile is CIELAB then we will need to make sure that we
854
       do our blending in RGB and convert to CIELAB when we do the put_image
855
       command */
856
45
    if (icc_profile->data_cs == gsCIELAB ||
857
45
        icc_profile->islab) {
858
0
        params.iccprofile = pgs->icc_manager->default_rgb;
859
0
    }
860
    /* Note: Other parameters not used */
861
45
    return gs_gstate_update_pdf14trans2(pgs, &params, retain);
862
45
}
863
864
int
865
gs_pop_pdf14trans_device(gs_gstate * pgs, bool is_pattern)
866
35
{
867
35
    gs_pdf14trans_params_t params = { 0 };
868
869
35
    params.is_pattern = is_pattern;
870
35
    params.pdf14_op = PDF14_POP_DEVICE;  /* Other parameters not used */
871
35
    return gs_gstate_update_pdf14trans(pgs, &params);
872
35
}
873
874
int
875
gs_abort_pdf14trans_device(gs_gstate * pgs)
876
0
{
877
0
    gs_pdf14trans_params_t params = { 0 };
878
879
0
    params.pdf14_op = PDF14_ABORT_DEVICE;  /* Other parameters not used */
880
0
    return gs_gstate_update_pdf14trans(pgs, &params);
881
0
}
882
883
/* Something has gone wrong have the device clean up everything */
884
885
int
886
gx_abort_trans_device(gs_gstate * pgs, gx_device * pdev)
887
0
{
888
0
    if_debug1m('v', pgs->memory, "[v]("PRI_INTPTR")gx_abort_trans_device\n", (intptr_t)pgs);
889
0
    return (*dev_proc(pdev, discard_transparency_layer)) (pdev, pgs);
890
0
}
891
892
int gs_setstrokeconstantalpha(gs_gstate *pgs, float alpha)
893
143k
{
894
143k
    pgs->strokeconstantalpha = alpha;
895
143k
    return 0;
896
143k
}
897
898
float gs_getstrokeconstantalpha(const gs_gstate *pgs)
899
39
{
900
39
    return pgs->strokeconstantalpha;
901
39
}
902
903
int gs_setfillconstantalpha(gs_gstate *pgs, float alpha)
904
143k
{
905
143k
    pgs->fillconstantalpha = (float)alpha;
906
143k
    return 0;
907
143k
}
908
909
float gs_getfillconstantalpha(const gs_gstate *pgs)
910
54
{
911
54
    return pgs->fillconstantalpha;
912
54
}
913
914
int gs_setalphaisshape(gs_gstate *pgs, bool AIS)
915
143k
{
916
143k
    pgs->alphaisshape = AIS;
917
143k
    return 0;
918
143k
}
919
920
bool gs_getalphaisshape(gs_gstate *pgs)
921
789
{
922
789
    return pgs->alphaisshape;
923
789
}