Coverage Report

Created: 2025-06-10 07:06

/src/ghostpdl/base/gscdevn.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2024 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* DeviceN color space and operation definition */
18
19
#include "memory_.h"
20
#include "string_.h"
21
#include "gx.h"
22
#include "gserrors.h"
23
#include "gscdevn.h"
24
#include "gsfunc.h"
25
#include "gsrefct.h"
26
#include "gsmatrix.h"   /* for gscolor2.h */
27
#include "gsstruct.h"
28
#include "gxcspace.h"
29
#include "gxcdevn.h"
30
#include "gxfarith.h"
31
#include "gxfrac.h"
32
#include "gxcmap.h"
33
#include "gxgstate.h"
34
#include "gscoord.h"
35
#include "gzstate.h"
36
#include "gxdevcli.h"
37
#include "gsovrc.h"
38
#include "stream.h"
39
#include "gsnamecl.h"  /* Custom color call back define */
40
#include "gsicc_manage.h"
41
#include "gsicc.h"
42
#include "gsicc_cache.h"
43
#include "gxdevice.h"
44
#include "gxcie.h"
45
#include "gxdevsop.h"
46
47
/* ---------------- Color space ---------------- */
48
49
/* GC descriptors */
50
gs_private_st_composite(st_color_space_DeviceN, gs_color_space,
51
     "gs_color_space_DeviceN", cs_DeviceN_enum_ptrs, cs_DeviceN_reloc_ptrs);
52
private_st_device_n_colorant();
53
private_st_device_n_map();
54
55
/* Define the DeviceN color space type. */
56
static cs_proc_num_components(gx_num_components_DeviceN);
57
static cs_proc_init_color(gx_init_DeviceN);
58
static cs_proc_restrict_color(gx_restrict_DeviceN);
59
static cs_proc_concrete_space(gx_concrete_space_DeviceN);
60
static cs_proc_concretize_color(gx_concretize_DeviceN);
61
static cs_proc_remap_concrete_color(gx_remap_concrete_DeviceN);
62
static cs_proc_remap_color(gx_remap_DeviceN);
63
static cs_proc_install_cspace(gx_install_DeviceN);
64
static cs_proc_set_overprint(gx_set_overprint_DeviceN);
65
static cs_proc_final(gx_final_DeviceN);
66
static cs_proc_serialize(gx_serialize_DeviceN);
67
static cs_proc_polarity(gx_polarity_DeviceN);
68
69
const gs_color_space_type gs_color_space_type_DeviceN = {
70
    gs_color_space_index_DeviceN, true, false,
71
    &st_color_space_DeviceN, gx_num_components_DeviceN,
72
    gx_init_DeviceN, gx_restrict_DeviceN,
73
    gx_concrete_space_DeviceN,
74
    gx_concretize_DeviceN, gx_remap_concrete_DeviceN,
75
    gx_remap_DeviceN, gx_install_DeviceN,
76
    gx_set_overprint_DeviceN,
77
    gx_final_DeviceN, gx_no_adjust_color_count,
78
    gx_serialize_DeviceN,
79
    gx_cspace_is_linear_default, gx_polarity_DeviceN
80
};
81
82
/* GC procedures */
83
84
static
85
0
ENUM_PTRS_BEGIN(cs_DeviceN_enum_ptrs)
86
0
    return 0;
87
0
ENUM_PTR(0, gs_color_space, params.device_n.map);
88
0
ENUM_PTR(1, gs_color_space, params.device_n.colorants);
89
0
ENUM_PTRS_END
90
0
static RELOC_PTRS_BEGIN(cs_DeviceN_reloc_ptrs)
91
0
{
92
0
    RELOC_PTR(gs_color_space, params.device_n.map);
93
0
    RELOC_PTR(gs_color_space, params.device_n.colorants);
94
0
}
95
0
RELOC_PTRS_END
96
97
/* ------ Public procedures ------ */
98
99
/*
100
 * Create a new DeviceN colorspace.
101
 */
102
int
103
gs_cspace_new_DeviceN(
104
    gs_color_space **ppcs,
105
    uint num_components,
106
    gs_color_space *palt_cspace,
107
    gs_memory_t *pmem
108
    )
109
398
{
110
398
    gs_color_space *pcs;
111
398
    gs_device_n_params *pcsdevn;
112
398
    char **pnames;
113
398
    int i, code;
114
115
398
    if (palt_cspace == 0 || !palt_cspace->type->can_be_alt_space)
116
0
        return_error(gs_error_rangecheck);
117
118
398
    pcs = gs_cspace_alloc(pmem, &gs_color_space_type_DeviceN);
119
398
    if (pcs == NULL)
120
0
        return_error(gs_error_VMerror);
121
398
    pcsdevn = &pcs->params.device_n;
122
398
    pcsdevn->names = NULL;
123
398
    pcsdevn->map = NULL;
124
398
    pcsdevn->colorants = NULL;
125
398
    pcsdevn->named_color_supported = false;
126
398
    pcsdevn->num_process_names = 0;
127
398
    pcsdevn->process_names = NULL;
128
398
    pcsdevn->mem = pmem->non_gc_memory;
129
398
    pcsdevn->all_none = false;
130
131
    /* Allocate space for color names list. */
132
398
    code = alloc_device_n_map(&pcsdevn->map, pmem, "gs_cspace_build_DeviceN");
133
398
    if (code < 0) {
134
0
        gs_free_object(pmem, pcs, "gs_cspace_new_DeviceN");
135
0
        return code;
136
0
    }
137
398
    pnames = (char **)gs_alloc_bytes(pcsdevn->mem, num_components * sizeof(char *), "gs_cspace_new_DeviceN");
138
398
    if (pnames == 0) {
139
0
        gs_free_object(pmem, pcsdevn->map, ".gs_cspace_build_DeviceN(map)");
140
0
        gs_free_object(pmem, pcs, "gs_cspace_new_DeviceN");
141
0
        return_error(gs_error_VMerror);
142
0
    }
143
939
    for (i=0; i<num_components; i++)
144
541
        pnames[i] = NULL;   /* empty string for check_DeviceN_component_names */
145
398
    pcs->base_space = palt_cspace;
146
398
    rc_increment_cs(palt_cspace);
147
398
    pcsdevn->names = pnames;
148
398
    pcsdevn->num_components = num_components;
149
398
    *ppcs = pcs;
150
398
    return 0;
151
398
}
152
153
/* Allocate and initialize a DeviceN map. */
154
int
155
alloc_device_n_map(gs_device_n_map ** ppmap, gs_memory_t * mem,
156
                   client_name_t cname)
157
1.35k
{
158
1.35k
    gs_device_n_map *pimap;
159
160
1.35k
    rc_alloc_struct_1(pimap, gs_device_n_map, &st_device_n_map, mem,
161
1.35k
                      return_error(gs_error_VMerror), cname);
162
1.35k
    pimap->tint_transform = 0;
163
1.35k
    pimap->tint_transform_data = 0;
164
1.35k
    pimap->cache_valid = false;
165
1.35k
    *ppmap = pimap;
166
1.35k
    return 0;
167
1.35k
}
168
169
/*
170
 * DeviceN and NChannel color spaces can have an attributes dict.  In the
171
 * attribute dict can be a Colorants dict which contains Separation color
172
 * spaces.  If the Colorant dict is present, the PS logic will build each of
173
 * the Separation color spaces in a temp gstate and then call this procedure
174
 * to attach the Separation color space to the DeviceN color space.
175
 * The parameter to this procedure is a colorant name.  The Separation
176
 * color space is in the current (temp) gstate.  The DeviceN color space is
177
 * in the next gstate down in the gstate list (pgs->saved).
178
 */
179
int
180
gs_attachcolorant(char *sep_name, gs_gstate * pgs)
181
0
{
182
0
    gs_color_space * pdevncs;
183
0
    gs_device_n_colorant * patt;
184
185
    /* Verify that we have a DeviceN color space */
186
0
    if (!pgs->saved)
187
0
        return_error(gs_error_rangecheck);
188
0
    pdevncs = gs_currentcolorspace_inline(pgs->saved);
189
0
    if (pdevncs->type != &gs_color_space_type_DeviceN)
190
0
        return_error(gs_error_rangecheck);
191
192
    /* Allocate an attribute list element for our linked list of colorants */
193
0
    rc_alloc_struct_1(patt, gs_device_n_colorant, &st_device_n_colorant,
194
0
                        pgs->memory, return_error(gs_error_VMerror),
195
0
                        "gs_attachattributrescolorspace");
196
197
    /* Point our attribute list entry to the attribute color space */
198
0
    patt->colorant_name = sep_name;
199
0
    patt->cspace = gs_currentcolorspace_inline(pgs);
200
0
    rc_increment_cs(patt->cspace);
201
202
    /* Link our new attribute color space to the DeviceN color space */
203
0
    patt->next = pdevncs->params.device_n.colorants;
204
0
    pdevncs->params.device_n.colorants = patt;
205
206
0
    return 0;
207
0
}
208
209
int
210
gs_attach_colorant_to_space(char *sep_name, gs_color_space *pcs, gs_color_space *colorant_space, gs_memory_t *mem)
211
0
{
212
0
    gs_device_n_colorant * patt;
213
214
0
    if (pcs->type != &gs_color_space_type_DeviceN)
215
0
        return_error(gs_error_rangecheck);
216
217
    /* Allocate an attribute list element for our linked list of colorants */
218
0
    rc_alloc_struct_1(patt, gs_device_n_colorant, &st_device_n_colorant,
219
0
                        mem, return_error(gs_error_VMerror),
220
0
                        "gs_attachattributrescolorspace");
221
222
    /* Point our attribute list entry to the attribute color space */
223
0
    patt->colorant_name = sep_name;
224
0
    patt->cspace = colorant_space;
225
0
    rc_increment_cs(patt->cspace);
226
227
    /* Link our new attribute color space to the DeviceN color space */
228
0
    patt->next = pcs->params.device_n.colorants;
229
0
    pcs->params.device_n.colorants = patt;
230
231
0
    return 0;
232
0
}
233
234
#if 0 /* Unused; Unsupported by gx_serialize_device_n_map. */
235
/*
236
 * Set the DeviceN tint transformation procedure.
237
 */
238
int
239
gs_cspace_set_devn_proc(gs_color_space * pcspace,
240
                        int (*proc)(const float *,
241
                                    float *,
242
                                    const gs_gstate *,
243
                                    void *
244
                                    ),
245
                        void *proc_data
246
                        )
247
{
248
    gs_device_n_map *pimap;
249
250
    if (gs_color_space_get_index(pcspace) != gs_color_space_index_DeviceN)
251
        return_error(gs_error_rangecheck);
252
    pimap = pcspace->params.device_n.map;
253
    pimap->tint_transform = proc;
254
    pimap->tint_transform_data = proc_data;
255
    pimap->cache_valid = false;
256
    return 0;
257
}
258
#endif
259
260
/*
261
 * Check if we are using the alternate color space.
262
 */
263
bool
264
using_alt_color_space(const gs_gstate * pgs)
265
1.75k
{
266
1.75k
    return (pgs->color_component_map.use_alt_cspace);
267
1.75k
}
268
269
/* Map a DeviceN color using a Function. */
270
int
271
map_devn_using_function(const float *in, float *out,
272
                        const gs_gstate *pgs, void *data)
273
274
260k
{
275
260k
    gs_function_t *const pfn = data;
276
277
260k
    return gs_function_evaluate(pfn, in, out);
278
260k
}
279
280
/*
281
 * Set the DeviceN tint transformation procedure to a Function.
282
 */
283
int
284
gs_cspace_set_devn_function(gs_color_space *pcspace, gs_function_t *pfn)
285
398
{
286
398
    gs_device_n_map *pimap;
287
288
398
    if (gs_color_space_get_index(pcspace) != gs_color_space_index_DeviceN ||
289
398
        pfn->params.m != pcspace->params.device_n.num_components ||
290
398
        pfn->params.n != gs_color_space_num_components(pcspace->base_space)
291
398
        )
292
0
        return_error(gs_error_rangecheck);
293
398
    pimap = pcspace->params.device_n.map;
294
398
    pimap->tint_transform = map_devn_using_function;
295
398
    pimap->tint_transform_data = pfn;
296
398
    pimap->cache_valid = false;
297
398
    return 0;
298
398
}
299
300
/*
301
 * If the DeviceN tint transformation procedure is a Function,
302
 * return the function object, otherwise return 0.
303
 */
304
gs_function_t *
305
gs_cspace_get_devn_function(const gs_color_space *pcspace)
306
397
{
307
397
    if (gs_color_space_get_index(pcspace) == gs_color_space_index_DeviceN &&
308
397
        pcspace->params.device_n.map->tint_transform ==
309
397
          map_devn_using_function)
310
397
        return pcspace->params.device_n.map->tint_transform_data;
311
0
    return 0;
312
397
}
313
314
/* ------ Color space implementation ------ */
315
316
/* Return the number of components of a DeviceN space. */
317
static int
318
gx_num_components_DeviceN(const gs_color_space * pcs)
319
269k
{
320
269k
    return pcs->params.device_n.num_components;
321
269k
}
322
323
/* Determine best guess of polarity */
324
static gx_color_polarity_t
325
gx_polarity_DeviceN(const gs_color_space * pcs)
326
0
{
327
    /* DeviceN initializes to 1.0 like a separation so
328
       for now, treat this as subtractive.  It is possible
329
       that we may have to do a special test for Red, Green
330
       and Blue but for now, I believe the following is
331
       correct */
332
0
    return GX_CINFO_POLARITY_SUBTRACTIVE;
333
0
}
334
335
/* Initialize a DeviceN color. */
336
static void
337
gx_init_DeviceN(gs_client_color * pcc, const gs_color_space * pcs)
338
1.71k
{
339
1.71k
    uint i;
340
341
5.56k
    for (i = 0; i < pcs->params.device_n.num_components; ++i)
342
3.84k
        pcc->paint.values[i] = 1.0;
343
1.71k
}
344
345
/* Force a DeviceN color into legal range. */
346
static void
347
gx_restrict_DeviceN(gs_client_color * pcc, const gs_color_space * pcs)
348
149k
{
349
149k
    uint i;
350
351
386k
    for (i = 0; i < pcs->params.device_n.num_components; ++i) {
352
236k
        double value = pcc->paint.values[i];
353
236k
        pcc->paint.values[i] = (value <= 0 ? 0 : value >= 1 ? 1 : value);
354
236k
    }
355
149k
}
356
357
/* Remap a DeviceN color. */
358
static const gs_color_space *
359
gx_concrete_space_DeviceN(const gs_color_space * pcs,
360
                          const gs_gstate * pgs)
361
262k
{
362
262k
    bool is_lab = false;
363
#ifdef DEBUG
364
    /*
365
     * Verify that the color space and gs_gstate info match.
366
     */
367
    if (pcs->id != pgs->color_component_map.cspace_id)
368
        dmprintf(pgs->memory, "gx_concrete_space_DeviceN: color space id mismatch");
369
#endif
370
    /*
371
     * Check if we are using the alternate color space.
372
     */
373
262k
    if (pgs->color_component_map.use_alt_cspace) {
374
        /* Need to handle PS CIE space */
375
256k
        if (gs_color_space_is_PSCIE(pcs->base_space)) {
376
0
            if (pcs->base_space->icc_equivalent == NULL) {
377
0
                (void)gs_colorspace_set_icc_equivalent(pcs->base_space,
378
0
                                                    &is_lab, pgs->memory);
379
0
            }
380
0
            return (pcs->base_space->icc_equivalent);
381
0
        }
382
256k
        return cs_concrete_space(pcs->base_space, pgs);
383
256k
    }
384
    /*
385
     * DeviceN color spaces are concrete (when not using alt. color space).
386
     */
387
6.02k
    return pcs;
388
262k
}
389
390
static int
391
gx_remap_DeviceN(const gs_client_color * pcc, const gs_color_space * pcs,
392
        gx_device_color * pdc, const gs_gstate * pgs, gx_device * dev,
393
                       gs_color_select_t select)
394
262k
{
395
262k
    frac conc[GS_CLIENT_COLOR_MAX_COMPONENTS];
396
262k
    const gs_color_space *pconcs;
397
262k
    int i = pcs->type->num_components(pcs),k;
398
262k
    int code = 0;
399
262k
    const gs_color_space *pacs = pcs->base_space;
400
262k
    gs_client_color temp;
401
262k
    bool mapped = false;
402
403
262k
    if ( pcs->cmm_icc_profile_data != NULL && pgs->color_component_map.use_alt_cspace) {
404
        /* This is the case where we have placed a N-CLR source profile for
405
           this color space */
406
0
        if (pcs->cmm_icc_profile_data->devicen_permute_needed) {
407
0
            for ( k = 0; k < i; k++) {
408
0
                temp.paint.values[k] = pcc->paint.values[pcs->cmm_icc_profile_data->devicen_permute[k]];
409
0
            }
410
0
            code = pacs->type->remap_color(&temp, pacs, pdc, pgs, dev, select);
411
0
        } else {
412
0
            code = pacs->type->remap_color(pcc, pacs, pdc, pgs, dev, select);
413
0
        }
414
0
        return(code);
415
262k
    } else {
416
        /* Check if we are doing any named color management.  This check happens
417
           regardless if we are doing the alternate tint transform or not.  If
418
           desired, that check could be made in gsicc_transform_named_color and
419
           a decision made to return true or false */
420
262k
        if (pgs->icc_manager->device_named != NULL) {
421
            /* Try to apply the direct replacement */
422
0
            mapped = gx_remap_named_color(pcc, pcs, pdc, pgs, dev, select);
423
0
        }
424
262k
        if (!mapped) {
425
262k
            cmm_dev_profile_t *dev_profile;
426
262k
            code = dev_proc(dev, get_profile)(dev, &dev_profile);
427
262k
            if (code < 0)
428
0
                return code;
429
262k
            code = (*pcs->type->concretize_color)(pcc, pcs, conc, pgs, dev);
430
262k
            if (code < 0)
431
7
                return code;
432
262k
            pconcs = cs_concrete_space(pcs, pgs);
433
262k
            code = (*pconcs->type->remap_concrete_color)(pconcs, conc, pdc, pgs, dev, select, dev_profile);
434
262k
        }
435
        /* Save original color space and color info into dev color */
436
262k
        i = any_abs(i);
437
1.03M
        for (i--; i >= 0; i--)
438
775k
            pdc->ccolor.paint.values[i] = pcc->paint.values[i];
439
262k
        pdc->ccolor_valid = true;
440
262k
        return code;
441
262k
    }
442
262k
}
443
444
static int
445
gx_concretize_DeviceN(const gs_client_color * pc, const gs_color_space * pcs,
446
                      frac * pconc, const gs_gstate * pgs, gx_device *dev)
447
262k
{
448
262k
    int code, tcode = 0;
449
262k
    gs_client_color cc;
450
262k
    gs_color_space *pacs = (gs_color_space*) (pcs->base_space);
451
262k
    gs_device_n_map *map = pcs->params.device_n.map;
452
262k
    bool is_lab;
453
262k
    int num_src_comps = pcs->params.device_n.num_components;
454
455
#ifdef DEBUG
456
    /*
457
     * Verify that the color space and gs_gstate info match.
458
     */
459
    if (pcs->id != pgs->color_component_map.cspace_id)
460
        dmprintf(dev->memory, "gx_concretize_DeviceN: color space id mismatch");
461
#endif
462
463
    /*
464
     * Check if we need to map into the alternate color space.
465
     * We must preserve tcode for implementing a semi-hack in the interpreter.
466
     */
467
468
262k
    if (pgs->color_component_map.use_alt_cspace) {
469
        /* Check the 1-element cache first. */
470
256k
        if (map->cache_valid) {
471
0
            int i;
472
473
0
            for (i = pcs->params.device_n.num_components; --i >= 0;) {
474
0
                if (map->tint[i] != pc->paint.values[i])
475
0
                    break;
476
0
            }
477
0
            if (i < 0) {
478
0
                int num_out = gs_color_space_num_components(pacs);
479
480
0
                for (i = 0; i < num_out; ++i)
481
0
                    pconc[i] = map->conc[i];
482
0
                return 0;
483
0
            }
484
0
        }
485
256k
        tcode = (*pcs->params.device_n.map->tint_transform)
486
256k
             (pc->paint.values, &cc.paint.values[0],
487
256k
             pgs, pcs->params.device_n.map->tint_transform_data);
488
256k
        (*pacs->type->restrict_color)(&cc, pacs);
489
256k
        if (tcode < 0)
490
0
            return tcode;
491
        /* First check if this was PS based. */
492
256k
        if (gs_color_space_is_PSCIE(pacs)) {
493
            /* We may have to rescale data to 0 to 1 range */
494
0
            rescale_cie_colors(pacs, &cc);
495
            /* If we have not yet created the profile do that now */
496
0
            if (pacs->icc_equivalent == NULL) {
497
0
                code = gs_colorspace_set_icc_equivalent(pacs, &(is_lab), pgs->memory);
498
0
                if (code < 0)
499
0
                   return code;
500
0
            }
501
            /* Use the ICC equivalent color space */
502
0
            pacs = pacs->icc_equivalent;
503
0
        }
504
256k
        if (pacs->cmm_icc_profile_data &&
505
256k
            (pacs->cmm_icc_profile_data->data_cs == gsCIELAB ||
506
256k
            pacs->cmm_icc_profile_data->islab)) {
507
            /* Get the data in a form that is concrete for the CMM */
508
0
            cc.paint.values[0] /= 100.0;
509
0
            cc.paint.values[1] = (cc.paint.values[1]+128)/255.0;
510
0
            cc.paint.values[2] = (cc.paint.values[2]+128)/255.0;
511
0
        }
512
256k
        code = cs_concretize_color(&cc, pacs, pconc, pgs, dev);
513
256k
    }
514
6.02k
    else {
515
6.02k
        int i;
516
517
13.7k
        for (i = num_src_comps; --i >= 0;)
518
7.69k
            pconc[i] = gx_unit_frac(pc->paint.values[i]);
519
6.02k
        return 0;
520
6.02k
    }
521
256k
    return (code < 0 || tcode == 0 ? code : tcode);
522
262k
}
523
524
static int
525
gx_remap_concrete_DeviceN(const gs_color_space * pcs, const frac * pconc,
526
                          gx_device_color * pdc, const gs_gstate * pgs,
527
                          gx_device * dev, gs_color_select_t select,
528
                          const cmm_dev_profile_t *dev_profile)
529
6.02k
{
530
6.02k
    int code = 0;
531
532
#ifdef DEBUG
533
    /*
534
     * Verify that the color space and gs_gstate info match.
535
     */
536
    if (pcs->id != pgs->color_component_map.cspace_id)
537
        dmprintf(pgs->memory, "gx_remap_concrete_DeviceN: color space id mismatch");
538
#endif
539
6.02k
    if (pgs->color_component_map.use_alt_cspace) {
540
0
        const gs_color_space *pacs = pcs->base_space;
541
0
        return (*pacs->type->remap_concrete_color)
542
0
                                (pacs, pconc, pdc, pgs, dev, select, dev_profile);
543
6.02k
    } else {
544
    /* If we are going DeviceN out to real sep device that understands these,
545
       and if the destination profile is DeviceN, we print the colors directly.
546
       Make sure to disable the DeviceN profile color map so that is does not
547
       get used in gx_remap_concrete_devicen.  We probably should pass something
548
       through here but it is a pain due to the change in the proc. */
549
6.02k
        bool temp_val;
550
551
6.02k
        if (dev_profile->spotnames != NULL && code >= 0) {
552
0
            temp_val = dev_profile->spotnames->equiv_cmyk_set;
553
0
            dev_profile->spotnames->equiv_cmyk_set = false;
554
0
            gx_remap_concrete_devicen(pconc, pdc, pgs, dev, select, pcs);
555
0
            dev_profile->spotnames->equiv_cmyk_set = temp_val;
556
6.02k
        } else {
557
6.02k
            gx_remap_concrete_devicen(pconc, pdc, pgs, dev, select, pcs);
558
6.02k
        }
559
6.02k
        return 0;
560
6.02k
    }
561
6.02k
}
562
563
/*
564
 * Check that the color component names for a DeviceN color space
565
 * match the device colorant names.  Also build a gs_devicen_color_map
566
 * structure.
567
 */
568
static int
569
check_DeviceN_component_names(const gs_color_space * pcs, gs_gstate * pgs)
570
407
{
571
407
    char **names = pcs->params.device_n.names;
572
407
    int num_comp = pcs->params.device_n.num_components;
573
407
    int i;
574
407
    int colorant_number;
575
407
    const char *pname;
576
407
    uint name_size;
577
407
    gs_devicen_color_map * pcolor_component_map
578
407
        = &pgs->color_component_map;
579
407
    gx_device * dev = pgs->device;
580
407
    bool non_match = false;
581
407
    int none_count = 0;
582
583
407
    pcolor_component_map->num_components = num_comp;
584
407
    pcolor_component_map->cspace_id = pcs->id;
585
407
    pcolor_component_map->num_colorants = dev->color_info.num_components;
586
407
    pcolor_component_map->sep_type = SEP_OTHER;
587
588
    /* If the named color profile supports the components, don't use
589
       the alternate tint transform. */
590
407
    if (gsicc_support_named_color(pcs, pgs)) {
591
0
        pcolor_component_map->use_alt_cspace = false;
592
0
        return 0;
593
0
    }
594
595
    /* If our device is using an additive color model, then we need to
596
     * consider using the alternative color space, as separations are
597
     * generally only used with a subtractive color model. There are
598
     * exceptions, however.
599
     *
600
     * If we don't support devn, then we will certainly have to use the
601
     * alternative color space.
602
     *
603
     * If we are a pdf14 device, and we are doing transparency blending
604
     * in an additive space, we need to keep the spots separated and
605
     * blend them individually as per the PDF specification. Note
606
     * however, if the spot is a CMYK process color and we are doing
607
     * the blend in an additive color space the alternate color space
608
     * is used.  This matches AR.
609
     *
610
     * Otherwise, we will always use the alternate colorspace, unless
611
     * our device specifically claims to be a separation-supporting
612
     * additive device. Possibly all additive devn devices should
613
     * support this now, but I lack to confidence to make this change
614
     * globally. Instead we'll just enable it on a device by device
615
     * basis for now.
616
     *
617
     * This matches logic in check_Separation_component_name.
618
     */
619
407
    if (dev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE) {
620
40
        if (dev_proc(dev, dev_spec_op)(dev, gxdso_supports_devn, NULL, 0) == 0 ||
621
40
            (dev_proc(dev, dev_spec_op)(dev, gxdso_is_pdf14_device, NULL, 0) == 0 &&
622
40
             dev_proc(dev, dev_spec_op)(dev, gxdso_is_sep_supporting_additive_device, NULL, 0) == 0)) {
623
40
            pcolor_component_map->use_alt_cspace = true;
624
40
            return 0;
625
40
        }
626
40
    }
627
628
    /*
629
     * Now check the names of the color components.  If any of the colorants
630
     * come back as process type (i.e. CMYK) and we are drawing in a pdf14
631
     * additive color space then use the alternate tint transform.
632
     */
633
634
814
    for(i = 0; i < num_comp; i++ ) {
635
        /*
636
         * Get the character string and length for the component name.
637
         */
638
447
        pname = names[i];
639
447
        if (pname == NULL)
640
0
            pname = "";
641
447
        name_size = strlen(pname);
642
        /*
643
         * Compare the colorant name to the device's.  If the device's
644
         * compare routine returns GX_DEVICE_COLOR_MAX_COMPONENTS then the
645
         * colorant is in the SeparationNames list but not in the
646
         * SeparationOrder list.
647
         */
648
447
        colorant_number = (*dev_proc(dev, get_color_comp_index))
649
447
                                   (dev, pname, name_size, SEPARATION_NAME);
650
447
        if (colorant_number >= 0) {   /* If valid colorant name */
651
447
            pcolor_component_map->color_map[i] =
652
447
            (colorant_number == GX_DEVICE_COLOR_MAX_COMPONENTS) ? -1
653
447
                                                   : colorant_number;
654
447
        } else {
655
0
            if (strncmp(pname, "None", name_size) != 0) {
656
0
                    non_match = true;
657
0
            } else {
658
                /* Device N includes one or more None Entries. We can't reduce
659
                   the number of components in the list count, since the None Name(s)
660
                   are present in the list and GCd and we may need the None
661
                   entries in the alternate tint trasform calcuation.
662
                   So we will detect the presence of them by setting
663
                   pcolor_component_map->color_map[i] = -1 and watching
664
                   for this case later during the remap operation. */
665
0
                pcolor_component_map->color_map[i] = -1;
666
0
                none_count++;
667
0
            }
668
0
        }
669
447
    }
670
367
    pcolor_component_map->use_alt_cspace = non_match;
671
672
367
    if (none_count == num_comp)
673
0
        return 1;
674
675
367
    return 0;
676
367
}
677
678
/* Check if the colorants are all process colorants and of the same type */
679
static separation_colors
680
gx_check_process_names_DeviceN(gs_color_space * pcs, gs_gstate * pgs)
681
407
{
682
407
    int i, num_comp, num_spots = 0, num_rgb_process = 0;
683
407
    int num_cmyk_process = 0, num_other = 0;
684
407
    char **names;
685
407
    const char *pname;
686
407
    uint name_size;
687
688
407
    names = pcs->params.device_n.names;
689
407
    num_comp = pcs->params.device_n.num_components;
690
691
    /* Step through the color space colorants */
692
979
    for (i = 0; i < num_comp; i++) {
693
572
        pname = names[i];
694
572
        if (pname == NULL)
695
0
            pname = "";
696
572
        name_size = strlen(pname);
697
698
        /* Classify */
699
572
        if (strncmp(pname, "None", name_size) == 0) {
700
18
            num_other++;
701
554
        } else {
702
554
            if (strncmp(pname, "Cyan", name_size) == 0 ||
703
554
                strncmp(pname, "Magenta", name_size) == 0 ||
704
554
                strncmp(pname, "Yellow", name_size) == 0 ||
705
554
                strncmp(pname, "Black", name_size) == 0) {
706
481
                num_cmyk_process++;
707
481
            } else if (strncmp(pname, "Red", name_size) == 0 ||
708
73
                strncmp(pname, "Green", name_size) == 0 ||
709
73
                strncmp(pname, "Blue", name_size) == 0) {
710
33
                num_rgb_process++;
711
40
            } else {
712
40
                num_spots++;
713
40
            }
714
554
        }
715
572
    }
716
717
407
    if (num_cmyk_process > 0 && num_rgb_process == 0 && num_spots == 0)
718
373
        return SEP_PURE_CMYK;
719
34
    if (num_rgb_process > 0 && num_cmyk_process == 0 && num_spots == 0)
720
11
        return SEP_PURE_RGB;
721
23
    if (num_spots > 0 && num_cmyk_process == 0 && num_rgb_process == 0)
722
6
        return SEP_PURE_SPOT;
723
17
    return SEP_MIX;
724
23
}
725
726
/* Install a DeviceN color space. */
727
static int
728
gx_install_DeviceN(gs_color_space * pcs, gs_gstate * pgs)
729
407
{
730
407
    int code;
731
407
    code = check_DeviceN_component_names(pcs, pgs);
732
407
    if (code < 0)
733
0
       return code;
734
735
    /* Indicates all colorants are /None */
736
407
    if (code > 0)
737
0
        pcs->params.device_n.all_none = true;
738
739
407
    if (pgs->icc_manager->device_named != NULL) {
740
0
        pcs->params.device_n.named_color_supported =
741
0
            gsicc_support_named_color(pcs, pgs);
742
0
    }
743
407
    pcs->params.device_n.color_type = gx_check_process_names_DeviceN(pcs, pgs);
744
745
    /* See if we have an ICC profile that we can associate with
746
       this DeviceN color space */
747
407
    if (pgs->icc_manager->device_n != NULL) {
748
        /* An nclr profile is in the manager.  Grab one that matches. */
749
0
        cmm_profile_t *profdata = gsicc_finddevicen(pcs, pgs->icc_manager);
750
0
        if (profdata != NULL)
751
0
            gsicc_adjust_profile_rc(profdata, 1, "gx_install_DeviceN");
752
0
        if (pcs->cmm_icc_profile_data != NULL)
753
0
            gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, -1, "gx_install_DeviceN");
754
0
        pcs->cmm_icc_profile_data = profdata;
755
0
    }
756
    /* {csrc} was pgs->color_space->params.device_n.use_alt_cspace */
757
407
    ((gs_color_space *)pcs)->params.device_n.use_alt_cspace =
758
407
        using_alt_color_space(pgs);
759
407
    if (pcs->params.device_n.use_alt_cspace && pcs->cmm_icc_profile_data == NULL ) {
760
        /* No nclr ICC profile */
761
40
        code = (pcs->base_space->type->install_cspace)
762
40
            (pcs->base_space, pgs);
763
367
    } else if (pcs->params.device_n.use_alt_cspace) {
764
0
        gs_color_space *nclr_pcs;
765
        /* Need to install the nclr cspace */
766
0
        code = gs_cspace_build_ICC(&nclr_pcs, NULL, pgs->memory);
767
0
        nclr_pcs->cmm_icc_profile_data = pcs->cmm_icc_profile_data;
768
0
        gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, 1, "gx_install_DeviceN");
769
0
        rc_increment(nclr_pcs);       /* FIXME: Suspicious - RJW */
770
0
        rc_decrement(pcs->base_space, "gx_install_DeviceN");
771
0
        pcs->base_space = nclr_pcs;
772
0
    }
773
    /*
774
     * Give the device an opportunity to capture equivalent colors for any
775
     * spot colors which might be present in the color space.
776
     */
777
407
    if (code >= 0) {
778
407
        if (dev_proc(pgs->device, update_spot_equivalent_colors))
779
407
            code = dev_proc(pgs->device, update_spot_equivalent_colors)
780
407
                                                        (pgs->device, pgs, pcs);
781
407
    }
782
407
    return code;
783
407
}
784
785
/* Set overprint information for a DeviceN color space */
786
static int
787
gx_set_overprint_DeviceN(const gs_color_space * pcs, gs_gstate * pgs)
788
0
{
789
0
    gs_devicen_color_map *  pcmap = &pgs->color_component_map;
790
0
    int code;
791
792
    /* It is possible that the color map information in the graphic state
793
       is not current due to save/restore and or if we are coming from
794
       a color space that is inside a PatternType 2 */
795
0
    code = check_DeviceN_component_names(pcs, pgs);
796
0
    if (code < 0)
797
0
       return code;
798
0
    if (pcmap->use_alt_cspace) {
799
0
        const gs_color_space_type* base_type = pcs->base_space->type;
800
801
        /* If the base space is DeviceCMYK, handle overprint as DeviceCMYK */
802
0
        if ( base_type->index == gs_color_space_index_DeviceCMYK )
803
0
            return base_type->set_overprint( pcs->base_space, pgs );
804
0
        else
805
0
            return gx_set_no_overprint(pgs);
806
0
    } else {
807
0
        gs_overprint_params_t   params = { 0 };
808
809
0
        params.retain_any_comps = (pgs->overprint && pgs->is_fill_color) ||
810
0
                                  (pgs->stroke_overprint && !pgs->is_fill_color);
811
812
0
        params.drawn_comps = 0;
813
0
        if (params.retain_any_comps) {
814
0
            int     i, ncomps = pcs->params.device_n.num_components;
815
816
0
            params.is_fill_color = pgs->is_fill_color;  /* for fill_stroke */
817
0
            for (i = 0; i < ncomps; i++) {
818
0
                int mcomp = pcmap->color_map[i];
819
0
                if (mcomp >= 0)
820
0
                    gs_overprint_set_drawn_comp( params.drawn_comps, mcomp);
821
0
            }
822
0
        }
823
824
        /* Only DeviceCMYK can use overprint mode */
825
0
        params.effective_opm = pgs->color[0].effective_opm = 0;
826
0
        params.op_state = OP_STATE_NONE;
827
0
        params.is_fill_color =pgs->is_fill_color;
828
0
        return gs_gstate_update_overprint(pgs, &params);
829
0
    }
830
0
}
831
832
/* Finalize contents of a DeviceN color space. */
833
static void
834
gx_final_DeviceN(gs_color_space * pcs)
835
398
{
836
398
    gs_device_n_colorant * pnextatt, * patt = pcs->params.device_n.colorants;
837
398
    uint num_proc_names = pcs->params.device_n.num_process_names;
838
398
    gs_memory_t *mem = pcs->params.device_n.mem->non_gc_memory;
839
398
    char **proc_names = pcs->params.device_n.process_names;
840
398
    int k;
841
842
939
    for (k = 0; k < pcs->params.device_n.num_components; k++)
843
541
        gs_free_object(mem, pcs->params.device_n.names[k], "gx_final_DeviceN");
844
398
    gs_free_object(mem, pcs->params.device_n.names, "gx_final_DeviceN");
845
846
398
    if (num_proc_names > 0 && proc_names != NULL) {
847
1.84k
        for (k = 0; k < num_proc_names; k++) {
848
1.47k
            gs_free_object(mem, proc_names[k], "gx_final_DeviceN");
849
1.47k
        }
850
369
        gs_free_object(mem, proc_names, "gx_final_DeviceN");
851
369
    }
852
853
398
    rc_decrement_only(pcs->params.device_n.map, "gx_adjust_DeviceN");
854
398
    while (patt != NULL) {
855
0
        pnextatt = patt->next;
856
0
        gs_free_object(mem, patt->colorant_name, "gx_final_DeviceN");
857
0
        rc_decrement_cs(patt->cspace, "gx_final_DeviceN");
858
0
        rc_decrement(patt, "gx_adjust_DeviceN");
859
0
        patt = pnextatt;
860
0
    }
861
398
    if (pcs->params.device_n.devn_process_space)
862
398
        rc_decrement_only(pcs->params.device_n.devn_process_space, "gx_final_DeviceN");
863
    /* Ensure idempotency */
864
398
    memset(&pcs->params.device_n, 0, sizeof(pcs->params.device_n));
865
398
}
866
867
/* ---------------- Serialization. -------------------------------- */
868
869
int
870
gx_serialize_device_n_map(const gs_color_space * pcs, gs_device_n_map * m, stream * s)
871
0
{
872
0
    const gs_function_t *pfn;
873
874
0
    if (m->tint_transform != map_devn_using_function)
875
0
        return_error(gs_error_unregistered); /* Unimplemented. */
876
0
    pfn = (const gs_function_t *)m->tint_transform_data;
877
0
    return gs_function_serialize(pfn, s);
878
0
}
879
880
static int
881
gx_serialize_DeviceN(const gs_color_space * pcs, stream * s)
882
0
{
883
0
    const gs_device_n_params * p = &pcs->params.device_n;
884
0
    uint n, m;
885
0
    int code = gx_serialize_cspace_type(pcs, s);
886
887
0
    if (code < 0)
888
0
        return code;
889
0
    code = sputs(s, (const byte *)&p->num_components, sizeof(p->num_components), &n);
890
0
    if (code < 0)
891
0
        return code;
892
0
    for (n=0;n < p->num_components;n++) {
893
0
        const char *name = p->names[n];
894
0
        if (name == NULL)
895
0
            name = "";
896
0
        code = sputs(s, (const byte *)name, strlen(name) + 1, &m);
897
0
        if (code < 0)
898
0
            return code;
899
0
    }
900
0
    code = cs_serialize(pcs->base_space, s);
901
0
    if (code < 0)
902
0
        return code;
903
0
    return gx_serialize_device_n_map(pcs, p->map, s);
904
    /* p->use_alt_cspace isn't a property of the space. */
905
0
}