Coverage Report

Created: 2025-06-10 06:56

/src/ghostpdl/base/gsequivc.c
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/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
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4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
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   This software is distributed under license and may not be copied,
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   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
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11
   Refer to licensing information at http://www.artifex.com or contact
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   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
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   CA 94129, USA, for further information.
14
*/
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16
17
/* Routines for determining equivalent color for spot colors */
18
19
#include "math_.h"
20
#include "gdevprn.h"
21
#include "gsparam.h"
22
#include "gstypes.h"
23
#include "gxdcconv.h"
24
#include "gdevdevn.h"
25
#include "gsequivc.h"
26
#include "gzstate.h"
27
#include "gsstate.h"
28
#include "gscspace.h"
29
#include "gxcspace.h"
30
#include "gsicc_manage.h"
31
#include "gxdevsop.h"
32
33
/*
34
 * These routines are part of the logic for determining an equivalent
35
 * process color model color for a spot color.  The definition of a
36
 * Separation or DeviceN color space include a tint transform function.
37
 * This tint transform function is used if the specified spot or separation
38
 * colorant is not present.  We want to be able to display the spot colors
39
 * on our RGB or CMYK display.  We are using the tint transform function
40
 * to determine a CMYK equivalent to the spot color.  Current only CMYK
41
 * equivalent colors are supported.  This is because the CMYK is the only
42
 * standard subtractive color space.
43
 *
44
 * This process consists of the following steps:
45
 *
46
 * 1.  Whenever new spot colors are found, set status flags indicating
47
 * that we have one or more spot colors for which we need to determine an
48
 * equivalent color.  New spot colors can either be explicitly specified by
49
 * the SeparationColorNames device parameter or they may be detected by the
50
 * device's get_color_comp_index routine.
51
 *
52
 * 2.  Whenever a Separation or DeviceN color space is installed, the
53
 * update_spot_equivalent_colors device proc is called.  This allows the
54
 * device to check if the color space contains a spot color for which the
55
 * device does not know the equivalent CMYK color.  The routine
56
 * update_spot_equivalent_cmyk_colors is provided for this task (and the
57
 * next item).
58
 *
59
 * 3.  For each spot color for which an equivalent color is not known, we
60
 * do the following:
61
 *   a.  Create a copy of the color space and change the copy so that it
62
 *       uses its alternate colorspace.
63
 *   b.  Create a copy of the current gs_gstate and modify its color
64
 *       mapping (cmap) procs to use a special set of 'capture' procs.
65
 *   c.  Based upon the type of color space (Separation or DeviceN) create
66
 *       a 'color' which consists of the desired spot color set to 100% and
67
 *       and other components set to zero.
68
 *   d.  Call the remap_color routine using our modified color space and
69
 *       state structures.  Since we have forced the use of the alternate
70
 *       color space, we will eventually execute one of the 'capture' color
71
 *       space mapping procs.  This will give us either a gray, RGB, or
72
 *       CMYK color which is equivalent to the original spot color.  If the
73
 *       color is gray or RGB we convert it to CMYK.
74
 *   e.  Save the equivalent CMYK color in the device structure.
75
 *
76
 * 4.  When a page is to be displayed or a file created, the saved equivalent
77
 * color is used as desired.  It can be written into the output file.  It
78
 * may also be used to provide color values which can be combined with the
79
 * process color model components for a pixel, to correctly display spot
80
 * colors on a monitor.  (Note:  Overprinting effects with spot colors are
81
 * not correctly displayed on an RGB monitor if the device simply uses an RGB
82
 * process color model.  Instead it is necessary to use a subtractive process
83
 * color model and save both process color and spot color data and then
84
 * convert the overall result to RGB for display.)
85
 *
86
 * For this process to work properly, the following changes need to made to
87
 * the device.
88
 *
89
 * 1.  The device source module needs to include gsequivc.h for a definition
90
 *     of the relevant structures and routines.  An equivalent_cmyk_color_params
91
 *     structure needs to be added to the device's structure definition and
92
 *     it needs to be initialized.  For examples see the definition of the
93
 *     psd_device structure in src/gdevpsd.c and the definitions of the
94
 *     gs_psdrgb_device and gs_psdcmyk_devices devices in the same module.
95
 * 2.  Logic needs to be added to the device's get_color_comp_index and
96
 *     put_param routines to check if any separations have been added to the
97
 *     device.  For examples see code fragments in psd_get_color_comp_index and
98
 *     psd_put_params in src/gdevpsd.c.
99
 * 3.  The device needs to have its own version of the
100
 *     update_spot_equivalent_colors routine.  For examples see the definition
101
 *     of the device_procs macro and the psd_update_spot_equivalent_colors
102
 *     routine in src/gdevpsd.c.
103
 * 4.  The device then uses the saved equivalent color values when its output
104
 *     is created.  For example see the psd_write_header routine in
105
 *     src/gdevpsd.c.
106
 */
107
108
#define compare_color_names(name, name_size, str, str_size) \
109
69
    (name_size == str_size && \
110
69
        (strncmp((const char *)name, (const char *)str, name_size) == 0))
111
112
static void
113
update_Separation_spot_equivalent_cmyk_colors(gx_device * pdev,
114
                    const gs_gstate * pgs, const gs_color_space * pcs,
115
                    gs_devn_params * pdevn_params,
116
                    equivalent_cmyk_color_params * pparams)
117
61
{
118
61
    int i;
119
120
    /*
121
     * Check if the color space's separation name matches any of the
122
     * separations for which we need an equivalent CMYK color.
123
     */
124
64
    for (i = 0; i < pdevn_params->separations.num_separations; i++) {
125
64
        if (pparams->color[i].color_info_valid == false) {
126
61
            const devn_separation_name * dev_sep_name =
127
61
                            &(pdevn_params->separations.names[i]);
128
61
            unsigned int cs_sep_name_size;
129
61
            unsigned char * pcs_sep_name;
130
131
61
            pcs_sep_name = (unsigned char *)pcs->params.separation.sep_name;
132
61
            cs_sep_name_size = strlen(pcs->params.separation.sep_name);
133
61
            if (compare_color_names(dev_sep_name->data, dev_sep_name->size,
134
61
                            pcs_sep_name, cs_sep_name_size)) {
135
61
                gs_color_space temp_cs = *pcs;
136
61
                gs_client_color client_color;
137
138
                /*
139
                 * Create a copy of the color space and then modify it
140
                 * to force the use of the alternate color space.
141
                 */
142
61
                temp_cs.params.separation.use_alt_cspace = true;
143
61
                client_color.paint.values[0] = 1.0;
144
61
                capture_spot_equivalent_cmyk_colors(pdev, pgs, &client_color,
145
61
                                            &temp_cs, i, pparams);
146
61
                break;
147
61
            }
148
61
        }
149
64
    }
150
61
}
151
152
/* This is used for getting the equivalent CMYK values for the spots that
153
   may exist in a DeviceN output ICC profile */
154
static int
155
update_ICC_spot_equivalent_cmyk_colors(gx_device * pdev,
156
                    const gs_gstate * pgs, const gs_color_space * pcs,
157
                    gs_devn_params * pdevn_params,
158
                    equivalent_cmyk_color_params * pparams)
159
0
{
160
0
    int i, j;
161
0
    cmm_dev_profile_t *dev_profile;
162
0
    int code;
163
0
    gs_client_color client_color;
164
165
166
0
    code = dev_proc(pdev, get_profile)(pdev, &dev_profile);
167
0
    if (code < 0)
168
0
        return code;
169
    /*
170
     * Check if the ICC spot names matche any of the
171
     * separations for which we need an equivalent CMYK color.
172
     */
173
0
    for (i = 0; i < pdevn_params->separations.num_separations; i++) {
174
0
        if (pparams->color[i].color_info_valid == false) {
175
0
            const devn_separation_name * dev_sep_name =
176
0
                            &(pdevn_params->separations.names[i]);
177
0
            gsicc_colorname_t *name_entry;
178
179
0
            name_entry = dev_profile->spotnames->head;
180
181
0
            for (j = 0; j < dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE]->num_comps; j++) {
182
0
                client_color.paint.values[j] = 0.0;
183
0
            }
184
0
            for (j = 0; j < dev_profile->spotnames->count; j++) {
185
0
                if (compare_color_names(dev_sep_name->data, dev_sep_name->size,
186
0
                                name_entry->name, name_entry->length)) {
187
                    /*
188
                     * Create a copy of the color space and then modify it
189
                     * to force the use of the alternate color space.
190
                     */
191
0
                    client_color.paint.values[j] = 1.0;
192
0
                    capture_spot_equivalent_cmyk_colors(pdev, pgs, &client_color,
193
0
                                                pcs, i, pparams);
194
0
                    break;
195
0
                }
196
                /* Did not match, grab the next one */
197
0
                name_entry = name_entry->next;
198
0
            }
199
0
        }
200
0
    }
201
0
    return 0;
202
0
}
203
204
static void
205
update_DeviceN_spot_equivalent_cmyk_colors(gx_device * pdev,
206
                    const gs_gstate * pgs, const gs_color_space * pcs,
207
                    gs_devn_params * pdevn_params,
208
                    equivalent_cmyk_color_params * pparams)
209
4
{
210
4
    int i;
211
4
    unsigned int j;
212
4
    unsigned int cs_sep_name_size;
213
4
    unsigned char * pcs_sep_name;
214
215
    /*
216
     * Check if the color space contains components named 'None'.  If so then
217
     * our capture logic does not work properly.  When present, the 'None'
218
     * components contain alternate color information.  However this info is
219
     * specified as part of the 'color' and not part of the color space.  Thus
220
     * we do not have this data when this routine is called.  See the
221
     * description of DeviceN color spaces in section 4.5 of the PDF spec.
222
     * In this situation we exit rather than produce invalid values.
223
     */
224
8
     for (j = 0; j < pcs->params.device_n.num_components; j++) {
225
8
        pcs_sep_name = (unsigned char *)pcs->params.device_n.names[j];
226
8
        cs_sep_name_size = strlen(pcs->params.device_n.names[j]);
227
228
8
        if (compare_color_names("None", 4, pcs_sep_name, cs_sep_name_size)) {
229
            /* If we are going out to a device that supports devn colors
230
               then it is possible that any preview that such a device creates
231
               will be in error due to the lack of the proper mappings from
232
               the full DeviceN colors (whicn can include one or more \None
233
               enrties). Display a warning about this if in debug mode */
234
#ifdef DEBUG
235
            if (dev_proc(pdev, dev_spec_op)(pdev, gxdso_supports_devn, NULL, 0))
236
                gs_warn("Separation preview may be inaccurate due to presence of \\None colorants");
237
#endif
238
4
            return;
239
4
        }
240
8
    }
241
242
    /*
243
     * Check if the color space's separation names matches any of the
244
     * separations for which we need an equivalent CMYK color.
245
     */
246
0
    for (i = 0; i < pdevn_params->separations.num_separations; i++) {
247
0
        if (pparams->color[i].color_info_valid == false) {
248
0
            const devn_separation_name * dev_sep_name =
249
0
                            &(pdevn_params->separations.names[i]);
250
251
0
            for (j = 0; j < pcs->params.device_n.num_components; j++) {
252
0
                pcs_sep_name = (unsigned char *)pcs->params.device_n.names[j];
253
0
                cs_sep_name_size = strlen(pcs->params.device_n.names[j]);
254
0
                if (compare_color_names(dev_sep_name->data, dev_sep_name->size,
255
0
                            pcs_sep_name, cs_sep_name_size)) {
256
0
                    gs_color_space temp_cs = *pcs;
257
0
                    gs_client_color client_color;
258
259
                    /*
260
                     * Create a copy of the color space and then modify it
261
                     * to force the use of the alternate color space.
262
                     */
263
0
                    memset(&client_color, 0, sizeof(client_color));
264
0
                    temp_cs.params.device_n.use_alt_cspace = true;
265
0
                    client_color.paint.values[j] = 1.0;
266
0
                    capture_spot_equivalent_cmyk_colors(pdev, pgs, &client_color,
267
0
                                            &temp_cs, i, pparams);
268
0
                    break;
269
0
                }
270
0
            }
271
0
        }
272
0
    }
273
0
}
274
275
static bool check_all_colors_known(int num_spot,
276
                equivalent_cmyk_color_params * pparams)
277
65
{
278
129
    for (num_spot--; num_spot >= 0; num_spot--)
279
68
        if (pparams->color[num_spot].color_info_valid == false)
280
4
            return false;
281
61
    return true;
282
65
}
283
284
/* If possible, update the equivalent CMYK color for a spot color */
285
int
286
update_spot_equivalent_cmyk_colors(gx_device * pdev, const gs_gstate * pgs, const gs_color_space * pcs_in,
287
    gs_devn_params * pdevn_params, equivalent_cmyk_color_params * pparams)
288
5.17k
{
289
5.17k
    const gs_color_space * pcs = pcs_in;
290
5.17k
    cmm_dev_profile_t *dev_profile;
291
5.17k
    int code;
292
293
5.17k
    code = dev_proc(pdev, get_profile)(pdev, &dev_profile);
294
5.17k
    if (code < 0)
295
0
        return code;
296
297
    /* If all of the color_info is valid then there is nothing to do. */
298
5.17k
    if (pparams->all_color_info_valid)
299
5.10k
        return 0;
300
301
    /* Verify that we really have some separations. */
302
65
    if (pdevn_params->separations.num_separations == 0) {
303
0
        pparams->all_color_info_valid = true;
304
0
        return 0;
305
0
    }
306
307
    /* If the caller apssed in NULL for the colour space, use the current colour space */
308
65
    if (pcs_in == NULL)
309
0
        pcs = gs_currentcolorspace_inline(pgs);
310
311
    /*
312
     * Verify that the given color space is a Separation or a DeviceN color
313
     * space.  If so then when check if the color space contains a separation
314
     * color for which we need a CMYK equivalent.
315
     */
316
65
    if (pcs != NULL) {
317
65
        if (pcs->type->index == gs_color_space_index_Separation) {
318
61
            update_Separation_spot_equivalent_cmyk_colors(pdev, pgs, pcs,
319
61
                                                pdevn_params, pparams);
320
61
            pparams->all_color_info_valid = check_all_colors_known
321
61
                    (pdevn_params->separations.num_separations, pparams);
322
61
        }
323
4
        else if (pcs->type->index == gs_color_space_index_DeviceN) {
324
4
            update_DeviceN_spot_equivalent_cmyk_colors(pdev, pgs, pcs,
325
4
                                                pdevn_params, pparams);
326
4
            pparams->all_color_info_valid = check_all_colors_known
327
4
                    (pdevn_params->separations.num_separations, pparams);
328
4
        } else if (pcs->type->index == gs_color_space_index_ICC &&
329
0
            dev_profile->spotnames != NULL) {
330
            /* In this case, we are trying to set up the equivalent colors
331
               for the spots in the output ICC profile */
332
0
            code = update_ICC_spot_equivalent_cmyk_colors(pdev, pgs, pcs,
333
0
                                                          pdevn_params,
334
0
                                                          pparams);
335
0
            if (code < 0)
336
0
                return code;
337
0
            pparams->all_color_info_valid = check_all_colors_known
338
0
                    (pdevn_params->separations.num_separations, pparams);
339
0
        }
340
65
    }
341
65
    return 0;
342
65
}
343
344
static void
345
save_spot_equivalent_cmyk_color(int sep_num,
346
                equivalent_cmyk_color_params * pparams, const frac cmyk[4])
347
61
{
348
61
    pparams->color[sep_num].c = cmyk[0];
349
61
    pparams->color[sep_num].m = cmyk[1];
350
61
    pparams->color[sep_num].y = cmyk[2];
351
61
    pparams->color[sep_num].k = cmyk[3];
352
61
    pparams->color[sep_num].color_info_valid = true;
353
61
}
354
355
/*
356
 * A structure definition for a device for capturing equivalent colors
357
 */
358
typedef struct color_capture_device_s {
359
    gx_device_common;
360
    gx_prn_device_common;
361
    /*        ... device-specific parameters ... */
362
    /* The following values are needed by the cmap procs for saving data */
363
    int sep_num;  /* Number of the separation being captured */
364
    /* Pointer to original device's equivalent CMYK colors */
365
    equivalent_cmyk_color_params * pequiv_cmyk_colors;
366
} color_capture_device;
367
368
/*
369
 * Replacement routines for the cmap procs.  These routines will capture the
370
 * equivalent color.
371
 */
372
static cmap_proc_gray(cmap_gray_capture_cmyk_color);
373
static cmap_proc_rgb(cmap_rgb_capture_cmyk_color);
374
static cmap_proc_cmyk(cmap_cmyk_capture_cmyk_color);
375
static cmap_proc_separation(cmap_separation_capture_cmyk_color);
376
static cmap_proc_devicen(cmap_devicen_capture_cmyk_color);
377
378
static const gx_color_map_procs cmap_capture_cmyk_color = {
379
    cmap_gray_capture_cmyk_color,
380
    cmap_rgb_capture_cmyk_color,
381
    cmap_cmyk_capture_cmyk_color,
382
    cmap_separation_capture_cmyk_color,
383
    cmap_devicen_capture_cmyk_color
384
};
385
386
static void
387
cmap_gray_capture_cmyk_color(frac gray, gx_device_color * pdc,
388
        const gs_gstate * pgs, gx_device * dev, gs_color_select_t select)
389
0
{
390
0
    equivalent_cmyk_color_params * pparams =
391
0
            ((color_capture_device *)dev)->pequiv_cmyk_colors;
392
0
    int sep_num = ((color_capture_device *)dev)->sep_num;
393
0
    frac cmyk[4];
394
395
0
    cmyk[0] = cmyk[1] = cmyk[2] = frac_0;
396
0
    cmyk[3] = frac_1 - gray;
397
0
    save_spot_equivalent_cmyk_color(sep_num, pparams, cmyk);
398
0
}
399
400
static void
401
cmap_rgb_capture_cmyk_color(frac r, frac g, frac b, gx_device_color * pdc,
402
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select)
403
0
{
404
0
    equivalent_cmyk_color_params * pparams =
405
0
            ((color_capture_device *)dev)->pequiv_cmyk_colors;
406
0
    int sep_num = ((color_capture_device *)dev)->sep_num;
407
0
    frac cmyk[4];
408
409
0
    color_rgb_to_cmyk(r, g, b, pgs, cmyk, dev->memory);
410
0
    save_spot_equivalent_cmyk_color(sep_num, pparams, cmyk);
411
0
}
412
413
static void
414
cmap_cmyk_capture_cmyk_color(frac c, frac m, frac y, frac k, gx_device_color * pdc,
415
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select,
416
     const gs_color_space *pcs)
417
61
{
418
61
    equivalent_cmyk_color_params * pparams =
419
61
            ((color_capture_device *)dev)->pequiv_cmyk_colors;
420
61
    int sep_num = ((color_capture_device *)dev)->sep_num;
421
61
    frac cmyk[4];
422
423
61
    cmyk[0] = c;
424
61
    cmyk[1] = m;
425
61
    cmyk[2] = y;
426
61
    cmyk[3] = k;
427
61
    save_spot_equivalent_cmyk_color(sep_num, pparams, cmyk);
428
61
}
429
430
static void
431
cmap_separation_capture_cmyk_color(frac all, gx_device_color * pdc,
432
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select,
433
     const gs_color_space *pcs)
434
0
{
435
0
    dmprintf(pgs->memory, "cmap_separation_capture_cmyk_color - this routine should not be executed\n");
436
0
}
437
438
/* The call to this is actually going to occur if we happen to be using a
439
   named color profile and doing a replacement.  Since the destination profile
440
   will have been CMYK based during the swap out to find the equivalent color, we can
441
   go ahead and just grab the cmyk portion */
442
static void
443
cmap_devicen_capture_cmyk_color(const frac * pcc, gx_device_color * pdc,
444
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select,
445
     const gs_color_space *pcs)
446
0
{
447
0
    equivalent_cmyk_color_params * pparams =
448
0
        ((color_capture_device *)dev)->pequiv_cmyk_colors;
449
0
    int sep_num = ((color_capture_device *)dev)->sep_num;
450
451
0
    save_spot_equivalent_cmyk_color(sep_num, pparams, pcc);
452
0
}
453
454
/*
455
 * Note:  The color space (pcs) has already been modified to use the
456
 * alternate color space.
457
 */
458
void
459
capture_spot_equivalent_cmyk_colors(gx_device * pdev, const gs_gstate * pgs,
460
    const gs_client_color * pcc, const gs_color_space * pcs,
461
    int sep_num, equivalent_cmyk_color_params * pparams)
462
61
{
463
61
    gs_gstate temp_state = *((const gs_gstate *)pgs);
464
61
    color_capture_device temp_device = { 0 };
465
61
    gx_device_color dev_color;
466
61
    gsicc_rendering_param_t render_cond;
467
61
    cmm_dev_profile_t *dev_profile;
468
61
    cmm_profile_t *curr_output_profile;
469
61
    cmm_dev_profile_t temp_profile = {  /* Initialize to 0's/NULL's */
470
61
                          { 0 } /* device_profile[] */, 0 /* proof_profile */,
471
61
                          0 /* link_profile */, 0 /* oi_profile */,
472
61
                          0 /* blend_profile */, 0 /* postren_profile */,
473
61
                          { {0} } /* rendercond[] */, 0 /* devicegraytok */,
474
61
                          0 /* graydection */, 0 /* pageneutralcolor */,
475
61
                          0 /* usefastcolor */, 0 /* blacktext */, 0 /* blackvector */,
476
61
                          0.0 /* blackthresholdL */, 0.0 /* blackthresholdC */,
477
61
                          0 /* supports_devn */, 0 /* overprint_control */,
478
61
                          0 /* spotnames */, 0 /* prebandthreshold */, 0 /* memory */,
479
61
                          { 0 } /* rc_header */
480
61
                          };
481
482
61
    dev_proc(pdev, get_profile)(pdev, &dev_profile);
483
61
    gsicc_extract_profile(pdev->graphics_type_tag,
484
61
                          dev_profile, &(curr_output_profile), &render_cond);
485
486
    /* If the output profile is not CMYK based (which can happen during overprint
487
       simulation. In particular when the blending space is RGB or Gray based.
488
       Think of the case where the file has transparency and we are in an RGB
489
       page group), then just use DefaultCMYK */
490
61
    if (curr_output_profile->data_cs != gsCMYK)
491
0
        curr_output_profile = pgs->icc_manager->default_cmyk;
492
493
    /*
494
     * Create a temp device.  The primary purpose of this device is pass the
495
     * separation number and a pointer to the original device's equivalent
496
     * color parameters.  Since we only using this device for a very specific
497
     * purpose, we only set up the color_info structure and our data.
498
     */
499
61
    temp_device.color_info = pdev->color_info;
500
61
    temp_device.sep_num = sep_num;
501
61
    temp_device.pequiv_cmyk_colors = pparams;
502
61
    temp_device.memory = pgs->memory;
503
504
61
    temp_profile.usefastcolor = false;  /* This avoids a few headaches */
505
61
    temp_profile.blacktext = false;
506
61
    temp_profile.blackvector = false;
507
61
    temp_profile.prebandthreshold = true;
508
61
    temp_profile.supports_devn = false;
509
61
    temp_profile.rendercond[0] = render_cond;
510
61
    temp_profile.rendercond[1] = render_cond;
511
61
    temp_profile.rendercond[2] = render_cond;
512
61
    temp_profile.rendercond[3] = render_cond;
513
61
    temp_device.icc_struct = &temp_profile;
514
515
    /* The equivalent CMYK colors are used for
516
       the preview of the composite image and as such should not rely
517
       upon the output profile if our output profile is a DeviceN profile.
518
       For example, if our output profile was CMYK + OG then if we use
519
       the device profile here we may not get CMYK values that
520
       even come close to the color we want to simulate.  So, for this
521
       case we go ahead and use the default CMYK profile and let the user
522
       beware.  Note that the actual separations will be correct however
523
       for the CMYK + OG values. */
524
525
61
    if (curr_output_profile->data_cs == gsNCHANNEL) {
526
0
        temp_profile.device_profile[GS_DEFAULT_DEVICE_PROFILE] =
527
0
            temp_state.icc_manager->default_cmyk;
528
61
    } else {
529
61
        temp_profile.device_profile[GS_DEFAULT_DEVICE_PROFILE] =
530
61
            curr_output_profile;
531
61
    }
532
61
    set_dev_proc(&temp_device, get_profile, gx_default_get_profile);
533
534
    /*
535
     * Create a temp copy of the gs_gstate.  We do this so that we
536
     * can modify the color space mapping (cmap) procs.  We use our
537
     * replacment procs to capture the color.  The installation of a
538
     * Separation or DeviceN color space also sets a use_alt_cspace flag
539
     * in the state.  We also need to set this to use the alternate space.
540
     */
541
61
    temp_state.cmap_procs = &cmap_capture_cmyk_color;
542
61
    temp_state.color_component_map.use_alt_cspace = true;
543
544
    /* Now capture the color */
545
61
    pcs->type->remap_color (pcc, pcs, &dev_color, &temp_state,
546
61
                            (gx_device *)&temp_device, gs_color_select_texture);
547
61
}
548
549
/* Used for detecting if we are trying to find the equivalant color during
550
   named color replacement */
551
bool
552
named_color_equivalent_cmyk_colors(const gs_gstate * pgs)
553
0
{
554
0
    return pgs->cmap_procs == &cmap_capture_cmyk_color;
555
0
}