Coverage Report

Created: 2025-11-16 07:40

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gsdparam.c
Line
Count
Source
1
/* Copyright (C) 2001-2025 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
/* Default device parameters for Ghostscript library */
17
#include "memory_.h"    /* for memcpy */
18
#include "string_.h"    /* for strlen */
19
#include "gx.h"
20
#include "gserrors.h"
21
#include "gsdevice.h"   /* for prototypes */
22
#include "gsparam.h"
23
#include "gsparamx.h"   /* for param_put_enum */
24
#include "gxdevice.h"
25
#include "gxdevsop.h"
26
#include "gxfixed.h"
27
#include "gsicc_manage.h"
28
#include "gdevnup.h"    /* to install N-up subclass device */
29
#include "gp_utf8.h"
30
31
extern gx_device_nup gs_nup_device;
32
33
/* Define whether we accept PageSize as a synonym for MediaSize. */
34
/* This is for backward compatibility only. */
35
#define PAGESIZE_IS_MEDIASIZE
36
37
16.3M
#define BLACKTHRESHOLDL 90
38
16.3M
#define BLACKTHRESHOLDC 3
39
40
/* Names corresponding to gs_overprint_control_t enum */
41
static const char *const overprint_control_names[] = {
42
    gs_overprint_control_names, 0
43
};
44
45
/* ================ Getting parameters ================ */
46
47
/* Forward references */
48
static bool param_HWColorMap(gx_device *, byte *);
49
50
/* Get the device parameters. */
51
int
52
gs_get_device_or_hw_params(gx_device * orig_dev, gs_param_list * plist,
53
                           bool is_hardware)
54
4.56M
{
55
    /*
56
     * We must be prepared to copy the device if it is the read-only
57
     * prototype.
58
     */
59
4.56M
    gx_device *dev;
60
4.56M
    int code = 0;
61
62
4.56M
    if (orig_dev->memory)
63
4.56M
        dev = orig_dev;
64
0
    else {
65
0
        code = gs_copydevice(&dev, orig_dev, plist->memory);
66
0
        if (code < 0)
67
0
            return code;
68
0
    }
69
4.56M
    fill_dev_proc(dev, get_params, gx_default_get_params);
70
4.56M
    fill_dev_proc(dev, get_page_device, gx_default_get_page_device);
71
4.56M
    fill_dev_proc(dev, get_alpha_bits, gx_default_get_alpha_bits);
72
4.56M
    if (is_hardware) {
73
0
        if (dev_proc(dev, get_hardware_params) != NULL)
74
0
            code = (*dev_proc(dev, get_hardware_params)) (dev, plist);
75
4.56M
    } else {
76
4.56M
        if (dev_proc(dev, get_params) != NULL)
77
4.56M
            code = (*dev_proc(dev, get_params)) (dev, plist);
78
4.56M
    }
79
4.56M
    if (dev != orig_dev)
80
0
        gx_device_retain(dev, false);  /* frees the copy */
81
4.56M
    return code;
82
4.56M
}
83
84
static int
85
get_dev_icccolorants_utf8(gs_memory_t *mem, cmm_dev_profile_t *dev_profile, char **putf8)
86
0
{
87
0
    char *colorants = gsicc_get_dev_icccolorants(dev_profile);
88
0
    char *utf8;
89
0
    unsigned char *s;
90
0
    unsigned short *unicode, *u;
91
0
    size_t len;
92
93
0
    if (colorants == NULL)
94
0
    {
95
0
        *putf8 = NULL;
96
0
        return 0;
97
0
    }
98
99
0
    len = strlen(colorants);
100
101
    /* Convert our 8 bit raw bytes into 16 bit raw. */
102
0
    unicode = (unsigned short *)gs_alloc_bytes(mem, (len+1)*sizeof(unsigned short), "get_dev_icccolorants_utf8");
103
0
    if (unicode == NULL)
104
0
        return_error(gs_error_VMerror);
105
106
0
    u = unicode;
107
0
    s = (unsigned char *)colorants;
108
0
    while ((*u++ = *s++) != 0);
109
110
    /* Now utf-8 encode that. */
111
0
    len = gp_uint16_to_utf8(NULL, unicode);
112
0
    utf8 = (char *)gs_alloc_bytes(mem, len, "get_dev_icccolorants_utf8");
113
0
    if (utf8 == NULL) {
114
0
        gs_free_object(mem, unicode, "get_dev_icccolorants_utf8");
115
0
        return_error(gs_error_VMerror);
116
0
    }
117
0
    gp_uint16_to_utf8(utf8, unicode);
118
119
0
    gs_free_object(mem, unicode, "get_dev_icccolorants_utf8");
120
0
    *putf8 = utf8;
121
122
0
    return 0;
123
0
}
124
125
126
int gx_default_get_param(gx_device *dev, char *Param, void *list)
127
9.92M
{
128
9.92M
    gs_param_list * plist = (gs_param_list *)list;
129
9.92M
    int k, colors = dev->color_info.num_components;
130
9.92M
    gs_param_string profile_array[NUM_DEVICE_PROFILES];
131
9.92M
    gs_param_string postren_profile, blend_profile;
132
9.92M
    gs_param_string proof_profile, link_profile, icc_colorants;
133
9.92M
    gsicc_rendering_intents_t profile_intents[NUM_DEVICE_PROFILES];
134
9.92M
    gsicc_blackptcomp_t blackptcomps[NUM_DEVICE_PROFILES];
135
9.92M
    gsicc_blackpreserve_t blackpreserve[NUM_DEVICE_PROFILES];
136
9.92M
    int color_accuracy = MAX_COLOR_ACCURACY;
137
9.92M
    int depth = dev->color_info.depth;
138
9.92M
    cmm_dev_profile_t *dev_profile;
139
9.92M
    char null_str[1]={'\0'};
140
9.92M
#define set_param_array(a, d, s)\
141
9.92M
  (a.data = d, a.size = s, a.persistent = false);
142
9.92M
    bool devicegraytok = true;  /* Default if device profile stuct not set */
143
9.92M
    bool graydetection = false;
144
9.92M
    bool usefastcolor = false;  /* set for unmanaged color */
145
9.92M
    bool blacktext = false;
146
9.92M
    bool blackvector = false;
147
9.92M
    float blackthresholdL = BLACKTHRESHOLDL;
148
9.92M
    float blackthresholdC = BLACKTHRESHOLDC;
149
    /* By default overprinting only valid with cmyk devices */
150
9.92M
    gs_overprint_control_t overprint_control = gs_overprint_control_enable;
151
9.92M
    bool prebandthreshold = true, temp_bool = false;
152
153
9.92M
    if(strcmp(Param, "OutputDevice") == 0){
154
0
        gs_param_string dns;
155
0
        param_string_from_string(dns, dev->dname);
156
0
        return param_write_name(plist, "OutputDevice", &dns);
157
0
    }
158
9.92M
#ifdef PAGESIZE_IS_MEDIASIZE
159
9.92M
    if (strcmp(Param, "PageSize") == 0) {
160
385k
        gs_param_float_array msa;
161
385k
        set_param_array(msa, dev->MediaSize, 2);
162
385k
        return param_write_float_array(plist, "PageSize", &msa);
163
385k
    }
164
9.53M
#endif
165
9.53M
    if (strcmp(Param, "ProcessColorModel") == 0) {
166
0
        const char *cms = get_process_color_model_name(dev);
167
168
        /* We might have an uninitialized device with */
169
        /* color_info.num_components = 0.... */
170
0
        if ((cms != NULL) && (*cms != '\0')) {
171
0
            gs_param_string pcms;
172
0
            param_string_from_string(pcms, cms);
173
0
            return param_write_name(plist, "ProcessColorModel", &pcms);
174
0
        }
175
0
    }
176
9.53M
    if (strcmp(Param, "HWResolution") == 0) {
177
0
        gs_param_float_array hwra;
178
0
        set_param_array(hwra, dev->HWResolution, 2);
179
0
        return param_write_float_array(plist, "HWResolution", &hwra);
180
0
    }
181
9.53M
    if (strcmp(Param, "ImagingBBox") == 0) {
182
0
        gs_param_float_array ibba;
183
0
        set_param_array(ibba, dev->ImagingBBox, 4);
184
0
        if (dev->ImagingBBox_set)
185
0
            return param_write_float_array(plist, "ImagingBBox", &ibba);
186
0
        else
187
0
            return param_write_null(plist, "ImagingBBox");
188
0
    }
189
9.53M
    if (strcmp(Param, "Margins") == 0) {
190
0
        gs_param_float_array ma;
191
0
        set_param_array(ma, dev->Margins, 2);
192
0
        return param_write_float_array(plist, "Margins", &ma);
193
0
    }
194
9.53M
    if (strcmp(Param, "MaxSeparations") == 0) {
195
0
        int max_sep = dev->color_info.max_components;
196
0
        return param_write_int(plist, "MaxSeparations", &max_sep);
197
0
    }
198
9.53M
    if (strcmp(Param, "NumCopies") == 0) {
199
0
        if (dev->NumCopies_set < 0 || (*dev_proc(dev, get_page_device))(dev) == 0) {
200
0
            return_error(gs_error_undefined);
201
0
        } else {
202
0
            if (dev->NumCopies_set)
203
0
                return param_write_int(plist, "NumCopies", &dev->NumCopies);
204
0
            else
205
0
                return param_write_null(plist, "NumCopies");
206
0
        }
207
0
    }
208
9.53M
    if (strcmp(Param, "SeparationColorNames") == 0) {
209
0
        gs_param_string_array scna;
210
0
        set_param_array(scna, NULL, 0);
211
0
        return param_write_name_array(plist, "SeparationColorNames", &scna);
212
0
    }
213
9.53M
    if (strcmp(Param, "Separations") == 0) {
214
0
        bool seprs = false;
215
0
        return param_write_bool(plist, "Separations", &seprs);
216
0
    }
217
9.53M
    if (strcmp(Param, "UseCIEColor") == 0) {
218
0
        return param_write_bool(plist, "UseCIEColor", &dev->UseCIEColor);
219
0
    }
220
221
    /* Non-standard parameters */
222
9.53M
    if (strcmp(Param, "HWSize") == 0) {
223
0
        int HWSize[2];
224
0
        gs_param_int_array hwsa;
225
226
0
        HWSize[0] = dev->width;
227
0
        HWSize[1] = dev->height;
228
0
        set_param_array(hwsa, HWSize, 2);
229
0
        return param_write_int_array(plist, "HWSize", &hwsa);
230
0
    }
231
9.53M
    if (strcmp(Param, ".HWMargins") == 0) {
232
0
        gs_param_float_array hwma;
233
0
        set_param_array(hwma, dev->HWMargins, 4);
234
0
        return param_write_float_array(plist, ".HWMargins", &hwma);
235
0
    }
236
9.53M
    if (strcmp(Param, ".MediaSize") == 0) {
237
0
        gs_param_float_array msa;
238
0
        set_param_array(msa, dev->MediaSize, 2);
239
0
        return param_write_float_array(plist, ".MediaSize", &msa);
240
0
    }
241
9.53M
    if (strcmp(Param, "Name") == 0) {
242
0
        gs_param_string dns;
243
0
        param_string_from_string(dns, dev->dname);
244
0
        return param_write_string(plist, "Name", &dns);
245
0
    }
246
9.53M
    if (strcmp(Param, "Colors") == 0) {
247
0
        int colors = dev->color_info.num_components;
248
0
        return param_write_int(plist, "Colors", &colors);
249
0
    }
250
9.53M
    if (strcmp(Param, "BitsPerPixel") == 0) {
251
0
        return param_write_int(plist, "BitsPerPixel", &depth);
252
0
    }
253
9.53M
    if (strcmp(Param, "GrayValues") == 0) {
254
0
        int GrayValues = dev->color_info.max_gray + 1;
255
0
        return param_write_int(plist, "GrayValues", &GrayValues);
256
0
    }
257
9.53M
    if (strcmp(Param, "PageCount") == 0) {
258
0
        return param_write_long(plist, "PageCount", &dev->PageCount);
259
0
    }
260
9.53M
    if (strcmp(Param, ".IgnoreNumCopies") == 0) {
261
0
        return param_write_bool(plist, ".IgnoreNumCopies", &dev->IgnoreNumCopies);
262
0
    }
263
9.53M
    if (strcmp(Param, "TextAlphaBits") == 0) {
264
0
        return param_write_int(plist, "TextAlphaBits",
265
0
                                &dev->color_info.anti_alias.text_bits);
266
0
    }
267
9.53M
    if (strcmp(Param, "GraphicsAlphaBits") == 0) {
268
0
        return param_write_int(plist, "GraphicsAlphaBits",
269
0
                                &dev->color_info.anti_alias.graphics_bits);
270
0
    }
271
9.53M
    if (strcmp(Param, "AntidropoutDownscaler") == 0) {
272
0
        return param_write_bool(plist, "AntidropoutDownscaler",
273
0
                                &dev->color_info.use_antidropout_downscaler);
274
0
    }
275
9.53M
    if (strcmp(Param, ".LockSafetyParams") == 0) {
276
0
        return param_write_bool(plist, ".LockSafetyParams", &dev->LockSafetyParams);
277
0
    }
278
9.53M
    if (strcmp(Param, "MaxPatternBitmap") == 0) {
279
0
        return param_write_size_t(plist, "MaxPatternBitmap", &dev->MaxPatternBitmap);
280
0
    }
281
9.53M
    if (strcmp(Param, "PageUsesTransparency") == 0) {
282
0
        return param_write_bool(plist, "PageUsesTransparency", &dev->page_uses_transparency);
283
0
    }
284
9.53M
    if (strcmp(Param, "PageUsesOverprint") == 0) {
285
0
        return param_write_bool(plist, "PageUsesOverprint", &dev->page_uses_overprint);
286
0
    }
287
9.53M
    if (strcmp(Param, "MaxBitmap") == 0) {
288
0
        return param_write_size_t(plist, "MaxBitmap", &(dev->space_params.MaxBitmap));
289
0
    }
290
9.53M
    if (strcmp(Param, "BandBufferSpace") == 0) {
291
0
        return param_write_size_t(plist, "BandBufferSpace", &dev->space_params.band.BandBufferSpace);
292
0
    }
293
9.53M
    if (strcmp(Param, "BandHeight") == 0) {
294
0
        return param_write_int(plist, "BandHeight", &dev->space_params.band.BandHeight);
295
0
    }
296
9.53M
    if (strcmp(Param, "BandWidth") == 0) {
297
0
        return param_write_int(plist, "BandWidth", &dev->space_params.band.BandWidth);
298
0
    }
299
9.53M
    if (strcmp(Param, "BufferSpace") == 0) {
300
0
        return param_write_size_t(plist, "BufferSpace", &dev->space_params.BufferSpace);
301
0
    }
302
9.53M
    if (strcmp(Param, "InterpolateControl") == 0) {
303
0
        int interpolate_control = dev->interpolate_control;
304
0
        return param_write_int(plist, "InterpolateControl", &interpolate_control);
305
0
    }
306
9.53M
    if (strcmp(Param, "LeadingEdge") == 0) {
307
0
        if (dev->LeadingEdge & LEADINGEDGE_SET_MASK) {
308
0
            int leadingedge = dev->LeadingEdge & LEADINGEDGE_MASK;
309
0
            return param_write_int(plist, "LeadingEdge", &leadingedge);
310
0
        } else
311
0
            return param_write_null(plist, "LeadingEdge");
312
0
    }
313
314
9.53M
    if (dev->color_info.num_components > 1) {
315
6.52M
        int RGBValues = dev->color_info.max_color + 1;
316
6.52M
        long ColorValues = (depth >= 32 ? -1 : 1L << depth); /* value can only be 32 bits */
317
318
6.52M
        if (strcmp(Param, "RedValues") == 0) {
319
0
            return param_write_int(plist, "RedValues", &RGBValues);
320
0
        }
321
6.52M
        if (strcmp(Param, "GreenValues") == 0) {
322
0
            return param_write_int(plist, "GreenValues", &RGBValues);
323
0
        }
324
6.52M
        if (strcmp(Param, "BlueValues") == 0) {
325
0
            return param_write_int(plist, "BlueValues", &RGBValues);
326
0
        }
327
6.52M
        if (strcmp(Param, "ColorValues") == 0) {
328
0
            return param_write_long(plist, "ColorValues", &ColorValues);
329
0
        }
330
6.52M
    }
331
9.53M
    if (strcmp(Param, "HWColorMap") == 0) {
332
0
        byte palette[3 << 8];
333
334
0
        if (param_HWColorMap(dev, palette)) {
335
0
            gs_param_string hwcms;
336
337
0
            hwcms.data = palette, hwcms.size = colors << depth,
338
0
                hwcms.persistent = false;
339
0
            return param_write_string(plist, "HWColorMap", &hwcms);
340
0
        }
341
0
    }
342
343
    /* ICC profiles */
344
    /* Check if the device profile is null.  If it is, then we need to
345
       go ahead and get it set up at this time.  If the proc is not
346
       set up yet then we are not going to do anything yet */
347
    /* Although device methods should not be NULL, they are not completely filled in until
348
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
349
     * happens, so we *must* make sure the method is not NULL before we use it.
350
     */
351
9.53M
    if (dev_proc(dev, get_profile) != NULL) {
352
9.53M
        int code;
353
9.53M
        code = dev_proc(dev, get_profile)(dev,  &dev_profile);
354
9.53M
        if (code < 0)
355
0
            return code;
356
9.53M
        if (dev_profile == NULL) {
357
0
            code = gsicc_init_device_profile_struct(dev, NULL, 0);
358
0
            if (code < 0)
359
0
                return code;
360
0
            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
361
0
            if (code < 0)
362
0
                return code;
363
0
        }
364
47.6M
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
365
38.1M
            if (dev_profile->device_profile[k] == NULL
366
28.6M
                || dev_profile->device_profile[k]->name == NULL) {
367
28.6M
                param_string_from_string(profile_array[k], null_str);
368
28.6M
                profile_intents[k] = gsRINOTSPECIFIED;
369
28.6M
                blackptcomps[k] = gsBPNOTSPECIFIED;
370
28.6M
                blackpreserve[k] = gsBKPRESNOTSPECIFIED;
371
28.6M
            } else {
372
9.53M
                param_string_from_transient_string(profile_array[k],
373
9.53M
                    dev_profile->device_profile[k]->name);
374
9.53M
                profile_intents[k] = dev_profile->rendercond[k].rendering_intent;
375
9.53M
                blackptcomps[k] = dev_profile->rendercond[k].black_point_comp;
376
9.53M
                blackpreserve[k] = dev_profile->rendercond[k].preserve_black;
377
9.53M
            }
378
38.1M
        }
379
9.53M
        if (dev_profile->blend_profile == NULL) {
380
9.53M
            param_string_from_string(blend_profile, null_str);
381
9.53M
        } else {
382
0
            param_string_from_transient_string(blend_profile,
383
0
                dev_profile->blend_profile->name);
384
0
        }
385
9.53M
        if (dev_profile->postren_profile == NULL) {
386
9.53M
            param_string_from_string(postren_profile, null_str);
387
9.53M
        } else {
388
0
            param_string_from_transient_string(postren_profile,
389
0
                dev_profile->postren_profile->name);
390
0
        }
391
9.53M
        if (dev_profile->proof_profile == NULL) {
392
9.53M
            param_string_from_string(proof_profile, null_str);
393
9.53M
        } else {
394
0
            param_string_from_transient_string(proof_profile,
395
0
                                     dev_profile->proof_profile->name);
396
0
        }
397
9.53M
        if (dev_profile->link_profile == NULL) {
398
9.53M
            param_string_from_string(link_profile, null_str);
399
9.53M
        } else {
400
0
            param_string_from_transient_string(link_profile,
401
0
                                     dev_profile->link_profile->name);
402
0
        }
403
9.53M
        devicegraytok = dev_profile->devicegraytok;
404
9.53M
        graydetection = dev_profile->graydetection;
405
9.53M
        usefastcolor = dev_profile->usefastcolor;
406
9.53M
        blacktext = dev_profile->blacktext;
407
9.53M
        blackvector = dev_profile->blackvector;
408
9.53M
        blackthresholdC = dev_profile->blackthresholdC;
409
9.53M
        blackthresholdL = dev_profile->blackthresholdL;
410
9.53M
        overprint_control = dev_profile->overprint_control;
411
9.53M
        prebandthreshold = dev_profile->prebandthreshold;
412
        /* With respect to Output profiles that have non-standard colorants,
413
           we rely upon the default profile to give us the colorants if they do
414
           exist. */
415
9.53M
        if (dev_profile->spotnames == NULL) {
416
9.53M
            param_string_from_string(icc_colorants, null_str);
417
9.53M
        } else {
418
0
            char *colorant_names;
419
420
0
            code = get_dev_icccolorants_utf8(dev->memory, dev_profile, &colorant_names);
421
0
            if (code < 0)
422
0
                return code;
423
0
            if (colorant_names != NULL) {
424
0
                param_string_from_transient_string(icc_colorants, colorant_names);
425
0
                gs_free_object(dev->memory, colorant_names, "gx_default_get_param");
426
0
            } else {
427
0
                param_string_from_string(icc_colorants, null_str);
428
0
            }
429
0
        }
430
9.53M
    } else {
431
0
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
432
0
            param_string_from_string(profile_array[k], null_str);
433
0
            profile_intents[k] = gsRINOTSPECIFIED;
434
0
            blackptcomps[k] = gsBPNOTSPECIFIED;
435
0
            blackpreserve[k] = gsBKPRESNOTSPECIFIED;
436
0
        }
437
0
        param_string_from_string(blend_profile, null_str);
438
0
        param_string_from_string(postren_profile, null_str);
439
0
        param_string_from_string(proof_profile, null_str);
440
0
        param_string_from_string(link_profile, null_str);
441
0
        param_string_from_string(icc_colorants, null_str);
442
0
    }
443
9.53M
    if (strcmp(Param, "DeviceGrayToK") == 0) {
444
0
        return param_write_bool(plist, "DeviceGrayToK", &devicegraytok);
445
0
    }
446
9.53M
    if (strcmp(Param, "GrayDetection") == 0) {
447
0
        return param_write_bool(plist, "GrayDetection", &graydetection);
448
0
    }
449
9.53M
    if (strcmp(Param, "UseFastColor") == 0) {
450
0
        return param_write_bool(plist, "UseFastColor", &usefastcolor);
451
0
    }
452
9.53M
    if (strcmp(Param, "BlackText") == 0) {
453
0
        return param_write_bool(plist, "BlackText", &blacktext);
454
0
    }
455
9.53M
    if (strcmp(Param, "BlackVector") == 0) {
456
0
        return param_write_bool(plist, "BlackVector", &blackvector);
457
0
    }
458
9.53M
    if (strcmp(Param, "BlackThresholdL") == 0) {
459
0
        return param_write_float(plist, "BlackThresholdL", &blackthresholdL);
460
0
    }
461
9.53M
    if (strcmp(Param, "BlackThresholdC") == 0) {
462
0
        return param_write_float(plist, "BlackThresholdC", &blackthresholdC);
463
0
    }
464
9.53M
    if (strcmp(Param, "Overprint") == 0) {
465
0
        gs_param_string opc_name;
466
0
        const char *s = overprint_control_names[(int)overprint_control];
467
468
0
        param_string_from_string(opc_name, s);
469
0
        return param_write_name(plist, "Overprint", &opc_name);
470
0
    }
471
9.53M
    if (strcmp(Param, "PreBandThreshold") == 0) {
472
0
        return param_write_bool(plist, "PreBandThreshold", &prebandthreshold);
473
0
    }
474
9.53M
    if (strcmp(Param, "PostRenderProfile") == 0) {
475
0
        return param_write_string(plist, "PostRenderProfile", &(postren_profile));
476
0
    }
477
9.53M
    if (strcmp(Param, "BlendColorProfile") == 0) {
478
0
        return param_write_string(plist, "BlendColorProfile", &(blend_profile));
479
0
    }
480
9.53M
    if (strcmp(Param, "ProofProfile") == 0) {
481
0
        return param_write_string(plist,"ProofProfile", &(proof_profile));
482
0
    }
483
9.53M
    if (strcmp(Param, "DeviceLinkProfile") == 0) {
484
0
        return param_write_string(plist,"DeviceLinkProfile", &(link_profile));
485
0
    }
486
9.53M
    if (strcmp(Param, "ICCOutputColors") == 0) {
487
0
        return param_write_string(plist,"ICCOutputColors", &(icc_colorants));
488
0
    }
489
9.53M
    if (strcmp(Param, "OutputICCProfile") == 0) {
490
0
        return param_write_string(plist,"OutputICCProfile", &(profile_array[0]));
491
0
    }
492
9.53M
    if (strcmp(Param, "VectorICCProfile") == 0) {
493
0
        return param_write_string(plist,"VectorICCProfile", &(profile_array[1]));
494
0
    }
495
9.53M
    if (strcmp(Param, "ImageICCProfile") == 0) {
496
0
        return param_write_string(plist,"ImageICCProfile", &(profile_array[2]));
497
0
    }
498
9.53M
    if (strcmp(Param, "TextICCProfile") == 0) {
499
0
        return param_write_string(plist,"TextICCProfile", &(profile_array[3]));
500
0
    }
501
9.53M
    if (strcmp(Param, "ColorAccuracy") == 0) {
502
0
        return param_write_int(plist, "ColorAccuracy", (const int *)(&(color_accuracy)));
503
0
    }
504
9.53M
    if (strcmp(Param, "RenderIntent") == 0) {
505
0
        return param_write_int(plist,"RenderIntent", (const int *) (&(profile_intents[0])));
506
0
    }
507
9.53M
    if (strcmp(Param, "VectorIntent") == 0) {
508
0
        return param_write_int(plist,"VectorIntent", (const int *) &(profile_intents[1]));
509
0
    }
510
9.53M
    if (strcmp(Param, "ImageIntent") == 0) {
511
0
        return param_write_int(plist,"ImageIntent", (const int *) &(profile_intents[2]));
512
0
    }
513
9.53M
    if (strcmp(Param, "TextIntent") == 0) {
514
0
        return param_write_int(plist,"TextIntent", (const int *) &(profile_intents[3]));
515
0
    }
516
9.53M
    if (strcmp(Param, "BlackPtComp") == 0) {
517
0
        return param_write_int(plist,"BlackPtComp", (const int *) (&(blackptcomps[0])));
518
0
    }
519
9.53M
    if (strcmp(Param, "VectorBlackPt") == 0) {
520
0
        return param_write_int(plist,"VectorBlackPt", (const int *) &(blackptcomps[1]));
521
0
    }
522
9.53M
    if (strcmp(Param, "ImageBlackPt") == 0) {
523
0
        return param_write_int(plist,"ImageBlackPt", (const int *) &(blackptcomps[2]));
524
0
    }
525
9.53M
    if (strcmp(Param, "TextBlackPt") == 0) {
526
0
        return param_write_int(plist,"TextBlackPt", (const int *) &(blackptcomps[3]));
527
0
    }
528
9.53M
    if (strcmp(Param, "KPreserve") == 0) {
529
0
        return param_write_int(plist,"KPreserve", (const int *) (&(blackpreserve[0])));
530
0
    }
531
9.53M
    if (strcmp(Param, "VectorKPreserve") == 0) {
532
0
        return param_write_int(plist,"VectorKPreserve", (const int *) &(blackpreserve[1]));
533
0
    }
534
9.53M
    if (strcmp(Param, "ImageKPreserve") == 0) {
535
0
        return param_write_int(plist,"ImageKPreserve", (const int *) &(blackpreserve[2]));
536
0
    }
537
9.53M
    if (strcmp(Param, "TextKPreserve") == 0) {
538
0
        return param_write_int(plist,"TextKPreserve", (const int *) &(blackpreserve[3]));
539
0
    }
540
9.53M
    if (strcmp(Param, "FirstPage") == 0) {
541
0
        return param_write_int(plist, "FirstPage", &dev->FirstPage);
542
0
    }
543
9.53M
    if (strcmp(Param, "LastPage") == 0) {
544
0
        return param_write_int(plist, "LastPage", &dev->LastPage);
545
0
    }
546
9.53M
    if (strcmp(Param, "DisablePageHandler") == 0) {
547
0
        temp_bool = dev->DisablePageHandler;
548
0
        return param_write_bool(plist, "DisablePageHandler", &temp_bool);
549
0
    }
550
9.53M
    if (strcmp(Param, "NupControl") == 0){
551
0
        gs_param_string nupcontrol;
552
553
0
        if (dev->NupControl) {
554
0
            gdev_nupcontrol *p = (gdev_nupcontrol *)dev->NupControl;
555
0
            param_string_from_string(nupcontrol, p->nupcontrol_str);
556
0
        }
557
0
        else
558
0
            param_string_from_string(nupcontrol, null_str);
559
0
        return param_write_string(plist, "NupControl", &nupcontrol);
560
0
    }
561
9.53M
    if (strcmp(Param, "PageList") == 0){
562
0
        gs_param_string pagelist;
563
0
        if (dev->PageList) {
564
0
            gdev_pagelist *p = (gdev_pagelist *)dev->PageList;
565
0
            param_string_from_string(pagelist, p->Pages);
566
0
        }
567
0
        else
568
0
            param_string_from_string(pagelist, null_str);
569
0
        return param_write_string(plist, "PageList", &pagelist);
570
0
    }
571
9.53M
    if (strcmp(Param, "FILTERIMAGE") == 0) {
572
0
        temp_bool = dev->ObjectFilter & FILTERIMAGE;
573
0
        return param_write_bool(plist, "FILTERIMAGE", &temp_bool);
574
0
    }
575
9.53M
    if (strcmp(Param, "FILTERTEXT") == 0) {
576
0
        temp_bool = dev->ObjectFilter & FILTERTEXT;
577
0
        return param_write_bool(plist, "FILTERTEXT", &temp_bool);
578
0
    }
579
9.53M
    if (strcmp(Param, "FILTERVECTOR") == 0) {
580
0
        temp_bool = dev->ObjectFilter & FILTERVECTOR;
581
0
        return param_write_bool(plist, "FILTERVECTOR", &temp_bool);
582
0
    }
583
584
9.53M
    return_error(gs_error_undefined);
585
9.53M
}
586
587
/* Get standard parameters. */
588
int
589
gx_default_get_params(gx_device * dev, gs_param_list * plist)
590
4.56M
{
591
4.56M
    int code;
592
593
    /* Standard page device parameters: */
594
595
4.56M
    bool seprs = false;
596
4.56M
    gs_param_string dns, pcms, profile_array[NUM_DEVICE_PROFILES];
597
4.56M
    gs_param_string blend_profile, postren_profile, pagelist, nuplist;
598
4.56M
    gs_param_string proof_profile, link_profile, icc_colorants;
599
4.56M
    gsicc_rendering_intents_t profile_intents[NUM_DEVICE_PROFILES];
600
4.56M
    gsicc_blackptcomp_t blackptcomps[NUM_DEVICE_PROFILES];
601
4.56M
    gsicc_blackpreserve_t blackpreserve[NUM_DEVICE_PROFILES];
602
4.56M
    bool devicegraytok = true;  /* Default if device profile stuct not set */
603
4.56M
    bool graydetection = false;
604
4.56M
    bool usefastcolor = false;  /* set for unmanaged color */
605
4.56M
    bool blacktext = false;
606
4.56M
    bool blackvector = false;
607
4.56M
    float blackthresholdL = BLACKTHRESHOLDL;
608
4.56M
    float blackthresholdC = BLACKTHRESHOLDC;
609
    /* By default, only overprint if the device supports it */
610
4.56M
    gs_overprint_control_t overprint_control = gs_overprint_control_enable;
611
4.56M
    bool prebandthreshold = true, temp_bool;
612
4.56M
    int k;
613
4.56M
    int color_accuracy = MAX_COLOR_ACCURACY;
614
4.56M
    gs_param_float_array msa, ibba, hwra, ma;
615
4.56M
    gs_param_string_array scna;
616
4.56M
    char null_str[1]={'\0'};
617
618
4.56M
#define set_param_array(a, d, s)\
619
31.9M
  (a.data = d, a.size = s, a.persistent = false);
620
621
    /* Non-standard parameters: */
622
4.56M
    int colors = dev->color_info.num_components;
623
4.56M
    int mns = dev->color_info.max_components;
624
4.56M
    int depth = dev->color_info.depth;
625
4.56M
    int GrayValues = dev->color_info.max_gray + 1;
626
4.56M
    int HWSize[2];
627
4.56M
    gs_param_int_array hwsa;
628
4.56M
    gs_param_float_array hwma;
629
4.56M
    cmm_dev_profile_t *dev_profile;
630
4.56M
    char *colorant_names = NULL;
631
632
    /* Fill in page device parameters. */
633
634
4.56M
    param_string_from_string(dns, dev->dname);
635
4.56M
    {
636
4.56M
        const char *cms = get_process_color_model_name(dev);
637
638
        /* We might have an uninitialized device with */
639
        /* color_info.num_components = 0.... */
640
4.56M
        if ((cms != NULL) && (*cms != '\0'))
641
4.56M
            param_string_from_string(pcms, cms);
642
0
        else
643
0
            pcms.data = 0;
644
4.56M
    }
645
646
4.56M
    set_param_array(hwra, dev->HWResolution, 2);
647
4.56M
    set_param_array(msa, dev->MediaSize, 2);
648
4.56M
    set_param_array(ibba, dev->ImagingBBox, 4);
649
4.56M
    set_param_array(ma, dev->Margins, 2);
650
4.56M
    set_param_array(scna, NULL, 0);
651
652
    /* Fill in non-standard parameters. */
653
4.56M
    HWSize[0] = dev->width;
654
4.56M
    HWSize[1] = dev->height;
655
4.56M
    set_param_array(hwsa, HWSize, 2);
656
4.56M
    set_param_array(hwma, dev->HWMargins, 4);
657
    /* Check if the device profile is null.  If it is, then we need to
658
       go ahead and get it set up at this time.  If the proc is not
659
       set up yet then we are not going to do anything yet */
660
    /* Although device methods should not be NULL, they are not completely filled in until
661
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
662
     * happens, so we *must* make sure the method is not NULL before we use it.
663
     */
664
4.56M
    if (dev_proc(dev, get_profile) != NULL) {
665
4.17M
        code = dev_proc(dev, get_profile)(dev,  &dev_profile);
666
4.17M
        if (code < 0)
667
0
            return code;
668
669
4.17M
        if (dev_profile == NULL) {
670
0
            code = gsicc_init_device_profile_struct(dev, NULL, 0);
671
0
            if (code < 0)
672
0
                return code;
673
0
            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
674
0
            if (code < 0)
675
0
                return code;
676
0
        }
677
        /* It is possible that the current device profile name is NULL if we
678
           have a pdf14 device in line with a transparency group that is in a
679
           color space specified from a source defined ICC profile. Check for
680
           that here to avoid any access violations.  Bug 692558 */
681
20.8M
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
682
16.7M
            if (dev_profile->device_profile[k] == NULL
683
12.5M
                || dev_profile->device_profile[k]->name == NULL) {
684
12.5M
                param_string_from_string(profile_array[k], null_str);
685
12.5M
                profile_intents[k] = gsRINOTSPECIFIED;
686
12.5M
                blackptcomps[k] = gsBPNOTSPECIFIED;
687
12.5M
                blackpreserve[k] = gsBKPRESNOTSPECIFIED;
688
12.5M
            } else {
689
4.17M
                param_string_from_transient_string(profile_array[k],
690
4.17M
                    dev_profile->device_profile[k]->name);
691
4.17M
                profile_intents[k] = dev_profile->rendercond[k].rendering_intent;
692
4.17M
                blackptcomps[k] = dev_profile->rendercond[k].black_point_comp;
693
4.17M
                blackpreserve[k] = dev_profile->rendercond[k].preserve_black;
694
4.17M
            }
695
16.7M
        }
696
        /* The proof, link and post render profile */
697
4.17M
        if (dev_profile->proof_profile == NULL) {
698
4.17M
            param_string_from_string(proof_profile, null_str);
699
4.17M
        } else {
700
0
            param_string_from_transient_string(proof_profile,
701
0
                                     dev_profile->proof_profile->name);
702
0
        }
703
4.17M
        if (dev_profile->link_profile == NULL) {
704
4.17M
            param_string_from_string(link_profile, null_str);
705
4.17M
        } else {
706
0
            param_string_from_transient_string(link_profile,
707
0
                                     dev_profile->link_profile->name);
708
0
        }
709
4.17M
        if (dev_profile->postren_profile == NULL) {
710
4.17M
            param_string_from_string(postren_profile, null_str);
711
4.17M
        } else {
712
0
            param_string_from_transient_string(postren_profile,
713
0
                dev_profile->postren_profile->name);
714
0
        }
715
4.17M
        if (dev_profile->blend_profile == NULL) {
716
4.17M
            param_string_from_string(blend_profile, null_str);
717
4.17M
        } else {
718
0
            param_string_from_transient_string(blend_profile,
719
0
                dev_profile->blend_profile->name);
720
0
        }
721
4.17M
        devicegraytok = dev_profile->devicegraytok;
722
4.17M
        graydetection = dev_profile->graydetection;
723
4.17M
        usefastcolor = dev_profile->usefastcolor;
724
4.17M
        blacktext = dev_profile->blacktext;
725
4.17M
        blackvector = dev_profile->blackvector;
726
4.17M
        blackthresholdC = dev_profile->blackthresholdC;
727
4.17M
        blackthresholdL = dev_profile->blackthresholdL;
728
4.17M
        overprint_control = dev_profile->overprint_control;
729
4.17M
        prebandthreshold = dev_profile->prebandthreshold;
730
        /* With respect to Output profiles that have non-standard colorants,
731
           we rely upon the default profile to give us the colorants if they do
732
           exist. */
733
4.17M
        if (dev_profile->spotnames == NULL) {
734
4.17M
            param_string_from_string(icc_colorants, null_str);
735
4.17M
        } else {
736
0
            code = get_dev_icccolorants_utf8(dev->memory, dev_profile, &colorant_names);
737
0
            if (code < 0)
738
0
                return code;
739
0
            if (colorant_names != NULL) {
740
0
                param_string_from_transient_string(icc_colorants, colorant_names);
741
0
            } else {
742
0
                param_string_from_string(icc_colorants, null_str);
743
0
            }
744
0
        }
745
4.17M
    } else {
746
1.92M
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
747
1.54M
            param_string_from_string(profile_array[k], null_str);
748
1.54M
            profile_intents[k] = gsRINOTSPECIFIED;
749
1.54M
            blackptcomps[k] = gsBPNOTSPECIFIED;
750
1.54M
            blackpreserve[k] = gsBKPRESNOTSPECIFIED;
751
1.54M
        }
752
385k
        param_string_from_string(proof_profile, null_str);
753
385k
        param_string_from_string(link_profile, null_str);
754
385k
        param_string_from_string(icc_colorants, null_str);
755
385k
        param_string_from_string(postren_profile, null_str);
756
385k
        param_string_from_string(blend_profile, null_str);
757
385k
    }
758
    /* Transmit the values. */
759
    /* Standard parameters */
760
4.56M
    if (
761
4.56M
        (code = param_write_name(plist, "OutputDevice", &dns)) < 0 ||
762
4.56M
#ifdef PAGESIZE_IS_MEDIASIZE
763
4.56M
        (code = param_write_float_array(plist, "PageSize", &msa)) < 0 ||
764
4.56M
#endif
765
4.56M
        (code = (pcms.data == 0 ? 0 :
766
4.56M
                 param_write_name(plist, "ProcessColorModel", &pcms))) < 0 ||
767
4.56M
        (code = param_write_float_array(plist, "HWResolution", &hwra)) < 0 ||
768
4.56M
        (code = (dev->ImagingBBox_set ?
769
0
                 param_write_float_array(plist, "ImagingBBox", &ibba) :
770
4.56M
                 param_write_null(plist, "ImagingBBox"))) < 0 ||
771
4.56M
        (code = param_write_float_array(plist, "Margins", &ma)) < 0 ||
772
4.56M
        (code = param_write_int(plist, "MaxSeparations", &mns)) < 0 ||
773
4.56M
        (code = (dev->NumCopies_set < 0 ||
774
4.56M
                 (*dev_proc(dev, get_page_device))(dev) == 0 ? 0:
775
4.56M
                 dev->NumCopies_set ?
776
3
                 param_write_int(plist, "NumCopies", &dev->NumCopies) :
777
4.56M
                 param_write_null(plist, "NumCopies"))) < 0 ||
778
4.56M
        (code = param_write_name_array(plist, "SeparationColorNames", &scna)) < 0 ||
779
4.56M
        (code = param_write_bool(plist, "Separations", &seprs)) < 0 ||
780
4.56M
        (code = param_write_bool(plist, "UseCIEColor", &dev->UseCIEColor)) < 0 ||
781
        /* Non-standard parameters */
782
        /* Note:  if change is made in NUM_DEVICE_PROFILES we need to name
783
           that profile here for the device parameter on the command line */
784
4.56M
        (code = param_write_bool(plist, "DeviceGrayToK", &devicegraytok)) < 0 ||
785
4.56M
        (code = param_write_bool(plist, "GrayDetection", &graydetection)) < 0 ||
786
4.56M
        (code = param_write_bool(plist, "UseFastColor", &usefastcolor)) < 0 ||
787
4.56M
        (code = param_write_bool(plist, "BlackText", &blacktext)) < 0 ||
788
4.56M
        (code = param_write_bool(plist, "BlackVector", &blackvector)) < 0 ||
789
4.56M
        (code = param_write_float(plist, "BlackThresholdL", &blackthresholdL)) < 0 ||
790
4.56M
        (code = param_write_float(plist, "BlackThresholdC", &blackthresholdC)) < 0 ||
791
4.56M
        (code = param_write_bool(plist, "PreBandThreshold", &prebandthreshold)) < 0 ||
792
4.56M
        (code = param_write_string(plist,"OutputICCProfile", &(profile_array[0]))) < 0 ||
793
4.56M
        (code = param_write_string(plist,"VectorICCProfile", &(profile_array[1]))) < 0 ||
794
4.56M
        (code = param_write_string(plist,"ImageICCProfile", &(profile_array[2]))) < 0 ||
795
4.56M
        (code = param_write_string(plist,"TextICCProfile", &(profile_array[3]))) < 0 ||
796
4.56M
        (code = param_write_string(plist,"ProofProfile", &(proof_profile))) < 0 ||
797
4.56M
        (code = param_write_string(plist, "PostRenderProfile", &(postren_profile))) < 0 ||
798
4.56M
        (code = param_write_string(plist, "BlendColorProfile", &(blend_profile))) < 0 ||
799
4.56M
        (code = param_write_string(plist,"DeviceLinkProfile", &(link_profile))) < 0 ||
800
4.56M
        (code = param_write_string(plist,"ICCOutputColors", &(icc_colorants))) < 0 ||
801
4.56M
        (code = param_write_int(plist, "RenderIntent", (const int *)(&(profile_intents[0])))) < 0 ||
802
4.56M
        (code = param_write_int(plist, "ColorAccuracy", (const int *)(&(color_accuracy)))) < 0 ||
803
4.56M
        (code = param_write_int(plist,"VectorIntent", (const int *) &(profile_intents[1]))) < 0 ||
804
4.56M
        (code = param_write_int(plist,"ImageIntent", (const int *) &(profile_intents[2]))) < 0 ||
805
4.56M
        (code = param_write_int(plist,"TextIntent", (const int *) &(profile_intents[3]))) < 0 ||
806
4.56M
        (code = param_write_int(plist,"BlackPtComp", (const int *) (&(blackptcomps[0])))) < 0 ||
807
4.56M
        (code = param_write_int(plist,"VectorBlackPt", (const int *) &(blackptcomps[1]))) < 0 ||
808
4.56M
        (code = param_write_int(plist,"ImageBlackPt", (const int *) &(blackptcomps[2]))) < 0 ||
809
4.56M
        (code = param_write_int(plist,"TextBlackPt", (const int *) &(blackptcomps[3]))) < 0 ||
810
4.56M
        (code = param_write_int(plist,"KPreserve", (const int *) (&(blackpreserve[0])))) < 0 ||
811
4.56M
        (code = param_write_int(plist,"VectorKPreserve", (const int *) &(blackpreserve[1]))) < 0 ||
812
4.56M
        (code = param_write_int(plist,"ImageKPreserve", (const int *) &(blackpreserve[2]))) < 0 ||
813
4.56M
        (code = param_write_int(plist,"TextKPreserve", (const int *) &(blackpreserve[3]))) < 0 ||
814
4.56M
        (code = param_write_int_array(plist, "HWSize", &hwsa)) < 0 ||
815
4.56M
        (code = param_write_float_array(plist, ".HWMargins", &hwma)) < 0 ||
816
4.56M
        (code = param_write_float_array(plist, ".MediaSize", &msa)) < 0 ||
817
4.56M
        (code = param_write_string(plist, "Name", &dns)) < 0 ||
818
4.56M
        (code = param_write_int(plist, "Colors", &colors)) < 0 ||
819
4.56M
        (code = param_write_int(plist, "BitsPerPixel", &depth)) < 0 ||
820
4.56M
        (code = param_write_int(plist, "GrayValues", &GrayValues)) < 0 ||
821
4.56M
        (code = param_write_long(plist, "PageCount", &dev->PageCount)) < 0 ||
822
4.56M
        (code = param_write_bool(plist, ".IgnoreNumCopies", &dev->IgnoreNumCopies)) < 0 ||
823
4.56M
        (code = param_write_int(plist, "TextAlphaBits",
824
4.56M
                                &dev->color_info.anti_alias.text_bits)) < 0 ||
825
4.56M
        (code = param_write_int(plist, "GraphicsAlphaBits",
826
4.56M
                                &dev->color_info.anti_alias.graphics_bits)) < 0 ||
827
4.56M
        (code = param_write_bool(plist, "AntidropoutDownscaler",
828
4.56M
                                &dev->color_info.use_antidropout_downscaler)) < 0 ||
829
4.56M
        (code = param_write_bool(plist, ".LockSafetyParams", &dev->LockSafetyParams)) < 0 ||
830
4.56M
        (code = param_write_size_t(plist, "MaxPatternBitmap", &dev->MaxPatternBitmap)) < 0 ||
831
4.56M
        (code = param_write_bool(plist, "PageUsesTransparency", &dev->page_uses_transparency)) < 0 ||
832
4.56M
        (code = param_write_bool(plist, "PageUsesOverprint", &dev->page_uses_overprint)) < 0 ||
833
4.56M
        (code = param_write_size_t(plist, "MaxBitmap", &(dev->space_params.MaxBitmap))) < 0 ||
834
4.56M
        (code = param_write_size_t(plist, "BandBufferSpace", &dev->space_params.band.BandBufferSpace)) < 0 ||
835
4.56M
        (code = param_write_int(plist, "BandHeight", &dev->space_params.band.BandHeight)) < 0 ||
836
4.56M
        (code = param_write_int(plist, "BandWidth", &dev->space_params.band.BandWidth)) < 0 ||
837
4.56M
        (code = param_write_size_t(plist, "BufferSpace", &dev->space_params.BufferSpace)) < 0 ||
838
4.56M
        (code = param_write_int(plist, "InterpolateControl", &dev->interpolate_control)) < 0
839
4.56M
        )
840
0
    {
841
0
        gs_free_object(dev->memory, colorant_names, "gx_default_get_param");
842
0
        return code;
843
0
    }
844
4.56M
    gs_free_object(dev->memory, colorant_names, "gx_default_get_param");
845
4.56M
    {
846
4.56M
        gs_param_string opc_name;
847
4.56M
        const char *s = overprint_control_names[(int)overprint_control];
848
849
4.56M
        param_string_from_string(opc_name, s);
850
4.56M
        param_write_name(plist, "Overprint", &opc_name);
851
4.56M
    }
852
    /* If LeadingEdge was set explicitly, report it here. */
853
4.56M
    if (dev->LeadingEdge & LEADINGEDGE_SET_MASK) {
854
3
        int leadingedge = dev->LeadingEdge & LEADINGEDGE_MASK;
855
3
        code = param_write_int(plist, "LeadingEdge", &leadingedge);
856
3
    } else
857
4.56M
        code = param_write_null(plist, "LeadingEdge");
858
4.56M
    if (code < 0)
859
0
        return code;
860
861
4.56M
    if ((code = param_write_int(plist, "FirstPage", &dev->FirstPage)) < 0)
862
0
        return code;
863
4.56M
    if ((code = param_write_int(plist, "LastPage", &dev->LastPage)) < 0)
864
0
        return code;
865
866
4.56M
    temp_bool = dev->DisablePageHandler;
867
4.56M
    if ((code = param_write_bool(plist, "DisablePageHandler", &temp_bool)) < 0)
868
0
        return code;
869
870
4.56M
    if (dev->NupControl) {
871
0
        gdev_nupcontrol *p = (gdev_nupcontrol *)dev->NupControl;
872
0
        param_string_from_string(nuplist, p->nupcontrol_str);
873
4.56M
    } else {
874
4.56M
        param_string_from_string(nuplist, null_str);
875
4.56M
    }
876
4.56M
    if ((code = param_write_string(plist, "NupControl", &nuplist)) < 0)
877
0
        return code;
878
879
4.56M
    if (dev->PageList) {
880
0
        gdev_pagelist *p = (gdev_pagelist *)dev->PageList;
881
0
        param_string_from_transient_string(pagelist, p->Pages);
882
4.56M
    } else {
883
4.56M
        param_string_from_string(pagelist, null_str);
884
4.56M
    }
885
4.56M
    if ((code = param_write_string(plist, "PageList", &pagelist)) < 0)
886
0
        return code;
887
888
4.56M
    temp_bool = dev->ObjectFilter & FILTERIMAGE;
889
4.56M
    if ((code = param_write_bool(plist, "FILTERIMAGE", &temp_bool)) < 0)
890
0
        return code;
891
4.56M
    temp_bool = dev->ObjectFilter & FILTERTEXT;
892
4.56M
    if ((code = param_write_bool(plist, "FILTERTEXT", &temp_bool)) < 0)
893
0
        return code;
894
4.56M
    temp_bool = dev->ObjectFilter & FILTERVECTOR;
895
4.56M
    if ((code = param_write_bool(plist, "FILTERVECTOR", &temp_bool)) < 0)
896
0
        return code;
897
898
    /* Fill in color information. */
899
900
4.56M
    if (colors > 1) {
901
3.34M
        int RGBValues = dev->color_info.max_color + 1;
902
3.34M
        long ColorValues = (depth >= 32 ? -1 : 1L << depth); /* value can only be 32 bits */
903
904
3.34M
        if ((code = param_write_int(plist, "RedValues", &RGBValues)) < 0 ||
905
3.34M
            (code = param_write_int(plist, "GreenValues", &RGBValues)) < 0 ||
906
3.34M
            (code = param_write_int(plist, "BlueValues", &RGBValues)) < 0 ||
907
3.34M
            (code = param_write_long(plist, "ColorValues", &ColorValues)) < 0
908
3.34M
            )
909
0
            return code;
910
3.34M
    }
911
4.56M
    if (param_requested(plist, "HWColorMap")) {
912
578k
        byte palette[3 << 8];
913
914
578k
        if (param_HWColorMap(dev, palette)) {
915
243k
            gs_param_string hwcms;
916
917
243k
            hwcms.data = palette, hwcms.size = colors << depth,
918
243k
                hwcms.persistent = false;
919
243k
            if ((code = param_write_string(plist, "HWColorMap", &hwcms)) < 0)
920
0
                return code;
921
243k
        }
922
578k
    }
923
924
4.56M
    return 0;
925
4.56M
}
926
927
/* Get the color map for a device.  Return true if there is one. */
928
static bool
929
param_HWColorMap(gx_device * dev, byte * palette /* 3 << 8 */ )
930
578k
{
931
578k
    int depth = dev->color_info.depth;
932
578k
    int colors = dev->color_info.num_components;
933
934
578k
    if (depth <= 8 && colors <= 3) {
935
243k
        byte *p = palette;
936
243k
        gx_color_value rgb[3];
937
243k
        gx_color_index i;
938
939
243k
        fill_dev_proc(dev, map_color_rgb, gx_default_map_color_rgb);
940
18.9M
        for (i = 0; (i >> depth) == 0; i++) {
941
18.7M
            int j;
942
943
18.7M
            if ((*dev_proc(dev, map_color_rgb)) (dev, i, rgb) < 0)
944
0
                return false;
945
39.2M
            for (j = 0; j < colors; j++)
946
20.5M
                *p++ = gx_color_value_to_byte(rgb[j]);
947
18.7M
        }
948
243k
        return true;
949
243k
    }
950
335k
    return false;
951
578k
}
952
953
/* Get hardware-detected parameters. Default action is no hardware params. */
954
int
955
gx_default_get_hardware_params(gx_device * dev, gs_param_list * plist)
956
0
{
957
0
    return 0;
958
0
}
959
960
/* ---------------- Input and output media ---------------- */
961
962
/* Finish defining input or output media. */
963
static int
964
finish_media(gs_param_list * mlist, gs_param_name key, const char *media_type)
965
0
{
966
0
    int code = 0;
967
968
0
    if (media_type != 0) {
969
0
        gs_param_string as;
970
971
0
        param_string_from_string(as, media_type);
972
0
        code = param_write_string(mlist, key, &as);
973
0
    }
974
0
    return code;
975
0
}
976
977
/* Define input media. */
978
979
const gdev_input_media_t gdev_input_media_default =
980
{
981
    gdev_input_media_default_values
982
};
983
984
int
985
gdev_begin_input_media(gs_param_list * mlist, gs_param_dict * pdict,
986
                       int count)
987
0
{
988
0
    pdict->size = count;
989
0
    return param_begin_write_dict(mlist, "InputAttributes", pdict, true);
990
0
}
991
992
int
993
gdev_write_input_media(int index, gs_param_dict * pdict,
994
                       const gdev_input_media_t * pim)
995
0
{
996
0
    char key[25];
997
0
    gs_param_dict mdict;
998
0
    int code;
999
0
    gs_param_string as;
1000
1001
0
    gs_snprintf(key, sizeof(key), "%d", index);
1002
0
    mdict.size = 4;
1003
0
    code = param_begin_write_dict(pdict->list, key, &mdict, false);
1004
0
    if (code < 0)
1005
0
        return code;
1006
0
    if ((pim->PageSize[0] != 0 && pim->PageSize[1] != 0) ||
1007
0
        (pim->PageSize[2] != 0 && pim->PageSize[3] != 0)
1008
0
        ) {
1009
0
        gs_param_float_array psa;
1010
1011
0
        psa.data = pim->PageSize;
1012
0
        psa.size =
1013
0
            (pim->PageSize[0] == pim->PageSize[2] &&
1014
0
             pim->PageSize[1] == pim->PageSize[3] ? 2 : 4);
1015
0
        psa.persistent = false;
1016
0
        code = param_write_float_array(mdict.list, "PageSize",
1017
0
                                       &psa);
1018
0
        if (code < 0)
1019
0
            return code;
1020
0
    }
1021
0
    if (pim->MediaColor != 0) {
1022
0
        param_string_from_string(as, pim->MediaColor);
1023
0
        code = param_write_string(mdict.list, "MediaColor",
1024
0
                                  &as);
1025
0
        if (code < 0)
1026
0
            return code;
1027
0
    }
1028
0
    if (pim->MediaWeight != 0) {
1029
        /*
1030
         * We do the following silly thing in order to avoid
1031
         * having to work around the 'const' in the arg list.
1032
         */
1033
0
        float weight = pim->MediaWeight;
1034
1035
0
        code = param_write_float(mdict.list, "MediaWeight",
1036
0
                                 &weight);
1037
0
        if (code < 0)
1038
0
            return code;
1039
0
    }
1040
0
    code = finish_media(mdict.list, "MediaType", pim->MediaType);
1041
0
    if (code < 0)
1042
0
        return code;
1043
0
    return param_end_write_dict(pdict->list, key, &mdict);
1044
0
}
1045
1046
int
1047
gdev_write_input_page_size(int index, gs_param_dict * pdict,
1048
                           double width_points, double height_points)
1049
0
{
1050
0
    gdev_input_media_t media;
1051
1052
0
    media.PageSize[0] = media.PageSize[2] = (float) width_points;
1053
0
    media.PageSize[1] = media.PageSize[3] = (float) height_points;
1054
0
    media.MediaColor = 0;
1055
0
    media.MediaWeight = 0;
1056
0
    media.MediaType = 0;
1057
0
    return gdev_write_input_media(index, pdict, &media);
1058
0
}
1059
1060
int
1061
gdev_end_input_media(gs_param_list * mlist, gs_param_dict * pdict)
1062
0
{
1063
0
    return param_end_write_dict(mlist, "InputAttributes", pdict);
1064
0
}
1065
1066
/* Define output media. */
1067
1068
const gdev_output_media_t gdev_output_media_default =
1069
{
1070
    gdev_output_media_default_values
1071
};
1072
1073
int
1074
gdev_begin_output_media(gs_param_list * mlist, gs_param_dict * pdict,
1075
                        int count)
1076
0
{
1077
0
    pdict->size = count;
1078
0
    return param_begin_write_dict(mlist, "OutputAttributes", pdict, true);
1079
0
}
1080
1081
int
1082
gdev_write_output_media(int index, gs_param_dict * pdict,
1083
                        const gdev_output_media_t * pom)
1084
0
{
1085
0
    char key[25];
1086
0
    gs_param_dict mdict;
1087
0
    int code;
1088
1089
0
    gs_snprintf(key, sizeof(key), "%d", index);
1090
0
    mdict.size = 4;
1091
0
    code = param_begin_write_dict(pdict->list, key, &mdict, false);
1092
0
    if (code < 0)
1093
0
        return code;
1094
0
    code = finish_media(mdict.list, "OutputType", pom->OutputType);
1095
0
    if (code < 0)
1096
0
        return code;
1097
0
    return param_end_write_dict(pdict->list, key, &mdict);
1098
0
}
1099
1100
int
1101
gdev_end_output_media(gs_param_list * mlist, gs_param_dict * pdict)
1102
0
{
1103
0
    return param_end_write_dict(mlist, "OutputAttributes", pdict);
1104
0
}
1105
1106
/* ================ Putting parameters ================ */
1107
1108
/* Forward references */
1109
static int param_normalize_anti_alias_bits( uint max_gray, int bits );
1110
static int param_anti_alias_bits(gs_param_list *, gs_param_name, int *);
1111
static int param_MediaSize(gs_param_list *, gs_param_name,
1112
                            const float *, gs_param_float_array *);
1113
1114
static int param_check_bool(gs_param_list *, gs_param_name, bool, bool);
1115
static int param_check_long(gs_param_list *, gs_param_name, long, bool);
1116
#define param_check_int(plist, pname, ival, is_defined)\
1117
11.1M
  param_check_long(plist, pname, (long)(ival), is_defined)
1118
static int param_check_bytes(gs_param_list *, gs_param_name, const byte *,
1119
                              uint, bool);
1120
#define param_check_string(plist, pname, str, is_defined)\
1121
5.56M
  param_check_bytes(plist, pname, (const byte *)(str), \
1122
5.56M
                    (is_defined) ? strlen(str) : 0, is_defined)
1123
1124
/* Set the device parameters. */
1125
/* If the device was open and the put_params procedure closed it, */
1126
/* return 1; otherwise, return 0 or an error code as usual. */
1127
int
1128
gs_putdeviceparams(gx_device * dev, gs_param_list * plist)
1129
2.07M
{
1130
2.07M
    bool was_open = dev->is_open;
1131
2.07M
    int code;
1132
1133
    /* gs_param_list_dump(plist); */
1134
1135
2.07M
    fill_dev_proc(dev, put_params, gx_default_put_params);
1136
2.07M
    fill_dev_proc(dev, get_alpha_bits, gx_default_get_alpha_bits);
1137
2.07M
    code = (*dev_proc(dev, put_params)) (dev, plist);
1138
2.07M
    return (code < 0 ? code : was_open && !dev->is_open ? 1 : code);
1139
2.07M
}
1140
1141
static int
1142
gx_default_put_graydetection(bool graydetection, gx_device * dev)
1143
1.85M
{
1144
1.85M
    int code = 0;
1145
1.85M
    cmm_dev_profile_t *profile_struct;
1146
1147
    /* Although device methods should not be NULL, they are not completely filled in until
1148
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1149
     * happens, so we *must* make sure the method is not NULL before we use it.
1150
     */
1151
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1152
        /* This is an odd case where the device has not yet fully been
1153
           set up with its procedures yet.  We want to make sure that
1154
           we catch this so we assume here that we are dealing with
1155
           the target device.  For now allocate the profile structure
1156
           but do not intialize the profile yet as the color info
1157
           may not be fully set up at this time.  */
1158
691k
        if (dev->icc_struct == NULL) {
1159
            /* Allocate at this time the structure */
1160
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1161
0
            if (dev->icc_struct == NULL)
1162
0
                return_error(gs_error_VMerror);
1163
0
        }
1164
691k
        dev->icc_struct->graydetection = graydetection;
1165
691k
        dev->icc_struct->pageneutralcolor = graydetection;
1166
1.16M
    } else {
1167
1.16M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1168
1.16M
        if (profile_struct == NULL) {
1169
            /* Create now  */
1170
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1171
0
            if (dev->icc_struct == NULL)
1172
0
                return_error(gs_error_VMerror);
1173
0
            profile_struct =  dev->icc_struct;
1174
0
        }
1175
1.16M
        profile_struct->graydetection = graydetection;
1176
1.16M
        profile_struct->pageneutralcolor = graydetection;
1177
1.16M
    }
1178
1.85M
    return code;
1179
1.85M
}
1180
1181
static int
1182
gx_default_put_graytok(bool graytok, gx_device * dev)
1183
1.85M
{
1184
1.85M
    int code = 0;
1185
1.85M
    cmm_dev_profile_t *profile_struct;
1186
1187
    /* Although device methods should not be NULL, they are not completely filled in until
1188
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1189
     * happens, so we *must* make sure the method is not NULL before we use it.
1190
     */
1191
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1192
        /* This is an odd case where the device has not yet fully been
1193
           set up with its procedures yet.  We want to make sure that
1194
           we catch this so we assume here that we are dealing with
1195
           the target device.  For now allocate the profile structure
1196
           but do not intialize the profile yet as the color info
1197
           may not be fully set up at this time.  */
1198
691k
        if (dev->icc_struct == NULL) {
1199
            /* Allocate at this time the structure */
1200
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1201
0
            if (dev->icc_struct == NULL)
1202
0
                return_error(gs_error_VMerror);
1203
0
        }
1204
691k
        dev->icc_struct->devicegraytok = graytok;
1205
1.16M
    } else {
1206
1.16M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1207
1.16M
        if (profile_struct == NULL) {
1208
            /* Create now  */
1209
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1210
0
            profile_struct =  dev->icc_struct;
1211
0
            if (profile_struct == NULL)
1212
0
                return_error(gs_error_VMerror);
1213
0
        }
1214
1.16M
        profile_struct->devicegraytok = graytok;
1215
1.16M
    }
1216
1.85M
    return code;
1217
1.85M
}
1218
1219
static int
1220
gx_default_put_prebandthreshold(bool prebandthreshold, gx_device * dev)
1221
1.85M
{
1222
1.85M
    int code = 0;
1223
1.85M
    cmm_dev_profile_t *profile_struct;
1224
1225
    /* Although device methods should not be NULL, they are not completely filled in until
1226
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1227
     * happens, so we *must* make sure the method is not NULL before we use it.
1228
     */
1229
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1230
        /* This is an odd case where the device has not yet fully been
1231
           set up with its procedures yet.  We want to make sure that
1232
           we catch this so we assume here that we are dealing with
1233
           the target device.  For now allocate the profile structure
1234
           but do not intialize the profile yet as the color info
1235
           may not be fully set up at this time.  */
1236
691k
        if (dev->icc_struct == NULL) {
1237
            /* Allocate at this time the structure */
1238
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1239
0
            if (dev->icc_struct == NULL)
1240
0
                return_error(gs_error_VMerror);
1241
0
        }
1242
691k
        dev->icc_struct->prebandthreshold = prebandthreshold;
1243
1.16M
    } else {
1244
1.16M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1245
1.16M
        if (profile_struct == NULL) {
1246
            /* Create now  */
1247
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1248
0
            profile_struct =  dev->icc_struct;
1249
0
            if (profile_struct == NULL)
1250
0
                return_error(gs_error_VMerror);
1251
0
        }
1252
1.16M
        profile_struct->prebandthreshold = prebandthreshold;
1253
1.16M
    }
1254
1.85M
    return code;
1255
1.85M
}
1256
1257
static int
1258
gx_default_put_usefastcolor(bool fastcolor, gx_device * dev)
1259
1.85M
{
1260
1.85M
    int code = 0;
1261
1.85M
    cmm_dev_profile_t *profile_struct;
1262
1263
    /* Although device methods should not be NULL, they are not completely filled in until
1264
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1265
     * happens, so we *must* make sure the method is not NULL before we use it.
1266
     */
1267
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1268
        /* This is an odd case where the device has not yet fully been
1269
           set up with its procedures yet.  We want to make sure that
1270
           we catch this so we assume here that we are dealing with
1271
           the target device.  For now allocate the profile structure
1272
           but do not intialize the profile yet as the color info
1273
           may not be fully set up at this time.  */
1274
691k
        if (dev->icc_struct == NULL) {
1275
            /* Allocate at this time the structure */
1276
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1277
0
            if (dev->icc_struct == NULL)
1278
0
                return_error(gs_error_VMerror);
1279
0
        }
1280
691k
        dev->icc_struct->usefastcolor = fastcolor;
1281
1.16M
    } else {
1282
1.16M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1283
1.16M
        if (profile_struct == NULL) {
1284
            /* Create now  */
1285
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1286
0
            profile_struct =  dev->icc_struct;
1287
0
            if (profile_struct == NULL)
1288
0
                return_error(gs_error_VMerror);
1289
0
        }
1290
1.16M
        profile_struct->usefastcolor = fastcolor;
1291
1.16M
    }
1292
1.85M
    return code;
1293
1.85M
}
1294
1295
static int
1296
gx_default_put_blacktext(bool blacktext, gx_device* dev)
1297
1.85M
{
1298
1.85M
    int code = 0;
1299
1.85M
    cmm_dev_profile_t* profile_struct;
1300
1301
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1302
691k
        if (dev->icc_struct == NULL) {
1303
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1304
0
            if (dev->icc_struct == NULL)
1305
0
                return_error(gs_error_VMerror);
1306
0
        }
1307
691k
        dev->icc_struct->blacktext = blacktext;
1308
1.16M
    } else {
1309
1.16M
        code = dev_proc(dev, get_profile)(dev, &profile_struct);
1310
1.16M
        if (profile_struct == NULL) {
1311
            /* Create now  */
1312
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1313
0
            profile_struct = dev->icc_struct;
1314
0
            if (profile_struct == NULL)
1315
0
                return_error(gs_error_VMerror);
1316
0
        }
1317
1.16M
        profile_struct->blacktext = blacktext;
1318
1.16M
    }
1319
1.85M
    return code;
1320
1.85M
}
1321
1322
static int
1323
gx_default_put_blackthresholds(float blackthresholdL, float blackthresholdC, gx_device *dev)
1324
1.85M
{
1325
1.85M
    int code = 0;
1326
1.85M
    cmm_dev_profile_t* profile_struct;
1327
1328
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1329
691k
        if (dev->icc_struct == NULL) {
1330
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1331
0
            if (dev->icc_struct == NULL)
1332
0
                return_error(gs_error_VMerror);
1333
0
        }
1334
691k
        dev->icc_struct->blackthresholdL = blackthresholdL;
1335
691k
        dev->icc_struct->blackthresholdC = blackthresholdC;
1336
1.16M
    } else {
1337
1.16M
        code = dev_proc(dev, get_profile)(dev, &profile_struct);
1338
1.16M
        if (profile_struct == NULL) {
1339
            /* Create now  */
1340
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1341
0
            profile_struct = dev->icc_struct;
1342
0
            if (profile_struct == NULL)
1343
0
                return_error(gs_error_VMerror);
1344
0
        }
1345
1.16M
        profile_struct->blackthresholdL = blackthresholdL;
1346
1.16M
        profile_struct->blackthresholdC = blackthresholdC;
1347
1.16M
    }
1348
1.85M
    return code;
1349
1.85M
}
1350
1351
static int
1352
gx_default_put_blackvector(bool blackvector, gx_device* dev)
1353
1.85M
{
1354
1.85M
    int code = 0;
1355
1.85M
    cmm_dev_profile_t* profile_struct;
1356
1357
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1358
691k
        if (dev->icc_struct == NULL) {
1359
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1360
0
            if (dev->icc_struct == NULL)
1361
0
                return_error(gs_error_VMerror);
1362
0
        }
1363
691k
        dev->icc_struct->blackvector = blackvector;
1364
1.16M
    } else {
1365
1.16M
        code = dev_proc(dev, get_profile)(dev, &profile_struct);
1366
1.16M
        if (profile_struct == NULL) {
1367
            /* Create now  */
1368
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1369
0
            profile_struct = dev->icc_struct;
1370
0
            if (profile_struct == NULL)
1371
0
                return_error(gs_error_VMerror);
1372
0
        }
1373
1.16M
        profile_struct->blackvector = blackvector;
1374
1.16M
    }
1375
1.85M
    return code;
1376
1.85M
}
1377
1378
static int
1379
gx_default_put_overprint_control(gs_overprint_control_t overprint_control, gx_device * dev)
1380
1.85M
{
1381
1.85M
    int code = 0;
1382
1.85M
    cmm_dev_profile_t *profile_struct;
1383
1384
    /* Although device methods should not be NULL, they are not completely filled in until
1385
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1386
     * happens, so we *must* make sure the method is not NULL before we use it.
1387
     */
1388
1.85M
    if (dev_proc(dev, get_profile) == NULL) {
1389
        /* This is an odd case where the device has not yet fully been
1390
           set up with its procedures yet.  We want to make sure that
1391
           we catch this so we assume here that we are dealing with
1392
           the target device.  For now allocate the profile structure
1393
           but do not intialize the profile yet as the color info
1394
           may not be fully set up at this time.  */
1395
691k
        if (dev->icc_struct == NULL) {
1396
            /* Allocate at this time the structure */
1397
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1398
0
            if (dev->icc_struct == NULL)
1399
0
                return_error(gs_error_VMerror);
1400
0
        }
1401
691k
        dev->icc_struct->overprint_control = overprint_control;
1402
1.16M
    } else {
1403
1.16M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1404
1.16M
        if (profile_struct == NULL) {
1405
            /* Create now  */
1406
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1407
0
            profile_struct =  dev->icc_struct;
1408
0
            if (profile_struct == NULL)
1409
0
                return_error(gs_error_VMerror);
1410
0
        }
1411
1.16M
        profile_struct->overprint_control = overprint_control;
1412
1.16M
    }
1413
1.85M
    return code;
1414
1.85M
}
1415
1416
static int
1417
gx_default_put_intent(gsicc_rendering_intents_t icc_intent, gx_device * dev,
1418
                   gsicc_profile_types_t index)
1419
7.41M
{
1420
7.41M
    int code;
1421
7.41M
    cmm_dev_profile_t *profile_struct;
1422
1423
    /* Although device methods should not be NULL, they are not completely filled in until
1424
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1425
     * happens, so we *must* make sure the method is not NULL before we use it.
1426
     */
1427
7.41M
    if (dev_proc(dev, get_profile) == NULL) {
1428
        /* This is an odd case where the device has not yet fully been
1429
           set up with its procedures yet.  We want to make sure that
1430
           we catch this so we assume here that we are dealing with
1431
           the target device */
1432
2.76M
        if (dev->icc_struct == NULL) {
1433
            /* Intializes the device structure.  Not the profile though for index */
1434
303k
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1435
303k
            if (dev->icc_struct == NULL)
1436
0
                return_error(gs_error_VMerror);
1437
303k
        }
1438
2.76M
        code = gsicc_set_device_profile_intent(dev, icc_intent, index);
1439
4.64M
    } else {
1440
4.64M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1441
4.64M
        if (code < 0)
1442
0
            return code;
1443
4.64M
        if (profile_struct == NULL) {
1444
            /* Create now  */
1445
2
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1446
2
            if (dev->icc_struct == NULL)
1447
0
                return_error(gs_error_VMerror);
1448
2
        }
1449
4.64M
        code = gsicc_set_device_profile_intent(dev, icc_intent, index);
1450
4.64M
    }
1451
7.41M
    return code;
1452
7.41M
}
1453
1454
static int
1455
gx_default_put_blackpreserve(gsicc_blackpreserve_t blackpreserve, gx_device * dev,
1456
                           gsicc_profile_types_t index)
1457
7.41M
{
1458
7.41M
    int code;
1459
7.41M
    cmm_dev_profile_t *profile_struct;
1460
1461
    /* Although device methods should not be NULL, they are not completely filled in until
1462
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1463
     * happens, so we *must* make sure the method is not NULL before we use it.
1464
     */
1465
7.41M
    if (dev_proc(dev, get_profile) == NULL) {
1466
        /* This is an odd case where the device has not yet fully been
1467
           set up with its procedures yet.  We want to make sure that
1468
           we catch this so we assume here that we are dealing with
1469
           the target device */
1470
2.76M
        if (dev->icc_struct == NULL) {
1471
            /* Intializes the device structure.  Not the profile though for index */
1472
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1473
0
            if (dev->icc_struct == NULL)
1474
0
                return_error(gs_error_VMerror);
1475
0
        }
1476
2.76M
        code = gsicc_set_device_blackpreserve(dev, blackpreserve, index);
1477
4.64M
    } else {
1478
4.64M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1479
4.64M
        if (code < 0)
1480
0
            return code;
1481
4.64M
        if (profile_struct == NULL) {
1482
            /* Create now  */
1483
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1484
0
            if (dev->icc_struct == NULL)
1485
0
                return_error(gs_error_VMerror);
1486
0
        }
1487
4.64M
        code = gsicc_set_device_blackpreserve(dev, blackpreserve, index);
1488
4.64M
    }
1489
7.41M
    return code;
1490
7.41M
}
1491
1492
1493
1494
1495
static int
1496
gx_default_put_blackptcomp(gsicc_blackptcomp_t blackptcomp, gx_device * dev,
1497
                           gsicc_profile_types_t index)
1498
7.41M
{
1499
7.41M
    int code;
1500
7.41M
    cmm_dev_profile_t *profile_struct;
1501
1502
    /* Although device methods should not be NULL, they are not completely filled in until
1503
     * gx_device_fill_in_procs is called, and its possible for us to get here before this
1504
     * happens, so we *must* make sure the method is not NULL before we use it.
1505
     */
1506
7.41M
    if (dev_proc(dev, get_profile) == NULL) {
1507
        /* This is an odd case where the device has not yet fully been
1508
           set up with its procedures yet.  We want to make sure that
1509
           we catch this so we assume here that we are dealing with
1510
           the target device */
1511
2.76M
        if (dev->icc_struct == NULL) {
1512
            /* Intializes the device structure.  Not the profile though for index */
1513
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1514
0
            if (dev->icc_struct == NULL)
1515
0
                return_error(gs_error_VMerror);
1516
0
        }
1517
2.76M
        code = gsicc_set_device_blackptcomp(dev, blackptcomp, index);
1518
4.64M
    } else {
1519
4.64M
        code = dev_proc(dev, get_profile)(dev,  &profile_struct);
1520
4.64M
        if (code < 0)
1521
0
            return code;
1522
4.64M
        if (profile_struct == NULL) {
1523
            /* Create now  */
1524
0
            dev->icc_struct = gsicc_new_device_profile_array(dev);
1525
0
            if (dev->icc_struct == NULL)
1526
0
                return_error(gs_error_VMerror);
1527
0
        }
1528
4.64M
        code = gsicc_set_device_blackptcomp(dev, blackptcomp, index);
1529
4.64M
    }
1530
7.41M
    return code;
1531
7.41M
}
1532
1533
static int
1534
gx_default_put_icc_colorants(gs_param_string *colorants, gx_device * dev)
1535
120k
{
1536
120k
    char *tempstr;
1537
120k
    int code;
1538
120k
    int len;
1539
120k
    unsigned short *tempstr2 = NULL;
1540
120k
    unsigned short *s;
1541
120k
    char *d;
1542
1543
120k
    if (colorants->size == 0) return 0;
1544
1545
    /* See below about this device fill proc */
1546
0
    fill_dev_proc(dev, get_profile, gx_default_get_profile);
1547
0
    tempstr = (char *) gs_alloc_bytes(dev->memory, colorants->size+1,
1548
0
                                      "gx_default_put_icc_colorants");
1549
0
    if (tempstr == NULL)
1550
0
        return_error(gs_error_VMerror);
1551
1552
0
    memcpy(tempstr, colorants->data, colorants->size);
1553
    /* Set last position to NULL. */
1554
0
    tempstr[colorants->size] = 0;
1555
1556
    /* The input colorants string is UTF-8 encoded. We want it to be put into the
1557
     * device as 8-bit 'raw' values. We therefore need to decode it here. Any
1558
     * UTF-8 chars that do not decode to 8 bits will be flagged up as a rangecheck.
1559
     */
1560
0
    len = gp_utf8_to_uint16(NULL, tempstr);
1561
0
    if (len >= 0)
1562
0
        tempstr2 = (unsigned short *)gs_alloc_bytes(dev->memory, (size_t)len * sizeof(unsigned short),
1563
0
                                                "gx_default_put_icc_colorants");
1564
0
    if (tempstr2 == NULL)
1565
0
    {
1566
0
        gs_free_object(dev->memory, tempstr, "gx_default_put_icc_colorants");
1567
0
        return_error(gs_error_VMerror);
1568
0
    }
1569
0
    len = gp_utf8_to_uint16(tempstr2, tempstr);
1570
1571
    /* Now convert down to 8 bits. Reuse tempstr here, because we know it will
1572
     * be large enough. */
1573
0
    code = 0;
1574
0
    for (s = tempstr2, d = tempstr; *s; s++, d++)
1575
0
    {
1576
0
        unsigned short v = *s;
1577
0
        if (v & 0xff00)
1578
0
            code = gs_note_error(gs_error_rangecheck);
1579
0
        *d = v & 0xff;
1580
0
    }
1581
1582
0
    if (code < 0)
1583
0
        emprintf(dev->memory, "ICCColorants must fit (unencoded) in 8 bits");
1584
0
    else
1585
0
        code = gsicc_set_device_profile_colorants(dev, tempstr);
1586
0
    gs_free_object(dev->memory, tempstr, "gx_default_put_icc_colorants");
1587
0
    gs_free_object(dev->memory, tempstr2, "gx_default_put_icc_colorants");
1588
0
    return code;
1589
0
}
1590
1591
static int
1592
gx_default_put_icc(gs_param_string *icc_pro, gx_device * dev,
1593
                   gsicc_profile_types_t index)
1594
961k
{
1595
961k
    char *tempstr;
1596
961k
    int code = 0;
1597
1598
961k
    if (icc_pro->size == 0) return 0;
1599
    /* If this has not yet been set, then set it to the default.
1600
       I don't like doing this here but if we are in here trying to
1601
       set a profile for our device and if the proc for this has not
1602
       yet been set, we are going to lose the chance to set the profile.
1603
       Much like open, this proc should be set early on.  I leave that
1604
       exercise to the device start-up experts */
1605
120k
    fill_dev_proc(dev, get_profile, gx_default_get_profile);
1606
120k
    if (icc_pro->size < gp_file_name_sizeof) {
1607
120k
        tempstr = (char *) gs_alloc_bytes(dev->memory, icc_pro->size+1,
1608
120k
                                          "gx_default_put_icc");
1609
120k
        if (tempstr == NULL)
1610
0
            return_error(gs_error_VMerror);
1611
120k
        memcpy(tempstr, icc_pro->data, icc_pro->size);
1612
        /* Set last position to NULL. */
1613
120k
        tempstr[icc_pro->size] = 0;
1614
120k
        code = gsicc_init_device_profile_struct(dev, tempstr, index);
1615
120k
        gs_free_object(dev->memory, tempstr, "gx_default_put_icc");
1616
120k
    }
1617
120k
    return code;
1618
120k
}
1619
1620
void rc_free_NupControl(gs_memory_t * mem, void *ptr_in, client_name_t cname);  /* silence warning */
1621
/* Exported for use by nup_put_params in gdevnup.c */
1622
void
1623
rc_free_NupControl(gs_memory_t * mem, void *ptr_in, client_name_t cname)
1624
0
{
1625
0
    gdev_nupcontrol *pnupc = (gdev_nupcontrol *)ptr_in;
1626
1627
0
    if (pnupc->rc.ref_count <= 1) {
1628
0
        gs_free(mem->non_gc_memory, pnupc->nupcontrol_str, 1, strlen(pnupc->nupcontrol_str), "free nupcontrol string");
1629
0
        gs_free(mem->non_gc_memory, pnupc, 1, sizeof(gdev_nupcontrol), "free structure to hold nupcontrol string");
1630
0
    }
1631
0
}
1632
1633
static void
1634
rc_free_pages_list(gs_memory_t * mem, void *ptr_in, client_name_t cname)
1635
0
{
1636
0
    gdev_pagelist *PageList = (gdev_pagelist *)ptr_in;
1637
1638
0
    if (PageList->rc.ref_count <= 1) {
1639
0
        gs_free(mem->non_gc_memory, PageList->Pages, 1, strlen(PageList->Pages), "free page list");
1640
0
        gs_free(mem->non_gc_memory, PageList, 1, sizeof(gdev_pagelist), "free structure to hold page list");
1641
0
    }
1642
0
}
1643
1644
/* Set standard parameters. */
1645
/* Note that setting the size or resolution closes the device. */
1646
/* Window devices that don't want this to happen must temporarily */
1647
/* set is_open to false before calling gx_default_put_params, */
1648
/* and then taking appropriate action afterwards. */
1649
int
1650
gx_default_put_params(gx_device * dev, gs_param_list * plist)
1651
1.85M
{
1652
1.85M
    int ecode = 0;
1653
1.85M
    int code;
1654
1.85M
    gs_param_name param_name;
1655
1.85M
    gs_param_float_array hwra;
1656
1.85M
    gs_param_int_array hwsa;
1657
1.85M
    gs_param_float_array msa;
1658
1.85M
    gs_param_float_array ma;
1659
1.85M
    gs_param_float_array hwma;
1660
1.85M
    gs_param_string_array scna;
1661
1.85M
    int nci = dev->NumCopies;
1662
1.85M
    int ncset = dev->NumCopies_set;
1663
1.85M
    bool ignc = dev->IgnoreNumCopies;
1664
1.85M
    bool ucc = dev->UseCIEColor;
1665
1.85M
    gs_param_string icc_pro;
1666
1.85M
    bool locksafe = dev->LockSafetyParams;
1667
1.85M
    gs_param_float_array ibba;
1668
1.85M
    bool ibbnull = false;
1669
1.85M
    int colors = dev->color_info.num_components;
1670
1.85M
    int depth = dev->color_info.depth;
1671
1.85M
    int GrayValues = dev->color_info.max_gray + 1;
1672
1.85M
    int RGBValues = dev->color_info.max_color + 1;
1673
1.85M
    long ColorValues = (depth >= 32 ? -1 : 1L << depth);
1674
1.85M
    int tab = dev->color_info.anti_alias.text_bits;
1675
1.85M
    int gab = dev->color_info.anti_alias.graphics_bits;
1676
1.85M
    size_t mpbm = dev->MaxPatternBitmap;
1677
1.85M
    int ic = dev->interpolate_control;
1678
1.85M
    bool page_uses_transparency = dev->page_uses_transparency;
1679
1.85M
    bool page_uses_overprint = dev->page_uses_overprint;
1680
1.85M
    gdev_space_params sp = dev->space_params;
1681
1.85M
    gdev_space_params save_sp = dev->space_params;
1682
1.85M
    int rend_intent[NUM_DEVICE_PROFILES];
1683
1.85M
    int blackptcomp[NUM_DEVICE_PROFILES];
1684
1.85M
    int blackpreserve[NUM_DEVICE_PROFILES];
1685
1.85M
    gs_param_string cms, pagelist, nuplist;
1686
1.85M
    int leadingedge = dev->LeadingEdge;
1687
1.85M
    int k;
1688
1.85M
    int color_accuracy;
1689
1.85M
    bool devicegraytok = true;
1690
1.85M
    bool graydetection = false;
1691
1.85M
    bool usefastcolor = false;
1692
1.85M
    bool blacktext = false;
1693
1.85M
    bool blackvector = false;
1694
1.85M
    float blackthresholdL = BLACKTHRESHOLDL;
1695
1.85M
    float blackthresholdC = BLACKTHRESHOLDC;
1696
1.85M
    gs_overprint_control_t overprint_control = gs_overprint_control_enable;
1697
1.85M
    bool prebandthreshold = false;
1698
1.85M
    bool use_antidropout = dev->color_info.use_antidropout_downscaler;
1699
1.85M
    bool temp_bool;
1700
1.85M
    int  profile_types[NUM_DEVICE_PROFILES] = {gsDEFAULTPROFILE,
1701
1.85M
                                               gsGRAPHICPROFILE,
1702
1.85M
                                               gsIMAGEPROFILE,
1703
1.85M
                                               gsTEXTPROFILE};
1704
1705
1.85M
    color_accuracy = gsicc_currentcoloraccuracy(dev->memory);
1706
1.85M
    if (dev->icc_struct != NULL) {
1707
7.62M
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
1708
6.09M
            rend_intent[k] = dev->icc_struct->rendercond[k].rendering_intent;
1709
6.09M
            blackptcomp[k] = dev->icc_struct->rendercond[k].black_point_comp;
1710
6.09M
            blackpreserve[k] = dev->icc_struct->rendercond[k].preserve_black;
1711
6.09M
        }
1712
1.52M
        graydetection = dev->icc_struct->graydetection;
1713
1.52M
        devicegraytok = dev->icc_struct->devicegraytok;
1714
1.52M
        usefastcolor = dev->icc_struct->usefastcolor;
1715
1.52M
        blacktext = dev->icc_struct->blacktext;
1716
1.52M
        blackvector = dev->icc_struct->blackvector;
1717
1.52M
        blackthresholdL = dev->icc_struct->blackthresholdL;
1718
1.52M
        blackthresholdC = dev->icc_struct->blackthresholdC;
1719
1.52M
        prebandthreshold = dev->icc_struct->prebandthreshold;
1720
1.52M
        overprint_control = dev->icc_struct->overprint_control;
1721
1.52M
    } else {
1722
1.65M
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
1723
1.32M
            rend_intent[k] = gsRINOTSPECIFIED;
1724
1.32M
            blackptcomp[k] = gsBPNOTSPECIFIED;
1725
1.32M
            blackpreserve[k] = gsBKPRESNOTSPECIFIED;
1726
1.32M
        }
1727
330k
    }
1728
1729
    /*
1730
     * Template:
1731
     *   BEGIN_ARRAY_PARAM(param_read_xxx_array, "pname", pxxa, size, pxxe) {
1732
     *     ... check value if desired ...
1733
     *     if (success)
1734
     *       break;
1735
     *     ... set ecode ...
1736
     *   } END_ARRAY_PARAM(pxxa, pxxe);
1737
     */
1738
1739
1.85M
#define BEGIN_ARRAY_PARAM(pread, pname, pa, psize, e)\
1740
12.9M
    BEGIN\
1741
12.9M
    switch (code = pread(plist, (param_name = pname), &(pa))) {\
1742
2.66M
      case 0:\
1743
2.66M
        if ((pa).size != psize) {\
1744
0
          ecode = gs_note_error(gs_error_rangecheck);\
1745
0
          (pa).data = 0;  /* mark as not filled */\
1746
0
        } else
1747
1.85M
#define END_ARRAY_PARAM(pa, e)\
1748
1.85M
        goto e;\
1749
2.66M
      default:\
1750
408
        ecode = code;\
1751
408
e:  param_signal_error(plist, param_name, ecode);\
1752
10.3M
      case 1:\
1753
10.3M
        (pa).data = 0;   /* mark as not filled */\
1754
25.9M
    }\
1755
25.9M
    END
1756
1757
    /*
1758
     * The actual value of LeadingEdge must be changed inside this routine,
1759
     * so that we can detect that it has been changed. Thus, instead of a
1760
     * device setting the value itself, it signals a request, which is
1761
     * now executed.
1762
     */
1763
1.85M
    if (leadingedge & LEADINGEDGE_REQ_BIT) {
1764
0
        leadingedge = (leadingedge & LEADINGEDGE_SET_MASK) |
1765
0
            ((leadingedge >> LEADINGEDGE_REQ_VAL_SHIFT) & LEADINGEDGE_MASK);
1766
0
    }
1767
1768
    /*
1769
     * The HWResolution, HWSize, and MediaSize parameters interact in
1770
     * the following way:
1771
     *      1. Setting HWResolution recomputes HWSize from MediaSize.
1772
     *      2. Setting HWSize recomputes MediaSize from HWResolution.
1773
     *      3. Setting MediaSize recomputes HWSize from HWResolution.
1774
     * If more than one parameter is being set, we apply these rules
1775
     * in the order 1, 2, 3.  This does the right thing in the most
1776
     * common case of setting more than one parameter, namely,
1777
     * setting both HWResolution and HWSize.
1778
     *
1779
     * Changing of LeadingEdge is treated exactly the same as a
1780
     * change in HWResolution. In typical usage, MediaSize is
1781
     * short-edge (MediaSize[0] < MediaSize[1]), so if LeadingEdge
1782
     * is 1 or 3, then HWSize will become long-edge. For nonsquare
1783
     * resolutions, HWResolution[0] always corresponds with width
1784
     * (scan length), and [1] with height (number of scans).
1785
     */
1786
1787
2.16M
    BEGIN_ARRAY_PARAM(param_read_float_array, "HWResolution", hwra, 2, hwre) {
1788
312k
        if (hwra.data[0] <= 0 || hwra.data[1] <= 0)
1789
0
            ecode = gs_note_error(gs_error_rangecheck);
1790
312k
        else
1791
312k
            break;
1792
312k
    } END_ARRAY_PARAM(hwra, hwre);
1793
1.97M
    BEGIN_ARRAY_PARAM(param_read_int_array, "HWSize", hwsa, 2, hwsa) {
1794
        /* We need a special check to handle the nullpage device, */
1795
        /* whose size is legitimately [0 0]. */
1796
120k
        if ((hwsa.data[0] <= 0 && hwsa.data[0] != dev->width) ||
1797
120k
            (hwsa.data[1] <= 0 && hwsa.data[1] != dev->height)
1798
120k
        )
1799
0
            ecode = gs_note_error(gs_error_rangecheck);
1800
360k
#define max_coord (max_fixed / fixed_1)
1801
120k
#if max_coord < max_int
1802
120k
        else if (hwsa.data[0] > max_coord || hwsa.data[1] > max_coord)
1803
0
            ecode = gs_note_error(gs_error_limitcheck);
1804
120k
#endif
1805
120k
#undef max_coord
1806
120k
        else
1807
120k
            break;
1808
120k
    } END_ARRAY_PARAM(hwsa, hwse);
1809
1.85M
    {
1810
1.85M
        int t;
1811
1812
1.85M
        code = param_read_int(plist, "LeadingEdge", &t);
1813
1.85M
        if (code < 0) {
1814
120k
            if (param_read_null(plist, "LeadingEdge") == 0) {
1815
                /* if param is null, clear explicitly-set flag */
1816
120k
                leadingedge &= ~LEADINGEDGE_SET_MASK;
1817
120k
            } else {
1818
0
                ecode = code;
1819
0
            }
1820
1.73M
        } else if (code == 0) {
1821
2
            if (t < 0 || t > 3)
1822
0
                param_signal_error(plist, "LeadingEdge",
1823
2
                                   ecode = gs_error_rangecheck);
1824
2
            else
1825
2
                leadingedge = LEADINGEDGE_SET_MASK | t;
1826
2
        }
1827
1.85M
    }
1828
1.85M
    {
1829
1.85M
        const float *res = (hwra.data == 0 ? dev->HWResolution : hwra.data);
1830
1831
1.85M
#ifdef PAGESIZE_IS_MEDIASIZE
1832
1.85M
        const float *data;
1833
1834
        /* .MediaSize takes precedence over PageSize, so */
1835
        /* we read PageSize first. */
1836
1.85M
        code = param_MediaSize(plist, "PageSize", res, &msa);
1837
1.85M
        if (code < 0)
1838
0
            ecode = code;
1839
        /* Prevent data from being set to 0 if PageSize is specified */
1840
        /* but .MediaSize is not. */
1841
1.85M
        data = msa.data;
1842
1.85M
        code = param_MediaSize(plist, ".MediaSize", res, &msa);
1843
1.85M
        if (code < 0)
1844
408
            ecode = code;
1845
1.85M
        else if (msa.data == 0)
1846
860k
            msa.data = data;
1847
#else
1848
        code = param_MediaSize(plist, ".MediaSize", res, &msa);
1849
        if (code < 0)
1850
            ecode = code;
1851
#endif
1852
1.85M
    }
1853
1854
1.97M
    BEGIN_ARRAY_PARAM(param_read_float_array, "Margins", ma, 2, me) {
1855
120k
        break;
1856
120k
    } END_ARRAY_PARAM(ma, me);
1857
1.97M
    BEGIN_ARRAY_PARAM(param_read_float_array, ".HWMargins", hwma, 4, hwme) {
1858
120k
        break;
1859
120k
    } END_ARRAY_PARAM(hwma, hwme);
1860
1.85M
    switch (code = param_read_bool(plist, (param_name = ".IgnoreNumCopies"), &ignc)) {
1861
0
        default:
1862
0
            ecode = code;
1863
0
            param_signal_error(plist, param_name, ecode);
1864
120k
        case 0:
1865
1.85M
        case 1:
1866
1.85M
            break;
1867
1.85M
    }
1868
1.85M
    if (dev->NumCopies_set >= 0 &&
1869
1.85M
        (*dev_proc(dev, get_page_device))(dev) != 0
1870
1.85M
        ) {
1871
1.85M
        switch (code = param_read_int(plist, (param_name = "NumCopies"), &nci)) {
1872
2
            case 0:
1873
2
                if (nci < 0)
1874
0
                    ecode = gs_error_rangecheck;
1875
2
                else {
1876
2
                    ncset = 1;
1877
2
                    break;
1878
2
                }
1879
0
                goto nce;
1880
120k
            default:
1881
120k
                if ((code = param_read_null(plist, param_name)) == 0) {
1882
120k
                    ncset = 0;
1883
120k
                    break;
1884
120k
                }
1885
0
                ecode = code; /* can't be 1 */
1886
0
nce:
1887
0
                param_signal_error(plist, param_name, ecode);
1888
1.73M
            case 1:
1889
1.73M
                break;
1890
1.85M
        }
1891
1.85M
    }
1892
    /* Set the ICC output colors first */
1893
1.85M
    if ((code = param_read_string(plist, "ICCOutputColors", &icc_pro)) != 1) {
1894
120k
        if (code < 0) {
1895
0
            ecode = code;
1896
0
            param_signal_error(plist, "ICCOutputColors", ecode);
1897
120k
        } else {
1898
120k
            if ((code = gx_default_put_icc_colorants(&icc_pro, dev)) < 0) {
1899
0
                ecode = code;
1900
0
                param_signal_error(plist, "ICCOutputColors", ecode);
1901
0
            }
1902
120k
        }
1903
120k
    }
1904
1.85M
    if ((code = param_read_string(plist, "DeviceLinkProfile", &icc_pro)) != 1) {
1905
120k
        if (code < 0) {
1906
0
            ecode = code;
1907
0
            param_signal_error(plist, "DeviceLinkProfile", ecode);
1908
120k
        } else {
1909
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsLINKPROFILE)) < 0) {
1910
0
                ecode = code;
1911
0
                param_signal_error(plist, "DeviceLinkProfile", ecode);
1912
0
            }
1913
120k
        }
1914
120k
    }
1915
1.85M
    if ((code = param_read_string(plist, "PostRenderProfile", &icc_pro)) != 1) {
1916
120k
        if (code < 0) {
1917
0
            ecode = code;
1918
0
            param_signal_error(plist, "PostRenderProfile", ecode);
1919
120k
        } else {
1920
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsPRPROFILE)) < 0) {
1921
0
                ecode = code;
1922
0
                param_signal_error(plist, "PostRenderProfile", ecode);
1923
0
            }
1924
120k
        }
1925
120k
    }
1926
1.85M
    if ((code = param_read_string(plist, "OutputICCProfile", &icc_pro)) != 1) {
1927
120k
        if (code < 0) {
1928
0
            ecode = code;
1929
0
            param_signal_error(plist, "OutputICCProfile", ecode);
1930
120k
        } else {
1931
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsDEFAULTPROFILE)) < 0) {
1932
0
                ecode = code;
1933
0
                param_signal_error(plist, "OutputICCProfile", ecode);
1934
0
            }
1935
120k
        }
1936
120k
    }
1937
    /* Note, if a change is made to NUM_DEVICE_PROFILES we need to update
1938
       this with the name of the profile */
1939
1.85M
    if ((code = param_read_string(plist, "VectorICCProfile", &icc_pro)) != 1) {
1940
120k
        if (code < 0) {
1941
0
            ecode = code;
1942
0
            param_signal_error(plist, "VectorICCProfile", ecode);
1943
120k
        } else {
1944
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsGRAPHICPROFILE)) < 0) {
1945
0
                ecode = code;
1946
0
                param_signal_error(plist, "VectorICCProfile", ecode);
1947
0
            }
1948
120k
        }
1949
120k
    }
1950
1.85M
    if ((code = param_read_string(plist, "ImageICCProfile", &icc_pro)) != 1) {
1951
120k
        if (code < 0) {
1952
0
            ecode = code;
1953
0
            param_signal_error(plist, "ImageICCProfile", ecode);
1954
120k
        } else {
1955
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsIMAGEPROFILE)) < 0) {
1956
0
                ecode = code;
1957
0
                param_signal_error(plist, "ImageICCProfile", ecode);
1958
0
            }
1959
120k
        }
1960
120k
    }
1961
1.85M
    if ((code = param_read_string(plist, "TextICCProfile", &icc_pro)) != 1) {
1962
120k
        if (code < 0) {
1963
0
            ecode = code;
1964
0
            param_signal_error(plist, "TextICCProfile", ecode);
1965
120k
        } else {
1966
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsTEXTPROFILE)) < 0) {
1967
0
                ecode = code;
1968
0
                param_signal_error(plist, "TextICCProfile", ecode);
1969
0
            }
1970
120k
        }
1971
120k
    }
1972
1.85M
    if ((code = param_read_string(plist, "ProofProfile", &icc_pro)) != 1) {
1973
120k
        if (code < 0) {
1974
0
            ecode = code;
1975
0
            param_signal_error(plist, "ProofProfile", ecode);
1976
120k
        } else {
1977
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsPROOFPROFILE)) < 0) {
1978
0
                ecode = code;
1979
0
                param_signal_error(plist, "ProofProfile", ecode);
1980
0
            }
1981
120k
        }
1982
120k
    }
1983
1.85M
    if ((code = param_read_string(plist, "BlendColorProfile", &icc_pro)) != 1) {
1984
120k
        if (code < 0) {
1985
0
            ecode = code;
1986
0
            param_signal_error(plist, "BlendColorProfile", ecode);
1987
120k
        } else {
1988
120k
            if ((code = gx_default_put_icc(&icc_pro, dev, gsBLENDPROFILE)) < 0) {
1989
0
                ecode = code;
1990
0
                param_signal_error(plist, "BlendColorProfile", ecode);
1991
0
            }
1992
120k
        }
1993
120k
    }
1994
1.85M
    if ((code = param_read_int(plist, (param_name = "RenderIntent"),
1995
1.85M
                                                    &(rend_intent[0]))) < 0) {
1996
0
        ecode = code;
1997
0
        param_signal_error(plist, param_name, ecode);
1998
0
    }
1999
1.85M
    if ((code = param_read_int(plist, (param_name = "VectorIntent"),
2000
1.85M
                                                    &(rend_intent[1]))) < 0) {
2001
0
        ecode = code;
2002
0
        param_signal_error(plist, param_name, ecode);
2003
0
    }
2004
1.85M
    if ((code = param_read_int(plist, (param_name = "ImageIntent"),
2005
1.85M
                                                    &(rend_intent[2]))) < 0) {
2006
0
        ecode = code;
2007
0
        param_signal_error(plist, param_name, ecode);
2008
0
    }
2009
1.85M
    if ((code = param_read_int(plist, (param_name = "TextIntent"),
2010
1.85M
                                                    &(rend_intent[3]))) < 0) {
2011
0
        ecode = code;
2012
0
        param_signal_error(plist, param_name, ecode);
2013
0
    }
2014
1.85M
    if ((code = param_read_int(plist, (param_name = "BlackPtComp"),
2015
1.85M
                                                    &(blackptcomp[0]))) < 0) {
2016
0
        ecode = code;
2017
0
        param_signal_error(plist, param_name, ecode);
2018
0
    }
2019
1.85M
    if ((code = param_read_int(plist, (param_name = "VectorBlackPt"),
2020
1.85M
                                                    &(blackptcomp[1]))) < 0) {
2021
0
        ecode = code;
2022
0
        param_signal_error(plist, param_name, ecode);
2023
0
    }
2024
1.85M
    if ((code = param_read_int(plist, (param_name = "ImageBlackPt"),
2025
1.85M
                                                    &(blackptcomp[2]))) < 0) {
2026
0
        ecode = code;
2027
0
        param_signal_error(plist, param_name, ecode);
2028
0
    }
2029
1.85M
    if ((code = param_read_int(plist, (param_name = "TextBlackPt"),
2030
1.85M
                                                    &(blackptcomp[3]))) < 0) {
2031
0
        ecode = code;
2032
0
        param_signal_error(plist, param_name, ecode);
2033
0
    }
2034
1.85M
    if ((code = param_read_int(plist, (param_name = "KPreserve"),
2035
1.85M
                                                    &(blackpreserve[0]))) < 0) {
2036
0
        ecode = code;
2037
0
        param_signal_error(plist, param_name, ecode);
2038
0
    }
2039
1.85M
    if ((code = param_read_int(plist, (param_name = "VectorKPreserve"),
2040
1.85M
                                                    &(blackpreserve[1]))) < 0) {
2041
0
        ecode = code;
2042
0
        param_signal_error(plist, param_name, ecode);
2043
0
    }
2044
1.85M
    if ((code = param_read_int(plist, (param_name = "ImageKPreserve"),
2045
1.85M
                                                    &(blackpreserve[2]))) < 0) {
2046
0
        ecode = code;
2047
0
        param_signal_error(plist, param_name, ecode);
2048
0
    }
2049
1.85M
    if ((code = param_read_int(plist, (param_name = "TextKPreserve"),
2050
1.85M
                                                    &(blackpreserve[3]))) < 0) {
2051
0
        ecode = code;
2052
0
        param_signal_error(plist, param_name, ecode);
2053
0
    }
2054
1.85M
    if ((code = param_read_int(plist, (param_name = "ColorAccuracy"),
2055
1.85M
                                                        &color_accuracy)) < 0) {
2056
0
        ecode = code;
2057
0
        param_signal_error(plist, param_name, ecode);
2058
0
    }
2059
1.85M
    if ((code = param_read_bool(plist, (param_name = "DeviceGrayToK"),
2060
1.85M
                                                        &devicegraytok)) < 0) {
2061
0
        ecode = code;
2062
0
        param_signal_error(plist, param_name, ecode);
2063
0
    }
2064
1.85M
    if ((code = param_read_bool(plist, (param_name = "GrayDetection"),
2065
1.85M
                                                        &graydetection)) < 0) {
2066
0
        ecode = code;
2067
0
        param_signal_error(plist, param_name, ecode);
2068
0
    }
2069
1.85M
    if ((code = param_read_bool(plist, (param_name = "UseFastColor"),
2070
1.85M
                                                        &usefastcolor)) < 0) {
2071
0
        ecode = code;
2072
0
        param_signal_error(plist, param_name, ecode);
2073
0
    }
2074
1.85M
    if ((code = param_read_bool(plist, (param_name = "BlackText"),
2075
1.85M
                                                        &blacktext)) < 0) {
2076
0
        ecode = code;
2077
0
        param_signal_error(plist, param_name, ecode);
2078
0
    }
2079
1.85M
    if ((code = param_read_bool(plist, (param_name = "BlackVector"),
2080
1.85M
                                                        &blackvector)) < 0) {
2081
0
        ecode = code;
2082
0
        param_signal_error(plist, param_name, ecode);
2083
0
    }
2084
1.85M
    if ((code = param_read_float(plist, (param_name = "BlackThresholdL"),
2085
1.85M
                                                        &blackthresholdL)) < 0) {
2086
0
        ecode = code;
2087
0
        param_signal_error(plist, param_name, ecode);
2088
0
    }
2089
1.85M
    if ((code = param_read_float(plist, (param_name = "BlackThresholdC"),
2090
1.85M
                                                        &blackthresholdC)) < 0) {
2091
0
        ecode = code;
2092
0
        param_signal_error(plist, param_name, ecode);
2093
0
    }
2094
1.85M
    if ((code = param_put_enum(plist, "Overprint",
2095
1.85M
                           (int*)&overprint_control, overprint_control_names, ecode)) < 0) {
2096
408
        ecode = code;
2097
408
        param_signal_error(plist, param_name, ecode);
2098
408
    }
2099
1.85M
    if ((code = param_read_bool(plist, (param_name = "PreBandThreshold"),
2100
1.85M
                                                        &prebandthreshold)) < 0) {
2101
0
        ecode = code;
2102
0
        param_signal_error(plist, param_name, ecode);
2103
0
    }
2104
1.85M
    if ((code = param_read_bool(plist, (param_name = "UseCIEColor"), &ucc)) < 0) {
2105
0
        ecode = code;
2106
0
        param_signal_error(plist, param_name, ecode);
2107
0
    }
2108
1.85M
    if ((code = param_anti_alias_bits(plist, "TextAlphaBits", &tab)) < 0)
2109
0
        ecode = code;
2110
1.85M
    if ((code = param_anti_alias_bits(plist, "GraphicsAlphaBits", &gab)) < 0)
2111
0
        ecode = code;
2112
1.85M
    if ((code = param_read_bool(plist, "AntidropoutDownscaler", &use_antidropout)) < 0)
2113
0
        ecode = code;
2114
1.85M
    if ((code = param_read_size_t(plist, "MaxPatternBitmap", &mpbm)) < 0)
2115
0
        ecode = code;
2116
1.85M
    if ((code = param_read_int(plist, "InterpolateControl", &ic)) < 0)
2117
0
        ecode = code;
2118
1.85M
    if ((code = param_read_bool(plist, (param_name = "PageUsesTransparency"),
2119
1.85M
                                &page_uses_transparency)) < 0) {
2120
0
        ecode = code;
2121
0
        param_signal_error(plist, param_name, ecode);
2122
0
    }
2123
1.85M
    if ((code = param_read_bool(plist, (param_name = "PageUsesOverprint"),
2124
1.85M
                                &page_uses_overprint)) < 0) {
2125
0
        ecode = code;
2126
0
        param_signal_error(plist, param_name, ecode);
2127
0
    }
2128
1.85M
    if ((code = param_read_size_t(plist, "MaxBitmap", &sp.MaxBitmap)) < 0)
2129
0
        ecode = code;
2130
2131
1.85M
#define CHECK_PARAM_CASES(member, bad, label)\
2132
1.85M
    case 0:\
2133
673k
        if ((sp.params_are_read_only ? sp.member != save_sp.member : bad))\
2134
0
            ecode = gs_error_rangecheck;\
2135
0
        else\
2136
673k
            break;\
2137
0
        goto label;\
2138
0
    default:\
2139
0
        ecode = code;\
2140
0
label:\
2141
0
        param_signal_error(plist, param_name, ecode);\
2142
6.74M
    case 1:\
2143
6.74M
        break
2144
2145
1.85M
    switch (code = param_read_size_t(plist, (param_name = "BufferSpace"), &sp.BufferSpace)) {
2146
1.85M
        CHECK_PARAM_CASES(BufferSpace, sp.BufferSpace < 10000, bse);
2147
1.85M
    }
2148
2149
1.85M
    switch (code = param_read_int(plist, (param_name = "BandWidth"), &sp.band.BandWidth)) {
2150
1.85M
        CHECK_PARAM_CASES(band.BandWidth, sp.band.BandWidth < 0, bwe);
2151
1.85M
    }
2152
2153
1.85M
    switch (code = param_read_int(plist, (param_name = "BandHeight"), &sp.band.BandHeight)) {
2154
1.85M
        CHECK_PARAM_CASES(band.BandHeight, sp.band.BandHeight < -1, bhe);
2155
1.85M
    }
2156
1.85M
    if (sp.band.BandHeight == -1)
2157
0
        sp.band.BandHeight = dev->height; /* 1 band for the page requested */
2158
2159
1.85M
    switch (code = param_read_size_t(plist, (param_name = "BandBufferSpace"), &sp.band.BandBufferSpace)) {
2160
1.85M
        CHECK_PARAM_CASES(band.BandBufferSpace, 0, bbse);
2161
1.85M
    }
2162
2163
2164
1.85M
    switch (code = param_read_bool(plist, (param_name = ".LockSafetyParams"), &locksafe)) {
2165
120k
        case 0:
2166
120k
            if (dev->LockSafetyParams && !locksafe)
2167
0
                code = gs_note_error(gs_error_invalidaccess);
2168
120k
            else
2169
120k
                break;
2170
0
        default:
2171
0
            ecode = code;
2172
0
            param_signal_error(plist, param_name, ecode);
2173
1.73M
        case 1:
2174
1.73M
            break;
2175
1.85M
    }
2176
    /* Ignore parameters that only have meaning for printers. */
2177
1.85M
#define IGNORE_INT_PARAM(pname)\
2178
7.41M
  { int igni;\
2179
7.41M
    switch ( code = param_read_int(plist, (param_name = pname), &igni) )\
2180
7.41M
      { default:\
2181
0
          ecode = code;\
2182
0
          param_signal_error(plist, param_name, ecode);\
2183
2.10M
        case 0:\
2184
7.41M
        case 1:\
2185
7.41M
          break;\
2186
7.41M
      }\
2187
7.41M
  }
2188
1.85M
    IGNORE_INT_PARAM("%MediaSource")
2189
1.85M
        IGNORE_INT_PARAM("%MediaDestination")
2190
1.85M
        switch (code = param_read_float_array(plist, (param_name = "ImagingBBox"), &ibba)) {
2191
0
        case 0:
2192
0
            if (ibba.size != 4 ||
2193
0
                ibba.data[2] < ibba.data[0] || ibba.data[3] < ibba.data[1]
2194
0
                )
2195
0
                ecode = gs_note_error(gs_error_rangecheck);
2196
0
            else
2197
0
                break;
2198
0
            goto ibbe;
2199
0
        default:
2200
0
            if ((code = param_read_null(plist, param_name)) == 0) {
2201
0
                ibbnull = true;
2202
0
                ibba.data = 0;
2203
0
                break;
2204
0
            }
2205
0
            ecode = code; /* can't be 1 */
2206
0
          ibbe:param_signal_error(plist, param_name, ecode);
2207
1.85M
        case 1:
2208
1.85M
            ibba.data = 0;
2209
1.85M
            break;
2210
1.85M
    }
2211
2212
    /* Separation, DeviceN Color, and ProcessColorModel related parameters. */
2213
1.85M
    {
2214
1.85M
        const char * pcms = get_process_color_model_name(dev);
2215
        /* the device should have set a process model name at this point */
2216
1.85M
        if ((code = param_check_string(plist, "ProcessColorModel", pcms, (pcms != NULL))) < 0)
2217
0
            ecode = code;
2218
1.85M
    }
2219
1.85M
    IGNORE_INT_PARAM("MaxSeparations")
2220
1.85M
    if ((code = param_check_bool(plist, "Separations", false, true)) < 0)
2221
6
        ecode = code;
2222
2223
2.84M
    BEGIN_ARRAY_PARAM(param_read_name_array, "SeparationColorNames", scna, scna.size, scne) {
2224
994k
        break;
2225
994k
    } END_ARRAY_PARAM(scna, scne);
2226
2227
    /* Now check nominally read-only parameters. */
2228
1.85M
    if ((code = param_check_string(plist, "OutputDevice", dev->dname, true)) < 0)
2229
0
        ecode = code;
2230
1.85M
    if ((code = param_check_string(plist, "Name", dev->dname, true)) < 0)
2231
0
        ecode = code;
2232
1.85M
    if ((code = param_check_int(plist, "Colors", colors, true)) < 0)
2233
0
        ecode = code;
2234
1.85M
    if ((code = param_check_int(plist, "BitsPerPixel", depth, true)) < 0)
2235
0
        ecode = code;
2236
1.85M
    if ((code = param_check_int(plist, "GrayValues", GrayValues, true)) < 0)
2237
0
        ecode = code;
2238
2239
    /* with saved-pages, PageCount can't be checked. No harm in letting it change */
2240
1.85M
    IGNORE_INT_PARAM("PageCount")
2241
2242
1.85M
    if ((code = param_check_int(plist, "RedValues", RGBValues, true)) < 0)
2243
0
        ecode = code;
2244
1.85M
    if ((code = param_check_int(plist, "GreenValues", RGBValues, true)) < 0)
2245
0
        ecode = code;
2246
1.85M
    if ((code = param_check_int(plist, "BlueValues", RGBValues, true)) < 0)
2247
0
        ecode = code;
2248
1.85M
    if ((code = param_check_long(plist, "ColorValues", ColorValues, true)) < 0)
2249
0
        ecode = code;
2250
1.85M
    if (param_read_string(plist, "HWColorMap", &cms) != 1) {
2251
0
        byte palette[3 << 8];
2252
2253
0
        if (param_HWColorMap(dev, palette))
2254
0
            code = param_check_bytes(plist, "HWColorMap", palette,
2255
0
                                     colors << depth, true);
2256
0
        else
2257
0
            code = param_check_bytes(plist, "HWColorMap", 0, 0, false);
2258
0
        if (code < 0)
2259
0
            ecode = code;
2260
0
    }
2261
2262
1.85M
    code = param_read_int(plist, "FirstPage", &dev->FirstPage);
2263
1.85M
    if (code < 0)
2264
0
        ecode = code;
2265
2266
1.85M
    code = param_read_int(plist,  "LastPage", &dev->LastPage);
2267
1.85M
    if (code < 0)
2268
0
        ecode = code;
2269
2270
1.85M
    code = param_read_bool(plist, "DisablePageHandler", &temp_bool);
2271
1.85M
    if (code < 0)
2272
0
        ecode = code;
2273
1.85M
    if (code == 0)
2274
120k
        dev->DisablePageHandler = temp_bool;
2275
2276
    /* If we have an NupControl subclass device (N-up) installed, this param will have  */
2277
    /* been handled there, so the check for different will be false, meaning that this  */
2278
    /* code won't end up doing anything. This will catch the first occurence and needs  */
2279
    /* to install the N-up subclass device.           */
2280
1.85M
    code = param_read_string(plist, "NupControl", &nuplist);
2281
1.85M
    if (code < 0)
2282
0
        ecode = code;
2283
1.85M
    if (code == 0) {
2284
120k
        if (dev->NupControl && (
2285
0
            nuplist.size == 0 ||
2286
0
            (strncmp(dev->NupControl->nupcontrol_str, (const char *)nuplist.data, nuplist.size) != 0))) {
2287
            /* There was a NupControl, but this one is different -- no longer use the old one */
2288
0
            rc_decrement(dev->NupControl, "default put_params NupControl");
2289
0
            dev->NupControl = NULL;
2290
0
        }
2291
120k
    }
2292
1.85M
    if (dev->NupControl == NULL && code == 0 && nuplist.size > 0) {
2293
0
        gx_device *next_dev;
2294
2295
0
        dev->NupControl = (gdev_nupcontrol *)gs_alloc_bytes(dev->memory->non_gc_memory,
2296
0
                                                          sizeof(gdev_nupcontrol), "structure to hold nupcontrol_str");
2297
0
        if (dev->NupControl == NULL)
2298
0
            return gs_note_error(gs_error_VMerror);
2299
0
        dev->NupControl->nupcontrol_str = (void *)gs_alloc_bytes(dev->memory->non_gc_memory,
2300
0
                                                                 nuplist.size + 1, "nupcontrol string");
2301
0
        if (dev->NupControl->nupcontrol_str == NULL){
2302
0
            gs_free(dev->memory->non_gc_memory, dev->NupControl, 1, sizeof(gdev_nupcontrol),
2303
0
                    "free structure to hold nupcontrol string");
2304
0
            dev->NupControl = 0;
2305
0
            return gs_note_error(gs_error_VMerror);
2306
0
        }
2307
0
        memset(dev->NupControl->nupcontrol_str, 0x00, nuplist.size + 1);
2308
0
        memcpy(dev->NupControl->nupcontrol_str, nuplist.data, nuplist.size);
2309
0
        rc_init_free(dev->NupControl, dev->memory->non_gc_memory, 1, rc_free_NupControl);
2310
2311
        /* Propagate the new NupControl struct to children */
2312
0
        next_dev = dev->child;
2313
0
        while (next_dev != NULL) {
2314
0
            if (next_dev->NupControl)
2315
0
                rc_decrement(next_dev->NupControl, "nup_put_params");
2316
0
            next_dev->NupControl = dev->NupControl;
2317
0
            rc_increment(dev->NupControl);
2318
0
            next_dev = next_dev->child;
2319
0
        }
2320
        /* Propagate the new NupControl struct to parents */
2321
0
        next_dev = dev->parent;
2322
0
        while (next_dev != NULL) {
2323
0
            if (next_dev->NupControl)
2324
0
                rc_decrement(next_dev->NupControl, "nup_put_params");
2325
0
            next_dev->NupControl = dev->NupControl;
2326
0
            rc_increment(dev->NupControl);
2327
0
            next_dev = next_dev->parent;
2328
0
        }
2329
0
    }
2330
2331
1.85M
    code = param_read_string(plist, "PageList", &pagelist);
2332
1.85M
    if (code < 0)
2333
0
        ecode = code;
2334
1.85M
    if (code == 0) {
2335
120k
        if (dev->PageList)
2336
120k
            rc_decrement(dev->PageList, "default put_params PageList");
2337
120k
        dev->PageList = NULL;
2338
120k
    }
2339
2340
1.85M
    if (code == 0 && pagelist.size > 0) {
2341
0
        dev->PageList = (gdev_pagelist *)gs_alloc_bytes(dev->memory->non_gc_memory, sizeof(gdev_pagelist), "structure to hold page list");
2342
0
        if (!dev->PageList)
2343
0
            return gs_note_error(gs_error_VMerror);
2344
0
        dev->PageList->Pages = (void *)gs_alloc_bytes(dev->memory->non_gc_memory, pagelist.size + 1, "String to hold page list");
2345
0
        if (!dev->PageList->Pages){
2346
0
            gs_free(dev->memory->non_gc_memory, dev->PageList, 1, sizeof(gdev_pagelist), "free structure to hold page list");
2347
0
            dev->PageList = 0;
2348
0
            return gs_note_error(gs_error_VMerror);
2349
0
        }
2350
0
        memset(dev->PageList->Pages, 0x00, pagelist.size + 1);
2351
0
        memcpy(dev->PageList->Pages, pagelist.data, pagelist.size);
2352
0
        rc_init_free(dev->PageList, dev->memory->non_gc_memory, 1, rc_free_pages_list);
2353
0
    }
2354
2355
1.85M
    code = param_read_bool(plist, "FILTERIMAGE", &temp_bool);
2356
1.85M
    if (code < 0)
2357
0
        ecode = code;
2358
1.85M
    if (code == 0) {
2359
120k
        if (temp_bool)
2360
0
            dev->ObjectFilter |= FILTERIMAGE;
2361
120k
        else
2362
120k
            dev->ObjectFilter &= ~FILTERIMAGE;
2363
120k
    }
2364
2365
1.85M
    code = param_read_bool(plist, "FILTERTEXT", &temp_bool);
2366
1.85M
    if (code < 0)
2367
0
        ecode = code;
2368
1.85M
    if (code == 0) {
2369
120k
        if (temp_bool)
2370
0
            dev->ObjectFilter |= FILTERTEXT;
2371
120k
        else
2372
120k
            dev->ObjectFilter &= ~FILTERTEXT;
2373
120k
    }
2374
2375
1.85M
    code = param_read_bool(plist, "FILTERVECTOR", &temp_bool);
2376
1.85M
    if (code < 0)
2377
0
        ecode = code;
2378
1.85M
    if (code == 0) {
2379
120k
        if (temp_bool)
2380
0
            dev->ObjectFilter |= FILTERVECTOR;
2381
120k
        else
2382
120k
            dev->ObjectFilter &= ~FILTERVECTOR;
2383
120k
    }
2384
2385
    /* We must 'commit', in order to detect unknown parameters, */
2386
    /* even if there were errors. */
2387
1.85M
    code = param_commit(plist);
2388
1.85M
    if (ecode < 0) {
2389
        /* restore_page_device (zdevice2.c) will turn off LockSafetyParams, and relies on putparams
2390
         * to put it back if we are restoring a device. The locksafe value is picked up above from the
2391
         * device we are restoring to, and we *must* make sure it is preserved, even if setting the
2392
         * params failed. Otherwise an attacker can use a failed grestore to reset LockSafetyParams.
2393
         * See bug #699687.
2394
         */
2395
414
        dev->LockSafetyParams = locksafe;
2396
414
        return ecode;
2397
414
    }
2398
1.85M
    if (code < 0) {
2399
1.02k
        dev->LockSafetyParams = locksafe;
2400
1.02k
        return code;
2401
1.02k
    }
2402
2403
    /*
2404
     * Now actually make the changes. Changing resolution, rotation
2405
     * (through LeadingEdge) or page size requires closing the device,
2406
     * but changing margins or ImagingBBox does not. In order not to
2407
     * close and reopen the device unnecessarily, we check for
2408
     * replacing the values with the same ones.
2409
     */
2410
2411
1.85M
    dev->color_info.use_antidropout_downscaler = use_antidropout;
2412
2413
1.85M
    if (hwra.data != 0 &&
2414
312k
        (dev->HWResolution[0] != hwra.data[0] ||
2415
120k
         dev->HWResolution[1] != hwra.data[1])
2416
1.85M
        ) {
2417
192k
        if (dev->is_open)
2418
0
            gs_closedevice(dev);
2419
192k
        gx_device_set_resolution(dev, hwra.data[0], hwra.data[1]);
2420
192k
    }
2421
1.85M
    if ((leadingedge & LEADINGEDGE_MASK) !=
2422
1.85M
        (dev->LeadingEdge & LEADINGEDGE_MASK)) {
2423
        /* If the LeadingEdge_set flag changes but the value of LeadingEdge
2424
           itself does not, don't close device and recompute page size. */
2425
1
        dev->LeadingEdge = leadingedge;
2426
1
        if (dev->is_open)
2427
0
            gs_closedevice(dev);
2428
1
        gx_device_set_resolution(dev, dev->HWResolution[0], dev->HWResolution[1]);
2429
1
    }
2430
    /* clear leadingedge request, preserve "set" flag */
2431
1.85M
    dev->LeadingEdge &= LEADINGEDGE_MASK;
2432
1.85M
    dev->LeadingEdge |= (leadingedge & LEADINGEDGE_SET_MASK);
2433
2434
1.85M
    if (hwsa.data != 0 &&
2435
120k
        (dev->width != hwsa.data[0] ||
2436
28.2k
         dev->height != hwsa.data[1])
2437
1.85M
        ) {
2438
93.0k
        if (dev->is_open)
2439
0
            gs_closedevice(dev);
2440
93.0k
        gx_device_set_width_height(dev, hwsa.data[0], hwsa.data[1]);
2441
93.0k
    }
2442
1.85M
    if (msa.data != 0 &&
2443
992k
        (dev->MediaSize[0] != msa.data[0] ||
2444
825k
         dev->MediaSize[1] != msa.data[1])
2445
1.85M
        ) {
2446
168k
        if (dev->is_open)
2447
3
            gs_closedevice(dev);
2448
168k
        gx_device_set_page_size(dev, msa.data[0], msa.data[1]);
2449
168k
    }
2450
1.85M
    if (ma.data != 0) {
2451
120k
        dev->Margins[0] = ma.data[0];
2452
120k
        dev->Margins[1] = ma.data[1];
2453
120k
    }
2454
1.85M
    if (hwma.data != 0) {
2455
120k
        dev->HWMargins[0] = hwma.data[0];
2456
120k
        dev->HWMargins[1] = hwma.data[1];
2457
120k
        dev->HWMargins[2] = hwma.data[2];
2458
120k
        dev->HWMargins[3] = hwma.data[3];
2459
120k
    }
2460
1.85M
    dev->NumCopies = nci;
2461
1.85M
    dev->NumCopies_set = ncset;
2462
1.85M
    dev->IgnoreNumCopies = ignc;
2463
1.85M
    if (ibba.data != 0) {
2464
0
        dev->ImagingBBox[0] = ibba.data[0];
2465
0
        dev->ImagingBBox[1] = ibba.data[1];
2466
0
        dev->ImagingBBox[2] = ibba.data[2];
2467
0
        dev->ImagingBBox[3] = ibba.data[3];
2468
0
        dev->ImagingBBox_set = true;
2469
1.85M
    } else if (ibbnull) {
2470
0
        dev->ImagingBBox_set = false;
2471
0
    }
2472
1.85M
    dev->UseCIEColor = ucc;
2473
1.85M
        dev->color_info.anti_alias.text_bits =
2474
1.85M
                param_normalize_anti_alias_bits(max(dev->color_info.max_gray,
2475
1.85M
                        dev->color_info.max_color), tab);
2476
1.85M
        dev->color_info.anti_alias.graphics_bits =
2477
1.85M
                param_normalize_anti_alias_bits(max(dev->color_info.max_gray,
2478
1.85M
                        dev->color_info.max_color), gab);
2479
1.85M
    dev->LockSafetyParams = locksafe;
2480
1.85M
    dev->MaxPatternBitmap = mpbm;
2481
1.85M
    dev->interpolate_control = ic;
2482
1.85M
    dev->space_params = sp;
2483
1.85M
    dev->page_uses_transparency = page_uses_transparency;
2484
1.85M
    dev->page_uses_overprint = page_uses_overprint;
2485
1.85M
    gx_device_decache_colors(dev);
2486
2487
    /* Take care of the rendering intents and blackpts.  For those that
2488
       are not set special, the default provides an override */
2489
    /* Set the default object */
2490
1.85M
    code = gx_default_put_intent(rend_intent[0], dev, gsDEFAULTPROFILE);
2491
1.85M
    if (code < 0)
2492
0
        return code;
2493
1.85M
    code = gx_default_put_blackptcomp(blackptcomp[0], dev, gsDEFAULTPROFILE);
2494
1.85M
    if (code < 0)
2495
0
        return code;
2496
1.85M
    code = gx_default_put_blackpreserve(blackpreserve[0], dev, gsDEFAULTPROFILE);
2497
1.85M
    if (code < 0)
2498
0
        return code;
2499
    /* If the default was specified and not a specialized one (e.g. graphic
2500
       image or text) then the special one will get set to the default.  */
2501
7.41M
    for (k = 1; k < NUM_DEVICE_PROFILES; k++) {
2502
5.55M
        if (rend_intent[0] != gsRINOTSPECIFIED &&
2503
0
            rend_intent[k] == gsRINOTSPECIFIED) {
2504
0
            code = gx_default_put_intent(rend_intent[0], dev, profile_types[k]);
2505
5.55M
        } else {
2506
5.55M
            code = gx_default_put_intent(rend_intent[k], dev, profile_types[k]);
2507
5.55M
        }
2508
5.55M
        if (code < 0)
2509
0
            return code;
2510
5.55M
        if (blackptcomp[0] != gsBPNOTSPECIFIED &&
2511
0
            blackptcomp[k] == gsBPNOTSPECIFIED) {
2512
0
            code = gx_default_put_blackptcomp(blackptcomp[0], dev, profile_types[k]);
2513
5.55M
        } else {
2514
5.55M
            code = gx_default_put_blackptcomp(blackptcomp[k], dev, profile_types[k]);
2515
5.55M
        }
2516
5.55M
        if (code < 0)
2517
0
            return code;
2518
5.55M
        if (blackpreserve[0] != gsBKPRESNOTSPECIFIED &&
2519
0
            blackpreserve[k] == gsBKPRESNOTSPECIFIED) {
2520
0
            code = gx_default_put_blackpreserve(blackpreserve[0], dev, profile_types[k]);
2521
5.55M
        } else {
2522
5.55M
            code = gx_default_put_blackpreserve(blackpreserve[k], dev, profile_types[k]);
2523
5.55M
        }
2524
5.55M
        if (code < 0)
2525
0
            return code;
2526
5.55M
    }
2527
1.85M
    gsicc_setcoloraccuracy(dev->memory, color_accuracy);
2528
1.85M
    code = gx_default_put_graytok(devicegraytok, dev);
2529
1.85M
    if (code < 0)
2530
0
        return code;
2531
1.85M
    code = gx_default_put_usefastcolor(usefastcolor, dev);
2532
1.85M
    if (code < 0)
2533
0
        return code;
2534
1.85M
    code = gx_default_put_blacktext(blacktext, dev);
2535
1.85M
    if (code < 0)
2536
0
        return code;
2537
1.85M
    code = gx_default_put_blackvector(blackvector, dev);
2538
1.85M
    if (code < 0)
2539
0
        return code;
2540
1.85M
    code = gx_default_put_blackthresholds(blackthresholdL, blackthresholdC, dev);
2541
1.85M
    if (code < 0)
2542
0
        return code;
2543
1.85M
    code = gx_default_put_overprint_control(overprint_control, dev);
2544
1.85M
    if (code < 0)
2545
0
        return code;
2546
1.85M
    code = gx_default_put_graydetection(graydetection, dev);
2547
1.85M
    if (code < 0)
2548
0
        return code;
2549
1.85M
    return gx_default_put_prebandthreshold(prebandthreshold, dev);
2550
1.85M
}
2551
2552
void
2553
gx_device_request_leadingedge(gx_device *dev, int le_req)
2554
0
{
2555
0
    dev->LeadingEdge = (dev->LeadingEdge & ~LEADINGEDGE_REQ_VAL) |
2556
0
        ((le_req << LEADINGEDGE_REQ_VAL_SHIFT) & LEADINGEDGE_REQ_VAL) |
2557
0
        LEADINGEDGE_REQ_BIT;
2558
0
}
2559
2560
/* Limit the anti-alias bit values to the maximum legal value for the
2561
 * current color depth.
2562
 */
2563
static int
2564
param_normalize_anti_alias_bits( uint max_gray, int bits )
2565
3.70M
{
2566
3.70M
        int max_bits = ilog2( max_gray + 1);
2567
2568
3.70M
        return  (bits > max_bits ? max_bits : bits);
2569
3.70M
}
2570
2571
/* Read TextAlphaBits or GraphicsAlphaBits. */
2572
static int
2573
param_anti_alias_bits(gs_param_list * plist, gs_param_name param_name, int *pa)
2574
3.70M
{
2575
3.70M
    int code = param_read_int(plist, param_name, pa);
2576
2577
3.70M
    switch (code) {
2578
240k
    case 0:
2579
240k
        switch (*pa) {
2580
240k
        case 1: case 2: case 4:
2581
240k
            return 0;
2582
0
        default:
2583
0
            code = gs_error_rangecheck;
2584
240k
        }
2585
        /* fall through */
2586
0
    default:
2587
0
        param_signal_error(plist, param_name, code);
2588
3.46M
    case 1:
2589
3.46M
        ;
2590
3.70M
    }
2591
3.46M
    return code;
2592
3.70M
}
2593
2594
/* Read .MediaSize or, if supported as a synonym, PageSize. */
2595
static int
2596
param_MediaSize(gs_param_list * plist, gs_param_name pname,
2597
                const float *res, gs_param_float_array * pa)
2598
3.70M
{
2599
3.70M
    gs_param_name param_name;
2600
3.70M
    int ecode = 0;
2601
3.70M
    int code;
2602
2603
4.70M
    BEGIN_ARRAY_PARAM(param_read_float_array, pname, *pa, 2, mse) {
2604
994k
        float width_new = pa->data[0] * res[0] / 72;
2605
994k
        float height_new = pa->data[1] * res[1] / 72;
2606
2607
994k
        if (width_new < 0 || height_new < 0)
2608
0
            ecode = gs_note_error(gs_error_rangecheck);
2609
2.98M
#define max_coord (max_fixed / fixed_1)
2610
994k
#if max_coord < max_int
2611
994k
        else if (width_new > (long)max_coord || height_new > (long)max_coord)
2612
408
            ecode = gs_note_error(gs_error_limitcheck);
2613
993k
#endif
2614
993k
#undef max_coord
2615
993k
        else
2616
993k
            break;
2617
994k
    } END_ARRAY_PARAM(*pa, mse);
2618
3.70M
    return ecode;
2619
3.70M
}
2620
2621
/* Check that a nominally read-only parameter is being set to */
2622
/* its existing value. */
2623
static int
2624
param_check_bool(gs_param_list * plist, gs_param_name pname, bool value,
2625
                 bool is_defined)
2626
1.85M
{
2627
1.85M
    int code;
2628
1.85M
    bool new_value;
2629
2630
1.85M
    switch (code = param_read_bool(plist, pname, &new_value)) {
2631
120k
        case 0:
2632
120k
            if (is_defined && new_value == value)
2633
120k
                break;
2634
6
            code = gs_note_error(gs_error_rangecheck);
2635
6
            goto e;
2636
0
        default:
2637
0
            if (param_read_null(plist, pname) == 0)
2638
0
                return 1;
2639
6
          e:param_signal_error(plist, pname, code);
2640
1.73M
        case 1:
2641
1.73M
            ;
2642
1.85M
    }
2643
1.85M
    return code;
2644
1.85M
}
2645
static int
2646
param_check_long(gs_param_list * plist, gs_param_name pname, long value,
2647
                 bool is_defined)
2648
12.9M
{
2649
12.9M
    int code;
2650
12.9M
    long new_value;
2651
2652
12.9M
    switch (code = param_read_long(plist, pname, &new_value)) {
2653
68.0k
        case 0:
2654
68.0k
            if (is_defined && new_value == value)
2655
68.0k
                break;
2656
0
            code = gs_note_error(gs_error_rangecheck);
2657
0
            goto e;
2658
0
        default:
2659
0
            if (param_read_null(plist, pname) == 0)
2660
0
                return 1;
2661
0
          e:param_signal_error(plist, pname, code);
2662
12.9M
        case 1:
2663
12.9M
            ;
2664
12.9M
    }
2665
12.9M
    return code;
2666
12.9M
}
2667
static int
2668
param_check_bytes(gs_param_list * plist, gs_param_name pname, const byte * str,
2669
                  uint size, bool is_defined)
2670
5.56M
{
2671
5.56M
    int code;
2672
5.56M
    gs_param_string new_value;
2673
2674
5.56M
    switch (code = param_read_string(plist, pname, &new_value)) {
2675
120k
        case 0:
2676
120k
            if (is_defined && new_value.size == size &&
2677
120k
                !memcmp((const char *)str, (const char *)new_value.data,
2678
120k
                        size)
2679
120k
                )
2680
120k
                break;
2681
0
            code = gs_note_error(gs_error_rangecheck);
2682
0
            goto e;
2683
0
        default:
2684
0
            if (param_read_null(plist, pname) == 0)
2685
0
                return 1;
2686
0
          e:param_signal_error(plist, pname, code);
2687
5.44M
        case 1:
2688
5.44M
            ;
2689
5.56M
    }
2690
5.56M
    return code;
2691
5.56M
}