Coverage Report

Created: 2026-04-01 07:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/psi/zimage.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Image operators */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "stat_.h" /* get system header early to avoid name clash on Cygwin */
21
#include "ghost.h"
22
#include "oper.h"
23
#include "gscolor.h"
24
#include "gscspace.h"
25
#include "gscolor2.h"
26
#include "gsmatrix.h"
27
#include "gsimage.h"
28
#include "gxfixed.h"
29
#include "gsstruct.h"
30
#include "gxiparam.h"
31
#include "idict.h"
32
#include "idparam.h"
33
#include "estack.h"   /* for image[mask] */
34
#include "ialloc.h"
35
#include "igstate.h"
36
#include "ilevel.h"
37
#include "store.h"
38
#include "stream.h"
39
#include "ifilter.h"    /* for stream exception handling */
40
#include "iimage.h"
41
#include "gxcspace.h"
42
43
/* Forward references */
44
static int zimage_data_setup(i_ctx_t *i_ctx_p, const gs_pixel_image_t * pim,
45
                                 gx_image_enum_common_t * pie,
46
                                 const ref * sources, int npop);
47
static int image_proc_process(i_ctx_t *);
48
static int image_file_continue(i_ctx_t *);
49
static int image_string_continue(i_ctx_t *);
50
static int image_cleanup(i_ctx_t *);
51
52
/* Extract and check the parameters for a gs_data_image_t. */
53
int
54
data_image_params(const gs_memory_t *mem,
55
                  const ref *op, gs_data_image_t *pim,
56
                  image_params *pip, bool require_DataSource,
57
                  int num_components, int max_bits_per_component,
58
                  bool islab)
59
488k
{
60
488k
    int code;
61
488k
    ref *pds;
62
63
488k
    check_type(*op, t_dictionary);
64
488k
    check_dict_read(*op);
65
488k
    code = dict_int_param(op, "Width", 0, max_int_in_fixed/2, -1, &pim->Width);
66
488k
    if (code < 0)
67
38
      return code;
68
488k
    code = dict_int_param(op, "Height", 0, max_int_in_fixed/2, -1, &pim->Height);
69
488k
    if (code < 0)
70
24
      return code;
71
488k
    code = dict_matrix_param(mem, op, "ImageMatrix", &pim->ImageMatrix);
72
488k
    if (code < 0)
73
19
      return code;
74
488k
    code = dict_bool_param(op, "MultipleDataSources", false, &pip->MultipleDataSources);
75
488k
    if (code < 0)
76
0
      return code;
77
488k
    code = dict_int_param(op, "BitsPerComponent", 1, max_bits_per_component, -1, &pim->BitsPerComponent);
78
488k
    if (code < 0)
79
2
      return code;
80
488k
    code = dict_bool_param(op, "Interpolate", false, &pim->Interpolate);
81
488k
    if (code < 0)
82
0
      return code;
83
84
    /* Decode size pulled out of here to catch case of Lab color space which
85
       has a 4 entry range.  We also do NOT want to do Lab decoding IF range
86
       is the common -128 127 for a and b. Otherwise we end up doing multiple
87
       decode operations, since ICC flow will expect encoded data.
88
       That is resolved later.  Also discovered that PDF write will stick
89
       6 entry range in wich appears to be OK as far as AR is concerned so
90
       we have to handle that too. */
91
488k
    if (islab) {
92
        /* Note that it is possible that only the ab range values are there
93
           or the lab values.  I have seen both cases.... */
94
0
        code = dict_floats_param(mem, op, "Decode", 4,
95
0
                                 &pim->Decode[2], NULL);
96
0
        if (code < 0) {
97
            /* Try for all three */
98
0
            code = dict_floats_param(mem, op, "Decode", 6,
99
0
                                                        &pim->Decode[0], NULL);
100
0
        } else {
101
            /* Set the range on the L */
102
0
            pim->Decode[0] = 0;
103
0
            pim->Decode[1] = 100.0;
104
0
        }
105
0
        if (code < 0)
106
0
            return code;
107
488k
    } else {
108
488k
        code = dict_floats_param(mem, op, "Decode",
109
488k
                                                    num_components * 2,
110
488k
                                                    &pim->Decode[0], NULL);
111
488k
        if (code < 0)
112
0
            return code;
113
488k
    }
114
488k
    pip->pDecode = &pim->Decode[0];
115
    /* Extract and check the data sources. */
116
488k
    if ((code = dict_find_string(op, "DataSource", &pds)) <= 0) {
117
0
        if (require_DataSource)
118
0
            return (code < 0 ? code : gs_note_error(gs_error_rangecheck));
119
0
        return 1;   /* no data source */
120
0
    }
121
488k
    if (pip->MultipleDataSources) {
122
16
        ref *ds = pip->DataSource;
123
16
        long i;
124
16
        if (!r_is_array(pds))
125
0
            return_error(gs_error_typecheck);
126
16
        if (r_size(pds) != num_components)
127
0
            return_error(gs_error_rangecheck);
128
64
        for (i = 0; i < num_components; ++i)
129
48
            array_get(mem, pds, i, &ds[i]);
130
16
        if (r_type(&ds[0]) == t_string) {
131
            /* We don't have a problem with the strings of different length
132
             * but Adobe does and CET tast 12-02.ps reports this as an error.
133
             */
134
0
            for (i = 1; i < num_components; ++i) {
135
0
                if (r_type(&ds[i]) == t_string && r_size(&ds[i]) != r_size(&ds[0])) {
136
0
                    return_error(gs_error_rangecheck);
137
0
                }
138
0
            }
139
0
        }
140
16
    } else
141
488k
        pip->DataSource[0] = *pds;
142
488k
    return 0;
143
488k
}
144
145
/* Extract and check the parameters for a gs_pixel_image_t. */
146
int
147
pixel_image_params(i_ctx_t *i_ctx_p, const ref *op, gs_pixel_image_t *pim,
148
                   image_params *pip, int max_bits_per_component,
149
                   gs_color_space *csp)
150
838
{
151
838
    bool islab = false;
152
838
    int num_components =
153
838
        gs_color_space_num_components(csp);
154
838
    int code;
155
156
838
    if (num_components < 1)
157
0
        return_error(gs_error_rangecheck);  /* Pattern space not allowed */
158
838
    pim->ColorSpace = csp;
159
160
838
    if (pim->ColorSpace->cmm_icc_profile_data != NULL)
161
838
        islab = pim->ColorSpace->cmm_icc_profile_data->islab;
162
163
838
    code = data_image_params(imemory, op, (gs_data_image_t *) pim, pip, true,
164
838
                             num_components, max_bits_per_component, islab);
165
838
    if (code < 0)
166
66
        return code;
167
772
    pim->format =
168
772
        (pip->MultipleDataSources ? gs_image_format_component_planar :
169
772
         gs_image_format_chunky);
170
772
    return dict_bool_param(op, "CombineWithColor", false,
171
772
                           &pim->CombineWithColor);
172
838
}
173
174
/* Common setup for all Level 1 and 2 images, and ImageType 4 images. */
175
int
176
zimage_setup(i_ctx_t *i_ctx_p, const gs_pixel_image_t * pim,
177
             const ref * sources, bool uses_color, int npop)
178
488k
{
179
488k
    gx_image_enum_common_t *pie;
180
488k
    int code =
181
488k
        gs_image_begin_typed((const gs_image_common_t *)pim, igs,
182
488k
                             uses_color, false, &pie);
183
184
488k
    if (code < 0)
185
13
        return code;
186
488k
    return zimage_data_setup(i_ctx_p, (const gs_pixel_image_t *)pim, pie,
187
488k
                             sources, npop);
188
488k
}
189
190
/* <dict> .image1 - */
191
static int
192
zimage1(i_ctx_t *i_ctx_p)
193
838
{
194
838
    os_ptr          op = osp;
195
838
    gs_image_t      image;
196
838
    image_params    ip;
197
838
    int             code;
198
838
    gs_color_space *csp = gs_currentcolorspace(igs);
199
200
838
    check_op(1);
201
    /* Adobe interpreters accept sampled images when the current color
202
     * space is a pattern color space using the base color space instead
203
     * of the pattern space. CET 12-07a-12
204
     * If all conditions are not met the pattern color space goes through
205
     * triggering a rangecheck error.
206
     */
207
838
    if (gs_currentcpsimode(imemory) && gs_color_space_num_components(csp) < 1) {
208
0
       gs_color_space *bsp = csp->base_space;
209
0
       if (bsp)
210
0
         csp = bsp;
211
0
    }
212
213
838
    gs_image_t_init(&image, csp);
214
838
    code = pixel_image_params( i_ctx_p,
215
838
                               op,
216
838
                               (gs_pixel_image_t *)&image,
217
838
                               &ip,
218
838
                               (level2_enabled ? 16 : 8),
219
838
                               csp);
220
838
    if (code < 0)
221
66
        return code;
222
223
772
    image.Alpha = gs_image_alpha_none;
224
        /* swap Width, Height, and ImageMatrix so that it comes out the same */
225
        /* This is only for performance, so only do it for non-skew cases */
226
772
    if (image.Width == 1 && image.Height > 1 && image.BitsPerComponent == 8 &&
227
626
        image.ImageMatrix.xy == 0.0 && image.ImageMatrix.yx == 0.0 &&
228
601
        image.ImageMatrix.tx == 0.0) {
229
592
        float ftmp;
230
592
        int   itemp;
231
232
592
        itemp = image.Width;
233
592
        image.Width = image.Height;
234
592
        image.Height = itemp;
235
236
592
        image.ImageMatrix.xy = image.ImageMatrix.xx;
237
592
        image.ImageMatrix.yx = image.ImageMatrix.yy;
238
592
        image.ImageMatrix.xx = 0.0;
239
592
        image.ImageMatrix.yy = 0.0;
240
592
        ftmp = image.ImageMatrix.tx;
241
592
        image.ImageMatrix.tx = image.ImageMatrix.ty;
242
592
        image.ImageMatrix.ty = ftmp;
243
592
    }
244
772
    return zimage_setup( i_ctx_p,
245
772
                         (gs_pixel_image_t *)&image,
246
772
                         &ip.DataSource[0],
247
772
                         image.CombineWithColor,
248
772
                         1 );
249
838
}
250
251
/* <dict> .imagemask1 - */
252
static int
253
zimagemask1(i_ctx_t *i_ctx_p)
254
487k
{
255
487k
    os_ptr op = osp;
256
487k
    gs_image_t image;
257
487k
    image_params ip;
258
487k
    int code;
259
260
487k
    check_op(1);
261
487k
    gs_image_t_init_mask_adjust(&image, false,
262
487k
                                gs_incachedevice(igs) != CACHE_DEVICE_NONE);
263
487k
    code = data_image_params(imemory, op, (gs_data_image_t *) & image,
264
487k
                             &ip, true, 1, 1, false);
265
487k
    if (code < 0)
266
17
        return code;
267
487k
    return zimage_setup(i_ctx_p, (gs_pixel_image_t *)&image, &ip.DataSource[0],
268
487k
                        true, 1);
269
487k
}
270
271
/* Common setup for all Level 1 and 2 images, and ImageType 3 and 4 images. */
272
/*
273
 * We push the following on the estack.
274
 *      control mark,
275
 *  num_sources,
276
 *      for I = num_sources-1 ... 0:
277
 *          data source I,
278
 *          aliasing information:
279
 *              if source is not file, 1, except that the topmost value
280
 *      is used for bookkeeping in the procedure case (see below);
281
 *              if file is referenced by a total of M different sources and
282
 *                this is the occurrence with the lowest I, M;
283
 *              otherwise, -J, where J is the lowest I of the same file as
284
 *                this one;
285
 *      current plane index,
286
 *      num_sources,
287
 *      enumeration structure.
288
 */
289
1.46M
#define NUM_PUSH(nsource) ((nsource) * 2 + 5)
290
/*
291
 * We can access these values either from the bottom (esp at control mark - 1,
292
 * EBOT macros) or the top (esp = enumeration structure, ETOP macros).
293
 * Note that all macros return pointers.
294
 */
295
488k
#define EBOT_NUM_SOURCES(ep) ((ep) + 2)
296
#define EBOT_SOURCE(ep, i)\
297
488k
  ((ep) + 3 + (EBOT_NUM_SOURCES(ep)->value.intval - 1 - (i)) * 2)
298
#define ETOP_SOURCE(ep, i)\
299
22.9M
  ((ep) - 4 - (i) * 2)
300
33.7M
#define ETOP_PLANE_INDEX(ep) ((ep) - 2)
301
22.7M
#define ETOP_NUM_SOURCES(ep) ((ep) - 1)
302
static int
303
zimage_data_setup(i_ctx_t *i_ctx_p, const gs_pixel_image_t * pim,
304
                  gx_image_enum_common_t * pie, const ref * sources, int npop)
305
488k
{
306
488k
    int num_sources = pie->num_planes;
307
488k
    int inumpush = NUM_PUSH(num_sources);
308
488k
    int code;
309
488k
    gs_image_enum *penum;
310
488k
    int px;
311
488k
    const ref *pp;
312
488k
    bool string_sources = true;
313
314
488k
    check_estack(inumpush + 2); /* stuff above, + continuation + proc */
315
488k
    make_int(EBOT_NUM_SOURCES(esp), num_sources);
316
    /*
317
     * Note that the data sources may be procedures, strings, or (Level
318
     * 2 only) files.  (The Level 1 reference manual says that Level 1
319
     * requires procedures, but Adobe Level 1 interpreters also accept
320
     * strings.)  The sources must all be of the same type.
321
     *
322
     * The Adobe documentation explicitly says that if two or more of the
323
     * data sources are the same or inter-dependent files, the result is not
324
     * defined.  We don't have a problem with the bookkeeping for
325
     * inter-dependent files, since each one has its own buffer, but we do
326
     * have to be careful if two or more sources are actually the same file.
327
     * That is the reason for the aliasing information described above.
328
     */
329
977k
    for (px = 0, pp = sources; px < num_sources; px++, pp++) {
330
488k
        es_ptr ep = EBOT_SOURCE(esp, px);
331
332
488k
        make_int(ep + 1, 1);  /* default is no aliasing */
333
488k
        switch (r_type(pp)) {
334
18
            case t_file:
335
18
                if (!level2_enabled)
336
0
                    return_error(gs_error_typecheck);
337
                /* Check for aliasing. */
338
18
                {
339
18
                    int pi;
340
341
18
                    for (pi = 0; pi < px; ++pi)
342
0
                        if (sources[pi].value.pfile == pp->value.pfile) {
343
                            /* Record aliasing */
344
0
                            make_int(ep + 1, -pi);
345
0
                            EBOT_SOURCE(esp, pi)[1].value.intval++;
346
0
                            break;
347
0
                        }
348
18
                }
349
18
                string_sources = false;
350
                /* falls through */
351
27
            case t_string:
352
27
                if (r_type(pp) != r_type(sources)) {
353
0
                    gx_image_end(pie, false);    /* Clean up pie */
354
0
                    return_error(gs_error_typecheck);
355
0
                }
356
27
                check_read(*pp);
357
27
                break;
358
488k
            default:
359
488k
                if (!r_is_proc(sources)) {
360
0
                    static const char ds[] = "DataSource";
361
0
                    gx_image_end(pie, false);    /* Clean up pie */
362
0
                    gs_errorinfo_put_pair(i_ctx_p, ds, sizeof(ds) - 1, pp);
363
0
                    return_error(gs_error_typecheck);
364
0
                }
365
488k
                check_proc(*pp);
366
488k
                string_sources = false;
367
488k
        }
368
488k
        *ep = *pp;
369
488k
    }
370
    /* Always place the image enumerator into local memory,
371
       because pie may have local objects inherited from igs,
372
       which may be local when the current allocation mode is global.
373
       Bug 688140. */
374
488k
    if ((penum = gs_image_enum_alloc(imemory_local, "image_setup")) == 0)
375
0
        return_error(gs_error_VMerror);
376
488k
    code = gs_image_enum_init(penum, pie, (const gs_data_image_t *)pim, igs);
377
488k
    if (code != 0 || (pie->skipping && string_sources)) {   /* error, or empty image */
378
42
        int code1 = gs_image_cleanup_and_free_enum(penum, igs);
379
380
42
        if (code >= 0)   /* empty image */
381
42
            pop(npop);
382
42
        if (code >= 0 && code1 < 0)
383
0
            code = code1;
384
42
        return code;
385
42
    }
386
488k
    push_mark_estack(es_other, image_cleanup);
387
488k
    esp += inumpush - 1;
388
488k
    make_int(ETOP_PLANE_INDEX(esp), 0);
389
488k
    make_int(ETOP_NUM_SOURCES(esp), num_sources);
390
488k
    make_struct(esp, avm_local, penum);
391
488k
    switch (r_type(sources)) {
392
18
        case t_file:
393
18
            push_op_estack(image_file_continue);
394
18
            break;
395
9
        case t_string:
396
9
            push_op_estack(image_string_continue);
397
9
            break;
398
488k
        default:    /* procedure */
399
488k
            push_op_estack(image_proc_process);
400
488k
            break;
401
488k
    }
402
488k
    pop(npop);
403
488k
    return o_push_estack;
404
488k
}
405
/* Pop all the control information off the e-stack. */
406
static es_ptr
407
zimage_pop_estack(es_ptr tep)
408
488k
{
409
488k
    return tep - NUM_PUSH(ETOP_NUM_SOURCES(tep)->value.intval);
410
488k
}
411
412
/*
413
 * Continuation for procedure data source.  We use the topmost aliasing slot
414
 * to remember whether we've just called the procedure (1) or whether we're
415
 * returning from a RemapColor callout (0).
416
 */
417
static int
418
image_proc_continue(i_ctx_t *i_ctx_p)
419
11.3M
{
420
11.3M
    os_ptr op = osp;
421
11.3M
    gs_image_enum *penum = r_ptr(esp, gs_image_enum);
422
11.3M
    int px = ETOP_PLANE_INDEX(esp)->value.intval;
423
11.3M
    int num_sources = ETOP_NUM_SOURCES(esp)->value.intval;
424
11.3M
    uint size, used[GS_IMAGE_MAX_COMPONENTS];
425
11.3M
    gs_const_string plane_data[GS_IMAGE_MAX_COMPONENTS];
426
11.3M
    const byte *wanted;
427
11.3M
    int i, code;
428
429
11.3M
    if (!r_has_type_attrs(op, t_string, a_read)) {
430
43
        check_op(1);
431
        /* Procedure didn't return a (readable) string.  Quit. */
432
7
        esp = zimage_pop_estack(esp);
433
7
        image_cleanup(i_ctx_p);
434
7
        return_error(!r_has_type(op, t_string) ? gs_error_typecheck : gs_error_invalidaccess);
435
43
    }
436
11.3M
    size = r_size(op);
437
11.3M
    if (size == 0 && ETOP_SOURCE(esp, 0)[1].value.intval == 0)
438
114
        code = 1;
439
11.3M
    else {
440
22.8M
        for (i = 0; i < num_sources; i++)
441
11.4M
            plane_data[i].size = 0;
442
443
        /* Make a copy of the string source data in 'stable' memory (immune to save/restore)
444
         * We need this because of bug #706867 where one of the procedure data sources does
445
         * a 'restore' back to a point where the string returned (and saved) by one of the
446
         * other procedure data sources is freed. By copying the string to stable memory
447
         * this can't happen.
448
         */
449
11.3M
        plane_data[px].data = gs_alloc_string(imemory->stable_memory, size, "image_proc_continue");
450
11.3M
        if (plane_data[px].data == NULL)
451
0
            return_error(gs_error_VMerror);
452
11.3M
        memcpy((byte *)plane_data[px].data, op->value.bytes, size);
453
11.3M
        plane_data[px].size = size;
454
        /* Set the txfer_control flag to true to transfer control of the string (which must be allocated
455
         * in stable memory for this) to the gs_image_next_planes() routine.
456
         */
457
11.3M
        code = gs_image_next_planes(penum, plane_data, used, true);
458
11.3M
        if (code == gs_error_Remap_Color) {
459
0
            op->value.bytes += used[px]; /* skip used data */
460
0
            r_dec_size(op, used[px]);
461
0
            ETOP_SOURCE(esp, 0)[1].value.intval = 0; /* RemapColor callout */
462
0
            return code;
463
0
        }
464
11.3M
    }
465
11.3M
    if (code) {     /* Stop now. */
466
488k
        esp = zimage_pop_estack(esp);
467
488k
        pop(1);
468
488k
        image_cleanup(i_ctx_p);
469
488k
        return (code < 0 ? code : o_pop_estack);
470
488k
    }
471
10.9M
    pop(1);
472
10.9M
    wanted = gs_image_planes_wanted(penum);
473
10.9M
    do {
474
10.9M
        if (++px == num_sources)
475
10.9M
            px = 0;
476
10.9M
    } while (!wanted[px]);
477
10.9M
    ETOP_PLANE_INDEX(esp)->value.intval = px;
478
10.9M
    return image_proc_process(i_ctx_p);
479
11.3M
}
480
static int
481
image_proc_process(i_ctx_t *i_ctx_p)
482
11.3M
{
483
11.3M
    int px = ETOP_PLANE_INDEX(esp)->value.intval;
484
11.3M
    gs_image_enum *penum = r_ptr(esp, gs_image_enum);
485
11.3M
    const byte *wanted = gs_image_planes_wanted(penum);
486
11.3M
    int num_sources = ETOP_NUM_SOURCES(esp)->value.intval;
487
11.3M
    const ref *pp;
488
489
11.3M
    ETOP_SOURCE(esp, 0)[1].value.intval = 0; /* procedure callout */
490
11.3M
    while (!wanted[px]) {
491
0
        if (++px == num_sources)
492
0
            px = 0;
493
0
        ETOP_PLANE_INDEX(esp)->value.intval = px;
494
0
    }
495
11.3M
    pp = ETOP_SOURCE(esp, px);
496
11.3M
    push_op_estack(image_proc_continue);
497
11.3M
    *++esp = *pp;
498
11.3M
    return o_push_estack;
499
11.3M
}
500
501
/* Continue processing data from an image with file data sources. */
502
static int
503
image_file_continue(i_ctx_t *i_ctx_p)
504
18
{
505
18
    gs_image_enum *penum = r_ptr(esp, gs_image_enum);
506
18
    int num_sources = ETOP_NUM_SOURCES(esp)->value.intval;
507
508
543
    for (;;) {
509
543
        uint min_avail = max_int;
510
543
        gs_const_string plane_data[GS_IMAGE_MAX_COMPONENTS];
511
543
        int code;
512
543
        int px;
513
543
        const ref *pp;
514
543
        int at_eof_count = 0;
515
543
        int total_used;
516
517
        /*
518
         * Do a first pass through the files to ensure that at least
519
         * one has data available in its buffer.
520
         */
521
522
1.08k
        for (px = 0, pp = ETOP_SOURCE(esp, 0); px < num_sources;
523
543
             ++px, pp -= 2
524
543
            ) {
525
543
            int num_aliases = pp[1].value.intval;
526
543
            stream *s = pp->value.pfile;
527
543
            int min_left;
528
543
            uint avail;
529
530
543
            if (num_aliases <= 0)
531
0
                num_aliases = ETOP_SOURCE(esp, -num_aliases)[1].value.intval;
532
1.06k
            while ((avail = sbufavailable(s)) <=
533
1.06k
                   (min_left = sbuf_min_left(s)) + num_aliases - 1) {
534
543
                int next = s->end_status;
535
536
543
                switch (next) {
537
526
                case 0:
538
526
                    s_process_read_buf(s);
539
526
                    continue;
540
16
                case EOFC:
541
16
                    at_eof_count++;
542
16
                    break; /* with no data available */
543
0
                case INTC:
544
0
                case CALLC:
545
0
                    return
546
0
                        s_handle_read_exception(i_ctx_p, next, pp,
547
0
                                                NULL, 0, image_file_continue);
548
1
                default:
549
                    /* case ERRC: */
550
1
                    return_error(gs_error_ioerror);
551
543
                }
552
16
                break;   /* for EOFC */
553
543
            }
554
            /*
555
             * Note that in the EOF case, we can get here with no data
556
             * available.
557
             */
558
542
            if (avail >= min_left)
559
542
                avail = (avail - min_left) / num_aliases; /* may be 0 */
560
542
            if (avail < min_avail)
561
542
                min_avail = avail;
562
542
            plane_data[px].data = sbufptr(s);
563
542
            plane_data[px].size = avail;
564
542
        }
565
566
        /*
567
         * Now pass the available buffered data to the image processor.
568
         * Even if there is no available data, we must call
569
         * gs_image_next_planes one more time to finish processing any
570
         * retained data.
571
         */
572
573
542
        {
574
542
            int pi;
575
542
            uint used[GS_IMAGE_MAX_COMPONENTS];
576
577
542
            code = gs_image_next_planes(penum, plane_data, used, false);
578
            /* Now that used has been set, update the streams. */
579
542
            total_used = 0;
580
1.08k
            for (pi = 0, pp = ETOP_SOURCE(esp, 0); pi < num_sources;
581
542
                 ++pi, pp -= 2 ) {
582
542
                (void)sbufskip(pp->value.pfile, used[pi]);
583
542
                total_used += used[pi];
584
542
            }
585
542
            if (code == gs_error_Remap_Color)
586
0
                return code;
587
542
        }
588
542
        if (at_eof_count >= num_sources || (at_eof_count && total_used == 0))
589
16
            code = 1;
590
542
        if (code) {
591
17
            int code1;
592
593
17
            esp = zimage_pop_estack(esp);
594
17
            code1 = image_cleanup(i_ctx_p);
595
17
            return (code < 0 ? code : code1 < 0 ? code1 : o_pop_estack);
596
17
        }
597
542
    }
598
18
}
599
600
/* Process data from an image with string data sources. */
601
/* This may still encounter a RemapColor callback. */
602
static int
603
image_string_continue(i_ctx_t *i_ctx_p)
604
9
{
605
9
    gs_image_enum *penum = r_ptr(esp, gs_image_enum);
606
9
    int num_sources = ETOP_NUM_SOURCES(esp)->value.intval;
607
9
    gs_const_string sources[GS_IMAGE_MAX_COMPONENTS];
608
9
    uint used[GS_IMAGE_MAX_COMPONENTS];
609
610
    /* Pass no data initially, to find out how much is retained. */
611
9
    memset(sources, 0, sizeof(sources[0]) * num_sources);
612
157k
    for (;;) {
613
157k
        int px;
614
157k
        int code = gs_image_next_planes(penum, sources, used, false);
615
616
157k
        if (code == gs_error_Remap_Color)
617
0
            return code;
618
157k
    stop_now:
619
157k
        if (code) {   /* Stop now. */
620
9
            esp -= NUM_PUSH(num_sources);
621
9
            image_cleanup(i_ctx_p);
622
9
            return (code < 0 ? code : o_pop_estack);
623
9
        }
624
314k
        for (px = 0; px < num_sources; ++px)
625
157k
            if (sources[px].size == 0) {
626
157k
                const ref *psrc = ETOP_SOURCE(esp, px);
627
157k
                uint size = r_size(psrc);
628
629
157k
                if (size == 0) {     /* empty source */
630
0
                    code = 1;
631
0
                    goto stop_now;
632
0
                }
633
157k
                sources[px].data = psrc->value.bytes;
634
157k
                sources[px].size = size;
635
157k
            }
636
157k
    }
637
9
}
638
639
/* Clean up after enumerating an image */
640
static int
641
image_cleanup(i_ctx_t *i_ctx_p)
642
488k
{
643
488k
    es_ptr ep_top = esp + NUM_PUSH(EBOT_NUM_SOURCES(esp)->value.intval);
644
488k
    gs_image_enum *penum = r_ptr(ep_top, gs_image_enum);
645
646
488k
    return gs_image_cleanup_and_free_enum(penum, igs);
647
488k
}
648
649
/* ------ Initialization procedure ------ */
650
651
const op_def zimage_op_defs[] =
652
{
653
    {"1.image1", zimage1},
654
    {"1.imagemask1", zimagemask1},
655
                /* Internal operators */
656
    {"1%image_proc_continue", image_proc_continue},
657
    {"0%image_file_continue", image_file_continue},
658
    {"0%image_string_continue", image_string_continue},
659
    op_def_end(0)
660
};