Coverage Report

Created: 2026-02-14 07:09

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gxclimag.c
Line
Count
Source
1
/* Copyright (C) 2001-2024 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Higher-level image operations for band lists */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "string_.h"    /* for strcmp */
21
#include "gx.h"
22
#include "gserrors.h"
23
#include "gscspace.h"
24
#include "gscdefs.h"            /* for image type table */
25
#include "gxarith.h"
26
#include "gxcspace.h"
27
#include "gxpcolor.h"
28
#include "gxdevice.h"
29
#include "gxdevmem.h"           /* must precede gxcldev.h */
30
#include "gxcldev.h"
31
#include "gxclpath.h"
32
#include "gxfmap.h"
33
#include "gxiparam.h"
34
#include "gxpath.h"
35
#include "stream.h"
36
#include "strimpl.h"            /* for sisparam.h */
37
#include "sisparam.h"
38
#include "gxcomp.h"
39
#include "gsserial.h"
40
#include "gxdhtserial.h"
41
#include "gsptype1.h"
42
#include "gsicc_manage.h"
43
#include "gsicc_cache.h"
44
#include "gxdevsop.h"
45
#include "gscindex.h"
46
#include "gsicc_cms.h"
47
#include "gximdecode.h"
48
49
extern_gx_image_type_table();
50
51
/* Define whether we should use high-level images. */
52
/* (See below for additional restrictions.) */
53
static const bool USE_HL_IMAGES = true;
54
55
/* Forward references */
56
static int cmd_put_set_data_x(gx_device_clist_writer * cldev,
57
                               gx_clist_state * pcls, int data_x);
58
static bool check_rect_for_trivial_clip(
59
    const gx_clip_path *pcpath,  /* May be NULL, clip to evaluate */
60
    int px, int py, int qx, int qy  /* corners of box to test */
61
);
62
63
static bool
64
palette_has_color(const gs_color_space *pcs, const gs_pixel_image_t * const pim)
65
0
{
66
0
    gs_color_space *pbcs = pcs->base_space;
67
0
    gs_color_space_index base_type = gs_color_space_get_index(pbcs);
68
0
    bool ((*is_neutral)(void*, int));
69
0
    int bps = pim->BitsPerComponent;
70
0
    int num_entries = 1 << bps;
71
0
    int k;
72
0
    byte psrc[4];
73
74
0
    switch(base_type) {
75
76
0
    case gs_color_space_index_DeviceGray:
77
0
    case gs_color_space_index_CIEA:
78
0
        return false;
79
0
        break;
80
81
0
    case gs_color_space_index_DeviceRGB:
82
0
    case gs_color_space_index_CIEABC:
83
0
    case gs_color_space_index_CIEDEF:
84
0
        is_neutral = &gsicc_mcm_monitor_rgb;
85
0
        break;
86
87
0
    case gs_color_space_index_DeviceCMYK:
88
0
    case gs_color_space_index_CIEDEFG:
89
0
        is_neutral = &gsicc_mcm_monitor_cmyk;
90
0
        break;
91
92
0
     case gs_color_space_index_DevicePixel:
93
0
     case gs_color_space_index_DeviceN:
94
0
     case gs_color_space_index_Separation:
95
0
     case gs_color_space_index_Indexed:
96
0
     case gs_color_space_index_Pattern:
97
0
        return true;
98
0
        break;
99
100
0
     case gs_color_space_index_ICC:
101
0
        switch(pbcs->cmm_icc_profile_data->data_cs) {
102
0
        case gsRGB:
103
0
            is_neutral = &gsicc_mcm_monitor_rgb;
104
0
            break;
105
106
0
        case gsCMYK:
107
0
            is_neutral = &gsicc_mcm_monitor_cmyk;
108
0
            break;
109
110
0
        case gsCIELAB:
111
0
            is_neutral = &gsicc_mcm_monitor_lab;
112
0
            break;
113
114
0
        default:
115
0
            return true;
116
0
        }
117
0
        break;
118
0
     default:
119
0
        return true;
120
0
    }
121
    /* Now go through the palette with the check color function */
122
0
    for (k = 0; k < num_entries; k++) {
123
0
        (void)gs_cspace_indexed_lookup_bytes(pcs, (float) k, psrc); /* this always returns 0 */
124
0
        if (!is_neutral(psrc, 1)) {
125
            /* Has color end this now */
126
0
            return true;
127
0
        }
128
0
    }
129
    /* Must not have color */
130
0
    return false;
131
0
}
132
133
134
/* ------ Driver procedures ------ */
135
136
int
137
clist_fill_mask(gx_device * dev,
138
                const byte * data, int data_x, int raster, gx_bitmap_id id,
139
                int rx, int ry, int rwidth, int rheight,
140
                const gx_drawing_color * pdcolor, int depth,
141
                gs_logical_operation_t lop, const gx_clip_path * pcpath)
142
23.4M
{
143
23.4M
    gx_device_clist_writer * const cdev =
144
23.4M
        &((gx_device_clist *)dev)->writer;
145
23.4M
    const byte *orig_data = data;       /* for writing tile */
146
23.4M
    int orig_data_x = data_x;   /* ditto */
147
23.4M
    int orig_x = rx;            /* ditto */
148
23.4M
    int orig_width = rwidth;    /* ditto */
149
23.4M
    int orig_height = rheight;  /* ditto */
150
23.4M
    int y0;
151
23.4M
    byte copy_op =
152
23.4M
        (depth > 1 ? cmd_op_copy_color_alpha :
153
23.4M
         cmd_op_copy_mono_planes);  /* Plane not needed here */
154
23.4M
    bool slow_rop =
155
23.4M
        cmd_slow_rop(dev, lop_know_S_0(lop), pdcolor) ||
156
23.4M
        cmd_slow_rop(dev, lop_know_S_1(lop), pdcolor);
157
23.4M
    cmd_rects_enum_t re;
158
159
    /* If depth > 1, this call will be translated to a copy_alpha call. */
160
    /* if the target device can't perform copy_alpha, exit now. */
161
23.4M
    if (depth > 1 && (cdev->disable_mask & clist_disable_copy_alpha) != 0)
162
0
        return_error(gs_error_unknownerror);
163
164
23.4M
    crop_copy(cdev, data, data_x, raster, id, rx, ry, rwidth, rheight);
165
23.4M
    if (rwidth <= 0 || rheight <= 0)
166
5.84M
        return 0;
167
17.5M
    y0 = ry;                    /* must do after fit_copy */
168
169
    /* If non-trivial clipping & complex clipping disabled, default */
170
    /* Also default for uncached bitmap or non-default lop; */
171
    /* We could handle more RasterOp cases here directly, but it */
172
    /* doesn't seem worth the trouble right now. */
173
    /* Lastly, the command list will translate calls with depth > 1 to */
174
    /* copy_alpha calls, so the device color must be pure */
175
17.5M
    if (((cdev->disable_mask & clist_disable_complex_clip) &&
176
0
         !check_rect_for_trivial_clip(pcpath, rx, ry, rx + rwidth, ry + rheight)) ||
177
17.5M
        gs_debug_c('`') || id == gx_no_bitmap_id || lop != lop_default ||
178
17.5M
        (depth > 1 && !color_writes_pure(pdcolor, lop))
179
17.5M
        )
180
69.4k
  copy:
181
69.4k
        return gx_default_fill_mask(dev, data, data_x, raster, id,
182
69.4k
                                    rx, ry, rwidth, rheight, pdcolor, depth,
183
69.4k
                                    lop, pcpath);
184
185
17.5M
    if (cmd_check_clip_path(cdev, pcpath))
186
65.3k
        cmd_clear_known(cdev, clip_path_known);
187
17.5M
    if (cdev->permanent_error < 0)
188
0
      return (cdev->permanent_error);
189
    /* If needed, update the trans_bbox */
190
17.5M
    if (cdev->pdf14_needed) {
191
5.59M
        gs_int_rect bbox;
192
193
5.59M
        bbox.p.x = rx;
194
5.59M
        bbox.q.x = rx + rwidth - 1;
195
5.59M
        bbox.p.y = ry;
196
5.59M
        bbox.q.y = ry + rheight - 1;
197
198
5.59M
        clist_update_trans_bbox(cdev, &bbox);
199
5.59M
    }
200
17.5M
    RECT_ENUM_INIT(re, ry, rheight);
201
25.9M
    do {
202
25.9M
        int code;
203
25.9M
        ulong offset_temp;
204
205
25.9M
        RECT_STEP_INIT(re);
206
25.9M
        code = cmd_update_lop(cdev, re.pcls, lop);
207
25.9M
        if (code < 0)
208
0
            return code;
209
25.9M
        if (depth > 1 && !re.pcls->color_is_alpha) {
210
0
            byte *dp;
211
212
0
            code = set_cmd_put_op(&dp, cdev, re.pcls, cmd_opv_set_copy_alpha, 1);
213
0
            if (code < 0)
214
0
                return code;
215
0
            re.pcls->color_is_alpha = 1;
216
0
        }
217
25.9M
        code = cmd_do_write_unknown(cdev, re.pcls, clip_path_known);
218
25.9M
        if (code >= 0)
219
25.9M
            code = cmd_do_enable_clip(cdev, re.pcls, pcpath != NULL);
220
25.9M
        if (code < 0)
221
0
            return code;
222
25.9M
        code = cmd_put_drawing_color(cdev, re.pcls, pdcolor, &re,
223
25.9M
                                     devn_not_tile_fill);
224
25.9M
        if (code == gs_error_unregistered)
225
0
            return code;
226
25.9M
        if (depth > 1 && code >= 0)
227
0
            code = cmd_set_color1(cdev, re.pcls, pdcolor->colors.pure);
228
25.9M
        if (code < 0)
229
308
            return code;
230
25.9M
        re.pcls->color_usage.slow_rop |= slow_rop;
231
        /* Put it in the cache if possible. */
232
25.9M
        if (!cls_has_tile_id(cdev, re.pcls, id, offset_temp)) {
233
24.7M
            gx_strip_bitmap tile;
234
235
24.7M
            tile.data = (byte *) orig_data;     /* actually const */
236
24.7M
            tile.raster = raster;
237
24.7M
            tile.size.x = tile.rep_width = orig_width;
238
24.7M
            tile.size.y = tile.rep_height = orig_height;
239
24.7M
            tile.rep_shift = tile.shift = 0;
240
24.7M
            tile.id = id;
241
24.7M
            tile.num_planes = 1;
242
24.7M
            code = clist_change_bits(cdev, re.pcls, &tile, depth);
243
24.7M
            if (code < 0) {
244
                /* Something went wrong; just copy the bits. */
245
49
                goto copy;
246
49
            }
247
24.7M
        }
248
25.9M
        {
249
25.9M
            gx_cmd_rect rect;
250
25.9M
            int rsize;
251
25.9M
            byte op = copy_op + cmd_copy_use_tile;
252
253
            /* Output a command to copy the entire character. */
254
            /* It will be truncated properly per band. */
255
25.9M
            rect.x = orig_x, rect.y = y0;
256
25.9M
            rect.width = orig_width, rect.height = re.yend - y0;
257
25.9M
            rsize = 1 + cmd_sizexy(rect);
258
25.9M
            if (depth == 1) rsize = rsize + cmd_sizew(0);  /* need planar_height 0 setting */
259
25.9M
            code = (orig_data_x ?
260
25.9M
                    cmd_put_set_data_x(cdev, re.pcls, orig_data_x) : 0);
261
25.9M
            if (code >= 0) {
262
25.9M
                byte *dp;
263
264
25.9M
                code = set_cmd_put_op(&dp, cdev, re.pcls, op, rsize);
265
                /*
266
                 * The following conditional is unnecessary: the two
267
                 * statements inside it should go outside the
268
                 * HANDLE_RECT.  They are here solely to pacify
269
                 * stupid compilers that don't understand that dp
270
                 * will always be set if control gets past the
271
                 * HANDLE_RECT.
272
                 */
273
25.9M
                if (code >= 0) {
274
25.9M
                    dp++;
275
25.9M
                    if (depth == 1) {
276
25.9M
                        cmd_putw(0, &dp);
277
25.9M
                    }
278
25.9M
                    cmd_putxy(rect, &dp);
279
25.9M
                }
280
25.9M
            }
281
25.9M
            if (code < 0)
282
0
                return code;
283
25.9M
            re.pcls->rect = rect;
284
25.9M
        }
285
25.9M
    } while ((re.y += re.height) < re.yend);
286
17.5M
    return 0;
287
17.5M
}
288
289
/* ------ Bitmap image driver procedures ------ */
290
291
/* Define the structure for keeping track of progress through an image. */
292
typedef struct clist_image_enum_s {
293
    gx_image_enum_common;
294
    /* Arguments of begin_image */
295
    gs_pixel_image_t image;     /* only uses Width, Height, Interpolate */
296
    gx_drawing_color dcolor;    /* only pure right now */
297
    gs_int_rect rect;
298
    const gx_clip_path *pcpath;
299
    /* Set at creation time */
300
    gs_image_format_t format;
301
    gs_int_point support;       /* extra source pixels for interpolation */
302
    int bits_per_plane;         /* bits per pixel per plane */
303
    gs_matrix matrix;           /* image space -> device space */
304
    bool uses_color;
305
    bool masked;
306
    clist_color_space_t color_space;
307
    int ymin, ymax;
308
    gx_color_usage_t color_usage;
309
    /* begin_image command prepared & ready to output */
310
    /****** SIZE COMPUTATION IS WRONG, TIED TO gximage.c, gsmatrix.c ******/
311
    byte begin_image_command[3 +
312
                            /* Width, Height */
313
                            2 * cmd_sizew_max +
314
                            /* ImageMatrix */
315
                            1 + 6 * sizeof(float) +
316
                            /* Decode */
317
                            (GS_IMAGE_MAX_COMPONENTS + 3) / 4 +
318
                              GS_IMAGE_MAX_COMPONENTS * 2 * sizeof(float) +
319
                            /* MaskColors */
320
                            GS_IMAGE_MAX_COMPONENTS * cmd_sizew_max +
321
                            /* rect */
322
                            4 * cmd_sizew_max];
323
    int begin_image_command_length;
324
    /* Updated dynamically */
325
    int y;
326
    bool color_map_is_known;
327
    bool monitor_color;
328
    image_decode_t decode;
329
    byte *buffer;  /* needed for unpacking during monitoring */
330
} clist_image_enum;
331
gs_private_st_suffix_add3(st_clist_image_enum, clist_image_enum,
332
                          "clist_image_enum", clist_image_enum_enum_ptrs,
333
                          clist_image_enum_reloc_ptrs, st_gx_image_enum_common,
334
                          pcpath, color_space.space, buffer);
335
336
static image_enum_proc_plane_data(clist_image_plane_data);
337
static image_enum_proc_end_image(clist_image_end_image);
338
static const gx_image_enum_procs_t clist_image_enum_procs =
339
{
340
    clist_image_plane_data, clist_image_end_image
341
};
342
343
/* data_size is number of bytes per component, width is number of pixels in the row. */
344
static bool
345
row_has_color(byte *data_ptr, clist_image_enum *pie_c, int data_size, int width)
346
0
{
347
0
    clist_color_space_t pclcs = pie_c->color_space;
348
0
    bool ((*is_neutral)(void*, int));
349
0
    int step_size = data_size * pie_c->decode.spp;
350
0
    byte *ptr;
351
0
    bool is_mono;
352
0
    int k;
353
354
0
    if (pclcs.icc_info.is_lab) {
355
0
        is_neutral = &gsicc_mcm_monitor_lab;
356
0
    } else {
357
0
        switch(pclcs.icc_info.icc_num_components) {
358
0
        case 3:
359
0
            is_neutral = &gsicc_mcm_monitor_rgb;
360
0
            break;
361
0
        case 4:
362
0
            is_neutral = &gsicc_mcm_monitor_cmyk;
363
0
            break;
364
0
        default:
365
0
            return true;
366
0
        }
367
0
    }
368
    /* Now go through the raster line and determine if we have any color. */
369
0
    ptr = data_ptr;
370
0
    for (k = 0; k < width; k++) {
371
0
        is_mono = is_neutral(ptr, data_size);
372
0
        if (!is_mono) {
373
0
            return true;
374
0
        }
375
0
        ptr += step_size;
376
0
    }
377
0
    return false;
378
0
}
379
380
/* Forward declarations */
381
static bool image_band_box(gx_device * dev, const clist_image_enum * pie,
382
                            int y, int h, gs_int_rect * pbox);
383
static int begin_image_command(byte *buf, uint buf_size,
384
                                const gs_image_common_t *pic);
385
static int cmd_image_plane_data(gx_device_clist_writer * cldev,
386
                                 gx_clist_state * pcls,
387
                                 const gx_image_plane_t * planes,
388
                                 const gx_image_enum_common_t * pie,
389
                                 uint bytes_per_plane,
390
                                 const uint * offsets, int dx, int h);
391
static int cmd_image_plane_data_mon(gx_device_clist_writer * cldev,
392
                                 gx_clist_state * pcls,
393
                                 const gx_image_plane_t * planes,
394
                                 const gx_image_enum_common_t * pie,
395
                                 uint bytes_per_plane,
396
                                 const uint * offsets, int dx, int h,
397
                                 bool *found_color);
398
static uint clist_image_unknowns(gx_device *dev,
399
                                  const clist_image_enum *pie);
400
static int write_image_end_all(gx_device *dev,
401
                                const clist_image_enum *pie);
402
403
/*
404
 * Since currently we are limited to writing a single subrectangle of the
405
 * image for each band, images that are rotated by angles other than
406
 * multiples of 90 degrees may wind up writing many copies of the data.
407
 * Eventually we will fix this by breaking up the image into multiple
408
 * subrectangles, but for now, don't use the high-level approach if it would
409
 * cause the data to explode because of this.
410
 */
411
static bool
412
image_matrix_ok_to_band(const gs_matrix * pmat)
413
686k
{
414
686k
    double t;
415
    /* Detecting a downscale when it's really noscale upsets some
416
     * customers code, so we add a fudge factor in here. This may
417
     * cause us to allow the use of high level images for some downscales
418
     * that are *nearly* noscales, but our code will cope with that. */
419
686k
    float one = (float)(1.0 - 1e-5);
420
421
    /* Don't band if the matrix is (nearly) singular. */
422
686k
    if (fabs(pmat->xx * pmat->yy - pmat->xy * pmat->yx) < 0.001)
423
10.6k
        return false;
424
    /* If it's portrait, then we encode it if not a downscale */
425
676k
    if (is_xxyy(pmat))
426
355k
        return (fabs(pmat->xx) >= one) && (fabs(pmat->yy) >= one);
427
    /* If it's landscape, then we encode it if not a downscale */
428
320k
    if (is_xyyx(pmat))
429
124k
        return (fabs(pmat->xy) >= one) && (fabs(pmat->yx) >= one);
430
    /* Skewed, so do more expensive downscale test */
431
195k
    if ((pmat->xx * pmat->xx + pmat->xy * pmat->xy < one) ||
432
173k
        (pmat->yx * pmat->yx + pmat->yy * pmat->yy < one))
433
23.0k
        return false;
434
    /* Otherwise only encode it if it doesn't rotate too much */
435
172k
    t = (fabs(pmat->xx) + fabs(pmat->yy)) /
436
172k
        (fabs(pmat->xy) + fabs(pmat->yx));
437
172k
    return (t < 0.2 || t > 5);
438
195k
}
439
440
/* Start processing an image. */
441
int
442
clist_begin_typed_image(gx_device * dev, const gs_gstate * pgs,
443
                        const gs_matrix * pmat, const gs_image_common_t * pic,
444
                        const gs_int_rect * prect, const gx_drawing_color * pdcolor,
445
                        const gx_clip_path * pcpath, gs_memory_t * mem,
446
                        gx_image_enum_common_t ** pinfo)
447
687k
{
448
687k
    const gs_pixel_image_t * const pim = (const gs_pixel_image_t *)pic;
449
687k
    gx_device_clist_writer * const cdev =
450
687k
        &((gx_device_clist *)dev)->writer;
451
687k
    clist_image_enum *pie = 0;
452
687k
    int base_index;
453
687k
    bool indexed;
454
687k
    bool masked = false;
455
687k
    bool has_alpha = false;
456
687k
    int num_components;
457
687k
    int bits_per_pixel;
458
687k
    bool uses_color;
459
687k
    bool varying_depths = false;
460
687k
    gs_matrix mat;
461
687k
    gs_rect sbox, dbox;
462
687k
    gs_image_format_t format;
463
687k
    gx_color_usage_bits color_usage = 0;
464
687k
    int code;
465
687k
    bool mask_use_hl;
466
687k
    clist_icc_color_t icc_zero_init = { 0 };
467
687k
    cmm_profile_t *src_profile;
468
687k
    cmm_srcgtag_profile_t *srcgtag_profile;
469
687k
    gsicc_rendering_intents_t renderingintent;
470
687k
    gsicc_blackptcomp_t blackptcomp;
471
687k
    gsicc_rendering_param_t stored_rendering_cond;
472
687k
    gsicc_rendering_param_t dev_render_cond;
473
687k
    gs_gstate *pgs_nonconst = (gs_gstate*) pgs;
474
687k
    bool intent_changed = false;
475
687k
    bool bp_changed = false;
476
687k
    cmm_dev_profile_t *dev_profile = NULL;
477
687k
    cmm_profile_t *gs_output_profile;
478
687k
    bool is_planar_dev = !!dev->num_planar_planes;
479
687k
    bool render_is_valid;
480
687k
    int csi;
481
687k
    gx_clip_path *lpcpath = NULL;
482
483
687k
    if (pgs == NULL) {
484
        /* At this time, this cannot/should not ever happen,
485
           so it's fatal if it does.
486
         */
487
0
        return_error(gs_error_Fatal);
488
0
    }
489
687k
    renderingintent = pgs->renderingintent;
490
687k
    blackptcomp = pgs->blackptcomp;
491
492
    /* We can only handle a limited set of image types. */
493
687k
    switch ((gs_debug_c('`') ? -1 : pic->type->index)) {
494
687k
    case 1:
495
687k
        masked = ((const gs_image1_t *)pim)->ImageMask;
496
687k
        has_alpha = ((const gs_image1_t *)pim)->Alpha != 0;
497
        /* fall through */
498
687k
    case 4:
499
687k
        if (pmat == 0)
500
687k
            break;
501
282
    default:
502
282
        goto use_default;
503
687k
    }
504
687k
    format = pim->format;
505
    /* See above for why we allocate the enumerator as immovable. */
506
687k
    pie = gs_alloc_struct_immovable(mem, clist_image_enum,
507
687k
                                    &st_clist_image_enum,
508
687k
                                    "clist_begin_typed_image");
509
687k
    if (pie == 0)
510
0
        return_error(gs_error_VMerror);
511
687k
#ifdef PACIFY_VALGRIND
512
    /* The following memset is required to avoid a valgrind warning
513
     * in:
514
     *   gs -I./gs/lib -sOutputFile=out.pgm -dMaxBitmap=10000
515
     *      -sDEVICE=pgmraw -r300 -Z: -sDEFAULTPAPERSIZE=letter
516
     *      -dNOPAUSE -dBATCH -K2000000 -dClusterJob -dJOBSERVER
517
     *      tests_private/ps/ps3cet/11-14.PS
518
     * Setting the individual elements of the structure directly is
519
     * not enough, which leads me to believe that we are writing the
520
     * entire struct out, padding and all.
521
     */
522
687k
    memset(&pie->color_space.icc_info, 0, sizeof(pie->color_space.icc_info));
523
687k
#endif
524
687k
    pie->memory = mem;
525
687k
    pie->buffer = NULL;
526
687k
    pie->masked = masked;
527
687k
    *pinfo = (gx_image_enum_common_t *) pie;
528
    /* num_planes and plane_depths[] are set later, */
529
    /* by gx_image_enum_common_init. */
530
687k
    if (masked) {
531
621k
        base_index = gs_color_space_index_DeviceGray;   /* arbitrary */
532
621k
        indexed = false;
533
621k
        num_components = 1;
534
621k
        uses_color = true;
535
        /* cmd_put_drawing_color handles color_usage */
536
621k
    } else {
537
65.3k
        const gs_color_space *pcs = pim->ColorSpace;
538
539
65.3k
        base_index = gs_color_space_get_index(pcs);
540
65.3k
        if (base_index == gs_color_space_index_Indexed) {
541
7.60k
            const gs_color_space *pbcs =
542
7.60k
                gs_color_space_indexed_base_space(pcs);
543
544
7.60k
            indexed = true;
545
7.60k
            base_index = gs_color_space_get_index(pbcs);
546
7.60k
            num_components = 1;
547
57.7k
        } else {
548
57.7k
            indexed = false;
549
57.7k
            num_components = gs_color_space_num_components(pcs);
550
57.7k
        }
551
65.3k
        uses_color = pim->CombineWithColor &&
552
0
                    (rop3_uses_T(pgs->log_op) || rop3_uses_S(pgs->log_op));
553
65.3k
    }
554
687k
    code = gx_image_enum_common_init((gx_image_enum_common_t *) pie,
555
687k
                                     (const gs_data_image_t *) pim,
556
687k
                                     &clist_image_enum_procs, dev,
557
687k
                                     num_components, format);
558
687k
    {
559
687k
        int i;
560
561
687k
        for (i = 1; i < pie->num_planes; ++i)
562
4
            varying_depths |= pie->plane_depths[i] != pie->plane_depths[0];
563
687k
    }
564
565
    /* Now, check to see if we can't handle this as a high level image. */
566
687k
    if (code < 0)
567
0
        goto use_default;
568
687k
    if (!USE_HL_IMAGES) /* Always use the default. */
569
0
        goto use_default;
570
687k
    if (cdev->disable_mask & clist_disable_hl_image)
571
0
        goto use_default;
572
687k
    if (cdev->image_enum_id != gs_no_id) /* Can't handle nested images */
573
0
        goto use_default;
574
687k
    if (base_index > gs_color_space_index_DeviceCMYK &&
575
65.3k
        base_index != gs_color_space_index_ICC)
576
        /****** Can only handle Gray, RGB, CMYK and ICC ******/
577
163
        goto use_default;
578
686k
    if (has_alpha)
579
        /****** CAN'T HANDLE IMAGES WITH ALPHA YET ******/
580
0
        goto use_default;
581
686k
    if (varying_depths)
582
        /****** CAN'T HANDLE IMAGES WITH IRREGULAR DEPTHS ******/
583
0
        goto use_default;
584
686k
    if ((code = gs_matrix_invert(&pim->ImageMatrix, &mat)) < 0 ||
585
686k
        (code = gs_matrix_multiply(&mat, &ctm_only(pgs), &mat)) < 0 ||
586
686k
        !(cdev->disable_mask & clist_disable_nonrect_hl_image ?
587
0
          (is_xxyy(&mat) || is_xyyx(&mat)) :
588
686k
          image_matrix_ok_to_band(&mat)))
589
93.3k
        goto use_default;
590
591
593k
    mask_use_hl =
592
593k
        masked && ( gx_dc_is_pattern1_color(pdcolor) || gx_dc_is_pure(pdcolor) );
593
593k
    if (!mask_use_hl && uses_color && !gx_dc_is_pure(pdcolor) &&
594
143k
             !gx_dc_is_pattern1_color_clist_based(pdcolor))
595
        /* Only add in masks that are pure or pattern or pattern trans types */
596
143k
        goto use_default;
597
598
    /* We've passed the tests; code it as a high level image */
599
449k
    {
600
449k
        int bytes_per_plane, bytes_per_row;
601
602
449k
        bits_per_pixel = pim->BitsPerComponent * num_components;
603
449k
        pie->decode.bps = bits_per_pixel/num_components;
604
449k
        pie->decode.spp = num_components;
605
449k
        pie->image = *pim;
606
449k
        pie->dcolor = *pdcolor;
607
449k
        if (prect)
608
0
            pie->rect = *prect;
609
449k
        else {
610
449k
            pie->rect.p.x = 0, pie->rect.p.y = 0;
611
449k
            pie->rect.q.x = pim->Width, pie->rect.q.y = pim->Height;
612
449k
        }
613
449k
        pie->pgs = pgs;
614
449k
        pie->pgs_level = pgs->level;
615
616
449k
        if (pcpath) {
617
449k
            lpcpath = gx_cpath_alloc(mem, "clist_begin_typed_image(lpcpath)");
618
449k
            if (!lpcpath) {
619
0
                goto use_default;
620
0
            }
621
449k
            code = gx_cpath_copy(pcpath, lpcpath);
622
449k
            if (code < 0) {
623
0
                goto use_default;
624
0
            }
625
449k
        }
626
449k
        pie->pcpath = lpcpath;
627
628
449k
        pie->buffer = NULL;
629
449k
        pie->format = format;
630
449k
        pie->bits_per_plane = bits_per_pixel / pie->num_planes;
631
449k
        pie->matrix = mat;
632
449k
        pie->uses_color = uses_color;
633
449k
        if (masked) {
634
399k
            pie->color_space.byte1 = 0;  /* arbitrary */
635
399k
            pie->color_space.icc_info = icc_zero_init;
636
399k
            pie->color_space.space = 0;
637
399k
            pie->color_space.id = gs_no_id;
638
399k
        } else {
639
            /* Check for presence of ICC profiles in standard Device Color Spaces
640
               This can happen if a default space was initialized. It should
641
               typically have assigned to it one of the default ICC profiles */
642
50.5k
            if (indexed) {
643
6.13k
                if (pim->ColorSpace->base_space->cmm_icc_profile_data) {
644
6.13k
                    base_index = gs_color_space_index_ICC;
645
6.13k
                }
646
44.3k
            } else {
647
44.3k
                if (pim->ColorSpace->cmm_icc_profile_data) {
648
44.3k
                    base_index = gs_color_space_index_ICC;
649
44.3k
                }
650
44.3k
            }
651
50.5k
            pie->color_space.byte1 = (base_index << 4) |
652
50.5k
                (indexed ? (pim->ColorSpace->params.indexed.use_proc ? 12 : 8) : 0);
653
50.5k
            pie->color_space.id =
654
50.5k
                (pie->color_space.space = pim->ColorSpace)->id;
655
            /* Get the hash code of the ICC space */
656
50.5k
            if ( base_index == gs_color_space_index_ICC ) {
657
50.5k
                code = dev_proc(dev, get_profile)(dev,  &dev_profile);
658
50.5k
                gsicc_extract_profile(dev->graphics_type_tag, dev_profile,
659
50.5k
                                      &(gs_output_profile),
660
50.5k
                                      (&(dev_render_cond)));
661
50.5k
                if (!indexed) {
662
44.3k
                    src_profile = pim->ColorSpace->cmm_icc_profile_data;
663
44.3k
                } else {
664
6.13k
                    src_profile =
665
6.13k
                        pim->ColorSpace->base_space->cmm_icc_profile_data;
666
6.13k
                }
667
                /* Initialize the rendering conditions to what we currently
668
                   have before we may blow them away with what is set in
669
                   the srcgtag information */
670
50.5k
                stored_rendering_cond.graphics_type_tag = GS_IMAGE_TAG;
671
50.5k
                stored_rendering_cond.override_icc =
672
50.5k
                                dev_render_cond.override_icc;
673
50.5k
                stored_rendering_cond.preserve_black =
674
50.5k
                                dev_render_cond.preserve_black;
675
50.5k
                stored_rendering_cond.cmm = gsCMM_DEFAULT;  /* Unless spec. below */
676
                /* We may need to do some substitions for the source profile */
677
50.5k
                if (pgs->icc_manager->srcgtag_profile != NULL) {
678
0
                    srcgtag_profile = pgs->icc_manager->srcgtag_profile;
679
0
                    if (src_profile->data_cs == gsRGB) {
680
0
                        if (srcgtag_profile->rgb_profiles[gsSRC_IMAGPRO] != NULL) {
681
                            /* We only do this replacement depending upon the
682
                               ICC override setting for this object and the
683
                               original color space of this object */
684
0
                            csi = gsicc_get_default_type(src_profile);
685
0
                            if (srcgtag_profile->rgb_rend_cond[gsSRC_IMAGPRO].override_icc ||
686
0
                                csi == gs_color_space_index_DeviceRGB) {
687
0
                                src_profile =
688
0
                                    srcgtag_profile->rgb_profiles[gsSRC_IMAGPRO];
689
0
                                pgs_nonconst->renderingintent =
690
0
                                    srcgtag_profile->rgb_rend_cond[gsSRC_IMAGPRO].rendering_intent;
691
0
                                pgs_nonconst->blackptcomp =
692
0
                                    srcgtag_profile->rgb_rend_cond[gsSRC_IMAGPRO].black_point_comp;
693
0
                                stored_rendering_cond =
694
0
                                    srcgtag_profile->rgb_rend_cond[gsSRC_IMAGPRO];
695
0
                            }
696
0
                        } else {
697
                            /* A possible do not use CM case */
698
0
                            stored_rendering_cond.cmm =
699
0
                                srcgtag_profile->rgb_rend_cond[gsSRC_IMAGPRO].cmm;
700
0
                        }
701
0
                    } else if (src_profile->data_cs == gsCMYK) {
702
0
                        if (srcgtag_profile->cmyk_profiles[gsSRC_IMAGPRO] != NULL) {
703
0
                            csi = gsicc_get_default_type(src_profile);
704
0
                            if (srcgtag_profile->cmyk_rend_cond[gsSRC_IMAGPRO].override_icc ||
705
0
                                csi == gs_color_space_index_DeviceCMYK) {
706
0
                                src_profile =
707
0
                                    srcgtag_profile->cmyk_profiles[gsSRC_IMAGPRO];
708
0
                                pgs_nonconst->renderingintent =
709
0
                                    srcgtag_profile->cmyk_rend_cond[gsSRC_IMAGPRO].rendering_intent;
710
0
                                pgs_nonconst->blackptcomp =
711
0
                                    srcgtag_profile->cmyk_rend_cond[gsSRC_IMAGPRO].black_point_comp;
712
0
                                stored_rendering_cond =
713
0
                                    srcgtag_profile->cmyk_rend_cond[gsSRC_IMAGPRO];
714
0
                            }
715
0
                        } else {
716
                            /* A possible do not use CM case */
717
0
                            stored_rendering_cond.cmm =
718
0
                                srcgtag_profile->cmyk_rend_cond[gsSRC_IMAGPRO].cmm;
719
0
                        }
720
0
                    }
721
0
                }
722
                /* If the device RI is set and we are not  setting the RI from
723
                   the source structure, then override any RI specified in the
724
                   document by the RI specified in the device */
725
50.5k
                if (!(pgs_nonconst->renderingintent & gsRI_OVERRIDE)) {  /* was set by source? */
726
                    /* No it was not.  See if we should override with the
727
                       device setting */
728
50.5k
                    if (dev_render_cond.rendering_intent != gsRINOTSPECIFIED) {
729
0
                        pgs_nonconst->renderingintent =
730
0
                                        dev_render_cond.rendering_intent;
731
0
                        }
732
50.5k
                }
733
                /* We have a similar issue to deal with with respect to the
734
                   black point.  */
735
50.5k
                if (!(pgs_nonconst->blackptcomp & gsBP_OVERRIDE)) {
736
50.5k
                    if (dev_render_cond.black_point_comp != gsBPNOTSPECIFIED) {
737
0
                        pgs_nonconst->blackptcomp =
738
0
                                            dev_render_cond.black_point_comp;
739
0
                    }
740
50.5k
                }
741
50.5k
                if (renderingintent != pgs_nonconst->renderingintent)
742
0
                    intent_changed = true;
743
50.5k
                if (blackptcomp != pgs_nonconst->blackptcomp)
744
0
                    bp_changed = true;
745
                /* Set for the rendering param structure also */
746
50.5k
                stored_rendering_cond.rendering_intent =
747
50.5k
                                                pgs_nonconst->renderingintent;
748
50.5k
                stored_rendering_cond.black_point_comp =
749
50.5k
                                                pgs_nonconst->blackptcomp;
750
50.5k
                stored_rendering_cond.graphics_type_tag = GS_IMAGE_TAG;
751
50.5k
                if (!(src_profile->hash_is_valid)) {
752
47
                    int64_t hash;
753
47
                    gsicc_get_icc_buff_hash(src_profile->buffer, &hash,
754
47
                                            src_profile->buffer_size);
755
47
                    src_profile->hashcode = hash;
756
47
                    src_profile->hash_is_valid = true;
757
47
                }
758
50.5k
                pie->color_space.icc_info.icc_hash = src_profile->hashcode;
759
50.5k
                pie->color_space.icc_info.icc_num_components =
760
50.5k
                    src_profile->num_comps;
761
50.5k
                pie->color_space.icc_info.is_lab = src_profile->islab;
762
50.5k
                pie->color_space.icc_info.default_match = src_profile->default_match;
763
50.5k
                pie->color_space.icc_info.data_cs = src_profile->data_cs;
764
50.5k
                src_profile->rend_cond = stored_rendering_cond;
765
50.5k
                render_is_valid = src_profile->rend_is_valid;
766
50.5k
                src_profile->rend_is_valid = true;
767
50.5k
                clist_icc_addentry(cdev, src_profile->hashcode, src_profile);
768
50.5k
                src_profile->rend_is_valid = render_is_valid;
769
50.5k
            } else {
770
0
                pie->color_space.icc_info = icc_zero_init;
771
0
            }
772
50.5k
        }
773
449k
        pie->y = pie->rect.p.y;
774
        /* Image row has to fit in cmd writer's buffer */
775
449k
        bytes_per_plane =
776
449k
            (pim->Width * pie->bits_per_plane + 7) >> 3;
777
449k
        bytes_per_row = bytes_per_plane * pie->num_planes;
778
449k
        bytes_per_row = max(bytes_per_row, 1);
779
449k
        if (cmd_largest_size + bytes_per_row > cdev->cend - cdev->cbuf)
780
0
            goto use_default;
781
449k
    }
782
449k
    if (pim->Interpolate) {
783
0
        pie->support.x = pie->support.y = MAX_ISCALE_SUPPORT + 1;
784
449k
    } else {
785
449k
        pie->support.x = pie->support.y = 0;
786
449k
    }
787
449k
    sbox.p.x = pie->rect.p.x - pie->support.x;
788
449k
    sbox.p.y = pie->rect.p.y - pie->support.y;
789
449k
    sbox.q.x = pie->rect.q.x + pie->support.x;
790
449k
    sbox.q.y = pie->rect.q.y + pie->support.y;
791
449k
    gs_bbox_transform(&sbox, &mat, &dbox);
792
793
449k
    if (cdev->disable_mask & clist_disable_complex_clip)
794
0
        if (!check_rect_for_trivial_clip(lpcpath,
795
0
                                (int)floor(dbox.p.x), (int)floor(dbox.p.y),
796
0
                                (int)ceil(dbox.q.x), (int)ceil(dbox.q.y)))
797
0
            goto use_default;
798
799
    /* If we are going out to a halftone device and the size of the stored
800
       image at device resolution and color space is going to be smaller,
801
       go ahead and do the default handler. This occurs only for planar
802
       devices where if we prerender we will end up doing the fast theshold
803
       halftone and going out as copy_planes commands into the clist.
804
       There is already a test above with regard to the posture so that
805
       we are only doing portrait or landscape cases if we are here.  Only
806
       question is penum->image_parent_type == gs_image_type1 */
807
449k
    if (dev_profile == NULL) {
808
399k
        gsicc_rendering_param_t temp_render_cond;
809
399k
        code = dev_proc(dev, get_profile)(dev,  &dev_profile);
810
399k
        if (code < 0)
811
0
            return code;
812
399k
        gsicc_extract_profile(dev->graphics_type_tag, dev_profile,
813
399k
                                              &(gs_output_profile),
814
399k
                                              &(temp_render_cond));
815
399k
    }
816
    /* Decide if we need to do any monitoring of the colors.  Note that multiple source
817
       (planes) is treated as color */
818
449k
    pie->decode.unpack = NULL;
819
449k
    if (dev_profile->pageneutralcolor && pie->color_space.icc_info.data_cs != gsGRAY) {
820
        /* If it is an index image, then check the pallete only */
821
0
        if (!indexed) {
822
0
            pie->monitor_color = true;
823
            /* Set up the unpacking proc for monitoring */
824
0
            get_unpack_proc((gx_image_enum_common_t*) pie, &(pie->decode),
825
0
                             pim->format, pim->Decode);
826
0
            get_map(&(pie->decode), pim->format, pim->Decode);
827
0
            if (pie->decode.unpack == NULL) {
828
                /* If we cant unpack, then end monitoring now. Treat as has color */
829
0
                dev_profile->pageneutralcolor = false;
830
0
                code = gsicc_mcm_end_monitor(pgs->icc_link_cache, dev);
831
0
                if (code < 0)
832
0
                    return code;
833
0
            } else {
834
                /* We need to allocate the buffer for unpacking during monitoring.
835
                    This is mainly for the 12bit case */
836
0
                int bsize = ((pie->decode.bps > 8 ? (pim->Width) * 2 : pim->Width) + 15) * num_components;
837
0
                pie->buffer = gs_alloc_bytes(mem, bsize, "image buffer");
838
0
                if (pie->buffer == 0) {
839
0
                    gs_free_object(mem, pie, "clist_begin_typed_image");
840
0
                    *pinfo = NULL;
841
0
                    return_error(gs_error_VMerror);
842
0
                }
843
0
            }
844
0
        } else {
845
0
            pie->monitor_color = false;
846
            /* Check the Palette here */
847
0
            if (palette_has_color(pim->ColorSpace, pim)) {
848
                /* Has color.  We are done monitoring */
849
0
                dev_profile->pageneutralcolor = false;
850
0
                code = gsicc_mcm_end_monitor(pgs->icc_link_cache, dev);
851
0
                if (code < 0)
852
0
                    return code;
853
0
            }
854
0
        }
855
449k
    } else {
856
449k
        pie->monitor_color = false;
857
449k
    }
858
449k
    if (gx_device_must_halftone(dev) && pim->BitsPerComponent == 8 && !masked &&
859
9.63k
        (dev->color_info.num_components == 1 || is_planar_dev) &&
860
4.57k
        dev_profile->prebandthreshold) {
861
21
        int dev_width = (int)(ceil(dbox.q.x) - floor(dbox.p.x));
862
21
        int dev_height = (int)(ceil(dbox.q.y) - floor(dbox.p.y));
863
864
21
        int src_size = pim->Height *
865
21
                       bitmap_raster(pim->Width * pim->BitsPerComponent *
866
21
                                     num_components);
867
21
        int des_size = dev_height * bitmap_raster(dev_width *
868
21
                                                  dev->color_info.depth);
869
21
        if (src_size > des_size)
870
1
            goto use_default;
871
21
    }
872
    /* Create the begin_image command. */
873
449k
    if ((pie->begin_image_command_length =
874
449k
         begin_image_command(pie->begin_image_command,
875
449k
                             sizeof(pie->begin_image_command), pic)) < 0)
876
1
        goto use_default;
877
449k
    if (!masked) {
878
        /*
879
         * Calculate (conservatively) the set of colors that this image
880
         * might generate.  For single-component images we can sample
881
         * this. We generate all the possible colors now; otherwise,
882
         * we assume that any color might be generated.  It is possible
883
         * to do better than this, but we won't bother unless there's
884
         * evidence that it's worthwhile.
885
         */
886
50.5k
        gx_color_usage_bits all = gx_color_usage_all(cdev);
887
888
50.5k
        if (num_components > 1)
889
24.9k
            color_usage = all;
890
25.5k
        else {
891
25.5k
            const gs_color_space *pcs = pim->ColorSpace;
892
25.5k
            cs_proc_remap_color((*remap_color)) = pcs->type->remap_color;
893
25.5k
            gs_client_color cc;
894
25.5k
            gx_drawing_color dcolor;
895
25.5k
            int i;
896
25.5k
            int max_value = indexed ? pcs->params.indexed.hival : 1;
897
898
616k
            for (i = 0; i <= max_value; ++i) {
899
                /* Enumerate the indexed colors, or just Black (DeviceGray = 0) */
900
590k
                cc.paint.values[0] = (double)i;
901
590k
                code = remap_color(&cc, pcs, &dcolor, pgs, dev,
902
590k
                            gs_color_select_source);
903
590k
                if (code < 0)
904
0
                    break;
905
590k
                color_usage |= cmd_drawing_color_usage(cdev, &dcolor);
906
590k
            }
907
25.5k
            if (code < 0)
908
0
                goto use_default;
909
25.5k
        }
910
50.5k
    }
911
449k
    pie->color_usage.or = color_usage;
912
449k
    pie->color_usage.slow_rop =
913
449k
        cmd_slow_rop(dev, pgs->log_op, (uses_color ? pdcolor : NULL));
914
449k
    pie->color_map_is_known = false;
915
    /*
916
     * Calculate a (slightly conservative) Y bounding interval for the image
917
     * in device space.
918
     */
919
449k
    {
920
449k
        int y0 = (int)floor(dbox.p.y - 0.51);   /* adjust + rounding slop */
921
449k
        int y1 = (int)ceil(dbox.q.y + 0.51);    /* ditto */
922
923
449k
        if (lpcpath) {
924
449k
            gs_fixed_rect obox;
925
449k
            gx_cpath_outer_box(lpcpath, &obox);
926
449k
            pie->ymin = max(0, max(y0, fixed2int(obox.p.y)));
927
449k
            pie->ymax = min(min(y1, fixed2int(obox.q.y)), dev->height);
928
449k
        } else {
929
0
            pie->ymin = max(y0, 0);
930
0
            pie->ymax = min(y1, dev->height);
931
0
        }
932
449k
    }
933
934
    /*
935
     * Make sure the CTM, color space, and clipping region (and, for
936
     * masked images or images with CombineWithColor, the current color)
937
     * are known at the time of the begin_image command.
938
     */
939
449k
    cmd_clear_known(cdev, clist_image_unknowns(dev, pie) | begin_image_known);
940
    /* Because the rendering intent may be driven by the source color
941
       settings we may have needed to overide the intent.  Need to break the const
942
       on the pgs here for this and reset back */
943
449k
    if (intent_changed)
944
0
        pgs_nonconst->renderingintent = renderingintent;
945
449k
    if (bp_changed)
946
0
        pgs_nonconst->blackptcomp = blackptcomp;
947
948
449k
    cdev->image_enum_id = pie->id;
949
449k
    return 0;
950
    /*
951
     * We couldn't handle the image.  It is up to the caller to use the default
952
     * algorithms, which break the image up into rectangles or small pixmaps.
953
     * If we are doing the PDF14 transparency device then we want to make sure we do
954
     * NOT use the target device.  In this case we return -1.
955
     */
956
237k
use_default:
957
237k
    if (pie != NULL)
958
237k
        gs_free_object(mem, pie->buffer, "clist_begin_typed_image");
959
237k
    gs_free_object(mem, pie, "clist_begin_typed_image");
960
237k
    *pinfo = NULL;
961
962
237k
    if (lpcpath != NULL)
963
2
        gx_cpath_free(lpcpath, "clist_begin_typed_image(lpcpath)");
964
965
237k
    if (pgs->has_transparency){
966
11.6k
        return -1;
967
225k
    } else {
968
225k
        return gx_default_begin_typed_image(dev, pgs, pmat, pic, prect,
969
225k
                                            pdcolor, pcpath, mem, pinfo);
970
225k
    }
971
237k
}
972
973
/* Error cleanup for clist_image_plane_data. */
974
static inline int
975
clist_image_plane_data_retry_cleanup(gx_device *dev, clist_image_enum *pie, int yh_used, int code)
976
0
{
977
0
    gx_device_clist_writer * const cdev =
978
0
        &((gx_device_clist *)dev)->writer;
979
0
980
0
    ++cdev->ignore_lo_mem_warnings;
981
0
    {
982
0
        code = write_image_end_all(dev, pie);
983
0
    }
984
0
    --cdev->ignore_lo_mem_warnings;
985
0
    /* Update sub-rect */
986
0
    if (!pie->image.Interpolate)
987
0
        pie->rect.p.y += yh_used;  /* interpolate & mem recovery currently incompat */
988
0
    return code;
989
0
}
990
991
/* Process the next piece of an image. */
992
static int
993
clist_image_plane_data(gx_image_enum_common_t * info,
994
                       const gx_image_plane_t * planes, int yh,
995
                       int *rows_used)
996
6.70M
{
997
6.70M
    gx_device *dev = info->dev;
998
6.70M
    gx_device_clist_writer * const cdev =
999
6.70M
        &((gx_device_clist *)dev)->writer;
1000
6.70M
    clist_image_enum *pie = (clist_image_enum *) info;
1001
6.70M
    gs_rect sbox, dbox;
1002
6.70M
    int y_orig = pie->y;
1003
6.70M
    int yh_used = min(yh, pie->rect.q.y - y_orig);
1004
6.70M
    int y0, y1;
1005
6.70M
    int ry, rheight;
1006
6.70M
    int code;
1007
6.70M
    cmd_rects_enum_t re;
1008
6.70M
    bool found_color = false;
1009
1010
#ifdef DEBUG
1011
    if (pie->id != cdev->image_enum_id) {
1012
        lprintf2("end_image id = %lu != clist image id = %lu!\n",
1013
                 (ulong) pie->id, (ulong) cdev->image_enum_id);
1014
        *rows_used = 0;
1015
        return_error(gs_error_Fatal);
1016
    }
1017
#endif
1018
1019
6.70M
    if (info->pgs != NULL && info->pgs->level < info->pgs_level)
1020
2
        return_error(gs_error_undefinedresult);
1021
1022
    /****** CAN'T HANDLE VARYING data_x VALUES YET ******/
1023
6.70M
    {
1024
6.70M
        int i;
1025
1026
6.71M
        for (i = 1; i < info->num_planes; ++i)
1027
1.19k
            if (planes[i].data_x != planes[0].data_x) {
1028
0
                *rows_used = 0;
1029
0
                return_error(gs_error_rangecheck);
1030
0
            }
1031
6.70M
    }
1032
6.70M
    sbox.p.x = pie->rect.p.x - pie->support.x;
1033
6.70M
    sbox.p.y = (y0 = y_orig) - pie->support.y;
1034
6.70M
    sbox.q.x = pie->rect.q.x + pie->support.x;
1035
6.70M
    sbox.q.y = (y1 = pie->y += yh_used) + pie->support.y;
1036
6.70M
    code = gs_bbox_transform(&sbox, &pie->matrix, &dbox);
1037
6.70M
    if (code < 0)
1038
0
        return code;
1039
    /*
1040
     * In order to keep the band list consistent, we must write out
1041
     * the image data in precisely those bands whose begin_image
1042
     * Y range includes the respective image scan lines.  Because of
1043
     * rounding, we must expand the dbox by a little extra, and then
1044
     * use image_band_box to calculate the precise range for each band.
1045
     * This is slow, but we don't see any faster way to do it in the
1046
     * general case.
1047
     */
1048
6.70M
    {
1049
6.70M
        int ry0 = (int)floor(dbox.p.y) - 2;
1050
6.70M
        int ry1 = (int)ceil(dbox.q.y) + 2;
1051
6.70M
        int band_height0 = cdev->page_info.band_params.BandHeight;
1052
1053
        /*
1054
         * Make sure we don't go into any bands beyond the Y range
1055
         * determined at begin_image time.
1056
         */
1057
6.70M
        if (ry0 < pie->ymin)
1058
3.54M
            ry0 = pie->ymin;
1059
6.70M
        if (ry1 > pie->ymax)
1060
669k
            ry1 = pie->ymax;
1061
        /*
1062
         * If the image extends off the page in the Y direction,
1063
         * we may have ry0 > ry1.  Check for this here.
1064
         */
1065
6.70M
        if (ry0 >= ry1)
1066
4.03M
            goto done;
1067
        /* Expand the range out to band boundaries. */
1068
2.67M
        ry = ry0 / band_height0 * band_height0;
1069
2.67M
        rheight = min(ROUND_UP(ry1, band_height0), dev->height) - ry;
1070
2.67M
    }
1071
1072
2.67M
    if (cdev->permanent_error < 0)
1073
0
      return (cdev->permanent_error);
1074
    /* If needed, update the trans_bbox */
1075
2.67M
    if (cdev->pdf14_needed) {
1076
1.10M
        gs_int_rect bbox;
1077
1078
1.10M
        bbox.p.x = (int)floor(dbox.p.x);
1079
1.10M
        bbox.q.x = (int)ceil(dbox.q.x);
1080
1.10M
        bbox.p.y = pie->ymin;
1081
1.10M
        bbox.q.y = pie->ymax;
1082
1083
1.10M
        clist_update_trans_bbox(cdev, &bbox);
1084
1.10M
    }
1085
    /* Make sure clip_path for the cdev is not stale -- update from image_enum */
1086
2.67M
    cdev->clip_path = NULL;
1087
2.67M
    cmd_check_clip_path(cdev, pie->pcpath);
1088
1089
2.67M
    RECT_ENUM_INIT(re, ry, rheight);
1090
3.71M
    do {
1091
3.71M
        gs_int_rect ibox;
1092
3.71M
        gs_int_rect entire_box;
1093
1094
3.71M
        RECT_STEP_INIT(re);
1095
        /*
1096
         * Just transmit the subset of the data that intersects this band.
1097
         * Note that y and height always define a complete band.
1098
         */
1099
1100
3.71M
        if (!image_band_box(dev, pie, re.y, re.height, &ibox))
1101
429k
            continue;
1102
        /*
1103
         * The transmitted subrectangle has to be computed at the time
1104
         * we write the begin_image command; this in turn controls how
1105
         * much of each scan line we write out.
1106
         */
1107
3.29M
        {
1108
3.29M
            int band_ymax = min(re.band_end, pie->ymax);
1109
3.29M
            int band_ymin = max(re.band_end - re.band_height, pie->ymin);
1110
1111
3.29M
            if (!image_band_box(dev, pie, band_ymin,
1112
3.29M
                                band_ymax - band_ymin, &entire_box))
1113
0
                continue;
1114
3.29M
        }
1115
1116
3.29M
        re.pcls->color_usage.or |= pie->color_usage.or;
1117
3.29M
        re.pcls->color_usage.slow_rop |= pie->color_usage.slow_rop;
1118
1119
        /* Write out begin_image & its preamble for this band */
1120
3.29M
        if (!(re.pcls->known & begin_image_known)) {
1121
657k
            gs_logical_operation_t lop = pie->pgs->log_op;
1122
657k
            byte *dp;
1123
657k
            byte *bp = pie->begin_image_command +
1124
657k
                pie->begin_image_command_length;
1125
657k
            uint len;
1126
657k
            byte image_op = cmd_opv_begin_image;
1127
1128
            /* Make sure the gs_gstate is up to date. */
1129
657k
            code = (pie->color_map_is_known ? 0 :
1130
657k
                    cmd_put_color_mapping(cdev, pie->pgs));
1131
657k
            pie->color_map_is_known = true;
1132
657k
            if (code >= 0) {
1133
657k
                uint want_known = ctm_known | clip_path_known |
1134
657k
                            op_bm_tk_known | ais_known |
1135
657k
                            fill_alpha_known | stroke_alpha_known | fill_adjust_known |
1136
657k
                            (pie->color_space.id == gs_no_id ? 0 :
1137
657k
                                                     color_space_known);
1138
1139
657k
                code = cmd_do_write_unknown(cdev, re.pcls, want_known);
1140
657k
            }
1141
657k
            if (code >= 0)
1142
657k
                code = cmd_do_enable_clip(cdev, re.pcls, pie->pcpath != NULL);
1143
657k
            if (code >= 0)
1144
657k
                code = cmd_update_lop(cdev, re.pcls, lop);
1145
657k
            if (code < 0)
1146
0
                return code;
1147
            /* Does the result of this image depend upon the current color in the
1148
             * graphics state? If so, we need to send it. */
1149
657k
            if (pie->uses_color) {
1150
                /* We want to write the color taking into account the entire image so */
1151
                /* we set re.rect_nbands from pie->ymin and pie->ymax so that we will */
1152
                /* make the decision to write 'all_bands' the same for the whole image */
1153
                /* This is slightly more efficient, and is required for patterns with */
1154
                /* transparency that push the group at the begin_image step.          */
1155
197k
                re.rect_nbands = ((pie->ymax + re.band_height - 1) / re.band_height) -
1156
197k
                                 ((pie->ymin) / re.band_height);
1157
197k
                code = cmd_put_drawing_color(cdev, re.pcls, &pie->dcolor,
1158
197k
                                             &re, devn_not_tile_fill);
1159
197k
                if (code < 0)
1160
0
                    return code;
1161
197k
                if (!pie->masked) {
1162
                    /* In PS and PDF, masked == uses_color. In PCL, due to rops, we can
1163
                     * have a non-imagemask image that relies on the current graphics
1164
                     * color. C303.BIN page 20 has an example of this. Normally the above
1165
                     * call the cmd_put_drawing_color will have sent through the halftone
1166
                     * phase, but we can be in the situation where the current drawing
1167
                     * color is pure (so no phase is sent), but the colors in the image
1168
                     * are not (so a phase must be sent). Accordingly, we catch that
1169
                     * here. */
1170
0
                    if (pie->pgs->screen_phase[gs_color_select_texture].x != re.pcls->screen_phase[gs_color_select_texture].x ||
1171
0
                        pie->pgs->screen_phase[gs_color_select_texture].y != re.pcls->screen_phase[gs_color_select_texture].y) {
1172
0
                        code = cmd_set_screen_phase_generic(cdev, re.pcls,
1173
0
                                                            pie->pgs->screen_phase[gs_color_select_texture].x,
1174
0
                                                            pie->pgs->screen_phase[gs_color_select_texture].y,
1175
0
                                                            gs_color_select_texture, true);
1176
0
                        if (code < 0)
1177
0
                            return code;
1178
0
                    }
1179
0
                    if (pie->pgs->screen_phase[gs_color_select_source].x != re.pcls->screen_phase[gs_color_select_source].x ||
1180
0
                        pie->pgs->screen_phase[gs_color_select_source].y != re.pcls->screen_phase[gs_color_select_source].y) {
1181
0
                        code = cmd_set_screen_phase_generic(cdev, re.pcls,
1182
0
                                                            pie->pgs->screen_phase[gs_color_select_source].x,
1183
0
                                                            pie->pgs->screen_phase[gs_color_select_source].y,
1184
0
                                                            gs_color_select_source, true);
1185
0
                        if (code < 0)
1186
0
                            return code;
1187
0
                    }
1188
0
                }
1189
460k
            } else if (0 != re.pcls->tile_phase.x || 0 != re.pcls->tile_phase.y) {
1190
0
                code = cmd_set_tile_phase(cdev, re.pcls, 0, 0);
1191
0
                if (code < 0)
1192
0
                    return code;
1193
0
            }
1194
657k
            if (entire_box.p.x != 0 || entire_box.p.y != 0 ||
1195
188k
                entire_box.q.x != pie->image.Width ||
1196
180k
                entire_box.q.y != pie->image.Height
1197
657k
                ) {
1198
520k
                image_op = cmd_opv_begin_image_rect;
1199
520k
                cmd_put2w(entire_box.p.x, entire_box.p.y, &bp);
1200
520k
                cmd_put2w(pie->image.Width - entire_box.q.x,
1201
520k
                          pie->image.Height - entire_box.q.y, &bp);
1202
520k
                }
1203
657k
            len = bp - pie->begin_image_command;
1204
657k
            code =
1205
657k
                set_cmd_put_op(&dp, cdev, re.pcls, image_op, 1 + len);
1206
657k
            if (code < 0)
1207
0
                return code;
1208
657k
            memcpy(dp + 1, pie->begin_image_command, len);
1209
1210
            /* Mark band's begin_image as known */
1211
657k
            re.pcls->known |= begin_image_known;
1212
657k
        }
1213
1214
        /*
1215
         * The data that we write out must use the X values set by
1216
         * begin_image, which may cover a larger interval than the ones
1217
         * actually needed for these particular scan lines if the image is
1218
         * rotated.
1219
         */
1220
3.29M
        {
1221
            /*
1222
             * image_band_box ensures that b{x,y}{0,1} fall within
1223
             * pie->rect.
1224
             */
1225
3.29M
            int bx0 = entire_box.p.x, bx1 = entire_box.q.x;
1226
3.29M
            int by0 = ibox.p.y, by1 = ibox.q.y;
1227
3.29M
            int bpp = pie->bits_per_plane;
1228
3.29M
            int num_planes = pie->num_planes;
1229
3.29M
            uint offsets[GS_IMAGE_MAX_COMPONENTS];
1230
3.29M
            int i, iy, ih, xskip, xoff, nrows;
1231
3.29M
            uint bytes_per_plane, bytes_per_row, rows_per_cmd;
1232
1233
3.29M
            if (by0 < y0)
1234
2.15M
                by0 = y0;
1235
3.29M
            if (by1 > y1)
1236
2.37M
                by1 = y1;
1237
            /*
1238
             * Make sure we're skipping an integral number of pixels, by
1239
             * truncating the initial X coordinate to the next lower
1240
             * value that is an exact multiple of a byte.
1241
             */
1242
3.29M
            xoff = bx0 - pie->rect.p.x;
1243
3.29M
            xskip = xoff & -(int)"\001\010\004\010\002\010\004\010"[bpp & 7];
1244
6.58M
            for (i = 0; i < num_planes; ++i)
1245
3.29M
                offsets[i] =
1246
3.29M
                    (by0 - y0) * planes[i].raster + ((xskip * bpp) >> 3);
1247
3.29M
            bytes_per_plane = ((bx1 - (pie->rect.p.x + xskip)) * bpp + 7) >> 3;
1248
3.29M
            bytes_per_row = bytes_per_plane * pie->num_planes;
1249
3.29M
            rows_per_cmd =
1250
3.29M
                (data_bits_size - cmd_largest_size) / max(bytes_per_row, 1);
1251
1252
3.29M
            if (rows_per_cmd == 0) {
1253
                /* The reader will have to buffer a row separately. */
1254
17.5k
                rows_per_cmd = 1;
1255
17.5k
            }
1256
3.29M
            if (pie->monitor_color) {
1257
0
                for (iy = by0, ih = by1 - by0; ih > 0; iy += nrows, ih -= nrows) {
1258
0
                    nrows = min(ih, rows_per_cmd);
1259
0
                    if (!found_color) {
1260
0
                        code = cmd_image_plane_data_mon(cdev, re.pcls, planes, info,
1261
0
                                                    bytes_per_plane, offsets,
1262
0
                                                    xoff - xskip, nrows,
1263
0
                                                    &found_color);
1264
0
                        if (found_color) {
1265
                            /* Has color.  We are done monitoring */
1266
0
                            cmm_dev_profile_t *dev_profile;
1267
0
                            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
1268
0
                            dev_profile->pageneutralcolor = false;
1269
0
                            code |= gsicc_mcm_end_monitor(pie->pgs->icc_link_cache, dev);
1270
0
                            pie->monitor_color = false;
1271
0
                        }
1272
0
                    } else {
1273
0
                        code = cmd_image_plane_data(cdev, re.pcls, planes, info,
1274
0
                                                    bytes_per_plane, offsets,
1275
0
                                                    xoff - xskip, nrows);
1276
0
                    }
1277
0
                    if (code < 0)
1278
0
                        return code;
1279
0
                    for (i = 0; i < num_planes; ++i)
1280
0
                        offsets[i] += planes[i].raster * nrows;
1281
0
                }
1282
3.29M
            } else {
1283
5.82M
                for (iy = by0, ih = by1 - by0; ih > 0; iy += nrows, ih -= nrows) {
1284
2.53M
                    nrows = min(ih, rows_per_cmd);
1285
2.53M
                    code = cmd_image_plane_data(cdev, re.pcls, planes, info,
1286
2.53M
                                                bytes_per_plane, offsets,
1287
2.53M
                                                xoff - xskip, nrows);
1288
2.53M
                    if (code < 0)
1289
0
                        return code;
1290
5.07M
                    for (i = 0; i < num_planes; ++i)
1291
2.54M
                        offsets[i] += planes[i].raster * nrows;
1292
2.53M
                }
1293
3.29M
            }
1294
3.29M
        }
1295
3.71M
    } while ((re.y += re.height) < re.yend);
1296
6.70M
 done:
1297
6.70M
    *rows_used = pie->y - y_orig;
1298
6.70M
    return pie->y >= pie->rect.q.y;
1299
2.67M
}
1300
1301
/* Clean up by releasing the buffers. */
1302
static int
1303
clist_image_end_image(gx_image_enum_common_t * info, bool draw_last)
1304
449k
{
1305
449k
    gx_device *dev = info->dev;
1306
449k
    gx_device_clist_writer * const cdev =
1307
449k
        &((gx_device_clist *)dev)->writer;
1308
449k
    clist_image_enum *pie = (clist_image_enum *) info;
1309
449k
    int code;
1310
1311
#ifdef DEBUG
1312
    if (pie->id != cdev->image_enum_id) {
1313
        lprintf2("end_image id = %lu != clist image id = %lu!\n",
1314
                 (ulong) pie->id, (ulong) cdev->image_enum_id);
1315
        return_error(gs_error_Fatal);
1316
    }
1317
#endif
1318
449k
    code = write_image_end_all(dev, pie);
1319
449k
    cdev->image_enum_id = gs_no_id;
1320
449k
    gx_cpath_free((gx_clip_path *)pie->pcpath, "clist_image_end_image(pie->pcpath)");
1321
449k
    cdev->clip_path = NULL;
1322
449k
    cdev->clip_path_id = gs_no_id;
1323
449k
    gx_image_free_enum(&info);
1324
449k
    return code;
1325
449k
}
1326
1327
/* Create a compositor device. */
1328
int
1329
clist_composite(gx_device * dev,
1330
                        gx_device ** pcdev, const gs_composite_t * pcte,
1331
                        gs_gstate * pgs, gs_memory_t * mem, gx_device *cldev)
1332
974k
{
1333
974k
    byte * dp;
1334
974k
    uint size = 0, size_dummy;
1335
974k
    gx_device_clist_writer * const cdev =
1336
974k
                    &((gx_device_clist *)dev)->writer;
1337
974k
    int ry, rheight, cropping_op;
1338
974k
    int band_height = cdev->page_info.band_params.BandHeight;
1339
974k
    int last_band = cdev->nbands - 1;
1340
974k
    int first_band = 0, no_of_bands = cdev->nbands;
1341
974k
    int code = pcte->type->procs.write(pcte, 0, &size, cdev);
1342
974k
    int temp_cropping_min, temp_cropping_max;
1343
974k
    int newdev;
1344
1345
974k
    CMD_CHECK_LAST_OP_BLOCK_DEFINED(cdev);
1346
1347
    /* determine the amount of space required */
1348
974k
    if (code < 0 && code != gs_error_rangecheck)
1349
5
        return code;
1350
974k
    size += 2 + 1;      /* 2 bytes for the command code, one for the id */
1351
1352
    /* Create a compositor device for clist writing (if needed) */
1353
974k
    code = pcte->type->procs.clist_compositor_write_update(pcte, dev,
1354
974k
                                                        pcdev, pgs, mem);
1355
974k
    if (code < 0)
1356
0
        return code;
1357
974k
    newdev = code == 1;
1358
1359
974k
    CMD_CHECK_LAST_OP_BLOCK_DEFINED(cdev);
1360
1361
974k
    code = pcte->type->procs.get_cropping(pcte, &ry, &rheight, cdev->cropping_min, cdev->cropping_max);
1362
1363
974k
    CMD_CHECK_LAST_OP_BLOCK_DEFINED(cdev);
1364
1365
974k
    if (code < 0)
1366
0
        return code;
1367
1368
974k
    cropping_op = code;
1369
974k
    code = 0;
1370
1371
974k
    if (cropping_op == PUSHCROP || cropping_op == SAMEAS_PUSHCROP_BUTNOPUSH) {
1372
87.6k
        first_band = ry / band_height;
1373
87.6k
        last_band = (ry + rheight - 1) / band_height;
1374
886k
    } else if (cropping_op == POPCROP || cropping_op == CURRBANDS) {
1375
83.0k
        first_band = cdev->cropping_min / band_height;
1376
83.0k
        last_band = (cdev->cropping_max - 1) / band_height;
1377
83.0k
    }
1378
1379
974k
    if (last_band - first_band > no_of_bands * 2 / 3) {
1380
        /* Covering many bands, so write "all bands" command for shorter clist. */
1381
866k
        cropping_op = ALLBANDS;
1382
866k
    }
1383
1384
    /* Using 'v' here instead of 'L' since this is used almost exclusively with
1385
       the transparency code */
1386
1387
#ifdef DEBUG
1388
    if (gs_debug_c('v')) {
1389
1390
        if(cropping_op != 0) {
1391
1392
           dmprintf2(dev->memory, "[v] cropping_op = %d. Total number of bands is %d \n",
1393
                     cropping_op, no_of_bands);
1394
           dmprintf2(dev->memory, "[v]  Writing out from band %d through band %d \n",
1395
                     first_band, last_band);
1396
1397
        } else {
1398
1399
           dmprintf1(dev->memory, "[v] cropping_op = %d. Writing out to all bands \n",
1400
                     cropping_op);
1401
1402
        }
1403
    }
1404
#endif
1405
1406
974k
    if (cropping_op == ALLBANDS) {
1407
        /* overprint applies to all bands */
1408
878k
        size_dummy = size;
1409
878k
        code = set_cmd_put_all_extended_op(& dp,
1410
878k
                                   (gx_device_clist_writer *)dev,
1411
878k
                                   cmd_opv_ext_composite,
1412
878k
                                   size );
1413
878k
        if (code < 0)
1414
0
            return code;
1415
1416
        /* insert the compositor identifier */
1417
878k
        dp[2] = pcte->type->comp_id;
1418
1419
        /* serialize the remainder of the compositor */
1420
878k
        if ((code = pcte->type->procs.write(pcte, dp + 3, &size_dummy, cdev)) < 0)
1421
0
            ((gx_device_clist_writer *)dev)->cnext = dp;
1422
1423
878k
        if (code >= 0 && newdev)
1424
11.2k
            code = 1; /* Return 1 to indicate we created a new device. */
1425
878k
        return code;
1426
878k
    }
1427
95.8k
    if (cropping_op == PUSHCROP) {
1428
47.6k
        code = clist_writer_push_cropping(cdev, ry, rheight);
1429
47.6k
        if (code < 0)
1430
0
            return code;
1431
47.6k
    }
1432
95.8k
    if (cropping_op == SAMEAS_PUSHCROP_BUTNOPUSH) {
1433
        /* Set the range even though it is not pushed until the group occurs
1434
           This occurs only when we had blend changes with a group push */
1435
174
        temp_cropping_min = max(cdev->cropping_min, ry);
1436
174
        temp_cropping_max = min(cdev->cropping_max, ry + rheight);
1437
95.6k
    } else {
1438
95.6k
        temp_cropping_min = cdev->cropping_min;
1439
95.6k
        temp_cropping_max = cdev->cropping_max;
1440
95.6k
    }
1441
    /* Adjust the lower and upper bound to allow for image gridfitting changing boundaries */
1442
95.8k
    if (temp_cropping_min > 0)
1443
92.9k
        temp_cropping_min--;
1444
95.8k
    if (temp_cropping_max < dev->height - 1)
1445
92.6k
        temp_cropping_max++;
1446
95.8k
    if (temp_cropping_min < temp_cropping_max) {
1447
        /* The pdf14 compositor could be applied
1448
           only to bands covered by the pcte->params.bbox. */
1449
95.7k
        cmd_rects_enum_t re;
1450
1451
95.7k
        RECT_ENUM_INIT(re, temp_cropping_min, temp_cropping_max - temp_cropping_min);
1452
1.55M
        do {
1453
1.55M
            RECT_STEP_INIT(re);
1454
1.55M
            code = set_cmd_put_extended_op(&dp, cdev, re.pcls, cmd_opv_ext_composite, size);
1455
1.55M
            if (code >= 0) {
1456
1.55M
                size_dummy = size;
1457
1.55M
                dp[2] = pcte->type->comp_id;
1458
1.55M
                code = pcte->type->procs.write(pcte, dp + 3, &size_dummy, cdev);
1459
1.55M
            }
1460
1.55M
            if (code < 0)
1461
0
                return code;
1462
1.55M
        } while ((re.y += re.height) < re.yend);
1463
95.7k
    }
1464
95.8k
    if (cropping_op == POPCROP) {
1465
47.6k
        code = clist_writer_pop_cropping(cdev);
1466
47.6k
        if (code < 0)
1467
0
            return code;
1468
47.6k
    }
1469
1470
95.8k
    if (newdev)
1471
0
        code = 1; /* Return 1 to indicate we created a new device. */
1472
1473
95.8k
    return code;
1474
95.8k
}
1475
1476
/* ------ Utilities ------ */
1477
1478
/* Add a command to set data_x. */
1479
static int
1480
cmd_put_set_data_x(gx_device_clist_writer * cldev, gx_clist_state * pcls,
1481
                   int data_x)
1482
6.76k
{
1483
6.76k
    byte *dp;
1484
6.76k
    int code;
1485
1486
6.76k
    if (data_x > 0x1f) {
1487
0
        int dx_msb = data_x >> 5;
1488
1489
0
        code = set_cmd_put_op(&dp, cldev, pcls, cmd_opv_set_misc,
1490
0
                              2 + cmd_size_w(dx_msb));
1491
0
        if (code >= 0) {
1492
0
            dp[1] = cmd_set_misc_data_x + 0x20 + (data_x & 0x1f);
1493
0
            cmd_put_w(dx_msb, dp + 2);
1494
0
        }
1495
6.76k
    } else {
1496
6.76k
        code = set_cmd_put_op(&dp, cldev, pcls, cmd_opv_set_misc, 2);
1497
6.76k
        if (code >= 0)
1498
6.76k
            dp[1] = cmd_set_misc_data_x + data_x;
1499
6.76k
    }
1500
6.76k
    return code;
1501
6.76k
}
1502
1503
/* Add commands to represent a full (device) halftone. */
1504
int
1505
cmd_put_halftone(gx_device_clist_writer * cldev, const gx_device_halftone * pdht)
1506
31.9k
{
1507
31.9k
    uint    ht_size = 0, req_size;
1508
31.9k
    byte *  dp;
1509
31.9k
    byte *  dp0 = 0;
1510
31.9k
    byte *  pht_buff = 0;
1511
31.9k
    int     code = gx_ht_write(pdht, (gx_device *)cldev, 0, &ht_size);
1512
1513
    /*
1514
     * Determine the required size, and if necessary allocate a buffer.
1515
     *
1516
     * The full serialized representation consists of:
1517
     *  command code (2 bytes)
1518
     *  length of serialized halftone (enc_u_sizew(ht_size)
1519
     *  one or more halfton segments, which consist of:
1520
     *    command code (2 bytes)
1521
     *    segment size (enc_u_sizew(seg_size) (seg_size < cbuf_ht_seg_max_size)
1522
     *    the serialized halftone segment (seg_size)
1523
     *
1524
     * Serialized halftones may be larger than the command buffer, so it
1525
     * is sent in segments. The cmd_opv_extend/cmd_opv_ext_put_halftone
1526
     * combination indicates that a device halftone is being sent, and
1527
     * provides the length of the entire halftone. This is followed by
1528
     * one or more cmd_opv_extend/cmd_opv_ext_ht_seg commands, which
1529
     * convey the segments of the serialized hafltone. The reader can
1530
     * identify the final segment by adding segment lengths.
1531
     *
1532
     * This complexity is hidden from the serialization code. If the
1533
     * halftone is larger than a single halftone buffer, we allocate a
1534
     * buffer to hold the entire representation, and divided into
1535
     * segments in this routine.
1536
     */
1537
31.9k
    if (code < 0 && code != gs_error_rangecheck)
1538
0
        return code;
1539
31.9k
    req_size = 2 + enc_u_sizew(ht_size);
1540
1541
    /* output the "put halftone" command */
1542
31.9k
    if ((code = set_cmd_put_all_extended_op(&dp, cldev, cmd_opv_ext_put_halftone, req_size)) < 0)
1543
0
        return code;
1544
31.9k
    dp += 2;
1545
31.9k
    enc_u_putw(ht_size, dp);
1546
1547
    /* see if a separate allocated buffer is required */
1548
31.9k
    if (ht_size > cbuf_ht_seg_max_size) {
1549
12.8k
        pht_buff = gs_alloc_bytes( cldev->bandlist_memory,
1550
12.8k
                                   ht_size,
1551
12.8k
                                   "cmd_put_halftone" );
1552
12.8k
        if (pht_buff == 0)
1553
0
            return_error(gs_error_VMerror);
1554
19.1k
    } else {
1555
        /* send the only segment command */
1556
19.1k
        req_size += ht_size;
1557
19.1k
        code = set_cmd_put_all_extended_op(&dp, cldev, cmd_opv_ext_put_ht_seg, req_size);
1558
19.1k
        if (code < 0)
1559
0
            return code;
1560
19.1k
        dp0 = dp;
1561
19.1k
        dp += 2;
1562
19.1k
        enc_u_putw(ht_size, dp);
1563
19.1k
        pht_buff = dp;
1564
19.1k
    }
1565
1566
    /* serialize the halftone */
1567
31.9k
    code = gx_ht_write(pdht, (gx_device *)cldev, pht_buff, &ht_size);
1568
31.9k
    if (code < 0) {
1569
0
        if (ht_size > cbuf_ht_seg_max_size)
1570
0
            gs_free_object( cldev->bandlist_memory,
1571
0
                            pht_buff,
1572
0
                            "cmd_put_halftone" );
1573
0
        else
1574
0
            cldev->cnext = dp0;
1575
0
        return code;
1576
0
    }
1577
1578
    /*
1579
     * If the halftone fit into a single command buffer, we are done.
1580
     * Otherwise, process the individual segments.
1581
     *
1582
     * If bandlist memory is exhausted while processing the segments,
1583
     * we do not make any attempt to recover the partially submitted
1584
     * halftone. The reader will discard any partially sent hafltone
1585
     * when it receives the next cmd_opv_extend/
1586
     * cmd_opv_ext_put_halftone combination.
1587
     */
1588
31.9k
    if (ht_size > cbuf_ht_seg_max_size) {
1589
12.8k
        byte *  pbuff = pht_buff;
1590
1591
40.3k
        while (ht_size > 0 && code >= 0) {
1592
27.5k
            int     seg_size, tmp_size;
1593
1594
27.5k
            seg_size = ( ht_size > cbuf_ht_seg_max_size ? cbuf_ht_seg_max_size
1595
27.5k
                                                        : ht_size );
1596
27.5k
            tmp_size = 2 + enc_u_sizew(seg_size) + seg_size;
1597
27.5k
            code = set_cmd_put_all_extended_op(&dp, cldev, cmd_opv_ext_put_ht_seg, tmp_size);
1598
27.5k
            if (code >= 0) {
1599
27.5k
                dp += 2;
1600
27.5k
                enc_u_putw(seg_size, dp);
1601
27.5k
                memcpy(dp, pbuff, seg_size);
1602
27.5k
                ht_size -= seg_size;
1603
27.5k
                pbuff += seg_size;
1604
27.5k
            }
1605
27.5k
        }
1606
12.8k
        gs_free_object( cldev->bandlist_memory, pht_buff, "cmd_put_halftone");
1607
12.8k
        pht_buff = 0;
1608
12.8k
    }
1609
1610
31.9k
    if (code >= 0)
1611
31.9k
        cldev->device_halftone_id = pdht->id;
1612
1613
31.9k
    return code;
1614
31.9k
}
1615
1616
/* Write out any necessary color mapping data. */
1617
int
1618
cmd_put_color_mapping(gx_device_clist_writer * cldev,
1619
                      const gs_gstate * pgs)
1620
234k
{
1621
234k
    int code;
1622
234k
    const gx_device_halftone *pdht = gx_select_dev_ht(pgs);
1623
1624
    /* Put out the halftone, if present, and target is not contone. */
1625
234k
    if (pdht && pdht->id != cldev->device_halftone_id && !device_is_contone(cldev->target)) {
1626
6.64k
        code = cmd_put_halftone(cldev, pdht);
1627
6.64k
        if (code < 0)
1628
0
            return code;
1629
6.64k
        cldev->device_halftone_id = pdht->id;
1630
6.64k
    }
1631
    /* Put the under color removal and black generation functions */
1632
234k
    code = cmd_put_color_map(cldev, cmd_map_black_generation,
1633
234k
                                 0, pgs->black_generation,
1634
234k
                                 &cldev->black_generation_id);
1635
234k
    if (code < 0)
1636
0
        return code;
1637
234k
    code = cmd_put_color_map(cldev, cmd_map_undercolor_removal,
1638
234k
                                 0, pgs->undercolor_removal,
1639
234k
                                 &cldev->undercolor_removal_id);
1640
234k
    if (code < 0)
1641
0
        return code;
1642
    /* Now put out the transfer functions. */
1643
234k
    {
1644
234k
        uint which = 0;
1645
234k
        bool send_default_comp = false;
1646
234k
        int i;
1647
234k
        gs_id default_comp_id, xfer_ids[4];
1648
1649
        /*
1650
         * Determine the ids for the transfer functions that we currently
1651
         * have in the set_transfer structure.  The halftone xfer funcs
1652
         * are sent in cmd_put_halftone.
1653
         */
1654
234k
#define get_id(pgs, color, color_num) \
1655
703k
    ((pgs->set_transfer.color != NULL && pgs->set_transfer.color_num >= 0) \
1656
703k
        ? pgs->set_transfer.color->id\
1657
703k
        : pgs->set_transfer.gray->id)
1658
1659
234k
        xfer_ids[0] = get_id(pgs, red, red_component_num);
1660
234k
        xfer_ids[1] = get_id(pgs, green, green_component_num);
1661
234k
        xfer_ids[2] = get_id(pgs, blue, blue_component_num);
1662
234k
        xfer_ids[3] = default_comp_id = pgs->set_transfer.gray->id;
1663
234k
#undef get_id
1664
1665
1.17M
        for (i = 0; i < countof(cldev->transfer_ids); ++i) {
1666
938k
            if (xfer_ids[i] != cldev->transfer_ids[i])
1667
69.7k
                which |= 1 << i;
1668
938k
            if (xfer_ids[i] == default_comp_id &&
1669
938k
                cldev->transfer_ids[i] != default_comp_id)
1670
69.6k
                send_default_comp = true;
1671
938k
        }
1672
        /* There are 3 cases for transfer functions: nothing to write, */
1673
        /* a single function, and multiple functions. */
1674
234k
        if (which == 0)
1675
217k
            return 0;
1676
        /*
1677
         * Send default transfer function if changed or we need it for a
1678
         * component
1679
         */
1680
17.4k
        if (send_default_comp || cldev->transfer_ids[0] != default_comp_id) {
1681
17.4k
            gs_id dummy = gs_no_id;
1682
1683
17.4k
            code = cmd_put_color_map(cldev, cmd_map_transfer, 0,
1684
17.4k
                pgs->set_transfer.gray, &dummy);
1685
17.4k
            if (code < 0)
1686
0
                return code;
1687
            /* Sending a default will force all xfers to default */
1688
87.1k
            for (i = 0; i < countof(cldev->transfer_ids); ++i)
1689
69.7k
                cldev->transfer_ids[i] = default_comp_id;
1690
17.4k
        }
1691
        /* Send any transfer functions which have changed */
1692
17.4k
        if (cldev->transfer_ids[0] != xfer_ids[0]) {
1693
19
            code = cmd_put_color_map(cldev, cmd_map_transfer_0,
1694
19
                        pgs->set_transfer.red_component_num,
1695
19
                        pgs->set_transfer.red, &cldev->transfer_ids[0]);
1696
19
            if (code < 0)
1697
0
                return code;
1698
19
        }
1699
17.4k
        if (cldev->transfer_ids[1] != xfer_ids[1]) {
1700
19
            code = cmd_put_color_map(cldev, cmd_map_transfer_1,
1701
19
                        pgs->set_transfer.green_component_num,
1702
19
                        pgs->set_transfer.green, &cldev->transfer_ids[1]);
1703
19
            if (code < 0)
1704
0
                return code;
1705
19
        }
1706
17.4k
        if (cldev->transfer_ids[2] != xfer_ids[2]) {
1707
19
            code = cmd_put_color_map(cldev, cmd_map_transfer_2,
1708
19
                        pgs->set_transfer.blue_component_num,
1709
19
                        pgs->set_transfer.blue, &cldev->transfer_ids[2]);
1710
19
            if (code < 0)
1711
0
                return code;
1712
19
        }
1713
17.4k
    }
1714
1715
17.4k
    return 0;
1716
17.4k
}
1717
1718
/*
1719
 * Compute the subrectangle of an image that intersects a band;
1720
 * return false if it is empty.
1721
 * It is OK for this to be too large; in fact, with the present
1722
 * algorithm, it will be quite a bit too large if the transformation isn't
1723
 * well-behaved ("well-behaved" meaning either xy = yx = 0 or xx = yy = 0).
1724
 */
1725
8.11M
#define I_FLOOR(x) ((int)floor(x))
1726
8.11M
#define I_CEIL(x) ((int)ceil(x))
1727
static void
1728
box_merge_point(gs_int_rect * pbox, double x, double y)
1729
4.05M
{
1730
4.05M
    int t;
1731
1732
4.05M
    if ((t = I_FLOOR(x)) < pbox->p.x)
1733
1.00M
        pbox->p.x = t;
1734
4.05M
    if ((t = I_CEIL(x)) > pbox->q.x)
1735
1.05M
        pbox->q.x = t;
1736
4.05M
    if ((t = I_FLOOR(y)) < pbox->p.y)
1737
999k
        pbox->p.y = t;
1738
4.05M
    if ((t = I_CEIL(y)) > pbox->q.y)
1739
1.00M
        pbox->q.y = t;
1740
4.05M
}
1741
static bool
1742
image_band_box(gx_device * dev, const clist_image_enum * pie, int y, int h,
1743
               gs_int_rect * pbox)
1744
7.01M
{
1745
7.01M
    fixed by0 = int2fixed(y);
1746
7.01M
    fixed by1 = int2fixed(y + h);
1747
7.01M
    int
1748
7.01M
        px = pie->rect.p.x, py = pie->rect.p.y,
1749
7.01M
        qx = pie->rect.q.x, qy = pie->rect.q.y;
1750
7.01M
    gs_fixed_rect cbox;         /* device clipping box */
1751
7.01M
    gs_rect bbox;               /* cbox intersected with band */
1752
1753
    /* Intersect the device clipping box and the band. */
1754
7.01M
    (*dev_proc(dev, get_clipping_box)) (dev, &cbox);
1755
    /* The fixed_half here is to allow for adjustment. */
1756
7.01M
    bbox.p.x = fixed2float(cbox.p.x - fixed_half);
1757
7.01M
    bbox.q.x = fixed2float(cbox.q.x + fixed_half);
1758
7.01M
    bbox.p.y = fixed2float(max(cbox.p.y, by0) - fixed_half);
1759
7.01M
    bbox.q.y = fixed2float(min(cbox.q.y, by1) + fixed_half);
1760
    /* Limit the box further if possible (because of a clipping path) */
1761
7.01M
    if (bbox.p.y < pie->ymin)
1762
2.30M
        bbox.p.y = pie->ymin;
1763
7.01M
    if (bbox.q.y > pie->ymax)
1764
2.07M
        bbox.q.y = pie->ymax;
1765
#ifdef DEBUG
1766
    if (gs_debug_c('b')) {
1767
        dmlprintf6(dev->memory, "[b]band box for (%d,%d),(%d,%d), band (%d,%d) =>\n",
1768
                   px, py, qx, qy, y, y + h);
1769
        dmlprintf10(dev->memory, "      (%g,%g),(%g,%g), matrix=[%g %g %g %g %g %g]\n",
1770
                    bbox.p.x, bbox.p.y, bbox.q.x, bbox.q.y,
1771
                    pie->matrix.xx, pie->matrix.xy, pie->matrix.yx,
1772
                    pie->matrix.yy, pie->matrix.tx, pie->matrix.ty);
1773
    }
1774
#endif
1775
7.01M
    if (is_xxyy(&pie->matrix) || is_xyyx(&pie->matrix)) {
1776
        /*
1777
         * The inverse transform of the band is a rectangle aligned with
1778
         * the coordinate axes, so we can just intersect it with the
1779
         * image subrectangle.
1780
         */
1781
5.68M
        gs_rect ibox;           /* bbox transformed back to image space */
1782
1783
5.68M
        if (gs_bbox_transform_inverse(&bbox, &pie->matrix, &ibox) < 0)
1784
0
            return false;
1785
5.68M
        pbox->p.x = max(px, I_FLOOR(ibox.p.x));
1786
5.68M
        pbox->q.x = min(qx, I_CEIL(ibox.q.x));
1787
5.68M
        pbox->p.y = max(py, I_FLOOR(ibox.p.y));
1788
5.68M
        pbox->q.y = min(qy, I_CEIL(ibox.q.y));
1789
5.68M
    } else {
1790
        /*
1791
         * The inverse transform of the band is not aligned with the
1792
         * axes, i.e., is a general parallelogram.  To compute an exact
1793
         * bounding box, we need to find the intersections of this
1794
         * parallelogram with the image subrectangle.
1795
         *
1796
         * There is probably a much more efficient way to do this
1797
         * computation, but we don't know what it is.
1798
         */
1799
1.32M
        gs_point rect[4];
1800
1.32M
        gs_point corners[5];
1801
1.32M
        int i;
1802
1803
        /* Store the corners of the image rectangle. */
1804
1.32M
        rect[0].x = rect[3].x = px;
1805
1.32M
        rect[1].x = rect[2].x = qx;
1806
1.32M
        rect[0].y = rect[1].y = py;
1807
1.32M
        rect[2].y = rect[3].y = qy;
1808
        /*
1809
         * Compute the corners of the clipped band in image space.  If
1810
         * the matrix is singular or an overflow occurs, the result will
1811
         * be nonsense: in this case, there isn't anything useful we
1812
         * can do, so return an empty intersection.
1813
         */
1814
1.32M
        if (gs_point_transform_inverse(bbox.p.x, bbox.p.y, &pie->matrix,
1815
1.32M
                                       &corners[0]) < 0 ||
1816
1.32M
            gs_point_transform_inverse(bbox.q.x, bbox.p.y, &pie->matrix,
1817
1.32M
                                       &corners[1]) < 0 ||
1818
1.32M
            gs_point_transform_inverse(bbox.q.x, bbox.q.y, &pie->matrix,
1819
1.32M
                                       &corners[2]) < 0 ||
1820
1.32M
            gs_point_transform_inverse(bbox.p.x, bbox.q.y, &pie->matrix,
1821
1.32M
                                       &corners[3]) < 0
1822
1.32M
            ) {
1823
0
            if_debug0m('b', dev->memory,
1824
0
                       "[b]can't inverse-transform a band corner!\n");
1825
0
            return false;
1826
0
        }
1827
1.32M
        corners[4] = corners[0];
1828
1.32M
        pbox->p.x = qx, pbox->p.y = qy;
1829
1.32M
        pbox->q.x = px, pbox->q.y = py;
1830
        /*
1831
         * We iterate over both the image rectangle and the band
1832
         * parallelogram in a single loop for convenience, even though
1833
         * there is no coupling between the two.
1834
         */
1835
6.63M
        for (i = 0; i < 4; ++i) {
1836
5.30M
            gs_point pa, pt;
1837
5.30M
            double dx, dy;
1838
1839
            /* Check the image corner for being inside the band. */
1840
5.30M
            pa = rect[i];
1841
5.30M
            gs_point_transform(pa.x, pa.y, &pie->matrix, &pt);
1842
5.30M
            if (pt.x >= bbox.p.x && pt.x <= bbox.q.x &&
1843
53.2k
                pt.y >= bbox.p.y && pt.y <= bbox.q.y
1844
5.30M
                )
1845
21.5k
                box_merge_point(pbox, pa.x, pa.y);
1846
            /* Check the band corner for being inside the image. */
1847
5.30M
            pa = corners[i];
1848
5.30M
            if (pa.x >= px && pa.x <= qx && pa.y >= py && pa.y <= qy)
1849
69.3k
                box_merge_point(pbox, pa.x, pa.y);
1850
            /* Check for intersections of band edges with image edges. */
1851
5.30M
            dx = corners[i + 1].x - pa.x;
1852
5.30M
            dy = corners[i + 1].y - pa.y;
1853
5.30M
#define in_range(t, tc, p, q)\
1854
11.7M
  (0 <= t && t <= 1 && (t = tc) >= p && t <= q)
1855
5.30M
            if (dx != 0) {
1856
3.14M
                double t = (px - pa.x) / dx;
1857
1858
3.14M
                if_debug3m('b', dev->memory, "   (px) t=%g => (%d,%g)\n",
1859
3.14M
                           t, px, pa.y + t * dy);
1860
3.14M
                if (in_range(t, pa.y + t * dy, py, qy))
1861
1.97M
                    box_merge_point(pbox, (double) px, t);
1862
3.14M
                t = (qx - pa.x) / dx;
1863
3.14M
                if_debug3m('b', dev->memory, "   (qx) t=%g => (%d,%g)\n",
1864
3.14M
                           t, qx, pa.y + t * dy);
1865
3.14M
                if (in_range(t, pa.y + t * dy, py, qy))
1866
1.96M
                    box_merge_point(pbox, (double) qx, t);
1867
3.14M
            }
1868
5.30M
            if (dy != 0) {
1869
2.72M
                double t = (py - pa.y) / dy;
1870
1871
2.72M
                if_debug3m('b', dev->memory, "   (py) t=%g => (%g,%d)\n",
1872
2.72M
                           t, pa.x + t * dx, py);
1873
2.72M
                if (in_range(t, pa.x + t * dx, px, qx))
1874
7.15k
                    box_merge_point(pbox, t, (double) py);
1875
2.72M
                t = (qy - pa.y) / dy;
1876
2.72M
                if_debug3m('b', dev->memory, "   (qy) t=%g => (%g,%d)\n",
1877
2.72M
                           t, pa.x + t * dx, qy);
1878
2.72M
                if (in_range(t, pa.x + t * dx, px, qx))
1879
16.2k
                    box_merge_point(pbox, t, (double) qy);
1880
2.72M
            }
1881
5.30M
#undef in_range
1882
5.30M
        }
1883
1.32M
    }
1884
7.01M
    if_debug4m('b', dev->memory, "    => (%d,%d),(%d,%d)\n",
1885
7.01M
               pbox->p.x, pbox->p.y, pbox->q.x, pbox->q.y);
1886
    /*
1887
     * If necessary, add pixels around the edges so we will have
1888
     * enough information to do interpolation.
1889
     */
1890
7.01M
    if ((pbox->p.x -= pie->support.x) < pie->rect.p.x)
1891
0
        pbox->p.x = pie->rect.p.x;
1892
7.01M
    if ((pbox->p.y -= pie->support.y) < pie->rect.p.y)
1893
0
        pbox->p.y = pie->rect.p.y;
1894
7.01M
    if ((pbox->q.x += pie->support.x) > pie->rect.q.x)
1895
0
        pbox->q.x = pie->rect.q.x;
1896
7.01M
    if ((pbox->q.y += pie->support.y) > pie->rect.q.y)
1897
0
        pbox->q.y = pie->rect.q.y;
1898
7.01M
    return (pbox->p.x < pbox->q.x && pbox->p.y < pbox->q.y);
1899
7.01M
}
1900
1901
inline static bool
1902
icc_info_notequal(clist_icc_color_t info1, clist_icc_color_t info2)
1903
4.51k
{
1904
4.51k
    if (info1.data_cs != info2.data_cs || info1.default_match != info2.default_match ||
1905
4.51k
        info1.icc_num_components != info2.icc_num_components || info1.is_lab != info2.is_lab ||
1906
4.51k
        info1.icc_hash != info2.icc_hash)
1907
0
        return true;
1908
4.51k
    else
1909
4.51k
        return false;
1910
4.51k
}
1911
1912
/* Determine which image-related properties are unknown */
1913
static uint     /* mask of unknown properties(see pcls->known) */
1914
clist_image_unknowns(gx_device *dev, const clist_image_enum *pie)
1915
449k
{
1916
449k
    gx_device_clist_writer * const cdev =
1917
449k
        &((gx_device_clist *)dev)->writer;
1918
449k
    const gs_gstate *const pgs = pie->pgs;
1919
449k
    uint unknown = 0;
1920
1921
    /*
1922
     * Determine if the CTM, color space, fill_adjust and clipping region,
1923
     * (and, for masked images or images with CombineWithColor, the current
1924
     * color) are unknown. Set the device state in anticipation of the
1925
     * values becoming known.
1926
     */
1927
449k
    if (cdev->gs_gstate.ctm.xx != pgs->ctm.xx ||
1928
424k
        cdev->gs_gstate.ctm.xy != pgs->ctm.xy ||
1929
424k
        cdev->gs_gstate.ctm.yx != pgs->ctm.yx ||
1930
424k
        cdev->gs_gstate.ctm.yy != pgs->ctm.yy ||
1931
424k
        cdev->gs_gstate.ctm.tx != pgs->ctm.tx ||
1932
247k
        cdev->gs_gstate.ctm.ty != pgs->ctm.ty
1933
449k
        ) {
1934
324k
        unknown |= ctm_known;
1935
324k
        cdev->gs_gstate.ctm = pgs->ctm;
1936
324k
    }
1937
449k
    if (pie->color_space.id == gs_no_id) { /* masked image */
1938
399k
        cdev->color_space.space = 0; /* for GC */
1939
399k
    } else {                    /* not masked */
1940
50.5k
        if (cdev->color_space.id != pie->color_space.id ||
1941
10.8k
            cdev->color_space.space != pie->color_space.space ||
1942
46.0k
            icc_info_notequal(cdev->color_space.icc_info, pie->color_space.icc_info)) {
1943
46.0k
            unknown |= color_space_known;
1944
46.0k
            cdev->color_space.space = pie->color_space.space;
1945
46.0k
            cdev->color_space = pie->color_space;
1946
46.0k
            memcpy(&(cdev->color_space.icc_info), &(pie->color_space.icc_info), sizeof(clist_icc_color_t));
1947
46.0k
        }
1948
50.5k
    }
1949
449k
    if (cdev->gs_gstate.fill_adjust.x != pgs->fill_adjust.x ||
1950
448k
        cdev->gs_gstate.fill_adjust.y != pgs->fill_adjust.y) {
1951
1.28k
        unknown |= fill_adjust_known;
1952
1.28k
        cdev->gs_gstate.fill_adjust = pgs->fill_adjust;
1953
1.28k
    }
1954
449k
    if (cmd_check_clip_path(cdev, pie->pcpath))
1955
449k
        unknown |= clip_path_known;
1956
    /*
1957
     * Note: overprint and overprint_mode are implemented via a compositor
1958
     * device, which is passed separately through the command list. Hence,
1959
     * though both parameters are passed in the state as well, this usually
1960
     * has no effect.
1961
     */
1962
449k
    if (cdev->gs_gstate.overprint != pgs->overprint ||
1963
449k
        cdev->gs_gstate.overprint_mode != pgs->overprint_mode ||
1964
448k
        cdev->gs_gstate.blend_mode != pgs->blend_mode ||
1965
430k
        cdev->gs_gstate.text_knockout != pgs->text_knockout ||
1966
430k
        cdev->gs_gstate.renderingintent != pgs->renderingintent) {
1967
20.8k
        unknown |= op_bm_tk_known;
1968
20.8k
        cdev->gs_gstate.overprint = pgs->overprint;
1969
20.8k
        cdev->gs_gstate.overprint_mode = pgs->overprint_mode;
1970
20.8k
        cdev->gs_gstate.blend_mode = pgs->blend_mode;
1971
20.8k
        cdev->gs_gstate.text_knockout = pgs->text_knockout;
1972
20.8k
        cdev->gs_gstate.renderingintent = pgs->renderingintent;
1973
20.8k
    }
1974
449k
    if (cdev->gs_gstate.alphaisshape != pgs->alphaisshape) {
1975
73
        unknown |= ais_known;
1976
73
        cdev->gs_gstate.alphaisshape = pgs->alphaisshape;
1977
73
    }
1978
449k
    if (cdev->gs_gstate.strokeconstantalpha != pgs->strokeconstantalpha) {
1979
12
        unknown |= stroke_alpha_known;
1980
12
        cdev->gs_gstate.strokeconstantalpha = pgs->strokeconstantalpha;
1981
12
    }
1982
449k
    if (cdev->gs_gstate.fillconstantalpha != pgs->fillconstantalpha) {
1983
299
        unknown |= fill_alpha_known;
1984
299
        cdev->gs_gstate.fillconstantalpha = pgs->fillconstantalpha;
1985
299
    }
1986
449k
    return unknown;
1987
449k
}
1988
1989
/* Construct the begin_image command. */
1990
static int
1991
begin_image_command(byte *buf, uint buf_size, const gs_image_common_t *pic)
1992
449k
{
1993
449k
    int i;
1994
449k
    stream s;
1995
449k
    const gs_color_space *ignore_pcs;
1996
449k
    int code;
1997
1998
2.19M
    for (i = 0; i < gx_image_type_table_count; ++i)
1999
2.19M
        if (gx_image_type_table[i] == pic->type)
2000
449k
            break;
2001
449k
    if (i >= gx_image_type_table_count)
2002
0
        return_error(gs_error_rangecheck);
2003
449k
    s_init(&s, NULL);
2004
449k
    swrite_string(&s, buf, buf_size);
2005
449k
    sputc(&s, (byte)i);
2006
449k
    code = pic->type->sput(pic, &s, &ignore_pcs);
2007
449k
    return (code < 0 ? code : stell(&s));
2008
449k
}
2009
2010
/* Write data for a partial image. */
2011
static int
2012
cmd_image_plane_data(gx_device_clist_writer * cldev, gx_clist_state * pcls,
2013
                     const gx_image_plane_t * planes,
2014
                     const gx_image_enum_common_t * pie,
2015
                     uint bytes_per_plane, const uint * offsets,
2016
                     int dx, int h)
2017
2.53M
{
2018
2.53M
    int data_x = planes[0].data_x + dx;
2019
2.53M
    uint nbytes = bytes_per_plane * pie->num_planes * h;
2020
2.53M
    uint len = 1 + cmd_size2w(h, bytes_per_plane) + nbytes;
2021
2.53M
    byte *dp;
2022
2.53M
    uint offset = 0;
2023
2.53M
    int plane, i;
2024
2.53M
    int code;
2025
2026
2.53M
    if (data_x) {
2027
6.76k
        code = cmd_put_set_data_x(cldev, pcls, data_x);
2028
6.76k
        if (code < 0)
2029
0
            return code;
2030
6.76k
        offset = ((data_x & ~7) * cldev->clist_color_info.depth) >> 3;
2031
6.76k
    }
2032
2.53M
    code = set_cmd_put_op(&dp, cldev, pcls, cmd_opv_image_data, len);
2033
2.53M
    if (code < 0)
2034
0
        return code;
2035
2.53M
    dp++;
2036
2.53M
    cmd_put2w(h, bytes_per_plane, &dp);
2037
5.07M
    for (plane = 0; plane < pie->num_planes; ++plane)
2038
8.24M
        for (i = 0; i < h; ++i) {
2039
5.70M
            memcpy(dp,
2040
5.70M
                   planes[plane].data + i * planes[plane].raster +
2041
5.70M
                   offsets[plane] + offset,
2042
5.70M
                   bytes_per_plane);
2043
5.70M
            dp += bytes_per_plane;
2044
5.70M
        }
2045
2.53M
    return 0;
2046
2.53M
}
2047
2048
/* Write data for a partial image with color monitor. */
2049
static int
2050
cmd_image_plane_data_mon(gx_device_clist_writer * cldev, gx_clist_state * pcls,
2051
                     const gx_image_plane_t * planes,
2052
                     const gx_image_enum_common_t * pie,
2053
                     uint bytes_per_plane, const uint * offsets,
2054
                     int dx, int h, bool *found_color)
2055
0
{
2056
0
    clist_image_enum *pie_c = (clist_image_enum *) pie;
2057
0
    int data_x = planes[0].data_x + dx;
2058
0
    uint nbytes = bytes_per_plane * pie->num_planes * h;
2059
0
    uint len = 1 + cmd_size2w(h, bytes_per_plane) + nbytes;
2060
0
    byte *dp;
2061
0
    uint offset = 0;
2062
0
    int plane, i;
2063
0
    int code;
2064
0
    int width = pie_c->rect.q.x - pie_c->rect.p.x;
2065
0
    int dsize = (((width + (planes[0]).data_x) * pie_c->decode.spp *
2066
0
        pie_c->decode.bps / pie->num_planes + 7) >> 3);
2067
0
    int data_size = pie_c->decode.spread / pie->num_planes;
2068
2069
0
    *found_color = false;
2070
2071
0
    if (data_x) {
2072
0
        code = cmd_put_set_data_x(cldev, pcls, data_x);
2073
0
        if (code < 0)
2074
0
            return code;
2075
0
        offset = ((data_x & ~7) * cldev->clist_color_info.depth) >> 3;
2076
0
    }
2077
0
    code = set_cmd_put_op(&dp, cldev, pcls, cmd_opv_image_data, len);
2078
0
    if (code < 0)
2079
0
        return code;
2080
0
    dp++;
2081
2082
0
    cmd_put2w(h, bytes_per_plane, &dp);
2083
2084
0
    for (i = 0; i < h; ++i) {
2085
0
        if (!(*found_color)) {
2086
            /* Here we need to unpack and actually look at the image data
2087
               to see if we have any non-neutral colors */
2088
0
            int pdata_x;
2089
0
            byte *data_ptr =  (byte *)(planes[0].data + i * planes[0].raster + offsets[0] + offset);
2090
0
            byte *buffer = (byte *)(*pie_c->decode.unpack)(pie_c->buffer, &pdata_x,
2091
0
                                     data_ptr, 0, dsize, pie_c->decode.map,
2092
0
                pie_c->decode.spread, pie_c->decode.spp);
2093
2094
0
            for (plane = 1; plane < pie->num_planes; ++plane) {
2095
                /* unpack planes after the first (if any), relying on spread to place the */
2096
                /* data at the correct spacing, with the buffer start adjusted for each plane */
2097
0
                data_ptr = (byte *)(planes[plane].data + i * planes[plane].raster + offsets[plane] + offset);
2098
0
                (*pie_c->decode.unpack)(pie_c->buffer + (data_size * plane), &pdata_x, data_ptr, 0,
2099
0
                    dsize, pie_c->decode.map, pie_c->decode.spread, pie_c->decode.spp);
2100
0
            }
2101
0
            if (row_has_color(buffer, pie_c, data_size, width)) {
2102
                /* Has color.  We are done monitoring */
2103
0
                *found_color = true;
2104
0
            }
2105
0
        }
2106
        /* Now copy the plane data into the clist buffer */
2107
0
        for (plane = 0; plane < pie->num_planes; ++plane) {
2108
0
            memcpy(dp, planes[plane].data + i * planes[plane].raster +
2109
0
                   offsets[plane] + offset, bytes_per_plane);
2110
0
            dp += bytes_per_plane;
2111
0
        }
2112
0
    }
2113
0
    return 0;
2114
0
}
2115
2116
/* Write image_end commands into all bands */
2117
static int      /* ret 0 ok, else -ve error status */
2118
write_image_end_all(gx_device *dev, const clist_image_enum *pie)
2119
449k
{
2120
449k
    gx_device_clist_writer * const cdev =
2121
449k
        &((gx_device_clist *)dev)->writer;
2122
449k
    int code;
2123
449k
    int ry = pie->ymin;
2124
449k
    int rheight = pie->ymax - ry;
2125
449k
    cmd_rects_enum_t re;
2126
2127
    /*
2128
     * We need to check specially for images lying entirely outside the
2129
     * page, since the RECT writing logic doesn't do this.
2130
     */
2131
449k
    if (pie->ymax < 0 || ry >= dev->height)
2132
106k
        return 0;
2133
343k
    if (cdev->permanent_error < 0)
2134
0
      return (cdev->permanent_error);
2135
343k
    RECT_ENUM_INIT(re, ry, rheight);
2136
1.32M
    do {
2137
1.32M
        byte *dp;
2138
2139
1.32M
        RECT_STEP_INIT(re);
2140
1.32M
        if (re.pcls->known & begin_image_known) {
2141
657k
            if_debug1m('L', dev->memory, "[L]image_end for band %d\n", re.band);
2142
657k
            code = set_cmd_put_op(&dp, cdev, re.pcls, cmd_opv_image_data, 2);
2143
657k
            if (code < 0)
2144
0
                return code;
2145
657k
            dp[1] = 0;      /* EOD */
2146
657k
            re.pcls->known ^= begin_image_known;
2147
657k
        }
2148
1.32M
    } while ((re.y += re.height) < re.yend);
2149
    /* Make sure to clean up the buffer if we were monitoring */
2150
343k
    if (pie->buffer != NULL) {
2151
0
        gs_free_object(pie->memory, pie->buffer, "write_image_end_all");
2152
0
    }
2153
343k
    return 0;
2154
343k
}
2155
2156
/*
2157
 * Compare a rectangle vs. clip path.  Return true if there is no clipping
2158
 * path, if the rectangle is unclipped, or if the clipping path is a
2159
 * rectangle and intersects the given rectangle.
2160
 */
2161
static bool
2162
check_rect_for_trivial_clip(
2163
    const gx_clip_path *pcpath, /* May be NULL, clip to evaluate */
2164
    int px, int py, int qx, int qy      /* corners of box to test */
2165
)
2166
0
{
2167
0
    gs_fixed_rect obox;
2168
0
    gs_fixed_rect imgbox;
2169
2170
0
    if (!pcpath)
2171
0
        return true;
2172
2173
0
    imgbox.p.x = int2fixed(px);
2174
0
    imgbox.p.y = int2fixed(py);
2175
0
    imgbox.q.x = int2fixed(qx);
2176
0
    imgbox.q.y = int2fixed(qy);
2177
0
    if (gx_cpath_includes_rectangle(pcpath,
2178
0
                                    imgbox.p.x, imgbox.p.y,
2179
0
                                    imgbox.q.x, imgbox.q.y))
2180
0
        return true;
2181
2182
0
    return (gx_cpath_outer_box(pcpath, &obox) /* cpath is rectangle */ &&
2183
0
            obox.p.x <= imgbox.q.x && obox.q.x >= imgbox.p.x &&
2184
0
            obox.p.y <= imgbox.q.y && obox.q.y >= imgbox.p.y );
2185
0
}