Coverage Report

Created: 2025-06-10 07:27

/src/ghostpdl/base/gxipixel.c
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1
/* Copyright (C) 2001-2025 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Common code for ImageType 1 and 4 initialization */
18
#include "gx.h"
19
#include "math_.h"
20
#include "memory_.h"
21
#include "gpcheck.h"
22
#include "gscdefs.h"            /* for image class table */
23
#include "gserrors.h"
24
#include "gsstruct.h"
25
#include "gsutil.h"
26
#include "gxfixed.h"
27
#include "gxfrac.h"
28
#include "gxarith.h"
29
#include "gxmatrix.h"
30
#include "gsccolor.h"
31
#include "gspaint.h"
32
#include "gzstate.h"
33
#include "gxdevice.h"
34
#include "gzpath.h"
35
#include "gzcpath.h"
36
#include "gxdevmem.h"
37
#include "gximage.h"
38
#include "gxiparam.h"
39
#include "gdevmrop.h"
40
#include "gscspace.h"
41
#include "gscindex.h"
42
#include "gsicc_cache.h"
43
#include "gsicc_cms.h"
44
#include "gsicc_manage.h"
45
#include "gxdevsop.h"
46
47
/* Structure descriptors */
48
private_st_gx_image_enum();
49
50
/* Image class procedures */
51
extern_gx_image_class_table();
52
53
/* Enumerator procedures */
54
static const gx_image_enum_procs_t image1_enum_procs = {
55
    gx_image1_plane_data, gx_image1_end_image, gx_image1_flush
56
};
57
58
/* GC procedures */
59
gs_private_st_ptrs2(st_color_cache, gx_image_color_cache_t, "gx_image_color_cache",
60
                    color_cache_enum_ptrs, color_cache_reloc_ptrs,
61
                    is_transparent, device_contone);
62
static
63
2.29k
ENUM_PTRS_WITH(image_enum_enum_ptrs, gx_image_enum *eptr)
64
847
{
65
847
    int bps;
66
847
    gs_ptr_type_t ret;
67
68
    /* Enumerate the used members of clues.dev_color. */
69
847
    index -= gx_image_enum_num_ptrs;
70
847
    bps = eptr->unpack_bps;
71
847
    if (eptr->spp != 1)
72
0
        bps = 8;
73
847
    else if (bps > 8 || eptr->unpack == sample_unpack_copy)
74
0
        bps = 1;
75
847
    if (index >= (1 << bps) * st_device_color_max_ptrs)         /* done */
76
121
        return 0;
77
    /* the clues may have been cleared by gx_image_free_enum, but not freed in that */
78
    /* function due to being at a different save level. Only trace if dev_color.type != 0. */
79
726
    if (eptr->spp == 1) {
80
726
        if (eptr->clues != NULL) {
81
726
            if (eptr->clues[(index/st_device_color_max_ptrs) *
82
726
                (255 / ((1 << bps) - 1))].dev_color.type != 0) {
83
726
                ret = ENUM_USING(st_device_color,
84
726
                                 &eptr->clues[(index / st_device_color_max_ptrs) *
85
726
                                 (255 / ((1 << bps) - 1))].dev_color,
86
726
                                 sizeof(eptr->clues[0].dev_color),
87
726
                                 index % st_device_color_max_ptrs);
88
726
            } else {
89
0
                ret = 0;
90
0
            }
91
726
        } else {
92
0
            ret = 0;
93
0
        }
94
726
    } else {
95
0
        ret = 0;
96
0
    }
97
726
    if (ret == 0)               /* don't stop early */
98
726
        ENUM_RETURN(0);
99
0
    return ret;
100
726
}
101
102
1.45k
#define e1(i,elt) ENUM_PTR(i,gx_image_enum,elt);
103
2.29k
gx_image_enum_do_ptrs(e1)
104
2.29k
#undef e1
105
2.29k
ENUM_PTRS_END
106
107
121
static RELOC_PTRS_WITH(image_enum_reloc_ptrs, gx_image_enum *eptr)
108
121
{
109
121
    int i;
110
111
1.45k
#define r1(i,elt) RELOC_PTR(gx_image_enum,elt);
112
1.45k
    gx_image_enum_do_ptrs(r1)
113
121
#undef r1
114
121
    {
115
121
        int bps = eptr->unpack_bps;
116
117
121
        if (eptr->spp != 1)
118
0
            bps = 8;
119
121
        else if (bps > 8 || eptr->unpack == sample_unpack_copy)
120
0
            bps = 1;
121
121
        if (eptr->spp == 1) {
122
363
        for (i = 0; i <= 255; i += 255 / ((1 << bps) - 1))
123
242
            RELOC_USING(st_device_color,
124
121
                        &eptr->clues[i].dev_color, sizeof(gx_device_color));
125
121
    }
126
121
}
127
121
}
128
121
RELOC_PTRS_END
129
130
/* Forward declarations */
131
static int color_draws_b_w(gx_device * dev,
132
                            const gx_drawing_color * pdcolor);
133
static int image_init_colors(gx_image_enum * penum, int bps, int spp,
134
                               gs_image_format_t format,
135
                               const float *decode,
136
                               const gs_gstate * pgs, gx_device * dev,
137
                               const gs_color_space * pcs, bool * pdcb);
138
139
/* Procedures for unpacking the input data into bytes or fracs. */
140
/*extern SAMPLE_UNPACK_PROC(sample_unpack_copy); *//* declared above */
141
142
/*
143
 * Do common initialization for processing an ImageType 1 or 4 image.
144
 * Allocate the enumerator and fill in the following members:
145
 *      rect
146
 */
147
int
148
gx_image_enum_alloc(const gs_image_common_t * pic,
149
                    const gs_int_rect * prect, gs_memory_t * mem,
150
                    gx_image_enum **ppenum)
151
2.09M
{
152
2.09M
    const gs_pixel_image_t *pim = (const gs_pixel_image_t *)pic;
153
2.09M
    int width = pim->Width, height = pim->Height;
154
2.09M
    int bpc = pim->BitsPerComponent;
155
2.09M
    gx_image_enum *penum;
156
157
2.09M
    if (width < 0 || height < 0)
158
0
        return_error(gs_error_rangecheck);
159
2.09M
    switch (pim->format) {
160
2.05M
    case gs_image_format_chunky:
161
2.09M
    case gs_image_format_component_planar:
162
2.09M
        switch (bpc) {
163
2.09M
        case 1: case 2: case 4: case 8: case 12: case 16: break;
164
2
        default: return_error(gs_error_rangecheck);
165
2.09M
        }
166
2.09M
        break;
167
2.09M
    case gs_image_format_bit_planar:
168
0
        if (bpc < 1 || bpc > 8)
169
0
            return_error(gs_error_rangecheck);
170
2.09M
    }
171
2.09M
    if (prect) {
172
681k
        if (prect->p.x < 0 || prect->p.y < 0 ||
173
681k
            prect->q.x < prect->p.x || prect->q.y < prect->p.y ||
174
681k
            prect->q.x > width || prect->q.y > height
175
681k
            )
176
0
            return_error(gs_error_rangecheck);
177
681k
    }
178
2.09M
    *ppenum = NULL;   /* in case alloc fails and caller doesn't check code */
179
2.09M
    penum = gs_alloc_struct(mem, gx_image_enum, &st_gx_image_enum,
180
2.09M
                            "gx_default_begin_image");
181
2.09M
    if (penum == 0)
182
0
        return_error(gs_error_VMerror);
183
2.09M
    memset(penum, 0, sizeof(gx_image_enum));  /* in case of failure, no dangling pointers */
184
2.09M
    if (prect) {
185
681k
        penum->rect.x = prect->p.x;
186
681k
        penum->rect.y = prect->p.y;
187
681k
        penum->rect.w = prect->q.x - prect->p.x;
188
681k
        penum->rect.h = prect->q.y - prect->p.y;
189
1.41M
    } else {
190
1.41M
        penum->rect.x = 0, penum->rect.y = 0;
191
1.41M
        penum->rect.w = width, penum->rect.h = height;
192
1.41M
    }
193
2.09M
    penum->rrect.x = penum->rect.x;
194
2.09M
    penum->rrect.y = penum->rect.y;
195
2.09M
    penum->rrect.w = penum->rect.w;
196
2.09M
    penum->rrect.h = penum->rect.h;
197
2.09M
    penum->drect.x = penum->rect.x;
198
2.09M
    penum->drect.y = penum->rect.y;
199
2.09M
    penum->drect.w = penum->rect.w;
200
2.09M
    penum->drect.h = penum->rect.h;
201
#ifdef DEBUG
202
    if (gs_debug_c('b')) {
203
        dmlprintf2(mem, "[b]Image: w=%d h=%d", width, height);
204
        if (prect)
205
            dmprintf4(mem, " ((%d,%d),(%d,%d))",
206
                     prect->p.x, prect->p.y, prect->q.x, prect->q.y);
207
    }
208
#endif
209
2.09M
    *ppenum = penum;
210
2.09M
    return 0;
211
2.09M
}
212
213
/* Convert and restrict to a valid range. */
214
5.65M
static inline fixed float2fixed_rounded_boxed(double src) {
215
5.65M
    float v = floor(src*fixed_scale + 0.5);
216
217
5.65M
    if (v <= min_fixed)
218
32.0k
        return min_fixed;
219
5.62M
    else if (v >= max_fixed)
220
56.7k
        return max_fixed;
221
5.56M
    else
222
5.56M
        return  (fixed)v;
223
5.65M
}
224
225
/* Compute the image matrix combining the ImageMatrix with either the pmat or the pgs ctm */
226
int
227
gx_image_compute_mat(const gs_gstate *pgs, const gs_matrix *pmat, const gs_matrix *ImageMatrix,
228
                     gs_matrix_double *rmat)
229
3.00M
{
230
3.00M
    int code = 0;
231
232
3.00M
    if (pmat == 0)
233
2.93M
        pmat = &ctm_only(pgs);
234
3.00M
    if (ImageMatrix->xx == pmat->xx && ImageMatrix->xy == pmat->xy &&
235
3.00M
        ImageMatrix->yx == pmat->yx && ImageMatrix->yy == pmat->yy) {
236
        /* Process common special case separately to accept singular matrix. */
237
1.32M
        rmat->xx = rmat->yy = 1.;
238
1.32M
        rmat->xy = rmat->yx = 0.;
239
1.32M
        rmat->tx = pmat->tx - ImageMatrix->tx;
240
1.32M
        rmat->ty = pmat->ty - ImageMatrix->ty;
241
1.68M
    } else {
242
1.68M
        if ((code = gs_matrix_invert_to_double(ImageMatrix, rmat)) < 0 ||
243
1.68M
            (code = gs_matrix_multiply_double(rmat, pmat, rmat)) < 0
244
1.68M
            ) {
245
124
            return code;
246
124
        }
247
1.68M
    }
248
3.00M
    return code;
249
3.00M
}
250
251
/*
252
 * Finish initialization for processing an ImageType 1 or 4 image.
253
 * Assumes the following members of *penum are set in addition to those
254
 * set by gx_image_enum_alloc:
255
 *      alpha, use_mask_color, mask_color (if use_mask_color is true),
256
 *      masked, adjust
257
 */
258
int
259
gx_image_enum_begin(gx_device * dev, const gs_gstate * pgs,
260
                    const gs_matrix *pmat, const gs_image_common_t * pic,
261
                const gx_drawing_color * pdcolor, const gx_clip_path * pcpath,
262
                gs_memory_t * mem, gx_image_enum *penum)
263
2.09M
{
264
2.09M
    const gs_pixel_image_t *pim = (const gs_pixel_image_t *)pic;
265
2.09M
    gs_image_format_t format = pim->format;
266
2.09M
    const int width = pim->Width;
267
2.09M
    const int height = pim->Height;
268
2.09M
    const int bps = pim->BitsPerComponent;
269
2.09M
    bool masked = penum->masked;
270
2.09M
    const float *decode = pim->Decode;
271
2.09M
    gs_matrix_double mat;
272
2.09M
    int index_bps;
273
2.09M
    gs_color_space *pcs = pim->ColorSpace;
274
2.09M
    gs_logical_operation_t lop = (pgs ? pgs->log_op : lop_default);
275
2.09M
    int code;
276
2.09M
    int log2_xbytes = (bps <= 8 ? 0 : arch_log2_sizeof_frac);
277
2.09M
    int spp, nplanes, spread;
278
2.09M
    uint bsize;
279
2.09M
    byte *buffer = NULL;
280
2.09M
    fixed mtx, mty;
281
2.09M
    gs_fixed_point row_extent, col_extent, x_extent, y_extent;
282
2.09M
    bool device_color = true;
283
2.09M
    gs_fixed_rect obox, cbox;
284
2.09M
    bool gridfitimages = 0;
285
2.09M
    bool in_pattern_accumulator;
286
2.09M
    bool in_smask;
287
2.09M
    int orthogonal;
288
2.09M
    int force_interpolation = 0;
289
290
2.09M
    penum->pcs = NULL;
291
2.09M
    penum->clues = NULL;
292
2.09M
    penum->icc_setup.has_transfer = false;
293
2.09M
    penum->icc_setup.is_lab = false;
294
2.09M
    penum->icc_setup.must_halftone = false;
295
2.09M
    penum->icc_setup.need_decode = false;
296
2.09M
    penum->Width = width;
297
2.09M
    penum->Height = height;
298
299
2.09M
    if ((code = gx_image_compute_mat(pgs, pmat, &(pim->ImageMatrix), &mat)) < 0) {
300
100
        return code;
301
100
    }
302
2.09M
    lop = lop_sanitize(lop);
303
    /* Grid fit: A common construction in postscript/PDF files is for images
304
     * to be constructed as a series of 'stacked' 1 pixel high images.
305
     * Furthermore, many of these are implemented as an imagemask plotted on
306
     * top of thin rectangles. The different fill rules for images and line
307
     * art produces problems; line art fills a pixel if any part of it is
308
     * touched - images only fill a pixel if the centre of the pixel is
309
     * covered. Bug 692666 is such a problem.
310
     *
311
     * As a workaround for this problem, the code below was introduced. The
312
     * concept is that orthogonal images can be 'grid fitted' (or 'stretch')
313
     * to entirely cover pixels that they touch. Initially I had this working
314
     * for all images regardless of type, but as testing has proceeded, this
315
     * showed more and more regressions, so I've cut the cases back in which
316
     * this code is used until it now only triggers on imagemasks that are
317
     * either 1 pixel high, or wide, and then not if we are rendering a
318
     * glyph (such as from a type3 font).
319
     */
320
321
    /* Ask the device if we are in a pattern accumulator */
322
2.09M
    in_pattern_accumulator = (dev_proc(dev, dev_spec_op)(dev, gxdso_in_pattern_accumulator, NULL, 0));
323
2.09M
    if (in_pattern_accumulator < 0)
324
1.48M
        in_pattern_accumulator = 0;
325
326
    /* Figure out if we are orthogonal */
327
2.09M
    if (mat.xy == 0 && mat.yx == 0)
328
1.90M
        orthogonal = 1;
329
187k
    else if (mat.xx == 0 && mat.yy == 0)
330
79.4k
        orthogonal = 2;
331
108k
    else
332
108k
        orthogonal = 0;
333
334
    /* If we are in a pattern accumulator, we choose to always grid fit
335
     * orthogonal images. We do this by asking the device whether we
336
     * should grid fit. This allows us to avoid nasty blank lines around
337
     * the edges of cells. Similarly, for smasks.
338
     */
339
2.09M
    in_smask = (pim->override_in_smask ||
340
2.09M
                (dev_proc(dev, dev_spec_op)(dev, gxdso_in_smask, NULL, 0)) > 0);
341
2.09M
    gridfitimages = (in_smask || in_pattern_accumulator) && orthogonal;
342
343
2.09M
    if (pgs != NULL && pgs->show_gstate != NULL) {
344
        /* If we're a graphics state, and we're in a text object, then we
345
         * must be in a type3 font. Don't fiddle with it. */
346
1.85M
    } else if (!gridfitimages &&
347
1.85M
               (!penum->masked || penum->image_parent_type != 0)) {
348
        /* Other than for images we are specifically looking to grid fit (such as
349
         * ones in a pattern device), we only grid fit imagemasks */
350
1.22M
    } else if (gridfitimages && (penum->masked && penum->image_parent_type == 0)) {
351
        /* We don't gridfit imagemasks in a pattern accumulator */
352
621k
    } else if (pgs != NULL && pgs->fill_adjust.x == 0 && pgs->fill_adjust.y == 0) {
353
        /* If fill adjust is disabled, so is grid fitting */
354
621k
    } else if (orthogonal == 1) {
355
523k
        if (width == 1 || gridfitimages) {
356
489k
            if (mat.xx > 0) {
357
489k
                fixed ix0 = int2fixed(fixed2int(float2fixed(mat.tx)));
358
489k
                double x1 = mat.tx + mat.xx * width;
359
489k
                fixed ix1 = int2fixed(fixed2int_ceiling(float2fixed(x1)));
360
489k
                mat.tx = (double)fixed2float(ix0);
361
489k
                mat.xx = (double)(fixed2float(ix1 - ix0)/width);
362
489k
            } else if (mat.xx < 0) {
363
198
                fixed ix0 = int2fixed(fixed2int_ceiling(float2fixed(mat.tx)));
364
198
                double x1 = mat.tx + mat.xx * width;
365
198
                fixed ix1 = int2fixed(fixed2int(float2fixed(x1)));
366
198
                mat.tx = (double)fixed2float(ix0);
367
198
                mat.xx = (double)(fixed2float(ix1 - ix0)/width);
368
198
            }
369
489k
        }
370
523k
        if (height == 1 || gridfitimages) {
371
489k
            if (mat.yy > 0) {
372
366k
                fixed iy0 = int2fixed(fixed2int(float2fixed(mat.ty)));
373
366k
                double y1 = mat.ty + mat.yy * height;
374
366k
                fixed iy1 = int2fixed(fixed2int_ceiling(float2fixed(y1)));
375
366k
                mat.ty = (double)fixed2float(iy0);
376
366k
                mat.yy = (double)(fixed2float(iy1 - iy0)/height);
377
366k
            } else if (mat.yy < 0) {
378
123k
                fixed iy0 = int2fixed(fixed2int_ceiling(float2fixed(mat.ty)));
379
123k
                double y1 = mat.ty + mat.yy * height;
380
123k
                fixed iy1 = int2fixed(fixed2int(float2fixed(y1)));
381
123k
                mat.ty = (double)fixed2float(iy0);
382
123k
                mat.yy = ((double)fixed2float(iy1 - iy0)/height);
383
123k
            }
384
489k
        }
385
523k
    } else if (orthogonal == 2) {
386
77.7k
        if (height == 1 || gridfitimages) {
387
0
            if (mat.yx > 0) {
388
0
                fixed ix0 = int2fixed(fixed2int(float2fixed(mat.tx)));
389
0
                double x1 = mat.tx + mat.yx * height;
390
0
                fixed ix1 = int2fixed(fixed2int_ceiling(float2fixed(x1)));
391
0
                mat.tx = (double)fixed2float(ix0);
392
0
                mat.yx = (double)(fixed2float(ix1 - ix0)/height);
393
0
            } else if (mat.yx < 0) {
394
0
                fixed ix0 = int2fixed(fixed2int_ceiling(float2fixed(mat.tx)));
395
0
                double x1 = mat.tx + mat.yx * height;
396
0
                fixed ix1 = int2fixed(fixed2int(float2fixed(x1)));
397
0
                mat.tx = (double)fixed2float(ix0);
398
0
                mat.yx = (double)(fixed2float(ix1 - ix0)/height);
399
0
            }
400
0
        }
401
77.7k
        if (width == 1 || gridfitimages) {
402
0
            if (mat.xy > 0) {
403
0
                fixed iy0 = int2fixed(fixed2int(float2fixed(mat.ty)));
404
0
                double y1 = mat.ty + mat.xy * width;
405
0
                fixed iy1 = int2fixed(fixed2int_ceiling(float2fixed(y1)));
406
0
                mat.ty = (double)fixed2float(iy0);
407
0
                mat.xy = (double)(fixed2float(iy1 - iy0)/width);
408
0
            } else if (mat.xy < 0) {
409
0
                fixed iy0 = int2fixed(fixed2int_ceiling(float2fixed(mat.ty)));
410
0
                double y1 = mat.ty + mat.xy * width;
411
0
                fixed iy1 = int2fixed(fixed2int(float2fixed(y1)));
412
0
                mat.ty = (double)fixed2float(iy0);
413
0
                mat.xy = ((double)fixed2float(iy1 - iy0)/width);
414
0
            }
415
0
        }
416
77.7k
    }
417
418
    /* When rendering to a pattern accumulator, if we are downscaling
419
     * then enable interpolation, as otherwise dropouts can cause
420
     * serious problems. */
421
2.09M
    if (in_pattern_accumulator) {
422
471
        double ome = ((double)(fixed_1 - fixed_epsilon)) / (double)fixed_1; /* One Minus Epsilon */
423
424
471
        if (orthogonal == 1) {
425
461
            if ((mat.xx > -ome && mat.xx < ome) || (mat.yy > -ome && mat.yy < ome)) {
426
323
                force_interpolation = true;
427
323
            }
428
461
        } else if (orthogonal == 2) {
429
0
            if ((mat.xy > -ome && mat.xy < ome) || (mat.yx > -ome && mat.yx < ome)) {
430
0
                force_interpolation = true;
431
0
            }
432
0
        }
433
471
    }
434
435
    /* Can we restrict the amount of image we need? */
436
2.09M
    while (!pim->imagematrices_are_untrustworthy) /* So we can break out of it */
437
2.09M
    {
438
2.09M
        gs_rect rect, rect_src;
439
2.09M
        gs_matrix mi;
440
2.09M
        const gs_matrix *m = pgs != NULL ? &ctm_only(pgs) : NULL;
441
2.09M
        gs_int_rect irect;
442
2.09M
        if (m == NULL || (code = gs_matrix_invert(m, &mi)) < 0 ||
443
2.09M
            (code = gs_matrix_multiply(&mi, &pic->ImageMatrix, &mi)) < 0) {
444
            /* Give up trying to shrink the render box, but continue processing */
445
4.08k
            break;
446
4.08k
        }
447
2.09M
        if (pcpath)
448
657k
        {
449
657k
            gs_fixed_rect obox;
450
657k
            gx_cpath_outer_box(pcpath, &obox);
451
657k
            rect.p.x = fixed2float(obox.p.x);
452
657k
            rect.p.y = fixed2float(obox.p.y);
453
657k
            rect.q.x = fixed2float(obox.q.x);
454
657k
            rect.q.y = fixed2float(obox.q.y);
455
657k
        }
456
1.43M
        else
457
1.43M
        {
458
1.43M
            rect.p.x = 0;
459
1.43M
            rect.p.y = 0;
460
1.43M
            rect.q.x = dev->width;
461
1.43M
            rect.q.y = dev->height;
462
1.43M
        }
463
        /* rect is in destination space. Calculate rect_src, in source space. */
464
2.09M
        code = gs_bbox_transform(&rect, &mi, &rect_src);
465
2.09M
        if (code < 0) {
466
            /* Give up trying to shrink the render/decode boxes, but continue processing */
467
0
            break;
468
0
        }
469
        /* Need to expand the region to allow for the fact that the mitchell
470
         * scaler reads multiple pixels in. */
471
        /* If mi.{xx,yy} > 1 then we are downscaling. During downscaling,
472
         * the support increases to ensure that we don't lose pixels contributions
473
         * entirely. */
474
2.09M
        if (pim->Interpolate)
475
37
        {
476
37
            float support = any_abs(mi.xx);
477
37
            int isupport;
478
37
            if (any_abs(mi.yy) > support)
479
0
                support = any_abs(mi.yy);
480
37
            if (any_abs(mi.xy) > support)
481
1
                support = any_abs(mi.xy);
482
37
            if (any_abs(mi.yx) > support)
483
0
                support = any_abs(mi.yx);
484
            /* If upscaling (support < 1) then we need 2 extra lines on each side of the source region
485
             * (2 being the maximum support for mitchell scaling).
486
             * If downscaling, then the number of lines is increased to avoid individual
487
             * contributions dropping out. */
488
37
            isupport = 2; /* Mitchell support. */
489
37
            if (support > 1)
490
1
                isupport = (int)ceil(isupport * support);
491
37
            rect_src.p.x -= isupport;
492
37
            rect_src.p.y -= isupport;
493
37
            rect_src.q.x += isupport;
494
37
            rect_src.q.y += isupport+1; /* +1 is a fudge! */
495
37
        }
496
2.09M
        irect.p.x = (int)floor(rect_src.p.x);
497
2.09M
        irect.p.y = (int)floor(rect_src.p.y);
498
2.09M
        irect.q.x = (int)ceil(rect_src.q.x);
499
2.09M
        irect.q.y = (int)ceil(rect_src.q.y);
500
        /* We therefore only need to render within irect. Restrict rrect to this. */
501
2.09M
        if (penum->rrect.x < irect.p.x) {
502
76.3k
            penum->rrect.w -= irect.p.x - penum->rrect.x;
503
76.3k
            if (penum->rrect.w < 0)
504
66.6k
               penum->rrect.w = 0;
505
76.3k
            penum->rrect.x = irect.p.x;
506
76.3k
        }
507
2.09M
        if (penum->rrect.x + penum->rrect.w > irect.q.x) {
508
188k
            penum->rrect.w = irect.q.x - penum->rrect.x;
509
188k
            if (penum->rrect.w < 0)
510
163k
                penum->rrect.w = 0;
511
188k
        }
512
2.09M
        if (penum->rrect.y < irect.p.y) {
513
227k
            penum->rrect.h -= irect.p.y - penum->rrect.y;
514
227k
            if (penum->rrect.h < 0)
515
87.4k
                penum->rrect.h = 0;
516
227k
            penum->rrect.y = irect.p.y;
517
227k
        }
518
2.09M
        if (penum->rrect.y + penum->rrect.h > irect.q.y) {
519
189k
            penum->rrect.h = irect.q.y - penum->rrect.y;
520
189k
            if (penum->rrect.h < 0)
521
29.6k
                penum->rrect.h = 0;
522
189k
        }
523
2.09M
        if (penum->drect.x < irect.p.x) {
524
76.3k
            penum->drect.w -= irect.p.x - penum->drect.x;
525
76.3k
            if (penum->drect.w < 0)
526
66.6k
               penum->drect.w = 0;
527
76.3k
            penum->drect.x = irect.p.x;
528
76.3k
        }
529
2.09M
        if (penum->drect.x + penum->drect.w > irect.q.x) {
530
188k
            penum->drect.w = irect.q.x - penum->drect.x;
531
188k
            if (penum->drect.w < 0)
532
163k
                penum->drect.w = 0;
533
188k
        }
534
2.09M
        if (penum->drect.y < irect.p.y) {
535
227k
            penum->drect.h -= irect.p.y - penum->drect.y;
536
227k
            if (penum->drect.h < 0)
537
87.4k
                penum->drect.h = 0;
538
227k
            penum->drect.y = irect.p.y;
539
227k
        }
540
2.09M
        if (penum->drect.y + penum->drect.h > irect.q.y) {
541
189k
            penum->drect.h = irect.q.y - penum->drect.y;
542
189k
            if (penum->drect.h < 0)
543
29.6k
                penum->drect.h = 0;
544
189k
        }
545
2.09M
        break; /* Out of the while */
546
2.09M
    }
547
    /* Check for the intersection being null */
548
2.09M
    if (penum->drect.x + penum->drect.w <= penum->rect.x  ||
549
2.09M
        penum->rect.x  + penum->rect.w  <= penum->drect.x ||
550
2.09M
        penum->drect.y + penum->drect.h <= penum->rect.y  ||
551
2.09M
        penum->rect.y  + penum->rect.h  <= penum->drect.y)
552
251k
    {
553
          /* Something may have gone wrong with the floating point above.
554
           * set the region to something sane. */
555
251k
        penum->drect.x = penum->rect.x;
556
251k
        penum->drect.y = penum->rect.y;
557
251k
        penum->drect.w = 0;
558
251k
        penum->drect.h = 0;
559
251k
    }
560
2.09M
    if (penum->rrect.x + penum->rrect.w <= penum->drect.x  ||
561
2.09M
        penum->drect.x + penum->drect.w  <= penum->rrect.x ||
562
2.09M
        penum->rrect.y + penum->rrect.h <= penum->drect.y  ||
563
2.09M
        penum->drect.y + penum->drect.h  <= penum->rrect.y)
564
251k
    {
565
          /* Something may have gone wrong with the floating point above.
566
           * set the region to something sane. */
567
251k
        penum->rrect.x = penum->drect.x;
568
251k
        penum->rrect.y = penum->drect.y;
569
251k
        penum->rrect.w = 0;
570
251k
        penum->rrect.h = 0;
571
251k
    }
572
573
    /*penum->matrix = mat;*/
574
2.09M
    penum->matrix.xx = mat.xx;
575
2.09M
    penum->matrix.xy = mat.xy;
576
2.09M
    penum->matrix.yx = mat.yx;
577
2.09M
    penum->matrix.yy = mat.yy;
578
2.09M
    penum->matrix.tx = mat.tx;
579
2.09M
    penum->matrix.ty = mat.ty;
580
2.09M
    if_debug6m('b', mem, " [%g %g %g %g %g %g]\n",
581
2.09M
              mat.xx, mat.xy, mat.yx, mat.yy, mat.tx, mat.ty);
582
    /* following works for 1, 2, 4, 8, 12, 16 */
583
2.09M
    index_bps = (bps < 8 ? bps >> 1 : (bps >> 2) + 1);
584
    /*
585
     * Compute extents with distance transformation.
586
     */
587
2.09M
    if (mat.tx > 0)
588
1.70M
        mtx = float2fixed(mat.tx);
589
389k
    else { /* Use positive values to ensure round down. */
590
389k
        int f = (int)-mat.tx + 1;
591
592
389k
        mtx = float2fixed(mat.tx + f) - int2fixed(f);
593
389k
    }
594
2.09M
    if (mat.ty > 0)
595
578k
        mty = float2fixed(mat.ty);
596
1.51M
    else {  /* Use positive values to ensure round down. */
597
1.51M
        int f = (int)-mat.ty + 1;
598
599
1.51M
        mty = float2fixed(mat.ty + f) - int2fixed(f);
600
1.51M
    }
601
602
2.09M
    row_extent.x = float2fixed_rounded_boxed(width * mat.xx);
603
2.09M
    row_extent.y =
604
2.09M
        (is_fzero(mat.xy) ? fixed_0 :
605
2.09M
         float2fixed_rounded_boxed(width * mat.xy));
606
2.09M
    col_extent.x =
607
2.09M
        (is_fzero(mat.yx) ? fixed_0 :
608
2.09M
         float2fixed_rounded_boxed(height * mat.yx));
609
2.09M
    col_extent.y = float2fixed_rounded_boxed(height * mat.yy);
610
2.09M
    gx_image_enum_common_init((gx_image_enum_common_t *)penum,
611
2.09M
                              (const gs_data_image_t *)pim,
612
2.09M
                              &image1_enum_procs, dev,
613
2.09M
                              (masked ? 1 : (penum->alpha ? cs_num_components(pcs)+1 : cs_num_components(pcs))),
614
2.09M
                              format);
615
2.09M
    if (penum->rect.w == width && penum->rect.h == height) {
616
1.51M
        x_extent = row_extent;
617
1.51M
        y_extent = col_extent;
618
1.51M
    } else {
619
586k
        int rw = penum->rect.w, rh = penum->rect.h;
620
621
586k
        x_extent.x = float2fixed_rounded_boxed(rw * mat.xx);
622
586k
        x_extent.y =
623
586k
            (is_fzero(mat.xy) ? fixed_0 :
624
586k
             float2fixed_rounded_boxed(rw * mat.xy));
625
586k
        y_extent.x =
626
586k
            (is_fzero(mat.yx) ? fixed_0 :
627
586k
             float2fixed_rounded_boxed(rh * mat.yx));
628
586k
        y_extent.y = float2fixed_rounded_boxed(rh * mat.yy);
629
586k
    }
630
    /* Set icolor0 and icolor1 to point to image clues locations if we have
631
       1spp or an imagemask, otherwise image clues is not used and
632
       we have these values point to other member variables */
633
2.09M
    if (masked || cs_num_components(pcs) == 1) {
634
        /* Go ahead and allocate now if not already done.  For a mask
635
           we really should only do 2 values. For now, the goal is to
636
           eliminate the 256 bytes for the >8bpp image enumerator */
637
910k
        penum->clues = (gx_image_clue*) gs_alloc_bytes(mem, sizeof(gx_image_clue)*256,
638
910k
                             "gx_image_enum_begin");
639
910k
        if (penum->clues == NULL) {
640
0
            code = gs_error_VMerror;
641
0
            goto fail;
642
0
        }
643
910k
        penum->icolor0 = &(penum->clues[0].dev_color);
644
910k
        penum->icolor1 = &(penum->clues[255].dev_color);
645
1.18M
    } else {
646
1.18M
        penum->icolor0 = &(penum->icolor0_val);
647
1.18M
        penum->icolor1 = &(penum->icolor1_val);
648
1.18M
    }
649
2.09M
    penum->icolor0->tag = penum->icolor1->tag = device_current_tag(dev);
650
651
2.09M
    if (masked) {       /* This is imagemask. */
652
377k
        if (bps != 1 || pcs != NULL || penum->alpha || decode[0] == decode[1]) {
653
51
            code = gs_error_rangecheck;
654
51
            goto fail;
655
51
        }
656
        /* Initialize color entries 0 and 255. */
657
377k
        set_nonclient_dev_color(penum->icolor0, gx_no_color_index);
658
377k
        set_nonclient_dev_color(penum->icolor1, gx_no_color_index);
659
377k
        *(penum->icolor1) = *pdcolor;
660
377k
        memcpy(&penum->map[0].table.lookup4x1to32[0],
661
377k
               (decode[0] < decode[1] ? lookup4x1to32_inverted :
662
377k
                lookup4x1to32_identity),
663
377k
               16 * 4);
664
377k
        penum->map[0].decoding = sd_none;
665
377k
        spp = 1;
666
377k
        lop = rop3_know_S_0(lop);
667
1.71M
    } else {                    /* This is image, not imagemask. */
668
1.71M
        const gs_color_space_type *pcst = pcs->type;
669
1.71M
        int b_w_color;
670
671
1.71M
        spp = cs_num_components(pcs);
672
1.71M
        if (spp < 0) {          /* Pattern not allowed */
673
0
            code = gs_error_rangecheck;
674
0
            goto fail;
675
0
        }
676
1.71M
        if (penum->alpha)
677
0
            ++spp;
678
        /* Use a less expensive format if possible. */
679
1.71M
        switch (format) {
680
0
        case gs_image_format_bit_planar:
681
0
            if (bps > 1)
682
0
                break;
683
0
            format = gs_image_format_component_planar;
684
46.5k
        case gs_image_format_component_planar:
685
46.5k
            if (spp == 1)
686
0
                format = gs_image_format_chunky;
687
1.71M
        default:                /* chunky */
688
1.71M
            break;
689
1.71M
        }
690
691
1.71M
        if (pcs->cmm_icc_profile_data != NULL) {
692
1.69M
            device_color = false;
693
1.69M
        } else {
694
19.9k
            device_color = (*pcst->concrete_space) (pcs, pgs) == pcs;
695
19.9k
        }
696
697
1.71M
        code = image_init_colors(penum, bps, spp, format, decode, pgs, dev,
698
1.71M
                          pcs, &device_color);
699
1.71M
        if (code < 0) {
700
5
            gs_free_object(mem, penum->clues, "gx_image_enum_begin");
701
5
            gs_free_object(mem, penum, "gx_default_begin_image");
702
5
            return gs_throw(code, "Image colors initialization failed");
703
5
        }
704
        /* If we have a CIE based color space and the icc equivalent profile
705
           is not yet set, go ahead and handle that now.  It may already
706
           be done due to the above init_colors which may go through remap. */
707
1.71M
        if (gs_color_space_is_PSCIE(pcs) && pcs->icc_equivalent == NULL) {
708
0
            code = gs_colorspace_set_icc_equivalent((gs_color_space *)pcs, &(penum->icc_setup.is_lab),
709
0
                                                pgs->memory);
710
0
            if (code < 0)
711
0
                goto fail;
712
0
            if (penum->icc_setup.is_lab) {
713
                /* Free what ever profile was created and use the icc manager's
714
                   cielab profile */
715
0
                gs_color_space *curr_pcs = (gs_color_space *)pcs;
716
0
                rc_decrement(curr_pcs->icc_equivalent,"gx_image_enum_begin");
717
0
                gsicc_adjust_profile_rc(curr_pcs->cmm_icc_profile_data, -1,"gx_image_enum_begin");
718
0
                curr_pcs->cmm_icc_profile_data = pgs->icc_manager->lab_profile;
719
0
                gsicc_adjust_profile_rc(curr_pcs->cmm_icc_profile_data, 1,"gx_image_enum_begin");
720
0
            }
721
0
        }
722
        /* Try to transform non-default RasterOps to something */
723
        /* that we implement less expensively. */
724
1.71M
        if (!pim->CombineWithColor)
725
1.71M
            lop = rop3_know_T_0(lop);
726
0
        else if ((rop3_uses_T(lop) && color_draws_b_w(dev, pdcolor) == 0))
727
0
            lop = rop3_know_T_0(lop);
728
729
1.71M
        if (lop != rop3_S &&    /* if best case, no more work needed */
730
1.71M
            !rop3_uses_T(lop) && bps == 1 && spp == 1 &&
731
1.71M
            (b_w_color =
732
0
             color_draws_b_w(dev, penum->icolor0)) >= 0 &&
733
1.71M
            color_draws_b_w(dev, penum->icolor1) == (b_w_color ^ 1)
734
1.71M
            ) {
735
0
            if (b_w_color) {    /* Swap the colors and invert the RasterOp source. */
736
0
                gx_device_color dcolor;
737
738
0
                dcolor = *(penum->icolor0);
739
0
                *(penum->icolor0) = *(penum->icolor1);
740
0
                *(penum->icolor1) = dcolor;
741
0
                lop = rop3_invert_S(lop);
742
0
            }
743
            /*
744
             * At this point, we know that the source pixels
745
             * correspond directly to the S input for the raster op,
746
             * i.e., icolor0 is black and icolor1 is white.
747
             */
748
0
            switch (lop) {
749
0
                case rop3_D & rop3_S:
750
                    /* Implement this as an inverted mask writing 0s. */
751
0
                    *(penum->icolor1) = *(penum->icolor0);
752
                    /* (falls through) */
753
0
                case rop3_D | rop3_not(rop3_S):
754
                    /* Implement this as an inverted mask writing 1s. */
755
0
                    memcpy(&penum->map[0].table.lookup4x1to32[0],
756
0
                           lookup4x1to32_inverted, 16 * 4);
757
0
                  rmask:        /* Fill in the remaining parameters for a mask. */
758
0
                    penum->masked = masked = true;
759
0
                    set_nonclient_dev_color(penum->icolor0, gx_no_color_index);
760
0
                    penum->map[0].decoding = sd_none;
761
0
                    lop = rop3_T;
762
0
                    break;
763
0
                case rop3_D & rop3_not(rop3_S):
764
                    /* Implement this as a mask writing 0s. */
765
0
                    *(penum->icolor1) = *(penum->icolor0);
766
                    /* (falls through) */
767
0
                case rop3_D | rop3_S:
768
                    /* Implement this as a mask writing 1s. */
769
0
                    memcpy(&penum->map[0].table.lookup4x1to32[0],
770
0
                           lookup4x1to32_identity, 16 * 4);
771
0
                    goto rmask;
772
0
                default:
773
0
                    ;
774
0
            }
775
0
        }
776
1.71M
    }
777
2.09M
    penum->device_color = device_color;
778
    /*
779
     * Adjust width upward for unpacking up to 7 trailing bits in
780
     * the row, plus 1 byte for end-of-run, plus up to 7 leading
781
     * bits for data_x offset within a packed byte.
782
     */
783
2.09M
    bsize = ((bps > 8 ? width * 2 : width) + 15) * spp;
784
2.09M
    buffer = gs_alloc_bytes(mem, bsize, "image buffer");
785
2.09M
    if (buffer == 0) {
786
4
        code = gs_error_VMerror;
787
4
        goto fail;
788
4
    }
789
2.09M
    penum->bps = bps;
790
2.09M
    penum->unpack_bps = bps;
791
2.09M
    penum->log2_xbytes = log2_xbytes;
792
2.09M
    penum->spp = spp;
793
2.09M
    switch (format) {
794
2.05M
    case gs_image_format_chunky:
795
2.05M
        nplanes = 1;
796
2.05M
        spread = 1 << log2_xbytes;
797
2.05M
        break;
798
46.5k
    case gs_image_format_component_planar:
799
46.5k
        nplanes = spp;
800
46.5k
        spread = spp << log2_xbytes;
801
46.5k
        break;
802
0
    case gs_image_format_bit_planar:
803
0
        nplanes = spp * bps;
804
0
        spread = spp << log2_xbytes;
805
0
        break;
806
0
    default:
807
        /* No other cases are possible (checked by gx_image_enum_alloc). */
808
0
        return_error(gs_error_Fatal);
809
2.09M
    }
810
2.09M
    penum->num_planes = nplanes;
811
2.09M
    penum->spread = spread;
812
    /*
813
     * If we're asked to interpolate in a partial image, we have to
814
     * assume that the client either really only is interested in
815
     * the given sub-image, or else is constructing output out of
816
     * overlapping pieces.
817
     */
818
2.09M
    penum->interpolate = force_interpolation ? interp_force : pim->Interpolate ? interp_on : interp_off;
819
2.09M
    penum->x_extent = x_extent;
820
2.09M
    penum->y_extent = y_extent;
821
2.09M
    penum->posture =
822
2.09M
        ((x_extent.y | y_extent.x) == 0 ? image_portrait :
823
2.09M
         (x_extent.x | y_extent.y) == 0 ? image_landscape :
824
187k
         image_skewed);
825
2.09M
    penum->pgs = pgs;
826
2.09M
    if (pgs != NULL)
827
2.09M
        penum->pgs_level = pgs->level;
828
2.09M
    penum->pcs = pcs;
829
2.09M
    rc_increment_cs(pcs); /* Grab a ref (will decrement in gx_image1_end_image() */
830
2.09M
    penum->memory = mem;
831
2.09M
    penum->buffer = buffer;
832
2.09M
    penum->buffer_size = bsize;
833
2.09M
    penum->line = NULL;
834
2.09M
    penum->icc_link = NULL;
835
2.09M
    penum->color_cache = NULL;
836
2.09M
    penum->ht_buffer = NULL;
837
2.09M
    penum->thresh_buffer = NULL;
838
2.09M
    penum->use_cie_range = false;
839
2.09M
    penum->line_size = 0;
840
2.09M
    penum->use_rop = lop != (masked ? rop3_T : rop3_S);
841
#ifdef DEBUG
842
    if (gs_debug_c('*')) {
843
        if (penum->use_rop)
844
            dmprintf1(mem, "[%03x]", lop);
845
        dmprintf5(mem, "%c%d%c%dx%d ",
846
                 (masked ? (color_is_pure(pdcolor) ? 'm' : 'h') : 'i'),
847
                 bps,
848
                 (penum->posture == image_portrait ? ' ' :
849
                  penum->posture == image_landscape ? 'L' : 'T'),
850
                 width, height);
851
    }
852
#endif
853
2.09M
    penum->slow_loop = 0;
854
2.09M
    if (pcpath == 0) {
855
1.43M
        (*dev_proc(dev, get_clipping_box)) (dev, &obox);
856
1.43M
        cbox = obox;
857
1.43M
        penum->clip_image = 0;
858
1.43M
    } else
859
661k
        penum->clip_image =
860
661k
            (gx_cpath_outer_box(pcpath, &obox) |        /* not || */
861
661k
             gx_cpath_inner_box(pcpath, &cbox) ?
862
658k
             0 : image_clip_region);
863
2.09M
    penum->clip_outer = obox;
864
2.09M
    penum->clip_inner = cbox;
865
2.09M
    penum->log_op = rop3_T;     /* rop device takes care of this */
866
2.09M
    penum->clip_dev = 0;        /* in case we bail out */
867
2.09M
    penum->rop_dev = 0;         /* ditto */
868
2.09M
    penum->scaler = 0;          /* ditto */
869
    /*
870
     * If all four extrema of the image fall within the clipping
871
     * rectangle, clipping is never required.  When making this check,
872
     * we must carefully take into account the fact that we only care
873
     * about pixel centers.
874
     */
875
2.09M
    {
876
2.09M
        fixed
877
2.09M
            epx = min(row_extent.x, 0) + min(col_extent.x, 0),
878
2.09M
            eqx = max(row_extent.x, 0) + max(col_extent.x, 0),
879
2.09M
            epy = min(row_extent.y, 0) + min(col_extent.y, 0),
880
2.09M
            eqy = max(row_extent.y, 0) + max(col_extent.y, 0);
881
882
2.09M
        {
883
2.09M
            int hwx, hwy;
884
885
2.09M
            switch (penum->posture) {
886
1.90M
                case image_portrait:
887
1.90M
                    hwx = width, hwy = height;
888
1.90M
                    break;
889
79.4k
                case image_landscape:
890
79.4k
                    hwx = height, hwy = width;
891
79.4k
                    break;
892
107k
                default:
893
107k
                    hwx = hwy = 0;
894
2.09M
            }
895
            /*
896
             * If the image is only 1 sample wide or high,
897
             * and is less than 1 device pixel wide or high,
898
             * move it slightly so that it covers pixel centers.
899
             * This is a hack to work around a bug in some old
900
             * versions of TeX/dvips, which use 1-bit-high images
901
             * to draw horizontal and vertical lines without
902
             * positioning them properly.
903
             */
904
2.09M
            if (hwx == 1 && eqx - epx < fixed_1) {
905
21
                fixed diff =
906
21
                arith_rshift_1(row_extent.x + col_extent.x);
907
908
21
                mtx = (((mtx + diff) | fixed_half) & -fixed_half) - diff;
909
21
            }
910
2.09M
            if (hwy == 1 && eqy - epy < fixed_1) {
911
16
                fixed diff =
912
16
                arith_rshift_1(row_extent.y + col_extent.y);
913
914
16
                mty = (((mty + diff) | fixed_half) & -fixed_half) - diff;
915
16
            }
916
2.09M
        }
917
2.09M
        if_debug5m('b', mem, "[b]Image: %sspp=%d, bps=%d, mt=(%g,%g)\n",
918
2.09M
                   (masked? "masked, " : ""), spp, bps,
919
2.09M
                   fixed2float(mtx), fixed2float(mty));
920
2.09M
        if_debug9m('b', mem,
921
2.09M
                   "[b]   cbox=(%g,%g),(%g,%g), obox=(%g,%g),(%g,%g), clip_image=0x%x\n",
922
2.09M
                   fixed2float(cbox.p.x), fixed2float(cbox.p.y),
923
2.09M
                   fixed2float(cbox.q.x), fixed2float(cbox.q.y),
924
2.09M
                   fixed2float(obox.p.x), fixed2float(obox.p.y),
925
2.09M
                   fixed2float(obox.q.x), fixed2float(obox.q.y),
926
2.09M
                   penum->clip_image);
927
        /* These DDAs enumerate the starting position of each source pixel
928
         * row in device space. */
929
2.09M
        dda_init(penum->dda.row.x, mtx, col_extent.x, height);
930
2.09M
        dda_init(penum->dda.row.y, mty, col_extent.y, height);
931
2.09M
        if (dda_will_overflow(penum->dda.row.x) ||
932
2.09M
            dda_will_overflow(penum->dda.row.y))
933
0
        {
934
0
            code = gs_error_rangecheck;
935
0
            goto fail;
936
0
        }
937
2.09M
        if (penum->posture == image_portrait) {
938
1.90M
            penum->dst_width = row_extent.x;
939
1.90M
            penum->dst_height = col_extent.y;
940
1.90M
        } else {
941
187k
            penum->dst_width = col_extent.x;
942
187k
            penum->dst_height = row_extent.y;
943
187k
        }
944
        /* For gs_image_class_0_interpolate. */
945
2.09M
        penum->yi0 = fixed2int_pixround_perfect(dda_current(penum->dda.row.y)); /* For gs_image_class_0_interpolate. */
946
2.09M
        if (penum->rect.y) {
947
527k
            int y = penum->rect.y;
948
949
69.8M
            while (y--) {
950
69.3M
                dda_next(penum->dda.row.x);
951
69.3M
                dda_next(penum->dda.row.y);
952
69.3M
            }
953
527k
        }
954
2.09M
        penum->cur.x = penum->prev.x = dda_current(penum->dda.row.x);
955
2.09M
        penum->cur.y = penum->prev.y = dda_current(penum->dda.row.y);
956
        /* These DDAs enumerate the starting positions of each row of our
957
         * source pixel data, in the subrectangle ('strip') that we are
958
         * actually rendering. */
959
2.09M
        dda_init(penum->dda.strip.x, penum->cur.x, row_extent.x, width);
960
2.09M
        dda_init(penum->dda.strip.y, penum->cur.y, row_extent.y, width);
961
2.09M
        if (dda_will_overflow(penum->dda.strip.x) ||
962
2.09M
            dda_will_overflow(penum->dda.strip.y))
963
0
        {
964
0
            code = gs_error_rangecheck;
965
0
            goto fail;
966
0
        }
967
2.09M
        if (penum->rect.x) {
968
8.15k
            dda_advance(penum->dda.strip.x, penum->rect.x);
969
8.15k
            dda_advance(penum->dda.strip.y, penum->rect.x);
970
8.15k
        }
971
2.09M
        {
972
2.09M
            fixed ox = dda_current(penum->dda.strip.x);
973
2.09M
            fixed oy = dda_current(penum->dda.strip.y);
974
975
2.09M
            if (!penum->clip_image)     /* i.e., not clip region */
976
2.09M
                penum->clip_image =
977
2.09M
                    (fixed_pixround(ox + epx) < fixed_pixround(cbox.p.x) ?
978
2.00M
                     image_clip_xmin : 0) +
979
2.09M
                    (fixed_pixround(ox + eqx) >= fixed_pixround(cbox.q.x) ?
980
1.49M
                     image_clip_xmax : 0) +
981
2.09M
                    (fixed_pixround(oy + epy) < fixed_pixround(cbox.p.y) ?
982
1.54M
                     image_clip_ymin : 0) +
983
2.09M
                    (fixed_pixround(oy + eqy) >= fixed_pixround(cbox.q.y) ?
984
1.71M
                     image_clip_ymax : 0);
985
2.09M
        }
986
2.09M
    }
987
0
    penum->y = 0;
988
2.09M
    penum->used.x = 0;
989
2.09M
    penum->used.y = 0;
990
2.09M
    if (penum->clip_image && pcpath) {  /* Set up the clipping device. */
991
530k
        gx_device_clip *cdev =
992
530k
            gs_alloc_struct(mem, gx_device_clip,
993
530k
                            &st_device_clip, "image clipper");
994
995
530k
        if (cdev == NULL) {
996
0
            code = gs_error_VMerror;
997
0
            goto fail;
998
0
        }
999
530k
        gx_make_clip_device_in_heap(cdev, pcpath, dev, mem);
1000
530k
        penum->clip_dev = cdev;
1001
530k
        penum->dev = (gx_device *)cdev; /* Will restore this in a mo. Hacky! */
1002
530k
    }
1003
2.09M
    if (penum->use_rop) {       /* Set up the RasterOp source device. */
1004
0
        gx_device_rop_texture *rtdev;
1005
1006
0
        code = gx_alloc_rop_texture_device(&rtdev, mem,
1007
0
                                           "image RasterOp");
1008
0
        if (code < 0)
1009
0
            goto fail;
1010
        /* The 'target' must not be NULL for gx_make_rop_texture_device */
1011
0
        if (!penum->clip_dev && !dev)
1012
0
            return_error(gs_error_undefined);
1013
1014
0
        gx_make_rop_texture_device(rtdev,
1015
0
                                   (penum->clip_dev != 0 ?
1016
0
                                    (gx_device *) penum->clip_dev :
1017
0
                                    dev), lop, pdcolor);
1018
0
        gx_device_retain((gx_device *)rtdev, true);
1019
0
        penum->rop_dev = rtdev;
1020
0
        penum->dev = (gx_device *)rtdev; /* Will restore this in a mo. Hacky! */
1021
0
    }
1022
2.09M
    {
1023
2.09M
        static sample_unpack_proc_t procs[2][6] = {
1024
2.09M
        {   sample_unpack_1, sample_unpack_2,
1025
2.09M
            sample_unpack_4, sample_unpack_8,
1026
2.09M
            sample_unpack_12, sample_unpack_16
1027
2.09M
        },
1028
2.09M
        {   sample_unpack_1_interleaved, sample_unpack_2_interleaved,
1029
2.09M
            sample_unpack_4_interleaved, sample_unpack_8_interleaved,
1030
2.09M
            sample_unpack_12, sample_unpack_16
1031
2.09M
        }};
1032
2.09M
        int num_planes = penum->num_planes;
1033
2.09M
        bool interleaved = (num_planes == 1 && penum->plane_depths[0] != penum->bps);
1034
2.09M
        irender_proc_t render_fn = NULL;
1035
2.09M
        int i;
1036
1037
2.09M
        if (interleaved) {
1038
1.14M
            int num_components = penum->plane_depths[0] / penum->bps;
1039
1040
3.46M
            for (i = 1; i < num_components; i++) {
1041
2.32M
                if (decode[0] != decode[i * 2 + 0] ||
1042
2.32M
                    decode[1] != decode[i * 2 + 1])
1043
2
                    break;
1044
2.32M
            }
1045
1.14M
            if (i == num_components)
1046
1.14M
                interleaved = false; /* Use single table. */
1047
1.14M
        }
1048
2.09M
        penum->unpack = procs[interleaved][index_bps];
1049
1050
2.09M
        if_debug1m('b', mem, "[b]unpack=%d\n", bps);
1051
        /* Set up pixel0 for image class procedures. */
1052
2.09M
        penum->dda.pixel0 = penum->dda.strip;
1053
2.09M
        penum->skip_next_line = NULL;
1054
9.07M
        for (i = 0; i < gx_image_class_table_count; ++i) {
1055
9.07M
            code = gx_image_class_table[i](penum, &render_fn);
1056
9.07M
            if (code < 0)
1057
0
                goto fail;
1058
1059
9.07M
            if (render_fn != NULL) {
1060
2.09M
                penum->render = render_fn;
1061
2.09M
                break;
1062
2.09M
            }
1063
9.07M
        }
1064
2.09M
        penum->dev = dev; /* Restore this (in case it was changed to cdev or rtdev) */
1065
2.09M
        if (i == gx_image_class_table_count) {
1066
            /* No available class can handle this image. */
1067
0
            return_error(gs_error_rangecheck);
1068
0
        }
1069
2.09M
    }
1070
2.09M
    return 0;
1071
1072
55
fail:
1073
55
    gs_free_object(mem, buffer, "image buffer");
1074
55
    gs_free_object(mem, penum->clues, "gx_image_enum_begin");
1075
55
    if (penum->clip_dev != NULL) {
1076
0
        rc_decrement(penum->clip_dev, "error in gx_begin_image1");
1077
0
        penum->clip_dev = NULL;
1078
0
    }
1079
55
    gs_free_object(mem, penum->clip_dev, "image clipper");
1080
55
    rc_decrement_cs(penum->pcs, "error in gx_begin_image1");
1081
55
    penum->pcs = NULL;
1082
55
    gs_free_object(mem, penum, "gx_begin_image1");
1083
55
    return code;
1084
2.09M
}
1085
1086
/* If a drawing color is black or white, return 0 or 1 respectively, */
1087
/* otherwise return -1. */
1088
static int
1089
color_draws_b_w(gx_device * dev, const gx_drawing_color * pdcolor)
1090
0
{
1091
0
    if (color_is_pure(pdcolor)) {
1092
0
        gx_color_value rgb[3];
1093
1094
0
        (*dev_proc(dev, map_color_rgb)) (dev, gx_dc_pure_color(pdcolor),
1095
0
                                         rgb);
1096
0
        if (!(rgb[0] | rgb[1] | rgb[2]))
1097
0
            return 0;
1098
0
        if ((rgb[0] & rgb[1] & rgb[2]) == gx_max_color_value)
1099
0
            return 1;
1100
0
    }
1101
0
    return -1;
1102
0
}
1103
1104
1105
static void
1106
image_cache_decode(gx_image_enum *penum, byte input, byte *output, bool scale)
1107
0
{
1108
0
    float temp;
1109
1110
0
    switch ( penum->map[0].decoding ) {
1111
0
        case sd_none:
1112
0
            *output = input;
1113
0
            break;
1114
0
        case sd_lookup:
1115
0
            temp = penum->map[0].decode_lookup[input >> 4]*255.0f;
1116
0
            if (temp > 255) temp = 255;
1117
0
            if (temp < 0 ) temp = 0;
1118
0
            *output = (unsigned char) temp;
1119
0
            break;
1120
0
        case sd_compute:
1121
0
            temp = penum->map[0].decode_base +
1122
0
                (float) input * penum->map[0].decode_factor;
1123
0
            if (scale) {
1124
0
                temp = temp * 255.0;
1125
0
            }
1126
0
            if (temp > 255) temp = 255;
1127
0
            if (temp < 0 ) temp = 0;
1128
0
            *output = (unsigned char) temp;
1129
0
            break;
1130
0
        default:
1131
0
            *output = 0;
1132
0
            break;
1133
0
    }
1134
0
}
1135
1136
static bool
1137
decode_range_needed(gx_image_enum *penum)
1138
0
{
1139
0
    bool scale = true;
1140
1141
0
    if (penum->map[0].decoding == sd_compute) {
1142
0
        if (!(gs_color_space_is_ICC(penum->pcs) ||
1143
0
            gs_color_space_is_PSCIE(penum->pcs))) {
1144
0
            scale = false;
1145
0
        }
1146
0
    }
1147
0
    return scale;
1148
0
}
1149
1150
/* A special case where we go ahead and initialize the whole index cache with
1151
   contone.  Device colors.  If we are halftoning we will then go ahead and
1152
   apply the thresholds to the device contone values.  Only used for gray,
1153
   rgb or cmyk source colors (No DeviceN for now) */
1154
/* TO DO  Add in PSCIE decoder */
1155
int
1156
image_init_color_cache(gx_image_enum * penum, int bps, int spp)
1157
85.5k
{
1158
85.5k
    int num_des_comp = penum->dev->color_info.num_components;
1159
85.5k
    int num_src_comp;
1160
85.5k
    int num_entries = 1 << bps;
1161
85.5k
    bool need_decode = penum->icc_setup.need_decode;
1162
85.5k
    bool has_transfer = penum->icc_setup.has_transfer;
1163
85.5k
    byte value;
1164
85.5k
    bool decode_scale = true;
1165
85.5k
    int k, kk;
1166
85.5k
    byte psrc[4];
1167
85.5k
    byte *temp_buffer;
1168
85.5k
    byte *byte_ptr;
1169
85.5k
    bool is_indexed = (gs_color_space_get_index(penum->pcs) ==
1170
85.5k
                                            gs_color_space_index_Indexed);
1171
85.5k
    bool free_temp_buffer = true;
1172
85.5k
    gsicc_bufferdesc_t input_buff_desc;
1173
85.5k
    gsicc_bufferdesc_t output_buff_desc;
1174
85.5k
    gx_color_value conc[GX_DEVICE_COLOR_MAX_COMPONENTS];
1175
85.5k
    int code;
1176
1177
85.5k
    if (penum->icc_link == NULL) {
1178
0
        return gs_rethrow(-1, "ICC Link not created during image render color");
1179
0
    }
1180
85.5k
    if (is_indexed) {
1181
1.77k
        num_src_comp = gs_color_space_num_components(penum->pcs->base_space);
1182
83.7k
    } else {
1183
        /* Detect case where cache is not needed.  Colors are already in the
1184
           device space.  Need to fast track this one and halftone row directly.
1185
           Detected in gximono.c by looking if penum->color_cache is NULL */
1186
83.7k
        if (penum->icc_link->is_identity && !need_decode && !has_transfer) {
1187
83.5k
            return 0;
1188
83.5k
        }
1189
227
        num_src_comp = 1;
1190
227
    }
1191
    /* Allocate cache of device contone values */
1192
2.00k
    penum->color_cache = gs_alloc_struct(penum->memory, gx_image_color_cache_t,
1193
2.00k
                                         &st_color_cache,
1194
2.00k
                                         "image_init_color_cache");
1195
2.00k
    if (penum->color_cache == NULL)
1196
0
        return_error(gs_error_VMerror);
1197
1198
2.00k
    penum->color_cache->device_contone = (byte*) gs_alloc_bytes(penum->memory,
1199
2.00k
                   num_des_comp * num_entries * sizeof(byte), "image_init_color_cache");
1200
2.00k
    penum->color_cache->is_transparent = (bool*) gs_alloc_bytes(penum->memory,
1201
2.00k
             num_entries * sizeof(bool), "image_init_color_cache");
1202
2.00k
    if (penum->color_cache->device_contone == NULL || penum->color_cache->is_transparent == NULL) {
1203
0
        gs_free_object(penum->memory, penum->color_cache->device_contone, "image_init_color_cache");
1204
0
        gs_free_object(penum->memory, penum->color_cache->is_transparent, "image_init_color_cache");
1205
0
        gs_free_object(penum->memory, penum->color_cache, "image_init_color_cache");
1206
0
        penum->color_cache = NULL;
1207
0
        return_error(gs_error_VMerror);
1208
0
    }
1209
    /* Initialize */
1210
2.00k
    memset(penum->color_cache->is_transparent,0,num_entries * sizeof(bool));
1211
    /* Depending upon if we need decode and ICC CM, fill the cache a couple
1212
       different ways. If the link is the identity, then we don't need to do any
1213
       color conversions except for potentially a decode.  This is written in
1214
       the manner shown below so that the common case of no decode and indexed
1215
       image with a look-up-table uses the table data directly or does as many
1216
       operations with memcpy as we can */
1217
    /* Need to check the decode output range so we know how we need to scale.
1218
       We want 8 bit output */
1219
2.00k
    if (need_decode) {
1220
0
        decode_scale = decode_range_needed(penum);
1221
0
    }
1222
2.00k
    if (penum->icc_link->is_identity) {
1223
        /* No CM needed.  */
1224
0
        if (need_decode || has_transfer) {
1225
            /* Slower case.  This could be sped up later to avoid the tests
1226
               within the loop by use of specialized loops.  */
1227
0
            for (k = 0; k < num_entries; k++) {
1228
                /* Data is in k */
1229
0
                if (need_decode) {
1230
0
                    image_cache_decode(penum, k, &value, decode_scale);
1231
0
                } else {
1232
0
                    value = k;
1233
0
                }
1234
                /* Data is in value */
1235
0
                if (is_indexed) {
1236
0
                    gs_cspace_indexed_lookup_bytes(penum->pcs, value, psrc);
1237
0
                } else {
1238
0
                    psrc[0] = value;
1239
0
                }
1240
                /* Data is in psrc */
1241
                /* These silly transforms need to go away. ToDo. */
1242
0
                if (has_transfer) {
1243
0
                    for (kk = 0; kk < num_des_comp; kk++) {
1244
0
                        conc[kk] = gx_color_value_from_byte(psrc[kk]);
1245
0
                    }
1246
0
                    cmap_transfer(&(conc[0]), penum->pgs, penum->dev);
1247
0
                    for (kk = 0; kk < num_des_comp; kk++) {
1248
0
                        psrc[kk] = gx_color_value_to_byte(conc[kk]);
1249
0
                    }
1250
0
                }
1251
0
                memcpy(&(penum->color_cache->device_contone[k * num_des_comp]),
1252
0
                               psrc, num_des_comp);
1253
0
            }
1254
0
        } else {
1255
            /* Indexing only.  No CM, decode or transfer functions. */
1256
0
            for (k = 0; k < num_entries; k++) {
1257
0
                gs_cspace_indexed_lookup_bytes(penum->pcs, (float)k, psrc);
1258
0
                memcpy(&(penum->color_cache->device_contone[k * num_des_comp]),
1259
0
                           psrc, num_des_comp);
1260
0
            }
1261
0
        }
1262
2.00k
    } else {
1263
        /* Need CM */
1264
        /* We need to worry about if the source is indexed and if we need
1265
           to decode first.  Then we can apply CM. Create a temp buffer in
1266
           the source space and then transform it with one call */
1267
2.00k
        temp_buffer = (byte*) gs_alloc_bytes(penum->memory,
1268
2.00k
                                             (size_t)num_entries * num_src_comp,
1269
2.00k
                                             "image_init_color_cache");
1270
2.00k
        if (temp_buffer == NULL)
1271
0
            return_error(gs_error_VMerror);
1272
1273
2.00k
        if (need_decode) {
1274
0
            if (is_indexed) {
1275
                /* Decode and lookup in index */
1276
0
                for (k = 0; k < num_entries; k++) {
1277
0
                    image_cache_decode(penum, k, &value, decode_scale);
1278
0
                    gs_cspace_indexed_lookup_bytes(penum->pcs, value, psrc);
1279
0
                    memcpy(&(temp_buffer[k * num_src_comp]), psrc, num_src_comp);
1280
0
                }
1281
0
            } else {
1282
                /* Decode only */
1283
0
                for (k = 0; k < num_entries; k++) {
1284
0
                    image_cache_decode(penum, k, &(temp_buffer[k]), decode_scale);
1285
0
                }
1286
0
            }
1287
2.00k
        } else {
1288
            /* No Decode */
1289
2.00k
            if (is_indexed) {
1290
                /* If index uses a num_entries sized table then just use its pointer */
1291
1.77k
                if (penum->pcs->params.indexed.use_proc ||
1292
1.77k
                    penum->pcs->params.indexed.hival < (num_entries - 1)) {
1293
                    /* Have to do the slow way */
1294
6.84k
                    for (k = 0; k <= penum->pcs->params.indexed.hival; k++) {
1295
6.66k
                        gs_cspace_indexed_lookup_bytes(penum->pcs, (float)k, psrc);
1296
6.66k
                        memcpy(&(temp_buffer[k * num_src_comp]), psrc, num_src_comp);
1297
6.66k
                    }
1298
                    /* just use psrc results from converting 'hival' to fill the remaining slots */
1299
40.1k
                    for (; k < num_entries; k++) {
1300
39.9k
                        memcpy(&(temp_buffer[k * num_src_comp]), psrc, num_src_comp);
1301
39.9k
                    }
1302
1.59k
                } else {
1303
                    /* Use the index table directly. */
1304
1.59k
                    gs_free_object(penum->memory, temp_buffer, "image_init_color_cache");
1305
1.59k
                    free_temp_buffer = false;
1306
1.59k
                    temp_buffer = (byte *)(penum->pcs->params.indexed.lookup.table.data);
1307
1.59k
                }
1308
1.77k
            } else {
1309
                /* CM only */
1310
58.3k
                for (k = 0; k < num_entries; k++) {
1311
58.1k
                    temp_buffer[k] = k;
1312
58.1k
                }
1313
227
            }
1314
2.00k
        }
1315
        /* Set up the buffer descriptors. */
1316
2.00k
        gsicc_init_buffer(&input_buff_desc, num_src_comp, 1, false, false, false,
1317
2.00k
                          0, num_entries * num_src_comp, 1, num_entries);
1318
2.00k
        gsicc_init_buffer(&output_buff_desc, num_des_comp, 1, false, false, false,
1319
2.00k
                          0, num_entries * num_des_comp,
1320
2.00k
                      1, num_entries);
1321
2.00k
        code = (penum->icc_link->procs.map_buffer)(penum->dev, penum->icc_link,
1322
2.00k
                                            &input_buff_desc, &output_buff_desc,
1323
2.00k
                                            (void*) temp_buffer,
1324
2.00k
                                            (void*) penum->color_cache->device_contone);
1325
2.00k
        if (code < 0)
1326
0
            return gs_rethrow(code, "Failure to map color buffer");
1327
1328
        /* Check if we need to apply any transfer functions.  If so then do it now */
1329
2.00k
        if (has_transfer) {
1330
0
            for (k = 0; k < num_entries; k++) {
1331
0
                byte_ptr =
1332
0
                    &(penum->color_cache->device_contone[k * num_des_comp]);
1333
0
                for (kk = 0; kk < num_des_comp; kk++) {
1334
0
                    conc[kk] = gx_color_value_from_byte(byte_ptr[kk]);
1335
0
                }
1336
0
                cmap_transfer(&(conc[0]), penum->pgs, penum->dev);
1337
0
                for (kk = 0; kk < num_des_comp; kk++) {
1338
0
                    byte_ptr[kk] = gx_color_value_to_byte(conc[kk]);
1339
0
                }
1340
0
            }
1341
0
        }
1342
2.00k
        if (free_temp_buffer)
1343
409
            gs_free_object(penum->memory, temp_buffer, "image_init_color_cache");
1344
2.00k
    }
1345
2.00k
    return 0;
1346
2.00k
}
1347
1348
/* Export this for use by image_render_ functions */
1349
void
1350
image_init_clues(gx_image_enum * penum, int bps, int spp)
1351
1.10M
{
1352
    /* Initialize the color table */
1353
1.10M
#define ictype(i)\
1354
1.10M
  penum->clues[i].dev_color.type
1355
1356
1.10M
    switch ((spp == 1 ? bps : 8)) {
1357
944k
        case 8:         /* includes all color images */
1358
944k
            {
1359
944k
                register gx_image_clue *pcht = &penum->clues[0];
1360
944k
                register int n = 64;    /* 8 bits means 256 clues, do   */
1361
                                        /* 4 at a time for efficiency   */
1362
60.4M
                do {
1363
60.4M
                    pcht[0].dev_color.type =
1364
60.4M
                        pcht[1].dev_color.type =
1365
60.4M
                        pcht[2].dev_color.type =
1366
60.4M
                        pcht[3].dev_color.type =
1367
60.4M
                        gx_dc_type_none;
1368
60.4M
                    pcht[0].key = pcht[1].key =
1369
60.4M
                        pcht[2].key = pcht[3].key = 0;
1370
60.4M
                    pcht += 4;
1371
60.4M
                }
1372
60.4M
                while (--n > 0);
1373
944k
                penum->clues[0].key = 1;        /* guarantee no hit */
1374
944k
                break;
1375
0
            }
1376
644
        case 4:
1377
644
            ictype(17) = ictype(2 * 17) = ictype(3 * 17) =
1378
644
                ictype(4 * 17) = ictype(6 * 17) = ictype(7 * 17) =
1379
644
                ictype(8 * 17) = ictype(9 * 17) = ictype(11 * 17) =
1380
644
                ictype(12 * 17) = ictype(13 * 17) = ictype(14 * 17) =
1381
644
                gx_dc_type_none;
1382
            /* falls through */
1383
1.72k
        case 2:
1384
1.72k
            ictype(5 * 17) = ictype(10 * 17) = gx_dc_type_none;
1385
1.10M
#undef ictype
1386
1.10M
    }
1387
1.10M
}
1388
1389
/* Initialize the color mapping tables for a non-mask image. */
1390
static int
1391
image_init_colors(gx_image_enum * penum, int bps, int spp,
1392
                  gs_image_format_t format, const float *decode /*[spp*2] */ ,
1393
                  const gs_gstate * pgs, gx_device * dev,
1394
                  const gs_color_space * pcs, bool * pdcb)
1395
1.71M
{
1396
1.71M
    int ci, decode_type, code;
1397
1.71M
    static const float default_decode[] = {
1398
1.71M
        0.0, 1.0, 0.0, 1.0, 0.0, 1.0, 0.0, 1.0, 0.0, 1.0
1399
1.71M
    };
1400
1401
    /* Clues are only used with image_mono_render */
1402
1.71M
    if (spp == 1) {
1403
532k
        image_init_clues(penum, bps, spp);
1404
532k
    }
1405
1.71M
    decode_type = 3; /* 0=custom, 1=identity, 2=inverted, 3=impossible */
1406
4.62M
    for (ci = 0; ci < spp; ci +=2 ) {
1407
2.90M
        decode_type &= (decode[ci] == 0. && decode[ci + 1] == 1.) |
1408
2.90M
                       (decode[ci] == 1. && decode[ci + 1] == 0.) << 1;
1409
2.90M
    }
1410
1411
    /* Initialize the maps from samples to intensities. */
1412
5.90M
    for (ci = 0; ci < spp; ci++) {
1413
4.18M
        sample_map *pmap = &penum->map[ci];
1414
1415
        /* If the decoding is [0 1] or [1 0], we can fold it */
1416
        /* into the expansion of the sample values; */
1417
        /* otherwise, we have to use the floating point method. */
1418
1419
4.18M
        const float *this_decode = &decode[ci * 2];
1420
4.18M
        const float *map_decode;        /* decoding used to */
1421
                                        /* construct the expansion map */
1422
4.18M
        const float *real_decode;       /* decoding for expanded samples */
1423
1424
4.18M
        map_decode = real_decode = this_decode;
1425
4.18M
        if (!(decode_type & 1)) {
1426
6.64k
            if ((decode_type & 2) && bps <= 8) {
1427
359
                real_decode = default_decode;
1428
6.28k
            } else {
1429
6.28k
                *pdcb = false;
1430
6.28k
                map_decode = default_decode;
1431
6.28k
            }
1432
6.64k
        }
1433
4.18M
        if (bps > 2 || format != gs_image_format_chunky) {
1434
4.16M
            if (bps <= 8)
1435
4.16M
                image_init_map(&pmap->table.lookup8[0], 1 << bps,
1436
4.16M
                               map_decode);
1437
4.16M
        } else {                /* The map index encompasses more than one pixel. */
1438
17.1k
            byte map[4];
1439
17.1k
            register int i;
1440
1441
17.1k
            image_init_map(&map[0], 1 << bps, map_decode);
1442
17.1k
            switch (bps) {
1443
16.5k
                case 1:
1444
16.5k
                    {
1445
16.5k
                        register bits32 *p = &pmap->table.lookup4x1to32[0];
1446
1447
16.5k
                        if (map[0] == 0 && map[1] == 0xff)
1448
16.5k
                            memcpy((byte *) p, lookup4x1to32_identity, 16 * 4);
1449
33
                        else if (map[0] == 0xff && map[1] == 0)
1450
33
                            memcpy((byte *) p, lookup4x1to32_inverted, 16 * 4);
1451
0
                        else
1452
0
                            for (i = 0; i < 16; i++, p++)
1453
0
                                ((byte *) p)[0] = map[i >> 3],
1454
0
                                    ((byte *) p)[1] = map[(i >> 2) & 1],
1455
0
                                    ((byte *) p)[2] = map[(i >> 1) & 1],
1456
0
                                    ((byte *) p)[3] = map[i & 1];
1457
16.5k
                    }
1458
16.5k
                    break;
1459
540
                case 2:
1460
540
                    {
1461
540
                        register bits16 *p = &pmap->table.lookup2x2to16[0];
1462
1463
9.18k
                        for (i = 0; i < 16; i++, p++)
1464
8.64k
                            ((byte *) p)[0] = map[i >> 2],
1465
8.64k
                                ((byte *) p)[1] = map[i & 3];
1466
540
                    }
1467
540
                    break;
1468
17.1k
            }
1469
17.1k
        }
1470
4.18M
        pmap->decode_base /* = decode_lookup[0] */  = real_decode[0];
1471
4.18M
        pmap->decode_factor =
1472
4.18M
            (real_decode[1] - real_decode[0]) /
1473
4.18M
            (bps <= 8 ? 255.0 : (float)frac_1);
1474
4.18M
        pmap->decode_max /* = decode_lookup[15] */  = real_decode[1];
1475
4.18M
        if (decode_type) {
1476
4.17M
            pmap->decoding = sd_none;
1477
4.17M
            pmap->inverted = map_decode[0] != 0;
1478
4.17M
        } else if (bps <= 4) {
1479
602
            int step = 15 / ((1 << bps) - 1);
1480
602
            int i;
1481
1482
602
            pmap->decoding = sd_lookup;
1483
3.09k
            for (i = 15 - step; i > 0; i -= step)
1484
2.48k
                pmap->decode_lookup[i] = pmap->decode_base +
1485
2.48k
                    i * (255.0 / 15) * pmap->decode_factor;
1486
602
            pmap->inverted = 0;
1487
5.68k
        } else {
1488
5.68k
            pmap->decoding = sd_compute;
1489
5.68k
            pmap->inverted = 0;
1490
5.68k
        }
1491
4.18M
        if (spp == 1) {         /* and ci == 0 *//* Pre-map entries 0 and 255. */
1492
532k
            gs_client_color cc;
1493
1494
            /* Image clues are used in this case */
1495
532k
            cc.paint.values[0] = real_decode[0];
1496
532k
            code = (*pcs->type->remap_color) (&cc, pcs, penum->icolor0,
1497
532k
                                       pgs, dev, gs_color_select_source);
1498
532k
            if (code < 0)
1499
5
                return code;
1500
532k
            cc.paint.values[0] = real_decode[1];
1501
532k
            code = (*pcs->type->remap_color) (&cc, pcs, penum->icolor1,
1502
532k
                                       pgs, dev, gs_color_select_source);
1503
532k
            if (code < 0)
1504
0
                return code;
1505
532k
        }
1506
4.18M
    }
1507
1.71M
    return 0;
1508
1.71M
}
1509
/* Construct a mapping table for sample values. */
1510
/* map_size is 2, 4, 16, or 256.  Note that 255 % (map_size - 1) == 0, */
1511
/* so the division 0xffffL / (map_size - 1) is always exact. */
1512
void
1513
image_init_map(byte * map, int map_size, const float *decode)
1514
4.18M
{
1515
4.18M
    float min_v = decode[0];
1516
4.18M
    float diff_v = decode[1] - min_v;
1517
1518
4.18M
    if (diff_v == 1 || diff_v == -1) {  /* We can do the stepping with integers, without overflow. */
1519
4.18M
        byte *limit = map + map_size;
1520
4.18M
        uint value = (uint)(min_v * 0xffffL);
1521
4.18M
        int diff = (int)(diff_v * (0xffffL / (map_size - 1)));
1522
1523
1.07G
        for (; map != limit; map++, value += diff)
1524
1.06G
            *map = value >> 8;
1525
4.18M
    } else {                    /* Step in floating point, with clamping. */
1526
0
        int i;
1527
1528
0
        for (i = 0; i < map_size; ++i) {
1529
0
            int value = (int)((min_v + diff_v * i / (map_size - 1)) * 255);
1530
1531
0
            map[i] = (value < 0 ? 0 : value > 255 ? 255 : value);
1532
0
        }
1533
0
    }
1534
4.18M
}
1535
1536
/*
1537
 * Scale a pair of mask_color values to match the scaling of each sample to
1538
 * a full byte, and complement and swap them if the map incorporates
1539
 * a Decode = [1 0] inversion.
1540
 */
1541
void
1542
gx_image_scale_mask_colors(gx_image_enum *penum, int component_index)
1543
462
{
1544
462
    uint scale = 255 / ((1 << penum->bps) - 1);
1545
462
    uint *values = &penum->mask_color.values[component_index * 2];
1546
462
    uint v0 = values[0] *= scale;
1547
462
    uint v1 = values[1] *= scale;
1548
1549
462
    if (penum->map[component_index].decoding == sd_none &&
1550
462
        penum->map[component_index].inverted
1551
462
        ) {
1552
0
        values[0] = 255 - v1;
1553
0
        values[1] = 255 - v0;
1554
0
    }
1555
462
}
1556
1557
/* Used to indicate for ICC procesing if we have decoding to do */
1558
bool
1559
gx_has_transfer(const gs_gstate *pgs, int num_comps)
1560
1.31M
{
1561
1.31M
    int k;
1562
1563
3.82M
    for (k = 0; k < num_comps; k++) {
1564
2.94M
        if (pgs->effective_transfer[k]->proc != gs_identity_transfer) {
1565
434k
            return(true);
1566
434k
        }
1567
2.94M
    }
1568
884k
    return(false);
1569
1.31M
}