Coverage Report

Created: 2026-02-14 07:09

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gximono.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
/* General mono-component image rendering */
18
#include "gx.h"
19
#include "memory_.h"
20
#include "gpcheck.h"
21
#include "gserrors.h"
22
#include "gxfixed.h"
23
#include "gxarith.h"
24
#include "gxmatrix.h"
25
#include "gsccolor.h"
26
#include "gspaint.h"
27
#include "gsutil.h"
28
#include "gxdevice.h"
29
#include "gxcmap.h"
30
#include "gxdcolor.h"
31
#include "gxgstate.h"
32
#include "gxdevmem.h"
33
#include "gdevmem.h"            /* for mem_mono_device */
34
#include "gxcpath.h"
35
#include "gximage.h"
36
#include "gzht.h"
37
#include "gsicc.h"
38
#include "gsicc_cache.h"
39
#include "gsicc_cms.h"
40
#include "gxcie.h"
41
#include "gscie.h"
42
#include "gxht_thresh.h"
43
#include "gxdda.h"
44
#include "gxdevsop.h"
45
#ifdef WITH_CAL
46
#include "cal.h"
47
#endif
48
49
#define fastfloor(x) (((int)(x)) - (((x)<0) && ((x) != (float)(int)(x))))
50
51
/* Enable the following define to perform a little extra work to stop
52
 * spurious valgrind errors. The code should perform perfectly even without
53
 * this enabled, but enabling it makes debugging much easier.
54
 */
55
/* #define PACIFY_VALGRIND */
56
57
/* ------ Strategy procedure ------ */
58
59
/* Check the prototype. */
60
iclass_proc(gs_image_class_3_mono);
61
62
static irender_proc(image_render_mono);
63
#ifndef WITH_CAL
64
static irender_proc(image_render_mono_ht);
65
#else
66
static irender_proc(image_render_mono_ht_cal);
67
static int image_render_mono_ht_cal_skip_line(gx_image_enum *penum,
68
                gx_device *dev);
69
70
static void
71
halftone_callback(cal_halftone_data_t *ht, void *arg)
72
{
73
    gx_device *dev = arg;
74
    gx_color_index dev_white = gx_device_white(dev);
75
    gx_color_index dev_black = gx_device_black(dev);
76
77
    if (dev->num_planar_planes) {
78
        (*dev_proc(dev, copy_planes)) (dev, ht->data, ht->x + (ht->offset_x<<3), ht->raster,
79
            gx_no_bitmap_id, ht->x, ht->y, ht->w, ht->h,
80
            ht->plane_raster);
81
    } else {
82
        (*dev_proc(dev, copy_mono)) (dev, ht->data, ht->x + (ht->offset_x<<3), ht->raster,
83
            gx_no_bitmap_id, ht->x, ht->y, ht->w, ht->h, dev_white,
84
            dev_black);
85
    }
86
}
87
88
static cal_halftone*
89
halftone_init(gx_image_enum *penum)
90
{
91
    cal_halftone *cal_ht = NULL;
92
    gx_dda_fixed dda_ht;
93
    int k;
94
    gx_ht_order *d_order;
95
    int code;
96
    byte *cache = (penum->color_cache != NULL ? penum->color_cache->device_contone : NULL);
97
    cal_matrix matrix;
98
    int clip_x, clip_y;
99
    gx_device_halftone *pdht = gx_select_dev_ht(penum->pgs);
100
101
    if (!gx_device_must_halftone(penum->dev))
102
        return NULL;
103
104
    if (penum->pgs == NULL || pdht == NULL)
105
        return NULL;
106
107
    dda_ht = penum->dda.pixel0.x;
108
    if (penum->dxx > 0)
109
        dda_translate(dda_ht, -fixed_epsilon);
110
    matrix.xx = penum->matrix.xx;
111
    matrix.xy = penum->matrix.xy;
112
    matrix.yx = penum->matrix.yx;
113
    matrix.yy = penum->matrix.yy;
114
    matrix.tx = penum->matrix.tx + matrix.xx * penum->rect.x + matrix.yx * penum->rect.y;
115
    matrix.ty = penum->matrix.ty + matrix.xy * penum->rect.x + matrix.yy * penum->rect.y;
116
117
    clip_x = fixed2int(penum->clip_outer.p.x);
118
    clip_y = fixed2int(penum->clip_outer.p.y);
119
    cal_ht = cal_halftone_init(penum->memory->gs_lib_ctx->core->cal_ctx,
120
                               penum->memory->non_gc_memory,
121
                               penum->rect.w,
122
                               penum->rect.h,
123
                               &matrix,
124
                               penum->dev->color_info.num_components,
125
                               cache,
126
                               clip_x,
127
                               clip_y,
128
                               fixed2int_ceiling(penum->clip_outer.q.x) - clip_x,
129
                               fixed2int_ceiling(penum->clip_outer.q.y) - clip_y,
130
                               penum->adjust);
131
    if (cal_ht == NULL)
132
        goto fail;
133
134
    for (k = 0; k < pdht->num_comp; k++) {
135
        d_order = &(pdht->components[k].corder);
136
        code = gx_ht_construct_threshold(d_order, penum->dev, penum->pgs, k);
137
        if (code < 0)
138
            goto fail;
139
        if (cal_halftone_add_screen(penum->memory->gs_lib_ctx->core->cal_ctx,
140
                                    penum->memory->non_gc_memory,
141
                                    cal_ht,
142
                                    pdht->components[k].corder.threshold_inverted,
143
                                    pdht->components[k].corder.width,
144
                                    pdht->components[k].corder.full_height,
145
                                    penum->pgs->screen_phase[k].x,
146
                                    -penum->pgs->screen_phase[k].y,
147
                                    pdht->components[k].corder.threshold) < 0)
148
            goto fail;
149
    }
150
151
    return cal_ht;
152
153
fail:
154
    cal_halftone_fin(cal_ht, penum->memory->non_gc_memory);
155
    return NULL;
156
}
157
#endif
158
159
int
160
gs_image_class_3_mono(gx_image_enum * penum, irender_proc_t *render_fn)
161
1.24M
{
162
1.24M
#if USE_FAST_HT_CODE
163
1.24M
    bool use_fast_code = true;
164
#else
165
    bool use_fast_code = false;
166
#endif
167
1.24M
    int code = 0;
168
    /* Set up the link now */
169
1.24M
    const gs_color_space *pcs;
170
1.24M
    gsicc_rendering_param_t rendering_params;
171
1.24M
    cmm_dev_profile_t *dev_profile;
172
1.24M
    bool dev_color_ok = false;
173
1.24M
    bool is_planar_dev = penum->dev->num_planar_planes;
174
175
1.24M
    if (penum->spp == 1) {
176
        /* At this point in time, only use the ht approach if our device
177
           uses halftoning, and our source image is a reasonable size.  We
178
           probably don't want to do this if we have a bunch of tiny little
179
           images.  Then the rect fill approach is probably not all that bad.
180
           Also for now avoid images that include a type3 image mask.  Due
181
           to the limited precision and mismatch of the stepping space in which
182
           the interpolations occur this can cause a minor mismatch at large
183
           scalings */
184
185
        /* Allow this for CMYK planar and mono binary halftoned devices */
186
528k
        dev_color_ok = ((penum->dev->color_info.num_components == 1 &&
187
453k
                         penum->dev->color_info.depth == 1) ||
188
#if 0
189
                         /* Don't allow CMYK Planar devices just yet */
190
                         0);
191
#else
192
429k
                        (penum->dev->color_info.num_components == 4 &&
193
1.08k
                         penum->dev->color_info.depth == 4 && is_planar_dev));
194
528k
#endif
195
196
528k
        if (use_fast_code && penum->pcs != NULL && dev_color_ok &&
197
79.5k
            penum->bps == 8 && (penum->posture == image_portrait
198
2
            || penum->posture == image_landscape) &&
199
79.3k
            penum->image_parent_type == gs_image_type1 &&
200
79.3k
            gx_transfer_is_monotonic(penum->pgs, 0)) {
201
79.3k
            penum->icc_setup.need_decode = false;
202
            /* Check if we need to do any decoding.  */
203
79.3k
            if ( penum->map[0].decoding != sd_none ) {
204
1.53k
                if (!(penum->map[0].decoding == sd_compute
205
1.53k
                     && penum->map[0].decode_factor == 1.0 &&
206
1.51k
                        penum->map[0].decode_lookup[0] == 0.0)) {
207
16
                    penum->icc_setup.need_decode = true;
208
16
                }
209
1.53k
            }
210
79.3k
            code = dev_proc(penum->dev, get_profile)(penum->dev, &dev_profile);
211
79.3k
            if (code < 0)
212
0
                return code;
213
214
            /* Define the rendering intents */
215
79.3k
            rendering_params.black_point_comp = penum->pgs->blackptcomp;
216
79.3k
            rendering_params.graphics_type_tag = GS_IMAGE_TAG;
217
79.3k
            rendering_params.override_icc = false;
218
79.3k
            rendering_params.preserve_black = gsBKPRESNOTSPECIFIED;
219
79.3k
            rendering_params.rendering_intent = penum->pgs->renderingintent;
220
79.3k
            rendering_params.cmm = gsCMM_DEFAULT;
221
79.3k
            if (gs_color_space_get_index(penum->pcs) ==
222
79.3k
                gs_color_space_index_Indexed) {
223
1.53k
                pcs = penum->pcs->base_space;
224
77.8k
            } else {
225
77.8k
                pcs = penum->pcs;
226
77.8k
            }
227
79.3k
            if (gs_color_space_is_PSCIE(pcs) && pcs->icc_equivalent != NULL) {
228
0
                pcs = pcs->icc_equivalent;
229
0
            }
230
231
            /* The code below falls over if cmm->icc_profile_data is NULL.
232
             * For now, just drop out. Michael can review this when he
233
             * returns. */
234
79.3k
            if (pcs->cmm_icc_profile_data == NULL)
235
25
                goto not_fast_halftoning;
236
237
79.3k
            penum->icc_setup.is_lab = pcs->cmm_icc_profile_data->islab;
238
79.3k
            penum->icc_setup.must_halftone = gx_device_must_halftone(penum->dev);
239
            /* The effective transfer is built into the threshold array */
240
79.3k
            penum->icc_setup.has_transfer = false;
241
79.3k
            if (penum->icc_setup.is_lab)
242
46
                penum->icc_setup.need_decode = false;
243
79.3k
            if (penum->icc_link == NULL) {
244
79.3k
                penum->icc_link = gsicc_get_link(penum->pgs, penum->dev, pcs, NULL,
245
79.3k
                    &rendering_params, penum->memory);
246
79.3k
            }
247
            /* PS CIE color spaces may have addition decoding that needs to
248
               be performed to ensure that the range of 0 to 1 is provided
249
               to the CMM since ICC profiles are restricted to that range
250
               but the PS color spaces are not. */
251
79.3k
            penum->use_cie_range = false;
252
79.3k
            if (gs_color_space_is_PSCIE(penum->pcs) &&
253
0
                penum->pcs->icc_equivalent != NULL) {
254
                /* We have a PS CIE space.  Check the range */
255
0
                if ( !check_cie_range(penum->pcs) ) {
256
                    /* It is not 0 to 1.  We will be doing decode
257
                       plus an additional linear adjustment */
258
0
                    penum->use_cie_range = (get_cie_range(penum->pcs) != NULL);
259
0
                }
260
0
            }
261
            /* If the image has more than 256 pixels then go ahead and
262
               precompute the contone device colors for all of our 256 source
263
               values.  We should not be taking this path for cases where
264
               we have lots of tiny little images.  Mark those that are
265
               transparent or masked also at this time.  Since halftoning will
266
               be done via thresholding we will keep clues in continuous tone */
267
79.3k
            code = image_init_color_cache(penum, penum->bps, penum->spp);
268
79.3k
            if (code >= 0) {
269
#ifdef WITH_CAL
270
                penum->cal_ht = halftone_init(penum);
271
                if (penum->cal_ht != NULL)
272
                {
273
                    penum->skip_next_line = image_render_mono_ht_cal_skip_line;
274
                    *render_fn = &image_render_mono_ht_cal;
275
                    return code;
276
                }
277
#else
278
79.3k
                code = gxht_thresh_image_init(penum);
279
79.3k
                if (code >= 0) {
280
79.3k
                    *render_fn = &image_render_mono_ht;
281
79.3k
                    return code;
282
79.3k
                }
283
79.3k
#endif
284
79.3k
            }
285
79.3k
        }
286
449k
not_fast_halftoning:
287
        /*
288
         * Use the slow loop for imagemask with a halftone or a non-default
289
         * logical operation.
290
         */
291
449k
        penum->slow_loop =
292
449k
            (penum->masked && !color_is_pure(penum->icolor0)) ||
293
449k
            penum->use_rop;
294
        /* We can bypass X clipping for portrait mono-component images. */
295
449k
        if (!(penum->slow_loop || penum->posture != image_portrait))
296
349k
            penum->clip_image &= ~(image_clip_xmin | image_clip_xmax);
297
449k
        if_debug0m('b', penum->memory, "[b]render=mono\n");
298
        /* Precompute values needed for rasterizing. */
299
449k
        penum->dxx =
300
449k
            float2fixed(penum->matrix.xx + fixed2float(fixed_epsilon) / 2);
301
        /*
302
         * Scale the mask colors to match the scaling of each sample to a
303
         * full byte.  Also, if black or white is transparent, reset icolor0
304
         * or icolor1, which are used directly in the fast case loop.
305
         */
306
449k
        if (penum->use_mask_color) {
307
12
            gx_image_scale_mask_colors(penum, 0);
308
12
            if (penum->mask_color.values[0] <= 0)
309
0
                color_set_null(penum->icolor0);
310
12
            if (penum->mask_color.values[1] >= 255)
311
0
                color_set_null(penum->icolor1);
312
12
        }
313
        /* Reset the clues here, rather than in image_render_mono as
314
         * previously. Even doing so this often may be overzealous. */
315
449k
        image_init_clues(penum, penum->bps, penum->spp);
316
449k
        *render_fn = &image_render_mono;
317
449k
    }
318
1.17M
    return 0;
319
1.24M
}
320
321
#define USE_SET_GRAY_FUNCTION 0
322
#if USE_SET_GRAY_FUNCTION
323
/* Temporary function to make it easier to debug the uber-macro below */
324
static inline int
325
image_set_gray(byte sample_value, const bool masked, uint mask_base,
326
                uint mask_limit, gx_device_color **ppdevc, gs_client_color *cc,
327
                const gs_color_space *pcs, const gs_gstate *pgs,
328
                gx_device * dev, gs_color_select_t gs_color_select_source,
329
                gx_image_enum * penum)
330
{
331
   cs_proc_remap_color((*remap_color));
332
   int code;
333
   gx_device_color *pdevc;
334
   pdevc = *ppdevc = &penum->clues[sample_value].dev_color;
335
336
   if (!color_is_set(pdevc)) {
337
       if ((uint)(sample_value - mask_base) < mask_limit) {
338
           color_set_null(pdevc);
339
       } else {
340
            switch ( penum->map[0].decoding )
341
            {
342
            case sd_none:
343
            cc->paint.values[0] = (sample_value) * (1.0f / 255.0f);  /* faster than / */
344
            break;
345
            case sd_lookup:     /* <= 4 significant bits */
346
            cc->paint.values[0] =
347
              penum->map[0].decode_lookup[(sample_value) >> 4];
348
            break;
349
            case sd_compute:
350
            cc->paint.values[0] =
351
              penum->map[0].decode_base + (sample_value) * penum->map[0].decode_factor;
352
            }
353
            remap_color = pcs->type->remap_color;
354
            code = (*remap_color)(cc, pcs, pdevc, pgs, dev, gs_color_select_source);
355
            return(code);
356
        }
357
    } else if (!color_is_pure(pdevc)) {
358
        code = gx_color_load_select(pdevc, pgs, dev, gs_color_select_source);
359
        if (code < 0)
360
            return(code);
361
    }
362
    return(0);
363
}
364
#endif
365
366
/*
367
 * Rendering procedure for general mono-component images, dealing with
368
 * multiple bit-per-sample images, general transformations, arbitrary
369
 * single-component color spaces (DeviceGray, DevicePixel, CIEBasedA,
370
 * Separation, Indexed), and color masking. This procedure handles a
371
 * single scan line.
372
 */
373
static int
374
image_render_mono(gx_image_enum * penum, const byte * buffer, int data_x,
375
                  uint w, int h, gx_device * dev)
376
7.26M
{
377
7.26M
    const gs_gstate *pgs = penum->pgs;
378
7.26M
    gs_logical_operation_t lop = penum->log_op;
379
7.26M
    const bool masked = penum->masked;
380
7.26M
    const gs_color_space *pcs = NULL;   /* only set for non-masks */
381
7.26M
    cs_proc_remap_color((*remap_color)) = NULL; /* ditto */
382
7.26M
    gs_client_color cc;
383
7.26M
    gx_device_color *pdevc = penum->icolor1;    /* color for masking */
384
7.26M
    uint mask_base =            /* : 0 to pacify Valgrind */
385
7.26M
        (penum->use_mask_color ? penum->mask_color.values[0] : 0);
386
7.26M
    uint mask_limit =
387
7.26M
        (penum->use_mask_color ?
388
7.26M
         penum->mask_color.values[1] - mask_base + 1 : 0);
389
/*
390
 * Free variables of IMAGE_SET_GRAY:
391
 *   Read: penum, pgs, dev, mask_base, mask_limit
392
 *   Set: pdevc, code, cc
393
 */
394
7.26M
#define IMAGE_SET_GRAY(sample_value)\
395
75.5M
  BEGIN\
396
75.5M
    pdevc = &penum->clues[sample_value].dev_color;\
397
75.5M
    if (!color_is_set(pdevc)) {\
398
5.11M
        if ((uint)(sample_value - mask_base) < mask_limit)\
399
5.11M
            color_set_null(pdevc);\
400
5.11M
        else {\
401
5.11M
            decode_sample(sample_value, cc, 0);\
402
5.11M
            code = (*remap_color)(&cc, pcs, pdevc, pgs, dev, gs_color_select_source);\
403
5.11M
            if (code < 0)\
404
5.11M
                goto err;\
405
5.11M
            pdevc->tag = device_current_tag(dev);\
406
5.11M
        }\
407
67.5M
    } else if (!color_is_pure(pdevc)) {\
408
16.6M
        code = gx_color_load_select(pdevc, pgs, dev, gs_color_select_source);\
409
16.6M
        if (code < 0)\
410
16.6M
            goto err;\
411
16.6M
    }\
412
75.5M
  END
413
7.26M
    gx_dda_fixed_point next;    /* (y not used in fast loop) */
414
7.26M
    gx_dda_step_fixed dxx2, dxx3, dxx4;         /* (not used in all loops) */
415
7.26M
    const byte *psrc_initial = buffer + data_x;
416
7.26M
    const byte *psrc = psrc_initial;
417
7.26M
    const byte *rsrc = psrc;    /* psrc at start of run */
418
7.26M
    const byte *endp = psrc + w;
419
7.26M
    const byte *stop = endp;
420
7.26M
    fixed xrun;                 /* x at start of run */
421
7.26M
    byte run;           /* run value */
422
7.26M
    int htrun = (masked ? 255 : -2);            /* halftone run value */
423
7.26M
    int i, code = 0;
424
425
7.26M
    if (h == 0)
426
895k
        return 0;
427
    /*
428
     * Make sure the cache setup matches the graphics state.  Also determine
429
     * whether all tiles fit in the cache.  We may bypass the latter check
430
     * for masked images with a pure color.
431
     */
432
433
6.37M
    next = penum->dda.pixel0;
434
6.37M
    xrun = dda_current(next.x);
435
6.37M
    if (!masked) {
436
2.97M
        pcs = penum->pcs;       /* (may not be set for masks) */
437
2.97M
        remap_color = pcs->type->remap_color;
438
2.97M
    }
439
6.37M
    run = *psrc;
440
    /* Find the last transition in the input. */
441
6.37M
    if (masked &&
442
3.39M
        (penum->posture != image_portrait) &&
443
3.38M
        (penum->posture != image_landscape)) {
444
        /* No need to calculate stop */
445
3.38M
    } else {
446
2.98M
        byte last = stop[-1];
447
448
646M
        while (stop > psrc && stop[-1] == last)
449
643M
            --stop;
450
2.98M
    }
451
6.37M
    if (penum->slow_loop || penum->posture != image_portrait) {
452
453
        /**************************************************************
454
         * Slow case (skewed, rotated, or imagemask with a halftone). *
455
         **************************************************************/
456
457
3.40M
        fixed yrun;
458
3.40M
        const fixed pdyx = dda_current(penum->dda.row.x) - penum->cur.x;
459
3.40M
        const fixed pdyy = dda_current(penum->dda.row.y) - penum->cur.y;
460
3.40M
        dev_proc_fill_parallelogram((*fill_pgram)) =
461
3.40M
            dev_proc(dev, fill_parallelogram);
462
463
134M
#define xl dda_current(next.x)
464
137M
#define ytf dda_current(next.y)
465
3.40M
        yrun = ytf;
466
3.40M
        if (masked) {
467
468
            /**********************
469
             * Slow case, masked. *
470
             **********************/
471
472
3.38M
            pdevc = penum->icolor1;
473
3.38M
            code = gx_color_load(pdevc, pgs, dev);
474
3.38M
            if (code < 0)
475
0
                return code;
476
3.38M
            if ((stop <= psrc) && (penum->adjust == 0) &&
477
0
                ((penum->posture == image_portrait) ||
478
0
                 (penum->posture == image_landscape)))
479
0
                goto last;
480
3.38M
            if (penum->posture == image_portrait) {
481
482
                /********************************
483
                 * Slow case, masked, portrait. *
484
                 ********************************/
485
486
                /*
487
                 * We don't have to worry about the Y DDA, and the fill
488
                 * regions are rectangles.  Calculate multiples of the DDA
489
                 * step.
490
                 */
491
0
                fixed ax =
492
0
                    (penum->matrix.xx < 0 ? -penum->adjust : penum->adjust);
493
0
                fixed ay =
494
0
                    (pdyy < 0 ? -penum->adjust : penum->adjust);
495
0
                fixed dyy = pdyy + (ay << 1);
496
497
0
                yrun -= ay;
498
0
                dda_translate(next.x, -ax);
499
0
                ax <<= 1;
500
0
                dxx2 = next.x.step;
501
0
                dda_step_add(dxx2, next.x.step);
502
0
                dxx3 = dxx2;
503
0
                dda_step_add(dxx3, next.x.step);
504
0
                dxx4 = dxx3;
505
0
                dda_step_add(dxx4, next.x.step);
506
0
                for (;;) {      /* Skip a run of zeros. */
507
0
                    while (!psrc[0])
508
0
                        if (psrc + 4 <= endp) {
509
                            /* We can use fast skipping */
510
0
                            if (!psrc[1]) {
511
0
                                if (!psrc[2]) {
512
0
                                    if (!psrc[3]) {
513
0
                                        psrc += 4;
514
0
                                        dda_state_next(next.x.state, dxx4);
515
0
                                        if (psrc >= endp)
516
0
                                            break;
517
0
                                        continue;
518
0
                                    }
519
0
                                    psrc += 3;
520
0
                                    dda_state_next(next.x.state, dxx3);
521
0
                                    break;
522
0
                                }
523
0
                                psrc += 2;
524
0
                                dda_state_next(next.x.state, dxx2);
525
0
                                break;
526
0
                            } else {
527
0
                                ++psrc;
528
0
                                dda_next(next.x);
529
0
                                break;
530
0
                            }
531
0
                        } else {
532
                            /* We're too close to the end - skip 1 at a time */
533
0
                            while (!psrc[0]) {
534
0
                                ++psrc;
535
0
                                dda_next(next.x);
536
0
                                if (psrc >= endp)
537
0
                                    break;
538
0
                            }
539
0
                            if (psrc >= endp)
540
0
                                break;
541
0
                        }
542
0
                    xrun = xl;
543
0
                    if (psrc >= stop)
544
0
                        break;
545
0
                    for (; psrc < endp && *psrc; ++psrc)
546
0
                        dda_next(next.x);
547
0
                    code = (*fill_pgram)(dev, xrun, yrun,
548
0
                                         xl - xrun + ax, fixed_0, fixed_0, dyy,
549
0
                                         pdevc, lop);
550
0
                    if (code < 0)
551
0
                        goto err;
552
0
                    rsrc = psrc;
553
0
                    if (psrc >= stop)
554
0
                        break;
555
0
                }
556
557
3.38M
            } else if (penum->posture == image_landscape) {
558
559
                /*********************************
560
                 * Slow case, masked, landscape. *
561
                 *********************************/
562
563
                /*
564
                 * We don't have to worry about the X DDA.  However, we do
565
                 * have to take adjustment into account.  We don't bother to
566
                 * optimize this as heavily as the portrait case.
567
                 */
568
2
                fixed ax =
569
2
                    (pdyx < 0 ? -penum->adjust : penum->adjust);
570
2
                fixed dyx = pdyx + (ax << 1);
571
2
                fixed ay =
572
2
                    (penum->matrix.xy < 0 ? -penum->adjust : penum->adjust);
573
574
2
                xrun -= ax;
575
2
                dda_translate(next.y, -ay);
576
2
                ay <<= 1;
577
3
                for (;;) {
578
41
                    for (; psrc < endp && !*psrc; ++psrc)
579
38
                        dda_next(next.y);
580
3
                    yrun = ytf;
581
3
                    if (psrc >= stop)
582
1
                        break;
583
14
                    for (; psrc < endp && *psrc; ++psrc)
584
12
                        dda_next(next.y);
585
2
                    code = (*fill_pgram)(dev, xrun, yrun, fixed_0,
586
2
                                         ytf - yrun + ay, dyx, fixed_0,
587
2
                                         pdevc, lop);
588
2
                    if (code < 0)
589
0
                        goto err;
590
2
                    rsrc = psrc;
591
2
                    if (psrc >= stop)
592
1
                        break;
593
2
                }
594
595
3.38M
            } else {
596
597
                /**************************************
598
                 * Slow case, masked, not orthogonal. *
599
                 **************************************/
600
                /* FIXME: RJW: This code doesn't do adjustment. Should it?
601
                 * In the grand scheme of things it almost certainly doesn't
602
                 * matter (as adjust should only be used when plotting chars,
603
                 * and we use freetype now), but we record the fact that this
604
                 * may be a defect here. */
605
                /* Previous code here used to skip blocks of matching pixels
606
                 * and plot them all in one go. We can't do that, as it can
607
                 * cause rounding errors and mismatches with the image pixels
608
                 * that will be plotted after us. */
609
3.38M
                stop = endp;
610
13.3M
                for (;;) {
611
                    /* skip forward until we find a 1 bit */
612
97.3M
                    for (; psrc < stop && !*psrc; ++psrc) {
613
83.9M
                        dda_next(next.x);
614
83.9M
                        dda_next(next.y);
615
83.9M
                    }
616
13.3M
                    if (psrc >= endp) /* Note, endp NOT stop! */
617
3.38M
                        break;
618
                    /* Then draw the pgram and step forward until we find a
619
                     * 0 bit. */
620
45.1M
                    do {
621
45.1M
                        yrun = ytf;
622
45.1M
                        xrun = xl;
623
45.1M
                        dda_next(next.x);
624
45.1M
                        dda_next(next.y);
625
45.1M
                        code = (*fill_pgram)(dev, xrun, yrun, xl - xrun,
626
45.1M
                                             ytf - yrun, pdyx, pdyy, pdevc, lop);
627
45.1M
                        if (code < 0)
628
0
                            goto err;
629
45.1M
                        psrc++;
630
45.1M
                        rsrc = psrc;
631
45.1M
                        if (psrc >= stop)
632
1.12M
                            break;
633
45.1M
                    } while (*psrc);
634
9.93M
                }
635
636
3.38M
            }
637
638
3.38M
        } else if (penum->posture == image_portrait) {
639
            /**************************************
640
             * Slow case, not masked, portrait. *
641
             **************************************/
642
0
            dev_proc_fill_rectangle((*fill_proc)) =
643
0
                dev_proc(dev, fill_rectangle);
644
0
            int iy = fixed2int_pixround(yrun);
645
0
            int ih = fixed2int_pixround(yrun + pdyy) - iy;
646
0
            if (ih < 0)
647
0
                iy += ih, ih = -ih;
648
649
            /* In this case, we can fill runs quickly. */
650
            /****** DOESN'T DO ADJUSTMENT ******/
651
0
            if (stop <= psrc)
652
0
                goto last;
653
0
            for (;;) {
654
0
                byte c = *psrc++;
655
0
                if (c != run) {
656
0
                    int ix = fixed2int_pixround(xrun);
657
0
                    int iw = fixed2int_pixround(xl) - ix;
658
0
                    if (iw < 0)
659
0
                        ix += iw, iw = -iw;
660
0
                    switch (run)
661
0
                    {
662
0
                    case 0:
663
0
                        if (!color_is_pure(penum->icolor0))
664
0
                            goto ht_port;
665
0
                        code = (*fill_proc) (dev, ix, iy, iw, ih,
666
0
                                             penum->icolor0->colors.pure);
667
0
                        break;
668
0
                    case 0xff:
669
0
                        if (!color_is_pure(penum->icolor1))
670
0
                            goto ht_port;
671
0
                        code = (*fill_proc) (dev, ix, iy, iw, ih,
672
0
                                             penum->icolor1->colors.pure);
673
0
                        break;
674
0
                    default:
675
0
                        ht_port:
676
0
                        if (run != htrun) {
677
0
                            htrun = run;
678
#if USE_SET_GRAY_FUNCTION
679
                            code = image_set_gray(run,masked,mask_base,mask_limit,&pdevc,
680
                                    &cc,pcs,pgs,dev,gs_color_select_source,penum);
681
                            if (code < 0)
682
                                goto err;
683
#else
684
0
                            IMAGE_SET_GRAY(run);
685
0
#endif
686
0
                        }
687
0
                        code = gx_fill_rectangle_device_rop(ix, iy, iw, ih,
688
0
                                                            pdevc, dev, lop);
689
0
                    }
690
0
                    if (code < 0)
691
0
                        goto err;
692
0
                    xrun = xl;
693
0
                    rsrc = psrc;
694
0
                    if (psrc > stop)
695
0
                        break;
696
0
                    run = c;
697
0
                }
698
0
                dda_next(next.x);
699
0
                if (psrc >= endp)
700
0
                    break;
701
0
            }
702
21.0k
        } else if (penum->posture == image_landscape) {
703
704
            /**************************************
705
             * Slow case, not masked, landscape. *
706
             **************************************/
707
785
            dev_proc_fill_rectangle((*fill_proc)) =
708
785
                dev_proc(dev, fill_rectangle);
709
785
            int ix = fixed2int_pixround(xrun);
710
785
            int iw = fixed2int_pixround(xrun + pdyx) - ix;
711
785
            if (iw < 0)
712
410
                ix += iw, iw = -iw;
713
714
            /* In this case, we can fill runs quickly. */
715
            /****** DOESN'T DO ADJUSTMENT ******/
716
785
            if (stop <= psrc)
717
223
                goto last;
718
44.8k
            for (;;) {
719
44.8k
                byte c = *psrc++;
720
44.8k
                if (c != run) {
721
36.4k
                    int iy = fixed2int_pixround(yrun);
722
36.4k
                    int ih = fixed2int_pixround(ytf) - iy;
723
36.4k
                    if (ih < 0)
724
12.7k
                        iy += ih, ih = -ih;
725
36.4k
                    switch (run)
726
36.4k
                    {
727
187
                    case 0:
728
187
                        if (!color_is_pure(penum->icolor0))
729
145
                            goto ht_land;
730
42
                        code = (*fill_proc) (dev, ix, iy, iw, ih,
731
42
                                             penum->icolor0->colors.pure);
732
42
                        break;
733
47
                    case 0xff:
734
47
                        if (!color_is_pure(penum->icolor1))
735
6
                            goto ht_land;
736
41
                        code = (*fill_proc) (dev, ix, iy, iw, ih,
737
41
                                             penum->icolor1->colors.pure);
738
41
                        break;
739
36.2k
                    default:
740
36.3k
                        ht_land:
741
36.3k
                        if (run != htrun) {
742
36.2k
                            htrun = run;
743
#if USE_SET_GRAY_FUNCTION
744
                            code = image_set_gray(run,masked,mask_base,mask_limit,&pdevc,
745
                                    &cc,pcs,pgs,dev,gs_color_select_source,penum);
746
                            if (code < 0)
747
                                goto err;
748
#else
749
36.2k
                            IMAGE_SET_GRAY(run);
750
36.2k
#endif
751
36.2k
                        }
752
36.3k
                        code = gx_fill_rectangle_device_rop(ix, iy, iw, ih,
753
36.4k
                                                            pdevc, dev, lop);
754
36.4k
                    }
755
36.4k
                    if (code < 0)
756
0
                        goto err;
757
36.4k
                    yrun = ytf;
758
36.4k
                    rsrc = psrc;
759
36.4k
                    if (psrc > stop)
760
562
                        break;
761
35.8k
                    run = c;
762
35.8k
                }
763
44.2k
                dda_next(next.y);
764
44.2k
                if (psrc >= endp)
765
0
                    break;
766
44.2k
            }
767
20.2k
        } else {
768
769
            /******************************************
770
             * Slow case, not masked, not orthogonal. *
771
             ******************************************/
772
773
            /*
774
             * Since we have to check for the end after every pixel
775
             * anyway, we may as well avoid the last-run code.
776
             */
777
20.2k
            stop = endp;
778
21.9M
            for (;;) {
779
                /* We can't skip large constant regions quickly, */
780
                /* because this leads to rounding errors. */
781
                /* Just fill the region between xrun and xl. */
782
21.9M
                if (run != htrun) {
783
251k
                    htrun = run;
784
#if USE_SET_GRAY_FUNCTION
785
                    code = image_set_gray(run,masked,mask_base,mask_limit,&pdevc,
786
                        &cc,pcs,pgs,dev,gs_color_select_source,penum);
787
                    if (code < 0)
788
                        goto err;
789
#else
790
251k
                    IMAGE_SET_GRAY(run);
791
251k
#endif
792
251k
                }
793
21.9M
                code = (*fill_pgram) (dev, xrun, yrun, xl - xrun,
794
21.9M
                                      ytf - yrun, pdyx, pdyy, pdevc, lop);
795
21.9M
                if (code < 0)
796
0
                    goto err;
797
21.9M
                yrun = ytf;
798
21.9M
                xrun = xl;
799
21.9M
                rsrc = psrc;
800
21.9M
                if (psrc >= stop)
801
20.2k
                    break;
802
21.9M
                run = *psrc++;
803
21.9M
                dda_next(next.x);
804
21.9M
                dda_next(next.y);       /* harmless if no skew */
805
21.9M
            }
806
807
20.2k
        }
808
        /* Fill the last run. */
809
3.40M
      last:if (stop < endp && (*stop || !masked)) {
810
786
            if (!masked) {
811
#if USE_SET_GRAY_FUNCTION
812
                    code = image_set_gray(*stop, masked,mask_base,mask_limit,&pdevc,
813
                        &cc,pcs,pgs,dev,gs_color_select_source,penum);
814
                    if (code < 0)
815
                        goto err;
816
#else
817
785
                    IMAGE_SET_GRAY(*stop);
818
785
#endif
819
785
            }
820
786
            dda_advance(next.x, endp - stop);
821
786
            dda_advance(next.y, endp - stop);
822
786
            code = (*fill_pgram) (dev, xrun, yrun, xl - xrun,
823
786
                                  ytf - yrun, pdyx, pdyy, pdevc, lop);
824
786
        }
825
3.40M
#undef xl
826
3.40M
#undef ytf
827
828
3.40M
    } else {
829
830
        /**********************************************************
831
         * Fast case: no skew, and not imagemask with a halftone. *
832
         **********************************************************/
833
834
2.96M
        const fixed adjust = penum->adjust;
835
2.96M
        const fixed dxx = penum->dxx;
836
2.96M
        fixed xa = (dxx >= 0 ? adjust : -adjust);
837
2.96M
        const int yt = penum->yci, iht = penum->hci;
838
839
2.96M
        dev_proc_fill_rectangle((*fill_proc)) =
840
2.96M
            dev_proc(dev, fill_rectangle);
841
2.96M
        int xmin = fixed2int_pixround(penum->clip_outer.p.x);
842
2.96M
        int xmax = fixed2int_pixround(penum->clip_outer.q.x);
843
122M
#define xl dda_current(next.x)
844
845
2.96M
        if_debug2m('b', penum->memory, "[b]image y=%d  dda.y.Q=%lg\n",
846
2.96M
                   penum->y + penum->rect.y, penum->dda.row.y.state.Q / 256.);
847
        /* Fold the adjustment into xrun and xl, */
848
        /* including the +0.5-epsilon for rounding. */
849
2.96M
        xrun = xrun - xa + (fixed_half - fixed_epsilon);
850
2.96M
        dda_translate(next.x, xa + (fixed_half - fixed_epsilon));
851
2.96M
        xa <<= 1;
852
        /* Calculate multiples of the DDA step. */
853
2.96M
        dxx2 = next.x.step;
854
2.96M
        dda_step_add(dxx2, next.x.step);
855
2.96M
        dxx3 = dxx2;
856
2.96M
        dda_step_add(dxx3, next.x.step);
857
2.96M
        dxx4 = dxx3;
858
2.96M
        dda_step_add(dxx4, next.x.step);
859
2.96M
        if (stop > psrc)
860
122M
            for (;;) {          /* Skip large constant regions quickly, */
861
                /* but don't slow down transitions too much. */
862
277M
              skf:if (psrc[0] == run) {
863
205M
                    if (psrc[1] == run) {
864
180M
                        if (psrc[2] == run) {
865
164M
                            if (psrc[3] == run) {
866
154M
                                psrc += 4;
867
154M
                                dda_state_next(next.x.state, dxx4);
868
154M
                                if (psrc >= endp)
869
0
                                    break;
870
154M
                                goto skf;
871
154M
                            } else {
872
9.70M
                                psrc += 4;
873
9.70M
                                dda_state_next(next.x.state, dxx3);
874
9.70M
                            }
875
164M
                        } else {
876
16.2M
                            psrc += 3;
877
16.2M
                            dda_state_next(next.x.state, dxx2);
878
16.2M
                        }
879
180M
                    } else {
880
24.6M
                        psrc += 2;
881
24.6M
                        dda_next(next.x);
882
24.6M
                    }
883
205M
                } else
884
72.3M
                    psrc++;
885
122M
                {               /* Now fill the region between xrun and xl. */
886
122M
                    int xi = fixed2int_var(xrun);
887
122M
                    int wi = fixed2int_var(xl) - xi;
888
122M
                    int xei;
889
890
122M
                    if (wi <= 0) {
891
2.88M
                        if (wi == 0)
892
2.82M
                            goto mt;
893
58.7k
                        xi += wi, wi = -wi;
894
58.7k
                    }
895
120M
                    if ((xei = xi + wi) > xmax || xi < xmin) {  /* Do X clipping */
896
78.1k
                        if (xi < xmin)
897
24.1k
                            wi -= xmin - xi, xi = xmin;
898
78.1k
                        if (xei > xmax)
899
54.6k
                            wi -= xei - xmax;
900
78.1k
                        if (wi <= 0)
901
55.8k
                            goto mt;
902
78.1k
                    }
903
120M
                    switch (run) {
904
24.6M
                        case 0:
905
24.6M
                            if (masked)
906
8.07k
                                goto mt;
907
24.6M
                            if (!color_is_pure(penum->icolor0))
908
262k
                                goto ht;
909
24.3M
                            code = (*fill_proc) (dev, xi, yt, wi, iht,
910
24.3M
                                                 penum->icolor0->colors.pure);
911
24.3M
                            break;
912
24.4M
                        case 255:       /* just for speed */
913
24.4M
                            if (!color_is_pure(penum->icolor1))
914
370k
                                goto ht;
915
24.0M
                            code = (*fill_proc) (dev, xi, yt, wi, iht,
916
24.0M
                                                 penum->icolor1->colors.pure);
917
24.0M
                            break;
918
70.8M
                        default:
919
71.5M
                          ht:   /* Use halftone if needed */
920
71.5M
                            if (run != htrun) {
921
#if USE_SET_GRAY_FUNCTION
922
                                code = image_set_gray(run, masked,mask_base,mask_limit,&pdevc,
923
                                    &cc,pcs,pgs,dev,gs_color_select_source,penum);
924
                                if (code < 0)
925
                                    goto err;
926
#else
927
69.3M
                                IMAGE_SET_GRAY(run);
928
69.3M
#endif
929
69.3M
                                htrun = run;
930
69.3M
                            }
931
71.5M
                            code = gx_fill_rectangle_device_rop(xi, yt, wi, iht,
932
120M
                                                                 pdevc, dev, lop);
933
120M
                    }
934
119M
                    if (code < 0)
935
0
                        goto err;
936
122M
                  mt:xrun = xl - xa;    /* original xa << 1 */
937
122M
                    rsrc = psrc - 1;
938
122M
                    if (psrc > stop) {
939
1.56M
                        --psrc;
940
1.56M
                        break;
941
1.56M
                    }
942
121M
                    run = psrc[-1];
943
121M
                }
944
121M
                dda_next(next.x);
945
121M
            }
946
        /* Fill the last run. */
947
2.96M
        if (*stop != 0 || !masked) {
948
2.95M
            int xi = fixed2int_var(xrun);
949
2.95M
            int wi, xei;
950
951
2.95M
            dda_advance(next.x, endp - stop);
952
2.95M
            wi = fixed2int_var(xl) - xi;
953
2.95M
            if (wi <= 0) {
954
17.4k
                if (wi == 0)
955
3.09k
                    goto lmt;
956
14.3k
                xi += wi, wi = -wi;
957
14.3k
            }
958
2.95M
            if ((xei = xi + wi) > xmax || xi < xmin) {  /* Do X clipping */
959
119k
                if (xi < xmin)
960
3.29k
                    wi -= xmin - xi, xi = xmin;
961
119k
                if (xei > xmax)
962
116k
                    wi -= xei - xmax;
963
119k
                if (wi <= 0)
964
13.8k
                    goto lmt;
965
119k
            }
966
#if USE_SET_GRAY_FUNCTION
967
            code = image_set_gray(*stop, masked,mask_base,mask_limit,&pdevc,
968
                &cc,pcs,pgs,dev,gs_color_select_source,penum);
969
            if (code < 0)
970
                goto err;
971
#else
972
2.95M
            IMAGE_SET_GRAY(*stop);
973
2.94M
#endif
974
2.94M
            code = gx_fill_rectangle_device_rop(xi, yt, wi, iht,
975
2.94M
                                                pdevc, dev, lop);
976
2.95M
          lmt:;
977
2.95M
        }
978
979
2.96M
    }
980
6.37M
#undef xl
981
6.37M
    if (code >= 0) {
982
6.37M
        code = 1;
983
6.37M
        goto done;
984
6.37M
    }
985
    /* Save position if error, in case we resume. */
986
0
err:
987
0
    penum->used.x = rsrc - psrc_initial;
988
0
    penum->used.y = 0;
989
6.37M
done:
990
    /* Since dev_color.binary.b_tile is just a pointer to an entry in the halftone tile "cache"
991
       we cannot leave it set in case the interpeter changes the halftone
992
       (whilst it shouldn't do it, it is possible for Postscript image data source
993
       procedure to execute setcreen or similar). This also doesn't really adversely
994
       affect performance, as we'll call gx_color_load_select() for all the samples
995
       from the next buffer, which will NULL the b_tile pointer anyway (it only gets
996
       set when we actually try to draw with it.
997
    */
998
1.63G
    for (i = 0; i < 256; i++) {
999
1.63G
        penum->clues[i].dev_color.colors.binary.b_tile = NULL;
1000
1.63G
    }
1001
6.37M
    return code;
1002
0
}
1003
1004
#ifdef WITH_CAL
1005
static int
1006
image_render_mono_ht_cal_skip_line(gx_image_enum *penum,
1007
                                   gx_device     *dev)
1008
{
1009
    return !cal_halftone_next_line_required(penum->cal_ht);
1010
}
1011
1012
static int
1013
image_render_mono_ht_cal(gx_image_enum * penum, const byte * buffer, int data_x,
1014
    uint w, int h, gx_device * dev)
1015
{
1016
    const byte *input = buffer + data_x;
1017
1018
    if (buffer == NULL)
1019
        return 0;
1020
1021
    return cal_halftone_process_planar(penum->cal_ht, penum->memory->non_gc_memory,
1022
                                       (const byte * const *)&input, halftone_callback, dev);
1023
}
1024
#else
1025
/*
1026
 An image render case where the source color is monochrome or indexed and
1027
 the output is to be halftoned.  If the source color requires decoding,
1028
 an index look-up or ICC color managment, these operations have already been
1029
 performed on the index values and we are ready now to halftone */
1030
static int
1031
image_render_mono_ht(gx_image_enum * penum_orig, const byte * buffer, int data_x,
1032
                  uint w, int h, gx_device * dev)
1033
1.18M
{
1034
1.18M
    gx_image_enum *penum = penum_orig; /* const within proc */
1035
1.18M
    image_posture posture = penum->posture;
1036
1.18M
    int vdi;  /* amounts to replicate */
1037
1.18M
    fixed xrun;
1038
1.18M
    byte *thresh_align;
1039
1.18M
    int spp_out = penum->dev->color_info.num_components;
1040
1.18M
    byte *devc_contone[GX_DEVICE_COLOR_MAX_COMPONENTS];
1041
1.18M
    byte *devc_contone_gray;
1042
1.18M
    const byte *psrc = buffer + data_x;
1043
1.18M
    int dest_width, dest_height, data_length;
1044
1.18M
    byte *color_cache;
1045
1.18M
    int position, k, j;
1046
1.18M
    int offset_bits = penum->ht_offset_bits;
1047
1.18M
    int contone_stride = 0;  /* Not used in landscape case */
1048
1.18M
    fixed offset;
1049
1.18M
    int src_size;
1050
1.18M
    bool flush_buff = false;
1051
1.18M
    int offset_contone[GX_DEVICE_COLOR_MAX_COMPONENTS];    /* to ensure 128 bit boundary */
1052
1.18M
    int offset_threshold;  /* to ensure 128 bit boundary */
1053
1.18M
    gx_dda_fixed dda_ht;
1054
1.18M
    int xn, xr;   /* destination position (pixel, not contone buffer offset) */
1055
1.18M
    int code = 0;
1056
1.18M
    byte *dev_value;
1057
1058
1.18M
    if (h == 0 || penum->line_size == 0) {      /* line_size == 0, nothing to do */
1059
158k
        if (penum->ht_landscape.count == 0 || posture == image_portrait) {
1060
158k
            return 0;
1061
158k
        } else {
1062
            /* Need to flush the buffer */
1063
1
            offset_bits = penum->ht_landscape.count;
1064
1
            penum->ht_offset_bits = offset_bits;
1065
1
            penum->ht_landscape.offset_set = true;
1066
1
            flush_buff = true;
1067
1
        }
1068
158k
    }
1069
1.02M
    src_size = penum->rect.w;
1070
1071
    /* Set up the dda.  We could move this out but the cost is pretty small */
1072
1.02M
    dda_ht = (posture == image_portrait) ? penum->dda.pixel0.x : penum->dda.pixel0.y;
1073
1.02M
    if (penum->dxx > 0)
1074
1.02M
        dda_translate(dda_ht, -fixed_epsilon);      /* to match rounding in non-fast code */
1075
1076
1.02M
    switch (posture) {
1077
1.02M
        case image_portrait:
1078
            /* Figure out our offset in the contone and threshold data
1079
               buffers so that we ensure that we are on the 128bit
1080
               memory boundaries when we get offset_bits into the data. */
1081
            /* Can't do this earlier, as GC might move the buffers. */
1082
1.02M
            xrun = dda_current(dda_ht);
1083
1.02M
            dest_width = gxht_dda_length(&dda_ht, src_size);
1084
1.02M
            if (penum->x_extent.x < 0)
1085
0
                xrun += penum->x_extent.x;
1086
1.02M
            vdi = penum->hci;
1087
1.02M
            contone_stride = penum->line_size;
1088
1.02M
            offset_threshold = (- (((int)(intptr_t)(penum->thresh_buffer)) +
1089
1.02M
                                   penum->ht_offset_bits)) & 15;
1090
2.10M
            for (k = 0; k < spp_out; k ++) {
1091
1.08M
                offset_contone[k]   = (- (((int)(intptr_t)(penum->line)) +
1092
1.08M
                                           contone_stride * k +
1093
1.08M
                                           penum->ht_offset_bits)) & 15;
1094
1.08M
            }
1095
1.02M
            data_length = dest_width;
1096
1.02M
            dest_height = fixed2int_var_rounded(any_abs(penum->y_extent.y));
1097
#ifdef DEBUG
1098
            /* Help in spotting problems */
1099
            memset(penum->ht_buffer, 0x00, penum->ht_stride * vdi * spp_out);
1100
#endif
1101
1.02M
            break;
1102
2
        case image_landscape:
1103
2
        default:
1104
            /* Figure out our offset in the contone and threshold data buffers
1105
               so that we ensure that we are on the 128bit memory boundaries.
1106
               Can't do this earlier as GC may move the buffers.
1107
             */
1108
2
            vdi = penum->wci;
1109
2
            contone_stride = penum->line_size;
1110
2
            dest_width = fixed2int_var_rounded(any_abs(penum->y_extent.x));
1111
            /* match height in gxht_thresh.c dev_width calculation */
1112
2
            xrun = dda_current(dda_ht);            /* really yrun, but just used here for landscape */
1113
2
            dest_height = gxht_dda_length(&dda_ht, src_size);
1114
2
            data_length = dest_height;
1115
2
            offset_threshold = (-(int)(intptr_t)(penum->thresh_buffer)) & 15;
1116
4
            for (k = 0; k < spp_out; k ++) {
1117
2
                offset_contone[k] = (- ((int)(intptr_t)(penum->line) +
1118
2
                                        contone_stride * k)) & 15;
1119
2
            }
1120
            /* In the landscaped case, we want to accumulate multiple columns
1121
               of data before sending to the device.  We want to have a full
1122
               byte of HT data in one write.  This may not be possible at the
1123
               left or right and for those and for those we have so send partial
1124
               chunks */
1125
            /* Initialize our xstart and compute our partial bit chunk so
1126
               that we get in sync with the 1 bit mem device 16 bit positions
1127
               for the rest of the chunks */
1128
2
            if (penum->ht_landscape.count == 0) {
1129
                /* In the landscape case, the size depends upon
1130
                   if we are moving left to right or right to left with
1131
                   the image data.  This offset is to ensure that we  get
1132
                   aligned in our chunks along 16 bit boundaries */
1133
1
                penum->ht_landscape.offset_set = true;
1134
1
                if (penum->ht_landscape.index < 0) {
1135
0
                    penum->ht_landscape.xstart = penum->xci + vdi - 1;
1136
0
                    offset_bits = (penum->ht_landscape.xstart % 16) + 1;
1137
                    /* xci can be negative, so allow for that */
1138
0
                    if (offset_bits <= 0) offset_bits += 16;
1139
1
                } else {
1140
1
                    penum->ht_landscape.xstart = penum->xci;
1141
                    /* xci can be negative, see Bug 692569. */
1142
1
                    offset_bits = 16 - penum->xci % 16;
1143
1
                    if (offset_bits >= 16) offset_bits -= 16;
1144
1
                }
1145
1
                if (offset_bits == 0 || offset_bits == 16) {
1146
1
                    penum->ht_landscape.offset_set = false;
1147
1
                    penum->ht_offset_bits = 0;
1148
1
                } else {
1149
0
                    penum->ht_offset_bits = offset_bits;
1150
0
                }
1151
1
            }
1152
2
            break;
1153
1.02M
    }
1154
1.02M
    if (flush_buff)
1155
1
        goto flush;  /* All done */
1156
1157
    /* Get the pointers to our buffers */
1158
2.10M
    for (k = 0; k < spp_out; k++) {
1159
1.08M
        if (posture == image_portrait) {
1160
1.08M
            devc_contone[k] = penum->line + contone_stride * k +
1161
1.08M
                              offset_contone[k];
1162
1.08M
        } else {
1163
1
            devc_contone[k] = penum->line + offset_contone[k] +
1164
1
                              LAND_BITS * k * contone_stride;
1165
1
        }
1166
1.08M
    }
1167
1.02M
    xr = fixed2int_var_rounded(dda_current(dda_ht));  /* indexes in the destination (contone) */
1168
1169
1.02M
    devc_contone_gray = devc_contone[0];
1170
1.02M
    if (penum->color_cache == NULL) {
1171
        /* No look-up in the cache to fill the source buffer. Still need to
1172
           have the data at device resolution.  Do these in quick small
1173
           loops.  This likely could be a vectorized function.  Note that
1174
           since the color_cache is NULL we must be in a case where we
1175
           are going to a monochrome device. */
1176
861k
        switch (posture) {
1177
861k
            case image_portrait:
1178
861k
                if (penum->dst_width > 0) {
1179
861k
                    if (src_size == dest_width) {
1180
854k
                        memcpy(devc_contone_gray, psrc, data_length);
1181
854k
                    } else if (src_size * 2 == dest_width) {
1182
0
                        const byte *psrc_temp = psrc;
1183
0
                        for (k = 0; k < data_length; k+=2, devc_contone_gray+=2,
1184
0
                             psrc_temp++) {
1185
0
                            *devc_contone_gray = *(devc_contone_gray+1) = *psrc_temp;
1186
0
                        }
1187
7.05k
                    } else {
1188
                        /* Mono case, forward */
1189
1.33M
                        for (k=0; k<src_size; k++) {
1190
1.32M
                            byte c = *psrc++;
1191
1.32M
                            dda_next(dda_ht);
1192
1.32M
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1193
4.16M
                            while (xr < xn) {
1194
2.84M
                                *devc_contone_gray++ = c;
1195
2.84M
                                xr++;
1196
2.84M
                            }           /* at loop exit xn will be >= xr */
1197
1.32M
                        }
1198
7.05k
                    }
1199
861k
                } else {
1200
                    /* Mono case, backwards */
1201
0
                    devc_contone_gray += (data_length - 1);
1202
0
                    for (k=0; k<src_size; k++) {
1203
0
                        byte c = *psrc++;
1204
0
                        dda_next(dda_ht);
1205
0
                        xn = fixed2int_var_rounded(dda_current(dda_ht));
1206
0
                        while (xr > xn) {
1207
0
                            *devc_contone_gray-- = c;
1208
0
                            xr--;
1209
0
                        }           /* at loop exit xn will be >= xr */
1210
0
                    }
1211
0
                }
1212
861k
                break;
1213
1
            case image_landscape:
1214
                /* We store the data at this point into a column. Depending
1215
                   upon our landscape direction we may be going left to right
1216
                   or right to left. */
1217
1
                if (penum->ht_landscape.flipy) {
1218
0
                    position = penum->ht_landscape.curr_pos +
1219
0
                                LAND_BITS * (data_length - 1);
1220
0
                    for (k=0; k<src_size; k++) {
1221
0
                        byte c = *psrc++;
1222
0
                        dda_next(dda_ht);
1223
0
                        xn = fixed2int_var_rounded(dda_current(dda_ht));
1224
0
                        while (xr > xn) {
1225
0
                            devc_contone_gray[position] = c;
1226
0
                            position -= LAND_BITS;
1227
0
                            xr--;
1228
0
                        }           /* at loop exit xn will be <= xr */
1229
0
                    }
1230
1
                } else {
1231
1
                    position = penum->ht_landscape.curr_pos;
1232
                    /* Code up special cases for when we have no scaling
1233
                       and 2x scaling which we will run into in 300 and
1234
                       600dpi devices and content */
1235
1
                    if (src_size == dest_height) {
1236
0
                        for (k = 0; k < data_length; k++) {
1237
0
                            devc_contone_gray[position] = psrc[k];
1238
0
                            position += LAND_BITS;
1239
0
                        }
1240
1
                    } else if (src_size*2 == dest_height) {
1241
0
                        for (k = 0; k < data_length; k+=2) {
1242
0
                            offset = fixed2int_rounded(fixed_half * k);
1243
0
                            devc_contone_gray[position] =
1244
0
                                devc_contone_gray[position + LAND_BITS] = psrc[offset];
1245
0
                            position += LAND_BITS*2;
1246
0
                        }
1247
1
                    } else {
1248
                        /* use dda */
1249
257
                        for (k=0; k<src_size; k++) {
1250
256
                            byte c = *psrc++;
1251
256
                            dda_next(dda_ht);
1252
256
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1253
259
                            while (xr < xn) {
1254
3
                                devc_contone_gray[position] = c;
1255
3
                                position += LAND_BITS;
1256
3
                                xr++;
1257
3
                            }           /* at loop exit xn will be >= xr */
1258
256
                        }
1259
1
                    }
1260
1
                }
1261
                /* Store the width information and update our counts */
1262
1
                penum->ht_landscape.count += vdi;
1263
1
                penum->ht_landscape.widths[penum->ht_landscape.curr_pos] = vdi;
1264
1
                penum->ht_landscape.curr_pos += penum->ht_landscape.index;
1265
1
                penum->ht_landscape.num_contones++;
1266
1
                break;
1267
0
            default:
1268
                /* error not allowed */
1269
0
                break;
1270
861k
            }
1271
861k
    } else {
1272
        /* look-up in the cache to fill the source buffer.  If our spp_out
1273
           is 4 then we need to write out the pixels in the color_cache into
1274
           the planes */
1275
161k
        color_cache = penum->color_cache->device_contone;
1276
161k
        switch (posture) {
1277
161k
            case image_portrait:
1278
161k
                if (penum->dst_width > 0) {
1279
                    /* loop filling contone values selected from the source */
1280
161k
                    if (spp_out == 1) {
1281
                        /* Mono case, forward */
1282
29.5M
                        for (k=0; k<src_size; k++) {
1283
29.4M
                            byte c = color_cache[*psrc++];
1284
29.4M
                            dda_next(dda_ht);
1285
29.4M
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1286
85.9M
                            while (xr < xn) {
1287
56.5M
                                *devc_contone_gray++ = c;
1288
56.5M
                                xr++;
1289
56.5M
                            }           /* at loop exit xn will be >= xr */
1290
29.4M
                        }
1291
141k
                    } else {
1292
                        /* CMYK case, forward */
1293
4.98M
                        for (k=0; k<src_size; k++) {
1294
4.96M
                            dev_value = &(color_cache[*psrc++ * spp_out]);
1295
4.96M
                            dda_next(dda_ht);
1296
4.96M
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1297
21.3M
                            while (xr < xn) {
1298
81.7M
                                for (j = 0; j < spp_out; j++) {
1299
65.3M
                                    *(devc_contone[j])++ = dev_value[j];
1300
65.3M
                                }
1301
16.3M
                                xr++;
1302
16.3M
                            }           /* at loop exit xn will be >= xr */
1303
4.96M
                        }
1304
20.4k
                    }
1305
161k
                } else {
1306
0
                    if (spp_out == 1) {
1307
                        /* Mono case, backwards */
1308
0
                        devc_contone_gray += data_length - 1;   /* move to end */
1309
0
                        for (k=0; k<src_size; k++) {
1310
0
                            byte c = color_cache[*psrc++];
1311
0
                            dda_next(dda_ht);
1312
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1313
0
                            while (xr > xn) {
1314
0
                                *devc_contone_gray-- = c;
1315
0
                                xr--;
1316
0
                            }           /* at loop exit xn will be <= xr */
1317
0
                        }
1318
0
                    } else {
1319
                        /* CMYK case, backwards */
1320
                        /* Move to the other end and we will decrement */
1321
0
                        for (j = 0; j < spp_out; j++) {
1322
0
                            devc_contone[j] = devc_contone[j] + data_length - 1;
1323
0
                        }
1324
0
                        for (k=0; k<src_size; k++) {
1325
0
                            dev_value = &(color_cache[*psrc++ * spp_out]);
1326
0
                            dda_next(dda_ht);
1327
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1328
0
                            while (xr > xn) {
1329
0
                                for (j = 0; j < spp_out; j++) {
1330
0
                                    *(devc_contone[j])-- = dev_value[j];
1331
0
                                }
1332
0
                                xr--;
1333
0
                            }           /* at loop exit xn will be <= xr */
1334
0
                        }
1335
0
                    }
1336
0
                }
1337
161k
                break;
1338
0
            case image_landscape:
1339
                /* We store the data at this point into a column. Depending
1340
                   upon our landscape direction we may be going left to right
1341
                   or right to left. */
1342
0
                if (penum->ht_landscape.flipy) {
1343
0
                    position = penum->ht_landscape.curr_pos +
1344
0
                                LAND_BITS * (data_length - 1);
1345
                    /* use dda */
1346
0
                    if (spp_out == 1) {
1347
                        /* Mono case */
1348
                        /* loop filling contone values selected from the source */
1349
0
                        for (k=0; k<src_size; k++) {
1350
0
                            byte c = color_cache[*psrc++];
1351
0
                            dda_next(dda_ht);
1352
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1353
0
                            while (xr > xn) {
1354
0
                                devc_contone_gray[position] = c;
1355
0
                                position -= LAND_BITS;
1356
0
                                xr--;
1357
0
                            }           /* at loop exit xn will be <= xr */
1358
0
                        }
1359
0
                    } else {
1360
                        /* CMYK case */
1361
0
                        for (k=0; k<src_size; k++) {
1362
0
                            dev_value = &(color_cache[*psrc++ * spp_out]);
1363
0
                            dda_next(dda_ht);
1364
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1365
0
                            while (xr > xn) {
1366
0
                                for (j = 0; j < spp_out; j++) {
1367
0
                                    *(devc_contone[j] + position) = dev_value[j];
1368
0
                                }
1369
0
                                position -= LAND_BITS;
1370
0
                                xr--;
1371
0
                            }           /* at loop exit xn will be <= xr */
1372
0
                        }
1373
0
                    }
1374
0
                } else {  /* Not flipped in Y */
1375
0
                    position = penum->ht_landscape.curr_pos;
1376
                    /* use dda */
1377
0
                    if (spp_out == 1) {
1378
                        /* Mono case */
1379
                        /* loop filling contone values selected from the source */
1380
0
                        for (k=0; k<src_size; k++) {
1381
0
                            byte c = color_cache[*psrc++];
1382
0
                            dda_next(dda_ht);
1383
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1384
0
                            while (xr < xn) {
1385
0
                                devc_contone_gray[position] = c;
1386
0
                                position += LAND_BITS;
1387
0
                                xr++;
1388
0
                            }           /* at loop exit xn will be >= xr */
1389
0
                        }
1390
0
                    } else {
1391
                        /* CMYK case */
1392
                        /* Apply initial offset */
1393
0
                        for (k = 0; k < spp_out; k++) {
1394
0
                            devc_contone[k] = devc_contone[k] + position;
1395
0
                        }
1396
                        /* CMYK case */
1397
0
                        for (k=0; k<src_size; k++) {
1398
0
                            dev_value = &(color_cache[*psrc++ * spp_out]);
1399
0
                            dda_next(dda_ht);
1400
0
                            xn = fixed2int_var_rounded(dda_current(dda_ht));
1401
0
                            while (xr < xn) {
1402
0
                                for (j = 0; j < spp_out; j++) {
1403
0
                                    *(devc_contone[j] + position) = dev_value[j];
1404
0
                                }
1405
0
                                position += LAND_BITS;
1406
0
                                xr++;
1407
0
                            }           /* at loop exit xn will be >= xr */
1408
0
                        }
1409
0
                    }
1410
0
                }
1411
                /* Store the width information and update our counts */
1412
0
                penum->ht_landscape.count += vdi;
1413
0
                penum->ht_landscape.widths[penum->ht_landscape.curr_pos] = vdi;
1414
0
                penum->ht_landscape.curr_pos += penum->ht_landscape.index;
1415
0
                penum->ht_landscape.num_contones++;
1416
0
                break;
1417
0
            default:
1418
                /* error not allowed */
1419
0
                break;
1420
161k
        }
1421
161k
    }
1422
    /* Apply threshold array to image data */
1423
1.02M
flush:
1424
1.02M
    thresh_align = penum->thresh_buffer + offset_threshold;
1425
1.02M
    code = gxht_thresh_planes(penum, xrun, dest_width, dest_height,
1426
1.02M
                              thresh_align, dev, offset_contone,
1427
1.02M
                              contone_stride);
1428
1.02M
    return code;
1429
1.02M
}
1430
#endif