Coverage Report

Created: 2025-11-16 07:40

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/devices/vector/gdevpx.c
Line
Count
Source
1
/* Copyright (C) 2001-2025 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* H-P PCL XL driver */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "gx.h"
21
#include "gserrors.h"
22
#include "gsccolor.h"
23
#include "gsdcolor.h"
24
#include "gxiparam.h"
25
#include "gxcspace.h"           /* for color mapping for images */
26
#include "gxdevice.h"
27
#include "gxpath.h"
28
#include "gdevvec.h"
29
#include "gdevmrop.h"
30
#include "strimpl.h"
31
#include "srlx.h"
32
#include "jpeglib_.h"
33
#include "sdct.h"
34
#include "sjpeg.h"
35
#include "gdevpxat.h"
36
#include "gdevpxen.h"
37
#include "gdevpxop.h"
38
#include "gdevpxut.h"
39
#include "gxlum.h"
40
#include "gdevpcl.h"            /* for gdev_pcl_mode3compress() */
41
#include "gsicc_manage.h"
42
#include "gsicc_cache.h"
43
#include <stdlib.h>             /* abs() */
44
45
#include "gxfcache.h"
46
#include "gxfont.h"
47
48
/* ---------------- Device definition ---------------- */
49
50
/* Define the default resolution. */
51
#ifndef X_DPI
52
#  define X_DPI 600
53
#endif
54
#ifndef Y_DPI
55
#  define Y_DPI 600
56
#endif
57
58
/* Structure definition */
59
107M
#define NUM_POINTS 40           /* must be >= 3 and <= 255 */
60
typedef enum {
61
    POINTS_NONE,
62
    POINTS_LINES,
63
    POINTS_CURVES
64
} point_type_t;
65
typedef struct gx_device_pclxl_s {
66
    gx_device_vector_common;
67
    /* Additional state information */
68
    pxeMediaSize_t media_size;
69
    bool ManualFeed;            /* map ps setpage commands to pxl */
70
    bool ManualFeed_set;
71
    int MediaPosition_old;      /* old Position attribute - for duplex detection */
72
    int MediaPosition;          /* MediaPosition attribute */
73
    int MediaPosition_set;
74
    char MediaType_old[64];     /* old MediaType attribute - for duplex detection */
75
    char MediaType[64];         /* MediaType attribute */
76
    int MediaType_set;
77
    int page;                   /* Page number starting at 0 */
78
    bool Duplex;                /* Duplex attribute */
79
    bool Staple;                /* Staple attribute */
80
    bool Tumble;                /* Tumble attribute */
81
    gx_path_type_t fill_rule;   /* ...winding_number or ...even_odd  */
82
    gx_path_type_t clip_rule;   /* ditto */
83
    pxeColorSpace_t color_space;
84
    struct pal_ {
85
        int size;               /* # of bytes */
86
        byte data[256 * 3];     /* up to 8-bit samples */
87
    } palette;
88
    struct pts_ {
89
        /* buffer for accumulating path points */
90
        gs_int_point current;   /* current point as of start of data */
91
        point_type_t type;
92
        int count;
93
        gs_int_point data[NUM_POINTS];
94
    } points;
95
    struct ch_ {
96
    /* cache for downloaded characters */
97
13.8k
#define MAX_CACHED_CHARS 400
98
13.7k
#define MAX_CHAR_DATA 500000
99
1.13M
#define MAX_CHAR_SIZE 5000
100
1.14M
#define CHAR_HASH_FACTOR 247
101
        ushort table[MAX_CACHED_CHARS * 3 / 2];
102
        struct cd_ {
103
            gs_id id;           /* key */
104
            uint size;
105
        } data[MAX_CACHED_CHARS];
106
        int next_in;            /* next data element to fill in */
107
        int next_out;           /* next data element to discard */
108
        int count;              /* of occupied data elements */
109
        ulong used;
110
    } chars;
111
    bool font_set;
112
    int state_rotated;          /* 0, 1, 2, -1, mutiple of 90 deg */
113
    int CompressMode;           /* std PXL enum: None=0, RLE=1, JPEG=2, DeltaRow=3 */
114
    bool scaled;
115
    double x_scale;             /* chosen so that max(x) is scaled to 0x7FFF, to give max distinction between x values */
116
    double y_scale;
117
    bool pen_null;
118
    bool brush_null;
119
    bool iccTransform;
120
} gx_device_pclxl;
121
122
gs_public_st_suffix_add0_final(st_device_pclxl, gx_device_pclxl,
123
                               "gx_device_pclxl",
124
                               device_pclxl_enum_ptrs,
125
                               device_pclxl_reloc_ptrs, gx_device_finalize,
126
                               st_device_vector);
127
128
#define pclxl_device_body(dname, depth, init)\
129
  std_device_dci_type_body(gx_device_pclxl, init, dname, &st_device_pclxl,\
130
                           DEFAULT_WIDTH_10THS * X_DPI / 10,\
131
                           DEFAULT_HEIGHT_10THS * Y_DPI / 10,\
132
                           X_DPI, Y_DPI,\
133
                           (depth > 8 ? 3 : 1), depth,\
134
                           (depth > 1 ? 255 : 1), (depth > 8 ? 255 : 0),\
135
                           (depth > 1 ? 256 : 2), (depth > 8 ? 256 : 1))
136
137
/* Driver procedures */
138
static dev_proc_open_device(pclxl_open_device);
139
static dev_proc_output_page(pclxl_output_page);
140
static dev_proc_close_device(pclxl_close_device);
141
static dev_proc_copy_mono(pclxl_copy_mono);
142
static dev_proc_copy_color(pclxl_copy_color);
143
static dev_proc_fill_mask(pclxl_fill_mask);
144
145
static dev_proc_get_params(pclxl_get_params);
146
static dev_proc_put_params(pclxl_put_params);
147
static dev_proc_text_begin(pclxl_text_begin);
148
149
/*static dev_proc_draw_thin_line(pclxl_draw_thin_line); */
150
static dev_proc_begin_typed_image(pclxl_begin_typed_image);
151
static dev_proc_strip_copy_rop2(pclxl_strip_copy_rop2);
152
153
static void
154
pclxl_initialize_device_procs(gx_device *dev,
155
                              dev_proc_map_rgb_color(map_rgb_color),
156
                              dev_proc_map_color_rgb(map_color_rgb))
157
25.9k
{
158
25.9k
    set_dev_proc(dev, open_device, pclxl_open_device);
159
25.9k
    set_dev_proc(dev, output_page, pclxl_output_page);
160
25.9k
    set_dev_proc(dev, close_device, pclxl_close_device);
161
25.9k
    set_dev_proc(dev, map_rgb_color, map_rgb_color);
162
25.9k
    set_dev_proc(dev, map_color_rgb, map_color_rgb);
163
25.9k
    set_dev_proc(dev, fill_rectangle, gdev_vector_fill_rectangle);
164
25.9k
    set_dev_proc(dev, copy_mono, pclxl_copy_mono);
165
25.9k
    set_dev_proc(dev, copy_color, pclxl_copy_color);
166
25.9k
    set_dev_proc(dev, get_params, pclxl_get_params);
167
25.9k
    set_dev_proc(dev, put_params, pclxl_put_params);
168
25.9k
    set_dev_proc(dev, get_page_device, gx_page_device_get_page_device);
169
25.9k
    set_dev_proc(dev, fill_path, gdev_vector_fill_path);
170
25.9k
    set_dev_proc(dev, stroke_path, gdev_vector_stroke_path);
171
25.9k
    set_dev_proc(dev, fill_mask, pclxl_fill_mask);
172
25.9k
    set_dev_proc(dev, fill_trapezoid, gdev_vector_fill_trapezoid);
173
25.9k
    set_dev_proc(dev, fill_parallelogram, gdev_vector_fill_parallelogram);
174
25.9k
    set_dev_proc(dev, fill_triangle, gdev_vector_fill_triangle);
175
25.9k
    set_dev_proc(dev, begin_typed_image, pclxl_begin_typed_image);
176
25.9k
    set_dev_proc(dev, strip_copy_rop2, pclxl_strip_copy_rop2);
177
25.9k
    set_dev_proc(dev, text_begin, pclxl_text_begin);
178
25.9k
}
179
180
static void
181
pxlmono_initialize_device_procs(gx_device *dev)
182
12.0k
{
183
12.0k
    pclxl_initialize_device_procs(dev,
184
12.0k
                                  gx_default_gray_map_rgb_color,
185
12.0k
                                  gx_default_gray_map_color_rgb);
186
12.0k
}
187
188
static void
189
pxlcolor_initialize_device_procs(gx_device *dev)
190
13.9k
{
191
13.9k
    pclxl_initialize_device_procs(dev,
192
13.9k
                                  gx_default_rgb_map_rgb_color,
193
13.9k
                                  gx_default_rgb_map_color_rgb);
194
13.9k
}
195
196
const gx_device_pclxl gs_pxlmono_device = {
197
    pclxl_device_body("pxlmono", 8, pxlmono_initialize_device_procs)
198
};
199
200
const gx_device_pclxl gs_pxlcolor_device = {
201
    pclxl_device_body("pxlcolor", 24, pxlcolor_initialize_device_procs)
202
};
203
204
/* ---------------- Other utilities ---------------- */
205
206
static inline stream *
207
pclxl_stream(gx_device_pclxl * xdev)
208
300M
{
209
300M
    return gdev_vector_stream((gx_device_vector *) xdev);
210
300M
}
211
212
/* Initialize for a page. */
213
static void
214
pclxl_page_init(gx_device_pclxl * xdev)
215
49.0k
{
216
49.0k
    gdev_vector_init((gx_device_vector *) xdev);
217
49.0k
    xdev->in_page = false;
218
49.0k
    xdev->fill_rule = gx_path_type_winding_number;
219
49.0k
    xdev->clip_rule = gx_path_type_winding_number;
220
49.0k
    xdev->color_space = eNoColorSpace;
221
49.0k
    xdev->palette.size = 0;
222
49.0k
    xdev->font_set = false;
223
49.0k
    xdev->state_rotated = 0;
224
49.0k
    xdev->scaled = false;
225
49.0k
    xdev->x_scale = 1;
226
49.0k
    xdev->y_scale = 1;
227
49.0k
    xdev->pen_null = false;
228
49.0k
    xdev->brush_null = false;
229
49.0k
}
230
231
/* Test whether a RGB color is actually a gray shade. */
232
24.4M
#define RGB_IS_GRAY(ci) ((ci) >> 8 == ((ci) & 0xffff))
233
234
/* Set the color space and (optionally) palette. */
235
static void
236
pclxl_set_color_space(gx_device_pclxl * xdev, pxeColorSpace_t color_space)
237
36.7M
{
238
36.7M
    if (xdev->color_space != color_space) {
239
944k
        stream *s = pclxl_stream(xdev);
240
241
944k
        px_put_ub(s, (byte) color_space);
242
944k
        px_put_ac(s, pxaColorSpace, pxtSetColorSpace);
243
944k
        xdev->color_space = color_space;
244
944k
        xdev->palette.size = 0; /* purge the cached palette */
245
944k
    }
246
36.7M
}
247
static void
248
pclxl_set_color_palette(gx_device_pclxl * xdev, pxeColorSpace_t color_space,
249
                        const byte * palette, uint palette_size)
250
207k
{
251
207k
    if (xdev->color_space != color_space ||
252
205k
        xdev->palette.size != palette_size ||
253
204k
        memcmp(xdev->palette.data, palette, palette_size)
254
207k
        ) {
255
2.86k
        stream *s = pclxl_stream(xdev);
256
257
2.86k
        static const byte csp_[] = {
258
2.86k
            DA(pxaColorSpace),
259
2.86k
            DUB(e8Bit), DA(pxaPaletteDepth),
260
2.86k
            pxt_ubyte_array
261
2.86k
        };
262
263
2.86k
        px_put_ub(s, (byte) color_space);
264
2.86k
        PX_PUT_LIT(s, csp_);
265
2.86k
        px_put_u(s, palette_size);
266
2.86k
        px_put_bytes(s, palette, palette_size);
267
2.86k
        px_put_ac(s, pxaPaletteData, pxtSetColorSpace);
268
2.86k
        xdev->color_space = color_space;
269
2.86k
        xdev->palette.size = palette_size;
270
2.86k
        memcpy(xdev->palette.data, palette, palette_size);
271
2.86k
    }
272
207k
}
273
274
/* For caching either NullPen or NullBrush, which happens a lot for
275
 * drawing masks in the PS3 CET test set.
276
 *
277
 * The expected null_source/op combos are:
278
 * pxaNullPen/pxtSetPenSource and pxaNullBrush/pxtSetBrushSource
279
 */
280
static int
281
pclxl_set_cached_nulls(gx_device_pclxl * xdev, px_attribute_t null_source,
282
                       px_tag_t op)
283
64.5M
{
284
64.5M
    stream *s = pclxl_stream(xdev);
285
286
64.5M
    if (op == pxtSetPenSource) {
287
64.0M
        if (xdev->pen_null)
288
63.8M
            return 0;
289
178k
        else
290
178k
            xdev->pen_null = true;
291
64.0M
    }
292
629k
    if (op == pxtSetBrushSource) {
293
451k
        if (xdev->brush_null)
294
293k
            return 0;
295
157k
        else
296
157k
            xdev->brush_null = true;
297
451k
    }
298
336k
    px_put_uba(s, 0, (byte) null_source);
299
336k
    spputc(s, (byte) op);
300
336k
    return 0;
301
629k
}
302
303
/* Set a drawing RGB color. */
304
static int
305
pclxl_set_color(gx_device_pclxl * xdev, const gx_drawing_color * pdc,
306
                px_attribute_t null_source, px_tag_t op)
307
36.0M
{
308
36.0M
    stream *s = pclxl_stream(xdev);
309
310
36.0M
    if (gx_dc_is_pure(pdc)) {
311
36.0M
        gx_color_index color = gx_dc_pure_color(pdc);
312
313
36.0M
        if (op == pxtSetPenSource)
314
159k
            xdev->pen_null = false;
315
36.0M
        if (op == pxtSetBrushSource)
316
35.8M
            xdev->brush_null = false;
317
318
36.0M
        if (xdev->color_info.num_components == 1 || RGB_IS_GRAY(color)) {
319
18.0M
            pclxl_set_color_space(xdev, eGray);
320
18.0M
            px_put_uba(s, (byte) color, pxaGrayLevel);
321
18.0M
        } else {
322
17.9M
            pclxl_set_color_space(xdev, eRGB);
323
17.9M
            spputc(s, pxt_ubyte_array);
324
17.9M
            px_put_ub(s, 3);
325
17.9M
            spputc(s, (byte) (color >> 16));
326
17.9M
            spputc(s, (byte) (color >> 8));
327
17.9M
            spputc(s, (byte) color);
328
17.9M
            px_put_a(s, pxaRGBColor);
329
17.9M
        }
330
36.0M
    } else if (gx_dc_is_null(pdc) || !color_is_set(pdc)) {
331
2.93k
        if (op == pxtSetPenSource || op == pxtSetBrushSource)
332
2.93k
            return pclxl_set_cached_nulls(xdev, null_source, op);
333
0
        else
334
0
            px_put_uba(s, 0, null_source);
335
2.93k
    } else
336
22.9k
        return_error(gs_error_rangecheck);
337
36.0M
    spputc(s, (byte) op);
338
36.0M
    return 0;
339
36.0M
}
340
341
/* Test whether we can handle a given color space in an image. */
342
/* We cannot handle ICCBased color spaces. */
343
static bool
344
pclxl_can_handle_color_space(const gs_color_space * pcs)
345
13.8k
{
346
13.8k
    gs_color_space_index index;
347
348
    /* an image with no colorspace info arrived; cannot handle */
349
13.8k
    if (!pcs)
350
0
        return false;
351
13.8k
    index = gs_color_space_get_index(pcs);
352
353
13.8k
    if (index == gs_color_space_index_Indexed) {
354
621
        if (pcs->params.indexed.use_proc)
355
0
            return false;
356
621
        index =
357
621
            gs_color_space_get_index(gs_color_space_indexed_base_space(pcs));
358
13.1k
    } else if (index == gs_color_space_index_ICC) {
359
13.1k
        index = gsicc_get_default_type(pcs->cmm_icc_profile_data);
360
13.1k
        return ((index < gs_color_space_index_DevicePixel) ? true : false);
361
13.1k
    }
362
363
659
    return !(index == gs_color_space_index_Separation ||
364
645
             index == gs_color_space_index_Pattern ||
365
645
             index == gs_color_space_index_DeviceN ||
366
613
             index == gs_color_space_index_ICC ||
367
0
             (index <= gs_color_space_index_CIEA &&
368
0
             index >= gs_color_space_index_CIEDEFG)
369
659
             );
370
13.8k
}
371
372
/* Test whether we can icclink-transform an image. */
373
static bool
374
pclxl_can_icctransform(const gs_image_t * pim)
375
2.09k
{
376
2.09k
    const gs_color_space *pcs = pim->ColorSpace;
377
2.09k
    int bits_per_pixel;
378
379
    /* an image with no colorspace info arrived; cannot transform */
380
2.09k
    if (!pcs)
381
0
        return false;
382
2.09k
    bits_per_pixel =
383
2.09k
        (pim->ImageMask ? 1 :
384
2.09k
         pim->BitsPerComponent * gs_color_space_num_components(pcs));
385
386
2.09k
    if ((gs_color_space_get_index(pcs) == gs_color_space_index_ICC)
387
1.44k
        && (bits_per_pixel == 24 || bits_per_pixel == 32))
388
672
        return true;
389
390
1.42k
    return false;
391
2.09k
}
392
393
/*
394
 * Avoid PXL high level images if a transfer function has been set.
395
 * Allow the graphics library to render to a lower level
396
 * representation with the function applied to the colors.
397
 */
398
399
static bool
400
pclxl_nontrivial_transfer(const gs_gstate * pgs)
401
288k
{
402
288k
    gx_transfer_map *red = pgs->set_transfer.red;
403
288k
    gx_transfer_map *green = pgs->set_transfer.green;
404
288k
    gx_transfer_map *blue = pgs->set_transfer.blue;
405
406
288k
    return (red || green || blue);
407
408
288k
}
409
/* Set brush, pen, and mode for painting a path. */
410
static void
411
pclxl_set_paints(gx_device_pclxl * xdev, gx_path_type_t type)
412
64.5M
{
413
64.5M
    stream *s = pclxl_stream(xdev);
414
64.5M
    gx_path_type_t rule = type & gx_path_type_rule;
415
416
64.5M
    if (!(type & gx_path_type_fill) &&
417
448k
        (color_is_set(&xdev->saved_fill_color.saved_dev_color) ||
418
0
         !gx_dc_is_null(&xdev->saved_fill_color.saved_dev_color)
419
448k
        )
420
64.5M
        ) {
421
448k
        pclxl_set_cached_nulls(xdev, pxaNullBrush, pxtSetBrushSource);
422
448k
        color_set_null(&xdev->saved_fill_color.saved_dev_color);
423
448k
        if (rule != xdev->fill_rule) {
424
44
            px_put_ub(s, (byte) (rule == gx_path_type_even_odd ? eEvenOdd :
425
44
                                 eNonZeroWinding));
426
44
            px_put_ac(s, pxaFillMode, pxtSetFillMode);
427
44
            xdev->fill_rule = rule;
428
44
        }
429
448k
    }
430
64.5M
    if (!(type & gx_path_type_stroke) &&
431
64.0M
        (color_is_set(&xdev->saved_stroke_color.saved_dev_color) ||
432
0
         !gx_dc_is_null(&xdev->saved_stroke_color.saved_dev_color)
433
64.0M
        )
434
64.5M
        ) {
435
64.0M
        pclxl_set_cached_nulls(xdev, pxaNullPen, pxtSetPenSource);
436
64.0M
        color_set_null(&xdev->saved_stroke_color.saved_dev_color);
437
64.0M
    }
438
64.5M
}
439
440
static void
441
pclxl_set_page_origin(stream * s, int x, int y)
442
137k
{
443
137k
    px_put_ssp(s, x, y);
444
137k
    px_put_ac(s, pxaPageOrigin, pxtSetPageOrigin);
445
137k
    return;
446
137k
}
447
448
static void
449
pclxl_set_page_scale(gx_device_pclxl * xdev, double x_scale, double y_scale)
450
23.8M
{
451
23.8M
    stream *s = pclxl_stream(xdev);
452
453
23.8M
    if (xdev->scaled) {
454
11.3M
        xdev->x_scale = x_scale;
455
11.3M
        xdev->y_scale = y_scale;
456
11.3M
        px_put_rp(s, x_scale, y_scale);
457
11.3M
        px_put_ac(s, pxaPageScale, pxtSetPageScale);
458
11.3M
    }
459
23.8M
    return;
460
23.8M
}
461
462
static void
463
pclxl_unset_page_scale(gx_device_pclxl * xdev)
464
54.3M
{
465
54.3M
    stream *s = pclxl_stream(xdev);
466
467
54.3M
    if (xdev->scaled) {
468
11.3M
        px_put_rp(s, 1 / xdev->x_scale, 1 / xdev->y_scale);
469
11.3M
        px_put_ac(s, pxaPageScale, pxtSetPageScale);
470
11.3M
        xdev->scaled = false;
471
11.3M
        xdev->x_scale = 1;
472
11.3M
        xdev->y_scale = 1;
473
11.3M
    }
474
54.3M
    return;
475
54.3M
}
476
477
/* Set the cursor. */
478
static int
479
pclxl_set_cursor(gx_device_pclxl * xdev, int x, int y)
480
17.9M
{
481
17.9M
    stream *s = pclxl_stream(xdev);
482
17.9M
    double x_scale = 1;
483
17.9M
    double y_scale = 1;
484
485
    /* Points must be one of ubyte/uint16/sint16;
486
       Here we play with PageScale (one of ubyte/uint16/real32_xy) to go higher.
487
       This gives us 32768 x 3.4e38 in UnitsPerMeasure.
488
       If we ever need to go higher, we play with UnitsPerMeasure. */
489
17.9M
    if (abs(x) > 0x7FFF) {
490
3.18M
        x_scale = ((double)abs(x)) / 0x7FFF;
491
3.18M
        x = (x > 0 ? 0x7FFF : -0x7FFF);
492
3.18M
        xdev->scaled = true;
493
3.18M
    }
494
17.9M
    if (abs(y) > 0x7FFF) {
495
2.74M
        y_scale = ((double)abs(y)) / 0x7FFF;
496
2.74M
        y = (y > 0 ? 0x7FFF : -0x7FFF);
497
2.74M
        xdev->scaled = true;
498
2.74M
    }
499
17.9M
    pclxl_set_page_scale(xdev, x_scale, y_scale);
500
17.9M
    px_put_ssp(s, x, y);
501
17.9M
    px_put_ac(s, pxaPoint, pxtSetCursor);
502
17.9M
    pclxl_unset_page_scale(xdev);
503
17.9M
    return 0;
504
17.9M
}
505
506
/* ------ Paths ------ */
507
508
/* Flush any buffered path points. */
509
static void
510
px_put_np(stream * s, int count, pxeDataType_t dtype)
511
25.7M
{
512
25.7M
    px_put_uba(s, (byte) count, pxaNumberOfPoints);
513
25.7M
    px_put_uba(s, (byte) dtype, pxaPointType);
514
25.7M
}
515
static int
516
pclxl_flush_points(gx_device_pclxl * xdev)
517
59.0M
{
518
59.0M
    int count = xdev->points.count;
519
520
59.0M
    if (count) {
521
36.4M
        stream *s = pclxl_stream(xdev);
522
36.4M
        px_tag_t op;
523
36.4M
        int x = xdev->points.current.x, y = xdev->points.current.y;
524
36.4M
        int uor = 0, sor = 0;
525
36.4M
        pxeDataType_t data_type;
526
36.4M
        int i, di;
527
36.4M
        byte diffs[NUM_POINTS * 2];
528
36.4M
        double x_scale = 1;
529
36.4M
        double y_scale = 1;
530
36.4M
        int temp_origin_x = 0, temp_origin_y = 0;
531
36.4M
        int count_smalls = 0;
532
533
36.4M
        if (xdev->points.type != POINTS_NONE) {
534
237M
            for (i = 0; i < count; ++i) {
535
200M
                if ((abs(xdev->points.data[i].x) > 0x7FFF)
536
187M
                    || (abs(xdev->points.data[i].y) > 0x7FFF))
537
23.7M
                    xdev->scaled = true;
538
200M
                if ((abs(xdev->points.data[i].x) < 0x8000)
539
187M
                    && (abs(xdev->points.data[i].y) < 0x8000)) {
540
177M
                    if ((temp_origin_x != xdev->points.data[i].x)
541
154M
                        || (temp_origin_y != xdev->points.data[i].y)) {
542
154M
                        temp_origin_x = xdev->points.data[i].x;
543
154M
                        temp_origin_y = xdev->points.data[i].y;
544
154M
                        count_smalls++;
545
154M
                    }
546
177M
                }
547
200M
            }
548
36.4M
            if (xdev->scaled) {
549
                /* if there are some points with small co-ordinates, we set origin to it
550
                   before scaling, an unset afterwards. This works around problems
551
                   for small co-ordinates being moved snapped to 32767 x 32767 grid points;
552
                   if there are more than 1, the other points
553
                   will be in-accurate, unfortunately */
554
5.98M
                if (count_smalls) {
555
68.6k
                    pclxl_set_page_origin(s, temp_origin_x, temp_origin_y);
556
68.6k
                }
557
30.1M
                for (i = 0; i < count; ++i) {
558
24.1M
                    x_scale = max(((double)
559
24.1M
                                   abs(xdev->points.data[i].x -
560
24.1M
                                       temp_origin_x)) / 0x7FFF, x_scale);
561
24.1M
                    y_scale = max(((double)
562
24.1M
                                   abs(xdev->points.data[i].y -
563
24.1M
                                       temp_origin_y)) / 0x7FFF, y_scale);
564
24.1M
                }
565
30.1M
                for (i = 0; i < count; ++i) {
566
24.1M
                    xdev->points.data[i].x =
567
24.1M
                        (int)((xdev->points.data[i].x -
568
24.1M
                               temp_origin_x) / x_scale + 0.5);
569
24.1M
                    xdev->points.data[i].y =
570
24.1M
                        (int)((xdev->points.data[i].y -
571
24.1M
                               temp_origin_y) / y_scale + 0.5);
572
24.1M
                }
573
5.98M
                x = (int)((x - temp_origin_x) / x_scale + 0.5);
574
5.98M
                y = (int)((y - temp_origin_y) / y_scale + 0.5);
575
5.98M
                pclxl_set_page_scale(xdev, x_scale, y_scale);
576
30.4M
            } else {
577
                /* don't reset origin if we did not scale */
578
30.4M
                count_smalls = 0;
579
30.4M
            }
580
36.4M
        }
581
        /*
582
         * Writing N lines using a point list requires 11 + 4*N or 11 +
583
         * 2*N bytes, as opposed to 8*N bytes using separate commands;
584
         * writing N curves requires 11 + 12*N or 11 + 6*N bytes
585
         * vs. 22*N.  So it's always shorter to write curves with a
586
         * list (except for N = 1 with full-size coordinates, but since
587
         * the difference is only 1 byte, we don't bother to ever use
588
         * the non-list form), but lines are shorter only if N >= 3
589
         * (again, with a 1-byte difference if N = 2 and byte
590
         * coordinates).
591
         */
592
36.4M
        switch (xdev->points.type) {
593
0
            case POINTS_NONE:
594
0
                return 0;
595
23.3M
            case POINTS_LINES:
596
23.3M
                op = pxtLinePath;
597
23.3M
                if (count < 3) {
598
24.7M
                    for (i = 0; i < count; ++i) {
599
14.0M
                        px_put_ssp(s, xdev->points.data[i].x,
600
14.0M
                                   xdev->points.data[i].y);
601
14.0M
                        px_put_a(s, pxaEndPoint);
602
14.0M
                        spputc(s, (byte) op);
603
14.0M
                    }
604
10.6M
                    pclxl_unset_page_scale(xdev);
605
10.6M
                    if (count_smalls)
606
18.0k
                        pclxl_set_page_origin(s, -temp_origin_x,
607
18.0k
                                              -temp_origin_y);
608
10.6M
                    goto zap;
609
10.6M
                }
610
                /* See if we can use byte values. */
611
59.2M
                for (i = di = 0; i < count; ++i, di += 2) {
612
46.5M
                    int dx = xdev->points.data[i].x - x;
613
46.5M
                    int dy = xdev->points.data[i].y - y;
614
615
46.5M
                    diffs[di] = (byte) dx;
616
46.5M
                    diffs[di + 1] = (byte) dy;
617
46.5M
                    uor |= dx | dy;
618
46.5M
                    sor |= (dx + 0x80) | (dy + 0x80);
619
46.5M
                    x += dx, y += dy;
620
46.5M
                }
621
12.6M
                if (!(uor & ~0xff))
622
2.69M
                    data_type = eUByte;
623
9.99M
                else if (!(sor & ~0xff))
624
8.41M
                    data_type = eSByte;
625
1.58M
                else
626
1.58M
                    break;
627
11.1M
                op = pxtLineRelPath;
628
                /* Use byte values. */
629
23.7M
              useb:px_put_np(s, count, data_type);
630
23.7M
                spputc(s, (byte) op);
631
23.7M
                px_put_data_length(s, count * 2);       /* 2 bytes per point */
632
23.7M
                px_put_bytes(s, diffs, count * 2);
633
23.7M
                pclxl_unset_page_scale(xdev);
634
23.7M
                if (count_smalls)
635
88
                    pclxl_set_page_origin(s, -temp_origin_x, -temp_origin_y);
636
23.7M
                goto zap;
637
13.0M
            case POINTS_CURVES:
638
13.0M
                op = pxtBezierPath;
639
                /* See if we can use byte values. */
640
59.8M
                for (i = di = 0; i < count; i += 3, di += 6) {
641
46.7M
                    int dx1 = xdev->points.data[i].x - x;
642
46.7M
                    int dy1 = xdev->points.data[i].y - y;
643
46.7M
                    int dx2 = xdev->points.data[i + 1].x - x;
644
46.7M
                    int dy2 = xdev->points.data[i + 1].y - y;
645
46.7M
                    int dx = xdev->points.data[i + 2].x - x;
646
46.7M
                    int dy = xdev->points.data[i + 2].y - y;
647
648
46.7M
                    diffs[di] = (byte) dx1;
649
46.7M
                    diffs[di + 1] = (byte) dy1;
650
46.7M
                    diffs[di + 2] = (byte) dx2;
651
46.7M
                    diffs[di + 3] = (byte) dy2;
652
46.7M
                    diffs[di + 4] = (byte) dx;
653
46.7M
                    diffs[di + 5] = (byte) dy;
654
46.7M
                    uor |= dx1 | dy1 | dx2 | dy2 | dx | dy;
655
46.7M
                    sor |= (dx1 + 0x80) | (dy1 + 0x80) |
656
46.7M
                        (dx2 + 0x80) | (dy2 + 0x80) |
657
46.7M
                        (dx + 0x80) | (dy + 0x80);
658
46.7M
                    x += dx, y += dy;
659
46.7M
                }
660
13.0M
                if (!(uor & ~0xff))
661
1.33M
                    data_type = eUByte;
662
11.7M
                else if (!(sor & ~0xff))
663
11.3M
                    data_type = eSByte;
664
439k
                else
665
439k
                    break;
666
12.6M
                op = pxtBezierRelPath;
667
12.6M
                goto useb;
668
0
            default:           /* can't happen */
669
0
                return_error(gs_error_unknownerror);
670
36.4M
        }
671
2.01M
        px_put_np(s, count, eSInt16);
672
2.01M
        spputc(s, (byte) op);
673
2.01M
        px_put_data_length(s, count * 4);       /* 2 UInt16s per point */
674
14.4M
        for (i = 0; i < count; ++i) {
675
12.4M
            px_put_s(s, xdev->points.data[i].x);
676
12.4M
            px_put_s(s, xdev->points.data[i].y);
677
12.4M
        }
678
2.01M
        pclxl_unset_page_scale(xdev);
679
2.01M
        if (count_smalls)
680
50.4k
            pclxl_set_page_origin(s, -temp_origin_x, -temp_origin_y);
681
36.4M
      zap:xdev->points.type = POINTS_NONE;
682
36.4M
        xdev->points.count = 0;
683
36.4M
    }
684
59.0M
    return 0;
685
59.0M
}
686
687
/* ------ Images ------ */
688
689
static image_enum_proc_plane_data(pclxl_image_plane_data);
690
static image_enum_proc_end_image(pclxl_image_end_image);
691
692
static const gx_image_enum_procs_t pclxl_image_enum_procs = {
693
    pclxl_image_plane_data, pclxl_image_end_image
694
};
695
696
/* Begin an image. */
697
static void
698
pclxl_write_begin_image(gx_device_pclxl * xdev, uint width, uint height,
699
                        uint dest_width, uint dest_height)
700
175k
{
701
175k
    stream *s = pclxl_stream(xdev);
702
703
175k
    px_put_usa(s, width, pxaSourceWidth);
704
175k
    px_put_usa(s, height, pxaSourceHeight);
705
175k
    px_put_usp(s, dest_width, dest_height);
706
175k
    px_put_ac(s, pxaDestinationSize, pxtBeginImage);
707
175k
}
708
709
/* Write rows of an image. */
710
/****** IGNORES data_bit ******/
711
/* 2009: we try to cope with the case of data_bit being multiple of 8 now */
712
/* RLE version */
713
static void
714
pclxl_write_image_data_RLE(gx_device_pclxl * xdev, const byte * base,
715
                           int data_bit, uint raster, uint width_bits, int y,
716
                           int height)
717
175k
{
718
175k
    stream *s = pclxl_stream(xdev);
719
175k
    uint width_bytes = (width_bits + 7) >> 3;
720
175k
    uint num_bytes = ROUND_UP(width_bytes, 4) * height;
721
175k
    bool compress = num_bytes >= 8;
722
175k
    int i;
723
175k
    int code;
724
725
    /* cannot handle data_bit not multiple of 8, but we don't invoke this routine that way */
726
175k
    int offset = data_bit >> 3;
727
175k
    const byte *data = base + offset;
728
729
175k
    px_put_usa(s, y, pxaStartLine);
730
175k
    px_put_usa(s, height, pxaBlockHeight);
731
175k
    if (compress) {
732
175k
        stream_RLE_state rlstate;
733
175k
        stream_cursor_write w;
734
175k
        stream_cursor_read r;
735
736
        /*
737
         * H-P printers require that all the data for an operator be
738
         * contained in a single data block.  Thus, we must allocate a
739
         * temporary buffer for the compressed data.  Currently we don't go
740
         * to the trouble of doing two passes if we can't allocate a buffer
741
         * large enough for the entire transfer.
742
         */
743
175k
        byte *buf = gs_alloc_bytes(xdev->v_memory, num_bytes,
744
175k
                                   "pclxl_write_image_data");
745
746
175k
        if (buf == 0)
747
0
            goto nc;
748
175k
        s_RLE_set_defaults_inline(&rlstate);
749
175k
        rlstate.EndOfData = false;
750
175k
        rlstate.omitEOD = true;
751
175k
        s_RLE_init_inline(&rlstate);
752
175k
        w.ptr = buf - 1;
753
175k
        w.limit = w.ptr + num_bytes;
754
        /*
755
         * If we ever overrun the buffer, it means that the compressed
756
         * data was larger than the uncompressed.  If this happens,
757
         * write the data uncompressed.
758
         */
759
20.4M
        for (i = 0; i < height; ++i) {
760
20.2M
            r.ptr = data + i * raster - 1;
761
20.2M
            r.limit = r.ptr + width_bytes;
762
20.2M
            if ((*s_RLE_template.process)
763
20.2M
                ((stream_state *) & rlstate, &r, &w, false) != 0 ||
764
20.2M
                r.ptr != r.limit)
765
14.8k
                goto ncfree;
766
20.2M
            r.ptr = (const byte *)"\000\000\000\000\000";
767
20.2M
            r.limit = r.ptr + (-(int)width_bytes & 3);
768
20.2M
            if ((*s_RLE_template.process)
769
20.2M
                ((stream_state *) & rlstate, &r, &w, false) != 0 ||
770
20.2M
                r.ptr != r.limit)
771
14
                goto ncfree;
772
20.2M
        }
773
160k
        r.ptr = r.limit;
774
160k
        code = (*s_RLE_template.process)
775
160k
            ((stream_state *) & rlstate, &r, &w, true);
776
160k
        if (code != EOFC && code != 0)
777
45.2k
            goto ncfree;
778
115k
        {
779
115k
            uint count = w.ptr + 1 - buf;
780
781
115k
            px_put_ub(s, eRLECompression);
782
115k
            px_put_ac(s, pxaCompressMode, pxtReadImage);
783
115k
            px_put_data_length(s, count);
784
115k
            px_put_bytes(s, buf, count);
785
115k
        }
786
115k
        gs_free_object(xdev->v_memory, buf, "pclxl_write_image_data");
787
115k
        return;
788
60.0k
      ncfree:gs_free_object(xdev->v_memory, buf,
789
60.0k
                       "pclxl_write_image_data");
790
60.0k
    }
791
60.0k
  nc:
792
    /* Write the data uncompressed. */
793
60.0k
    px_put_ub(s, eNoCompression);
794
60.0k
    px_put_ac(s, pxaCompressMode, pxtReadImage);
795
60.0k
    px_put_data_length(s, num_bytes);
796
11.8M
    for (i = 0; i < height; ++i) {
797
11.8M
        px_put_bytes(s, data + i * raster, width_bytes);
798
11.8M
        px_put_bytes(s, (const byte *)"\000\000\000\000",
799
11.8M
                     -(int)width_bytes & 3);
800
11.8M
    }
801
60.0k
}
802
803
static void
804
pclxl_write_image_data_JPEG(gx_device_pclxl * xdev, const byte * base,
805
                            int data_bit, uint raster, uint width_bits, int y,
806
                            int height)
807
0
{
808
0
    stream *s = pclxl_stream(xdev);
809
0
    uint width_bytes = (width_bits + 7) >> 3;
810
0
    int i;
811
0
    int count;
812
0
    int code;
813
814
    /* cannot handle data_bit not multiple of 8, but we don't invoke this routine that way */
815
0
    int offset = data_bit >> 3;
816
0
    const byte *data = base + offset;
817
0
    jpeg_compress_data *jcdp =
818
0
        gs_alloc_struct_immovable(xdev->v_memory, jpeg_compress_data,
819
0
                                  &st_jpeg_compress_data,
820
0
                                  "pclxl_write_image_data_JPEG(jpeg_compress_data)");
821
0
    stream_DCT_state state;
822
0
    stream_cursor_read r;
823
0
    stream_cursor_write w;
824
825
    /* Approx. The worse case is ~ header + width_bytes * height.
826
       Apparently minimal SOI/DHT/DQT/SOS/EOI is 341 bytes. TO CHECK. */
827
0
    size_t buffersize = 341 + width_bytes * height;
828
829
0
    byte *buf = gs_alloc_bytes(xdev->v_memory, buffersize,
830
0
                               "pclxl_write_image_data_JPEG(buf)");
831
832
    /* RLE can write uncompressed without extra-allocation */
833
0
    if ((buf == 0) || (jcdp == 0)) {
834
0
        goto failed_so_use_rle_instead;
835
0
    }
836
    /* Create the DCT encoder state. */
837
0
    jcdp->templat = s_DCTE_template;
838
0
    s_init_state((stream_state *) & state, &jcdp->templat, 0);
839
0
    if (state.templat->set_defaults) {
840
0
        state.memory = xdev->v_memory;
841
0
        (*state.templat->set_defaults) ((stream_state *) & state);
842
0
        state.memory = NULL;
843
0
    }
844
0
    state.ColorTransform = (xdev->color_info.num_components == 3 ? 1 : 0);
845
0
    state.data.compress = jcdp;
846
0
    state.icc_profile = NULL;
847
    /* state.memory needs set for creation..... */
848
0
    state.memory = jcdp->memory = state.jpeg_memory = xdev->v_memory;
849
0
    if ((code = gs_jpeg_create_compress(&state)) < 0)
850
0
        goto cleanup_and_use_rle;
851
    /* .... and NULL after, so we don't try to free the stack based "state" */
852
0
    state.memory = NULL;
853
    /* image-specific info */
854
0
    jcdp->cinfo.image_width = width_bytes / xdev->color_info.num_components;
855
0
    jcdp->cinfo.image_height = height;
856
0
    switch (xdev->color_info.num_components) {
857
0
        case 3:
858
0
            jcdp->cinfo.input_components = 3;
859
0
            jcdp->cinfo.in_color_space = JCS_RGB;
860
0
            break;
861
0
        case 1:
862
0
            jcdp->cinfo.input_components = 1;
863
0
            jcdp->cinfo.in_color_space = JCS_GRAYSCALE;
864
0
            break;
865
0
        default:
866
0
            goto cleanup_and_use_rle;
867
0
            break;
868
0
    }
869
    /* Set compression parameters. */
870
0
    if ((code = gs_jpeg_set_defaults(&state)) < 0)
871
0
        goto cleanup_and_use_rle;
872
873
0
    if (state.templat->init)
874
0
        (*state.templat->init) ((stream_state *) & state);
875
0
    state.scan_line_size = jcdp->cinfo.input_components *
876
0
        jcdp->cinfo.image_width;
877
0
    jcdp->templat.min_in_size =
878
0
        max(s_DCTE_template.min_in_size, state.scan_line_size);
879
0
    jcdp->templat.min_out_size =
880
0
        max(s_DCTE_template.min_out_size, state.Markers.size);
881
882
0
    w.ptr = buf - 1;
883
0
    w.limit = w.ptr + buffersize;
884
0
    for (i = 0; i < height; ++i) {
885
0
        r.ptr = data + i * raster - 1;
886
0
        r.limit = r.ptr + width_bytes;
887
0
        if (((code = (*state.templat->process)
888
0
              ((stream_state *) & state, &r, &w, false)) != 0 && code != EOFC)
889
0
            || r.ptr != r.limit)
890
0
            goto cleanup_and_use_rle;
891
0
    }
892
0
    count = w.ptr + 1 - buf;
893
0
    px_put_usa(s, y, pxaStartLine);
894
0
    px_put_usa(s, height, pxaBlockHeight);
895
0
    px_put_ub(s, eJPEGCompression);
896
0
    px_put_ac(s, pxaCompressMode, pxtReadImage);
897
0
    px_put_data_length(s, count);
898
0
    px_put_bytes(s, buf, count);
899
900
0
    gs_free_object(xdev->v_memory, buf, "pclxl_write_image_data_JPEG(buf)");
901
0
    if (jcdp)
902
0
        gs_jpeg_destroy(&state);        /* frees *jcdp */
903
0
    return;
904
905
0
  cleanup_and_use_rle:
906
    /* cleans up - something went wrong after allocation */
907
0
    gs_free_object(xdev->v_memory, buf, "pclxl_write_image_data_JPEG(buf)");
908
0
    if (jcdp)
909
0
        gs_jpeg_destroy(&state);        /* frees *jcdp */
910
    /* fall through to redo in RLE */
911
0
  failed_so_use_rle_instead:
912
    /* the RLE routine can write without new allocation - use as fallback. */
913
0
    pclxl_write_image_data_RLE(xdev, data, data_bit, raster, width_bits, y,
914
0
                               height);
915
0
    return;
916
0
}
917
918
/* DeltaRow compression (also called "mode 3"):
919
   drawn heavily from gdevcljc.c:cljc_print_page(),
920
   This is simplier since PCL XL does not allow
921
   compression mix-and-match.
922
923
   Worse case of RLE is + 1/128, but worse case of DeltaRow is + 1/8
924
 */
925
static void
926
pclxl_write_image_data_DeltaRow(gx_device_pclxl * xdev, const byte * base,
927
                                int data_bit, uint raster, uint width_bits,
928
                                int y, int height)
929
0
{
930
0
    stream *s = pclxl_stream(xdev);
931
0
    uint width_bytes = (width_bits + 7) >> 3;
932
0
    int worst_case_comp_size = width_bytes + (width_bytes / 8) + 1;
933
0
    byte *cdata = 0;
934
0
    byte *prow = 0;
935
0
    int i;
936
0
    int count;
937
938
    /* cannot handle data_bit not multiple of 8, but we don't invoke this routine that way */
939
0
    int offset = data_bit >> 3;
940
0
    const byte *data = base + offset;
941
942
    /* allocate the worst case scenario; PCL XL has an extra 2 byte per row compared to PCL5 */
943
0
    byte *buf =
944
0
        gs_alloc_bytes(xdev->v_memory, (worst_case_comp_size + 2) * (size_t)height,
945
0
                       "pclxl_write_image_data_DeltaRow(buf)");
946
947
0
    prow =
948
0
        gs_alloc_bytes(xdev->v_memory, width_bytes,
949
0
                       "pclxl_write_image_data_DeltaRow(prow)");
950
    /* the RLE routine can write uncompressed without extra-allocation */
951
0
    if ((buf == 0) || (prow == 0)) {
952
0
        pclxl_write_image_data_RLE(xdev, data, data_bit, raster, width_bits,
953
0
                                   y, height);
954
0
        return;
955
0
    }
956
    /* initialize the seed row */
957
0
    memset(prow, 0, width_bytes);
958
0
    cdata = buf;
959
0
    for (i = 0; i < height; i++) {
960
0
        int compressed_size =
961
0
            gdev_pcl_mode3compress(width_bytes, data + i * raster, prow,
962
0
                                   cdata + 2);
963
964
        /* PCL XL prepends row data with byte count */
965
0
        *cdata = compressed_size & 0xff;
966
0
        *(cdata + 1) = compressed_size >> 8;
967
0
        cdata += compressed_size + 2;
968
0
    }
969
0
    px_put_usa(s, y, pxaStartLine);
970
0
    px_put_usa(s, height, pxaBlockHeight);
971
0
    px_put_ub(s, eDeltaRowCompression);
972
0
    px_put_ac(s, pxaCompressMode, pxtReadImage);
973
0
    count = cdata - buf;
974
0
    px_put_data_length(s, count);
975
0
    px_put_bytes(s, buf, count);
976
977
0
    gs_free_object(xdev->v_memory, buf,
978
0
                   "pclxl_write_image_data_DeltaRow(buf)");
979
0
    gs_free_object(xdev->v_memory, prow,
980
0
                   "pclxl_write_image_data_DeltaRow(prow)");
981
0
    return;
982
0
}
983
984
/* calling from copy_mono/copy_color/fill_mask should never do lossy compression */
985
static void
986
pclxl_write_image_data(gx_device_pclxl * xdev, const byte * data,
987
                       int data_bit, uint raster, uint width_bits, int y,
988
                       int height, bool allow_lossy)
989
175k
{
990
    /* If we only have 1 line, it does not make sense to do JPEG/DeltaRow */
991
175k
    if (height < 2) {
992
99
        pclxl_write_image_data_RLE(xdev, data, data_bit, raster, width_bits,
993
99
                                   y, height);
994
99
        return;
995
99
    }
996
997
175k
    switch (xdev->CompressMode) {
998
0
        case eDeltaRowCompression:
999
0
            pclxl_write_image_data_DeltaRow(xdev, data, data_bit, raster,
1000
0
                                            width_bits, y, height);
1001
0
            break;
1002
0
        case eJPEGCompression:
1003
            /* JPEG should not be used for mask or other data */
1004
0
            if (allow_lossy)
1005
0
                pclxl_write_image_data_JPEG(xdev, data, data_bit, raster,
1006
0
                                            width_bits, y, height);
1007
0
            else
1008
0
                pclxl_write_image_data_RLE(xdev, data, data_bit, raster,
1009
0
                                           width_bits, y, height);
1010
0
            break;
1011
0
        case eRLECompression:
1012
175k
        default:
1013
175k
            pclxl_write_image_data_RLE(xdev, data, data_bit, raster,
1014
175k
                                       width_bits, y, height);
1015
175k
            break;
1016
175k
    }
1017
175k
}
1018
1019
/* End an image. */
1020
static void
1021
pclxl_write_end_image(gx_device_pclxl * xdev)
1022
175k
{
1023
175k
    spputc(xdev->strm, pxtEndImage);
1024
175k
}
1025
1026
/* ------ Fonts ------ */
1027
1028
/* Write a string (single- or double-byte). */
1029
static void
1030
px_put_string(stream * s, const byte * data, uint len, bool wide)
1031
1.14M
{
1032
1.14M
    if (wide) {
1033
0
        spputc(s, pxt_uint16_array);
1034
0
        px_put_u(s, len);
1035
0
        px_put_bytes(s, data, len * 2);
1036
1.14M
    } else {
1037
1.14M
        spputc(s, pxt_ubyte_array);
1038
1.14M
        px_put_u(s, len);
1039
1.14M
        px_put_bytes(s, data, len);
1040
1.14M
    }
1041
1.14M
}
1042
1043
/* Write a 16-bit big-endian value. */
1044
static void
1045
px_put_us_be(stream * s, uint i)
1046
13.9k
{
1047
13.9k
    spputc(s, (byte) (i >> 8));
1048
13.9k
    spputc(s, (byte) i);
1049
13.9k
}
1050
1051
/* Define a bitmap font.  The client must call px_put_string */
1052
/* with the font name immediately before calling this procedure. */
1053
static void
1054
pclxl_define_bitmap_font(gx_device_pclxl * xdev)
1055
113
{
1056
113
    stream *s = pclxl_stream(xdev);
1057
1058
113
    static const byte bfh_[] = {
1059
113
        DA(pxaFontName), DUB(0), DA(pxaFontFormat),
1060
113
        pxtBeginFontHeader,
1061
113
        DUS(8 + 6 + 4 + 6), DA(pxaFontHeaderLength),
1062
113
        pxtReadFontHeader,
1063
113
        pxt_dataLengthByte, 8 + 6 + 4 + 6,
1064
113
        0, 0, 0, 0,
1065
113
        254, 0, (MAX_CACHED_CHARS + 255) >> 8, 0,
1066
113
        'B', 'R', 0, 0, 0, 4
1067
113
    };
1068
113
    static const byte efh_[] = {
1069
113
        0xff, 0xff, 0, 0, 0, 0,
1070
113
        pxtEndFontHeader
1071
113
    };
1072
1073
113
    PX_PUT_LIT(s, bfh_);
1074
113
    px_put_us_be(s, (uint) (xdev->HWResolution[0] + 0.5));
1075
113
    px_put_us_be(s, (uint) (xdev->HWResolution[1] + 0.5));
1076
113
    PX_PUT_LIT(s, efh_);
1077
113
}
1078
1079
/* Set the font.  The client must call px_put_string */
1080
/* with the font name immediately before calling this procedure. */
1081
static void
1082
pclxl_set_font(gx_device_pclxl * xdev)
1083
372
{
1084
372
    stream *s = pclxl_stream(xdev);
1085
1086
372
    static const byte sf_[] = {
1087
372
        DA(pxaFontName), DUB(1), DA(pxaCharSize), DUS(0), DA(pxaSymbolSet),
1088
372
        pxtSetFont
1089
372
    };
1090
1091
372
    PX_PUT_LIT(s, sf_);
1092
372
}
1093
1094
/* Define a character in a bitmap font.  The client must call px_put_string */
1095
/* with the font name immediately before calling this procedure. */
1096
static void
1097
pclxl_define_bitmap_char(gx_device_pclxl * xdev, uint ccode,
1098
                         const byte * data, uint raster, uint width_bits,
1099
                         uint height)
1100
6.85k
{
1101
6.85k
    stream *s = pclxl_stream(xdev);
1102
6.85k
    uint width_bytes = (width_bits + 7) >> 3;
1103
6.85k
    uint size = 10 + width_bytes * height;
1104
6.85k
    uint i;
1105
1106
6.85k
    px_put_ac(s, pxaFontName, pxtBeginChar);
1107
6.85k
    px_put_u(s, ccode);
1108
6.85k
    px_put_a(s, pxaCharCode);
1109
6.85k
    if (size > 0xffff) {
1110
0
        spputc(s, pxt_uint32);
1111
0
        px_put_l(s, (ulong) size);
1112
0
    } else
1113
6.85k
        px_put_us(s, size);
1114
6.85k
    px_put_ac(s, pxaCharDataSize, pxtReadChar);
1115
6.85k
    px_put_data_length(s, size);
1116
6.85k
    px_put_bytes(s, (const byte *)"\000\000\000\000\000\000", 6);
1117
6.85k
    px_put_us_be(s, width_bits);
1118
6.85k
    px_put_us_be(s, height);
1119
116k
    for (i = 0; i < height; ++i)
1120
109k
        px_put_bytes(s, data + i * raster, width_bytes);
1121
6.85k
    spputc(s, pxtEndChar);
1122
6.85k
}
1123
1124
/* Write the name of the only font we define. */
1125
static void
1126
pclxl_write_font_name(gx_device_pclxl * xdev)
1127
7.33k
{
1128
7.33k
    stream *s = pclxl_stream(xdev);
1129
1130
7.33k
    px_put_string(s, (const byte *)"@", 1, false);
1131
7.33k
}
1132
1133
/* Look up a bitmap id, return the index in the character table. */
1134
/* If the id is missing, return an index for inserting. */
1135
static int
1136
pclxl_char_index(gx_device_pclxl * xdev, gs_id id)
1137
1.14M
{
1138
1.14M
    int i, i_empty = -1;
1139
1.14M
    uint ccode;
1140
1141
1.14M
    for (i = (id * CHAR_HASH_FACTOR) % countof(xdev->chars.table);;
1142
1.17M
         i = (i == 0 ? countof(xdev->chars.table) : i) - 1) {
1143
1.17M
        ccode = xdev->chars.table[i];
1144
1.17M
        if (ccode == 0)
1145
13.7k
            return (i_empty >= 0 ? i_empty : i);
1146
1.15M
        else if (ccode == 1) {
1147
0
            if (i_empty < 0)
1148
0
                i_empty = i;
1149
0
            else if (i == i_empty)      /* full table */
1150
0
                return i;
1151
1.15M
        } else if (xdev->chars.data[ccode].id == id)
1152
1.12M
            return i;
1153
1.17M
    }
1154
1.14M
}
1155
1156
/* Remove the character table entry at a given index. */
1157
static void
1158
pclxl_remove_char(gx_device_pclxl * xdev, int index)
1159
0
{
1160
0
    uint ccode = xdev->chars.table[index];
1161
0
    int i;
1162
1163
0
    if (ccode < 2)
1164
0
        return;
1165
0
    xdev->chars.count--;
1166
0
    xdev->chars.used -= xdev->chars.data[ccode].size;
1167
0
    xdev->chars.table[index] = 1;       /* mark as deleted */
1168
0
    i = (index == 0 ? countof(xdev->chars.table) : index) - 1;
1169
0
    if (xdev->chars.table[i] == 0) {
1170
        /* The next slot in probe order is empty. */
1171
        /* Mark this slot and any deleted predecessors as empty. */
1172
0
        for (i = index; xdev->chars.table[i] == 1;
1173
0
             i = (i == countof(xdev->chars.table) - 1 ? 0 : i + 1)
1174
0
            )
1175
0
            xdev->chars.table[i] = 0;
1176
0
    }
1177
0
}
1178
1179
/* Write a bitmap as a text character if possible. */
1180
/* The caller must set the color, cursor, and RasterOp. */
1181
/* We know id != gs_no_id. */
1182
static int
1183
pclxl_copy_text_char(gx_device_pclxl * xdev, const byte * data,
1184
                     int raster, gx_bitmap_id id, int w, int h)
1185
1.13M
{
1186
1.13M
    uint width_bytes = (w + 7) >> 3;
1187
1.13M
    uint size = width_bytes * h;
1188
1.13M
    int index;
1189
1.13M
    uint ccode;
1190
1.13M
    stream *s = pclxl_stream(xdev);
1191
1192
1.13M
    if (size > MAX_CHAR_SIZE)
1193
0
        return -1;
1194
1.13M
    index = pclxl_char_index(xdev, id);
1195
1.13M
    if ((ccode = xdev->chars.table[index]) < 2) {
1196
        /* Enter the character in the table. */
1197
6.85k
        while (xdev->chars.used + size > MAX_CHAR_DATA ||
1198
6.85k
               xdev->chars.count >= MAX_CACHED_CHARS - 2) {
1199
0
            ccode = xdev->chars.next_out;
1200
0
            index = pclxl_char_index(xdev, xdev->chars.data[ccode].id);
1201
0
            pclxl_remove_char(xdev, index);
1202
0
            xdev->chars.next_out =
1203
0
                (ccode == MAX_CACHED_CHARS - 1 ? 2 : ccode + 1);
1204
0
        }
1205
6.85k
        index = pclxl_char_index(xdev, id);
1206
6.85k
        ccode = xdev->chars.next_in;
1207
6.85k
        xdev->chars.data[ccode].id = id;
1208
6.85k
        xdev->chars.data[ccode].size = size;
1209
6.85k
        xdev->chars.table[index] = ccode;
1210
6.85k
        xdev->chars.next_in = (ccode == MAX_CACHED_CHARS - 1 ? 2 : ccode + 1);
1211
6.85k
        if (!xdev->chars.count++) {
1212
            /* This is the very first character. */
1213
113
            pclxl_write_font_name(xdev);
1214
113
            pclxl_define_bitmap_font(xdev);
1215
113
        }
1216
6.85k
        xdev->chars.used += size;
1217
6.85k
        pclxl_write_font_name(xdev);
1218
6.85k
        pclxl_define_bitmap_char(xdev, ccode, data, raster, w, h);
1219
6.85k
    }
1220
1.13M
    if (!xdev->font_set) {
1221
372
        pclxl_write_font_name(xdev);
1222
372
        pclxl_set_font(xdev);
1223
372
        xdev->font_set = true;
1224
372
    }
1225
1.13M
    {
1226
1.13M
        byte cc_bytes[2];
1227
1228
1.13M
        cc_bytes[0] = (byte) ccode;
1229
1.13M
        cc_bytes[1] = ccode >> 8;
1230
1.13M
        px_put_string(s, cc_bytes, 1, cc_bytes[1] != 0);
1231
1.13M
    }
1232
1.13M
    px_put_ac(s, pxaTextData, pxtText);
1233
1.13M
    return 0;
1234
1.13M
}
1235
1236
/* ---------------- Vector implementation procedures ---------------- */
1237
1238
static int
1239
pclxl_beginpage(gx_device_vector * vdev)
1240
24.5k
{
1241
24.5k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1242
1243
    /*
1244
     * We can't use gdev_vector_stream here, because this may be called
1245
     * from there before in_page is set.
1246
     */
1247
24.5k
    stream *s = vdev->strm;
1248
24.5k
    byte media_source = eAutoSelect;    /* default */
1249
1250
24.5k
    xdev->page++;               /* even/odd for duplex front/back */
1251
1252
/*
1253
    errprintf(vdev->memory, "PAGE: %d %d\n", xdev->page, xdev->NumCopies);
1254
    errprintf(vdev->memory, "INFO: Printing page %d...\n", xdev->page);
1255
    errflush(vdev->memory);
1256
*/
1257
1258
24.5k
    px_write_page_header(s, (const gx_device *)vdev);
1259
1260
24.5k
    if (xdev->ManualFeed_set && xdev->ManualFeed)
1261
0
        media_source = 2;
1262
24.5k
    else if (xdev->MediaPosition_set && xdev->MediaPosition >= 0)
1263
24.5k
        media_source = xdev->MediaPosition;
1264
1265
24.5k
    px_write_select_media(s, (const gx_device *)vdev, &xdev->media_size,
1266
24.5k
                          &media_source,
1267
24.5k
                          xdev->page, xdev->Duplex, xdev->Tumble,
1268
24.5k
                          xdev->MediaType_set, xdev->MediaType);
1269
1270
24.5k
    spputc(s, pxtBeginPage);
1271
24.5k
    return 0;
1272
24.5k
}
1273
1274
static int
1275
pclxl_setlinewidth(gx_device_vector * vdev, double width)
1276
17.5k
{
1277
17.5k
    stream *s = gdev_vector_stream(vdev);
1278
1279
17.5k
    px_put_us(s, (uint) (width + 0.5));
1280
17.5k
    px_put_ac(s, pxaPenWidth, pxtSetPenWidth);
1281
17.5k
    return 0;
1282
17.5k
}
1283
1284
static int
1285
pclxl_setlinecap(gx_device_vector * vdev, gs_line_cap cap)
1286
8.06k
{
1287
8.06k
    stream *s = gdev_vector_stream(vdev);
1288
1289
    /* The PCL XL cap styles just happen to be identical to PostScript. */
1290
8.06k
    px_put_ub(s, (byte) cap);
1291
8.06k
    px_put_ac(s, pxaLineCapStyle, pxtSetLineCap);
1292
8.06k
    return 0;
1293
8.06k
}
1294
1295
static int
1296
pclxl_setlinejoin(gx_device_vector * vdev, gs_line_join join)
1297
14.6k
{
1298
14.6k
    stream *s = gdev_vector_stream(vdev);
1299
1300
14.6k
    if (((int)join < 0) || ((int)join > 3)) {
1301
5
        emprintf1(vdev->memory,
1302
5
                  "Igoring invalid linejoin enumerator %d\n", join);
1303
5
        return 0;
1304
5
    }
1305
    /* The PCL XL join styles just happen to be identical to PostScript. */
1306
14.6k
    px_put_ub(s, (byte) join);
1307
14.6k
    px_put_ac(s, pxaLineJoinStyle, pxtSetLineJoin);
1308
14.6k
    return 0;
1309
14.6k
}
1310
1311
static int
1312
pclxl_setmiterlimit(gx_device_vector * vdev, double limit)
1313
693
{
1314
693
    stream *s = gdev_vector_stream(vdev);
1315
1316
    /*
1317
     * Amazingly enough, the PCL XL specification doesn't allow real
1318
     * numbers for the miter limit.
1319
     */
1320
693
    int i_limit = (int)(limit + 0.5);
1321
1322
693
    px_put_u(s, max(i_limit, 1));
1323
693
    px_put_ac(s, pxaMiterLength, pxtSetMiterLimit);
1324
693
    return 0;
1325
693
}
1326
1327
/*
1328
 * The number of elements in the dash pattern array is device
1329
 * dependent but a maximum of 20 has been observed on several HP
1330
 * printers.
1331
 */
1332
1333
1.70k
#define MAX_DASH_ELEMENTS 20
1334
1335
static int
1336
pclxl_setdash(gx_device_vector * vdev, const float *pattern, uint count,
1337
              double offset)
1338
2.47k
{
1339
2.47k
    stream *s = gdev_vector_stream(vdev);
1340
1341
2.47k
    if (count == 0) {
1342
771
        static const byte nac_[] = {
1343
771
            DUB(0), DA(pxaSolidLine)
1344
771
        };
1345
1346
771
        PX_PUT_LIT(s, nac_);
1347
1.70k
    } else if (count > MAX_DASH_ELEMENTS)
1348
0
        return_error(gs_error_limitcheck);
1349
1.70k
    else {
1350
1.70k
        uint i;
1351
1.70k
        uint pattern_length = 0;
1352
        /*
1353
         * Astoundingly, PCL XL doesn't allow real numbers here.
1354
         * Do the best we can.
1355
         */
1356
1357
        /* check if the resulting total pattern length will be 0 */
1358
4.93k
        for (i = 0; i < count; ++i)
1359
3.23k
            pattern_length += (uint) (pattern[i]);
1360
1.70k
        if (pattern_length == 0)
1361
576
            return_error(gs_error_rangecheck);
1362
1363
1.12k
        spputc(s, pxt_uint16_array);
1364
1.12k
        px_put_ub(s, (byte) count);
1365
3.21k
        for (i = 0; i < count; ++i)
1366
2.08k
            px_put_s(s, (uint) pattern[i]);
1367
1.12k
        px_put_a(s, pxaLineDashStyle);
1368
1.12k
        if (offset != 0)
1369
0
            px_put_usa(s, (uint) offset, pxaDashOffset);
1370
1.12k
    }
1371
1.89k
    spputc(s, pxtSetLineDash);
1372
1.89k
    return 0;
1373
2.47k
}
1374
1375
static int
1376
pclxl_setlogop(gx_device_vector * vdev, gs_logical_operation_t lop,
1377
               gs_logical_operation_t diff)
1378
623k
{
1379
623k
    stream *s = gdev_vector_stream(vdev);
1380
1381
623k
    if (diff & lop_S_transparent) {
1382
7.12k
        px_put_ub(s, (byte) (lop & lop_S_transparent ? 1 : 0));
1383
7.12k
        px_put_ac(s, pxaTxMode, pxtSetSourceTxMode);
1384
7.12k
    }
1385
623k
    if (diff & lop_T_transparent) {
1386
766
        px_put_ub(s, (byte) (lop & lop_T_transparent ? 1 : 0));
1387
766
        px_put_ac(s, pxaTxMode, pxtSetPaintTxMode);
1388
766
    }
1389
623k
    if (lop_rop(diff)) {
1390
616k
        px_put_ub(s, (byte) lop_rop(lop));
1391
616k
        px_put_ac(s, pxaROP3, pxtSetROP);
1392
616k
    }
1393
623k
    return 0;
1394
623k
}
1395
1396
static bool
1397
pclxl_can_handle_hl_color(gx_device_vector * vdev, const gs_gstate * pgs,
1398
                          const gx_drawing_color * pdc)
1399
66.0M
{
1400
66.0M
    return false;
1401
66.0M
}
1402
1403
static int
1404
pclxl_setfillcolor(gx_device_vector * vdev, const gs_gstate * pgs,
1405
                   const gx_drawing_color * pdc)
1406
35.8M
{
1407
35.8M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1408
1409
35.8M
    return pclxl_set_color(xdev, pdc, pxaNullBrush, pxtSetBrushSource);
1410
35.8M
}
1411
1412
static int
1413
pclxl_setstrokecolor(gx_device_vector * vdev, const gs_gstate * pgs,
1414
                     const gx_drawing_color * pdc)
1415
159k
{
1416
159k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1417
1418
159k
    return pclxl_set_color(xdev, pdc, pxaNullPen, pxtSetPenSource);
1419
159k
}
1420
1421
static int
1422
pclxl_dorect(gx_device_vector * vdev, fixed x0, fixed y0, fixed x1,
1423
             fixed y1, gx_path_type_t type)
1424
50.1M
{
1425
50.1M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1426
50.1M
    stream *s = gdev_vector_stream(vdev);
1427
1428
    /* Check for out-of-range points. */
1429
350M
#define OUT_OF_RANGE(v) (v < 0 || v >= int2fixed(0x10000))
1430
50.1M
    if (OUT_OF_RANGE(x0) || OUT_OF_RANGE(y0) ||
1431
49.9M
        OUT_OF_RANGE(x1) || OUT_OF_RANGE(y1)
1432
50.1M
        )
1433
276k
        return_error(gs_error_rangecheck);
1434
49.9M
#undef OUT_OF_RANGE
1435
49.9M
    if (type & (gx_path_type_fill | gx_path_type_stroke)) {
1436
49.8M
        pclxl_set_paints(xdev, type);
1437
49.8M
        px_put_usq_fixed(s, x0, y0, x1, y1);
1438
49.8M
        px_put_ac(s, pxaBoundingBox, pxtRectangle);
1439
49.8M
    }
1440
49.9M
    if (type & gx_path_type_clip) {
1441
67.5k
        static const byte cr_[] = {
1442
67.5k
            DA(pxaBoundingBox),
1443
67.5k
            DUB(eInterior), DA(pxaClipRegion),
1444
67.5k
            pxtSetClipRectangle
1445
67.5k
        };
1446
1447
67.5k
        px_put_usq_fixed(s, x0, y0, x1, y1);
1448
67.5k
        PX_PUT_LIT(s, cr_);
1449
67.5k
    }
1450
49.9M
    return 0;
1451
50.1M
}
1452
1453
static int
1454
pclxl_beginpath(gx_device_vector * vdev, gx_path_type_t type)
1455
15.4M
{
1456
15.4M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1457
15.4M
    stream *s = gdev_vector_stream(vdev);
1458
1459
15.4M
    spputc(s, pxtNewPath);
1460
15.4M
    xdev->points.type = POINTS_NONE;
1461
15.4M
    xdev->points.count = 0;
1462
15.4M
    return 0;
1463
15.4M
}
1464
1465
static int
1466
pclxl_moveto(gx_device_vector * vdev, double x0, double y0, double x,
1467
             double y, gx_path_type_t type)
1468
16.5M
{
1469
16.5M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1470
16.5M
    int code = pclxl_flush_points(xdev);
1471
1472
16.5M
    if (code < 0)
1473
0
        return code;
1474
16.5M
    return pclxl_set_cursor(xdev,
1475
16.5M
                            xdev->points.current.x = (int)(x + 0.5),
1476
16.5M
                            xdev->points.current.y = (int)(y + 0.5));
1477
16.5M
}
1478
1479
static int
1480
pclxl_lineto(gx_device_vector * vdev, double x0, double y0, double x,
1481
             double y, gx_path_type_t type)
1482
60.6M
{
1483
60.6M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1484
1485
60.6M
    if (xdev->points.type != POINTS_LINES || xdev->points.count >= NUM_POINTS - 2) {
1486
23.3M
        if (xdev->points.type != POINTS_NONE) {
1487
10.3M
            int code = pclxl_flush_points(xdev);
1488
1489
10.3M
            if (code < 0)
1490
0
                return code;
1491
10.3M
        }
1492
23.3M
        xdev->points.current.x = (int)(x0 + 0.5);
1493
23.3M
        xdev->points.current.y = (int)(y0 + 0.5);
1494
23.3M
        xdev->points.type = POINTS_LINES;
1495
1496
        /* This can only happen if we get two 'POINTS_NONE' in a row, in which case
1497
         * just overwrite the previous one below.
1498
         */
1499
23.3M
        if (xdev->points.count >= NUM_POINTS - 1)
1500
0
            xdev->points.count--;
1501
23.3M
    }
1502
60.6M
    {
1503
60.6M
        gs_int_point *ppt = &xdev->points.data[xdev->points.count++];
1504
1505
60.6M
        ppt->x = (int)(x + 0.5), ppt->y = (int)(y + 0.5);
1506
60.6M
    }
1507
60.6M
    return 0;
1508
60.6M
}
1509
1510
static int
1511
pclxl_curveto(gx_device_vector * vdev, double x0, double y0,
1512
              double x1, double y1, double x2, double y2, double x3,
1513
              double y3, gx_path_type_t type)
1514
46.7M
{
1515
46.7M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1516
1517
46.7M
    if (xdev->points.type != POINTS_CURVES ||
1518
34.1M
        xdev->points.count >= NUM_POINTS - 4) {
1519
13.0M
        if (xdev->points.type != POINTS_NONE) {
1520
9.46M
            int code = pclxl_flush_points(xdev);
1521
1522
9.46M
            if (code < 0)
1523
0
                return code;
1524
9.46M
        }
1525
13.0M
        xdev->points.current.x = (int)(x0 + 0.5);
1526
13.0M
        xdev->points.current.y = (int)(y0 + 0.5);
1527
13.0M
        xdev->points.type = POINTS_CURVES;
1528
1529
        /* This can only happen if we get multiple 'POINTS_NONE' in a row, in which case
1530
         * just overwrite the previous one below.
1531
         */
1532
13.0M
        if (xdev->points.count >= NUM_POINTS - 3)
1533
0
            xdev->points.count -= 3;
1534
13.0M
    }
1535
46.7M
    {
1536
46.7M
        gs_int_point *ppt = &xdev->points.data[xdev->points.count];
1537
1538
46.7M
        ppt->x = (int)(x1 + 0.5), ppt->y = (int)(y1 + 0.5), ++ppt;
1539
46.7M
        ppt->x = (int)(x2 + 0.5), ppt->y = (int)(y2 + 0.5), ++ppt;
1540
46.7M
        ppt->x = (int)(x3 + 0.5), ppt->y = (int)(y3 + 0.5);
1541
46.7M
    }
1542
46.7M
    xdev->points.count += 3;
1543
46.7M
    return 0;
1544
46.7M
}
1545
1546
static int
1547
pclxl_closepath(gx_device_vector * vdev, double x, double y,
1548
                double x_start, double y_start, gx_path_type_t type)
1549
7.15M
{
1550
7.15M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1551
7.15M
    stream *s = gdev_vector_stream(vdev);
1552
7.15M
    int code = pclxl_flush_points(xdev);
1553
1554
7.15M
    if (code < 0)
1555
0
        return code;
1556
7.15M
    spputc(s, pxtCloseSubPath);
1557
7.15M
    xdev->points.current.x = (int)(x_start + 0.5);
1558
7.15M
    xdev->points.current.y = (int)(y_start + 0.5);
1559
7.15M
    return 0;
1560
7.15M
}
1561
1562
static int
1563
pclxl_endpath(gx_device_vector * vdev, gx_path_type_t type)
1564
15.4M
{
1565
15.4M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) vdev;
1566
15.4M
    stream *s = gdev_vector_stream(vdev);
1567
15.4M
    int code = pclxl_flush_points(xdev);
1568
15.4M
    gx_path_type_t rule = type & gx_path_type_rule;
1569
1570
15.4M
    if (code < 0)
1571
0
        return code;
1572
15.4M
    if (type & (gx_path_type_fill | gx_path_type_stroke)) {
1573
14.6M
        if (rule != xdev->fill_rule) {
1574
10.9k
            px_put_ub(s, (byte) (rule == gx_path_type_even_odd ? eEvenOdd :
1575
10.9k
                                 eNonZeroWinding));
1576
10.9k
            px_put_ac(s, pxaFillMode, pxtSetFillMode);
1577
10.9k
            xdev->fill_rule = rule;
1578
10.9k
        }
1579
14.6M
        pclxl_set_paints(xdev, type);
1580
14.6M
        spputc(s, pxtPaintPath);
1581
14.6M
    }
1582
15.4M
    if (type & gx_path_type_clip) {
1583
766k
        static const byte scr_[] = {
1584
766k
            DUB(eInterior), DA(pxaClipRegion), pxtSetClipReplace
1585
766k
        };
1586
1587
766k
        if (rule != xdev->clip_rule) {
1588
308
            px_put_ub(s, (byte) (rule == gx_path_type_even_odd ? eEvenOdd :
1589
308
                                 eNonZeroWinding));
1590
308
            px_put_ac(s, pxaClipMode, pxtSetClipMode);
1591
308
            xdev->clip_rule = rule;
1592
308
        }
1593
766k
        PX_PUT_LIT(s, scr_);
1594
766k
    }
1595
15.4M
    return 0;
1596
15.4M
}
1597
1598
/* Vector implementation procedures */
1599
1600
static const gx_device_vector_procs pclxl_vector_procs = {
1601
    /* Page management */
1602
    pclxl_beginpage,
1603
    /* Imager state */
1604
    pclxl_setlinewidth,
1605
    pclxl_setlinecap,
1606
    pclxl_setlinejoin,
1607
    pclxl_setmiterlimit,
1608
    pclxl_setdash,
1609
    gdev_vector_setflat,
1610
    pclxl_setlogop,
1611
    /* Other state */
1612
    pclxl_can_handle_hl_color,
1613
    pclxl_setfillcolor,
1614
    pclxl_setstrokecolor,
1615
    /* Paths */
1616
    gdev_vector_dopath,
1617
    pclxl_dorect,
1618
    pclxl_beginpath,
1619
    pclxl_moveto,
1620
    pclxl_lineto,
1621
    pclxl_curveto,
1622
    pclxl_closepath,
1623
    pclxl_endpath
1624
};
1625
1626
/* ---------------- Driver procedures ---------------- */
1627
1628
/* ------ Open/close/page ------ */
1629
1630
/* Open the device. */
1631
static int
1632
pclxl_open_device(gx_device * dev)
1633
25.9k
{
1634
25.9k
    gx_device_vector *vdev = (gx_device_vector *) dev;
1635
25.9k
    gx_device_pclxl *xdev = (gx_device_pclxl *) dev;
1636
25.9k
    int code;
1637
1638
25.9k
    vdev->v_memory = dev->memory->stable_memory;
1639
25.9k
    vdev->vec_procs = &pclxl_vector_procs;
1640
25.9k
    code = gdev_vector_open_file_options(vdev, 512,
1641
25.9k
                                         VECTOR_OPEN_FILE_SEQUENTIAL);
1642
25.9k
    if (code < 0)
1643
0
        return code;
1644
1645
25.9k
    while (dev->child)
1646
0
        dev = dev->child;
1647
25.9k
    vdev = (gx_device_vector *) dev;
1648
25.9k
    xdev = (gx_device_pclxl *) dev;
1649
1650
25.9k
    pclxl_page_init(xdev);
1651
25.9k
    px_write_file_header(vdev->strm, dev, xdev->Staple);
1652
25.9k
    xdev->media_size = pxeMediaSize_next;       /* no size selected */
1653
25.9k
    memset(&xdev->chars, 0, sizeof(xdev->chars));
1654
25.9k
    xdev->chars.next_in = xdev->chars.next_out = 2;
1655
    /* xdev->iccTransform = false; *//* set true/false here to ignore command line */
1656
25.9k
    return 0;
1657
25.9k
}
1658
1659
/* Wrap up ("output") a page. */
1660
/* We only support flush = true */
1661
static int
1662
pclxl_output_page(gx_device * dev, int num_copies, int flush)
1663
23.0k
{
1664
23.0k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
1665
23.0k
    stream *s;
1666
23.0k
    int code;
1667
1668
    /* Note that unlike close_device, end_page must not omit blank pages. */
1669
23.0k
    if (!xdev->in_page)
1670
0
        pclxl_beginpage((gx_device_vector *) dev);
1671
23.0k
    s = xdev->strm;
1672
23.0k
    px_put_usa(s, (uint) num_copies, pxaPageCopies);    /* num_copies */
1673
23.0k
    spputc(s, pxtEndPage);
1674
23.0k
    sflush(s);
1675
23.0k
    pclxl_page_init(xdev);
1676
23.0k
    if (gp_ferror(xdev->file))
1677
0
        return_error(gs_error_ioerror);
1678
23.0k
    if ((code = gx_finish_output_page(dev, num_copies, flush)) < 0)
1679
0
        return code;
1680
    /* Check if we need to change the output file for separate pages */
1681
23.0k
    if (gx_outputfile_is_separate_pages
1682
23.0k
        (((gx_device_vector *) dev)->fname, dev->memory)) {
1683
0
        if ((code = pclxl_close_device(dev)) < 0)
1684
0
            return code;
1685
0
        code = pclxl_open_device(dev);
1686
0
    }
1687
23.0k
    return code;
1688
23.0k
}
1689
1690
/* Close the device. */
1691
/* Note that if this is being called as a result of finalization, */
1692
/* the stream may no longer exist. */
1693
static int
1694
pclxl_close_device(gx_device * dev)
1695
25.9k
{
1696
25.9k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
1697
25.9k
    gp_file *file = xdev->file;
1698
1699
25.9k
    if (xdev->strm != NULL)
1700
25.9k
        sflush(xdev->strm);
1701
25.9k
    if (xdev->in_page)
1702
1.44k
        gp_fputc(pxtEndPage, file);
1703
25.9k
    px_write_file_trailer(file);
1704
25.9k
    return gdev_vector_close_file((gx_device_vector *) dev);
1705
25.9k
}
1706
1707
/* ------ One-for-one images ------ */
1708
1709
static const byte eBit_values[] = {
1710
    0, e1Bit, 0, 0, e4Bit, 0, 0, 0, e8Bit
1711
};
1712
1713
/* Copy a monochrome bitmap. */
1714
static int
1715
pclxl_copy_mono(gx_device * dev, const byte * data, int data_x, int raster,
1716
                gx_bitmap_id id, int x, int y, int w, int h,
1717
                gx_color_index zero, gx_color_index one)
1718
135k
{
1719
135k
    gx_device_vector *const vdev = (gx_device_vector *) dev;
1720
135k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
1721
135k
    int code;
1722
135k
    stream *s;
1723
135k
    gx_color_index color0 = zero, color1 = one;
1724
135k
    gx_color_index white = ((gx_color_index)1 << dev->color_info.depth) - 1;
1725
135k
    gx_color_index black = 0;
1726
135k
    gs_logical_operation_t lop;
1727
135k
    byte palette[2 * 3];
1728
135k
    int palette_size;
1729
135k
    pxeColorSpace_t color_space;
1730
1731
135k
    fit_copy(dev, data, data_x, raster, id, x, y, w, h);
1732
135k
    code = gdev_vector_update_clip_path(vdev, NULL);
1733
135k
    if (code < 0)
1734
0
        return code;
1735
1736
    /* write_image_data() needs byte-alignment,
1737
     * and gx_default_copy_* is more efficient than pxlcl_*
1738
     * for small rasters. See details in copy_color().
1739
     */
1740
135k
    if (((data_x & 7) != 0) || (h == 1) || (w == 1))
1741
129k
        return gx_default_copy_mono(dev, data, data_x, raster, id,
1742
129k
                                    x, y, w, h, zero, one);
1743
1744
5.79k
    pclxl_set_cursor(xdev, x, y);
1745
5.79k
    if (id != gs_no_id && zero == gx_no_color_index &&
1746
2.96k
        one != gx_no_color_index && data_x == 0) {
1747
2.96k
        gx_drawing_color dcolor;
1748
1749
2.96k
        code = gdev_vector_update_log_op(vdev, rop3_T | lop_T_transparent);
1750
2.96k
        if (code < 0)
1751
0
            return 0;
1752
1753
2.96k
        set_nonclient_dev_color(&dcolor, one);
1754
2.96k
        pclxl_setfillcolor(vdev, NULL, &dcolor);
1755
2.96k
        if (pclxl_copy_text_char(xdev, data, raster, id, w, h) >= 0)
1756
2.96k
            return 0;
1757
2.96k
    }
1758
    /*
1759
     * The following doesn't work if we're writing white with a mask.
1760
     * We'll fix it eventually.
1761
     *
1762
     * The logic goes like this: non-white + mask (transparent)
1763
     * works by setting the mask color to white and also declaring
1764
     * white-is-transparent. This doesn't work for drawing white + mask,
1765
     * since everything is then white+white-and-transparent. So instead
1766
     * we set mask color to black, invert and draw the destination/background
1767
     * through it, as well as drawing the white color.
1768
     *
1769
     * In rop3 terms, this is (D & ~S) | S
1770
     *
1771
     * This also only works in the case of the drawing color is white,
1772
     * because we need the inversion to not draw anything, (especially
1773
     * not the complimentary color/shade). So we have two different code paths,
1774
     * white + mask and non-whites + mask.
1775
     *
1776
     * There is a further refinement to this algorithm - it appears that
1777
     * black+mask is treated specially by the vector driver core (rendered
1778
     * as transparent on white), and does not work as non-white + mask.
1779
     * So Instead we set mask color to white and do (S & D) (i.e. draw
1780
     * background on mask, instead of transparent on mask).
1781
     *
1782
     */
1783
2.82k
    if (zero == gx_no_color_index) {
1784
2.42k
        if (one == gx_no_color_index)
1785
0
            return 0;
1786
2.42k
        if (one != white) {
1787
2.36k
            if (one == black) {
1788
1.51k
                lop = (rop3_S & rop3_D);
1789
1.51k
            } else {
1790
853
                lop = rop3_S | lop_S_transparent;
1791
853
            }
1792
2.36k
            color0 = white;
1793
2.36k
        } else {
1794
60
            lop = rop3_S | (rop3_D & rop3_not(rop3_S));
1795
60
            color0 = black;
1796
60
        }
1797
2.42k
    } else if (one == gx_no_color_index) {
1798
0
        if (zero != white) {
1799
0
            if (zero == black) {
1800
0
                lop = (rop3_S & rop3_D);
1801
0
            } else {
1802
0
                lop = rop3_S | lop_S_transparent;
1803
0
            }
1804
0
            color1 = white;
1805
0
        } else {
1806
0
            lop = rop3_S | (rop3_D & rop3_not(rop3_S));
1807
0
            color1 = black;
1808
0
        }
1809
400
    } else {
1810
400
        lop = rop3_S;
1811
400
    }
1812
1813
2.82k
    if (dev->color_info.num_components == 1 ||
1814
1.38k
        (RGB_IS_GRAY(color0) && RGB_IS_GRAY(color1))
1815
2.82k
        ) {
1816
2.24k
        palette[0] = (byte) color0;
1817
2.24k
        palette[1] = (byte) color1;
1818
2.24k
        palette_size = 2;
1819
2.24k
        color_space = eGray;
1820
2.24k
        if_debug2m('b', dev->memory, "color palette %02X %02X\n",
1821
2.24k
                   palette[0], palette[1]);
1822
2.24k
    } else {
1823
578
        palette[0] = (byte) (color0 >> 16);
1824
578
        palette[1] = (byte) (color0 >> 8);
1825
578
        palette[2] = (byte) color0;
1826
578
        palette[3] = (byte) (color1 >> 16);
1827
578
        palette[4] = (byte) (color1 >> 8);
1828
578
        palette[5] = (byte) color1;
1829
578
        palette_size = 6;
1830
578
        color_space = eRGB;
1831
578
    }
1832
2.82k
    code = gdev_vector_update_log_op(vdev, lop);
1833
2.82k
    if (code < 0)
1834
0
        return 0;
1835
2.82k
    pclxl_set_color_palette(xdev, color_space, palette, palette_size);
1836
2.82k
    s = pclxl_stream(xdev);
1837
2.82k
    {
1838
2.82k
        static const byte mi_[] = {
1839
2.82k
            DUB(e1Bit), DA(pxaColorDepth),
1840
2.82k
            DUB(eIndexedPixel), DA(pxaColorMapping)
1841
2.82k
        };
1842
1843
2.82k
        PX_PUT_LIT(s, mi_);
1844
2.82k
    }
1845
2.82k
    pclxl_write_begin_image(xdev, w, h, w, h);
1846
2.82k
    pclxl_write_image_data(xdev, data, data_x, raster, w, 0, h, false);
1847
2.82k
    pclxl_write_end_image(xdev);
1848
2.82k
    return 0;
1849
2.82k
}
1850
1851
/* Copy a color bitmap. */
1852
static int
1853
pclxl_copy_color(gx_device * dev,
1854
                 const byte * base, int sourcex, int raster, gx_bitmap_id id,
1855
                 int x, int y, int w, int h)
1856
655k
{
1857
655k
    gx_device_vector *const vdev = (gx_device_vector *) dev;
1858
655k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
1859
655k
    stream *s;
1860
655k
    uint source_bit;
1861
655k
    int code;
1862
1863
655k
    fit_copy(dev, base, sourcex, raster, id, x, y, w, h);
1864
655k
    code = gdev_vector_update_clip_path(vdev, NULL);
1865
655k
    if (code < 0)
1866
0
        return code;
1867
1868
655k
    source_bit = sourcex * dev->color_info.depth;
1869
1870
    /* side-effect from fill/stroke may have set color space to eGray */
1871
655k
    if (dev->color_info.num_components == 3)
1872
282k
        pclxl_set_color_space(xdev, eRGB);
1873
372k
    else if (dev->color_info.num_components == 1)
1874
372k
        pclxl_set_color_space(xdev, eGray);
1875
1876
    /* write_image_data() needs byte-alignment,
1877
     * and gx_default_copy_* is more efficient than pxlcl_*
1878
     * for small rasters.
1879
     *
1880
     * SetBrushSource + Rectangle = 21 byte for 1x1 RGB
1881
     * SetCursor+ BeginImage + ReadImage + EndImage = 56 bytes for 1x1 RGB
1882
     * 3x1 RGB at 3 different colors takes 62 bytes for pxlcl_*
1883
     * but gx_default_copy_* uses 63 bytes. Below 3 pixels, gx_default_copy_*
1884
     * is better than pxlcl_*; above 3 pixels, it is less clear;
1885
     * in practice, single-lines seems better coded as painted rectangles
1886
     * than images.
1887
     */
1888
655k
    if (((source_bit & 7) != 0) || (w == 1) || (h == 1))
1889
641k
        return gx_default_copy_color(dev, base, sourcex, raster, id,
1890
641k
                                     x, y, w, h);
1891
13.0k
    code = gdev_vector_update_log_op(vdev, rop3_S);
1892
13.0k
    if (code < 0)
1893
0
        return 0;
1894
13.0k
    pclxl_set_cursor(xdev, x, y);
1895
13.0k
    s = pclxl_stream(xdev);
1896
13.0k
    {
1897
13.0k
        static const byte ci_[] = {
1898
13.0k
            DA(pxaColorDepth),
1899
13.0k
            DUB(eDirectPixel), DA(pxaColorMapping)
1900
13.0k
        };
1901
1902
13.0k
        px_put_ub(s, eBit_values[dev->color_info.depth /
1903
13.0k
                                 dev->color_info.num_components]);
1904
13.0k
        PX_PUT_LIT(s, ci_);
1905
13.0k
    }
1906
13.0k
    pclxl_write_begin_image(xdev, w, h, w, h);
1907
13.0k
    pclxl_write_image_data(xdev, base, source_bit, raster,
1908
13.0k
                           w * dev->color_info.depth, 0, h, false);
1909
13.0k
    pclxl_write_end_image(xdev);
1910
13.0k
    return 0;
1911
13.0k
}
1912
1913
/* Fill a mask. */
1914
static int
1915
pclxl_fill_mask(gx_device * dev,
1916
                const byte * data, int data_x, int raster, gx_bitmap_id id,
1917
                int x, int y, int w, int h,
1918
                const gx_drawing_color * pdcolor, int depth,
1919
                gs_logical_operation_t lop, const gx_clip_path * pcpath)
1920
1.28M
{
1921
1.28M
    gx_device_vector *const vdev = (gx_device_vector *) dev;
1922
1.28M
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
1923
1.28M
    int code;
1924
1.28M
    stream *s;
1925
1.28M
    gx_color_index foreground;
1926
1927
1.28M
    fit_copy(dev, data, data_x, raster, id, x, y, w, h);
1928
    /* write_image_data() needs byte-alignment,
1929
     * and gx_default_copy_* is more efficient than pxlcl_*
1930
     * for small rasters. See details in copy_color().
1931
     */
1932
1.13M
    if ((data_x & 7) != 0 || !gx_dc_is_pure(pdcolor) || depth > 1 || (w == 1)
1933
1.13M
        || (h == 1))
1934
3.47k
        return gx_default_fill_mask(dev, data, data_x, raster, id, x, y, w, h,
1935
3.47k
                                    pdcolor, depth, lop, pcpath);
1936
1.13M
    code = gdev_vector_update_clip_path(vdev, pcpath);
1937
1.13M
    foreground = gx_dc_pure_color(pdcolor);
1938
1.13M
    if (code < 0)
1939
0
        return code;
1940
1.13M
    code = gdev_vector_update_fill_color(vdev, NULL, pdcolor);
1941
1.13M
    if (code < 0)
1942
0
        return 0;
1943
1.13M
    pclxl_set_cursor(xdev, x, y);
1944
1.13M
    if (id != gs_no_id && data_x == 0) {
1945
1.13M
        code = gdev_vector_update_log_op(vdev, lop);
1946
1.13M
        if (code < 0)
1947
0
            return 0;
1948
1.13M
        if (pclxl_copy_text_char(xdev, data, raster, id, w, h) >= 0)
1949
1.13M
            return 0;
1950
1.13M
    }
1951
    /* This is similiar to the copy_mono white-on-mask,
1952
     * except we are drawing white on the black of a black/white mask,
1953
     * so we invert source, compared to copy_mono */
1954
0
    if (foreground == ((gx_color_index)1 << dev->color_info.depth) - 1) {       /* white */
1955
0
        lop = rop3_not(rop3_S) | (rop3_D & rop3_S);
1956
0
    } else if (foreground == 0) {       /* black */
1957
0
        lop = (rop3_S & rop3_D);
1958
0
    } else
1959
0
        lop |= rop3_S | lop_S_transparent;
1960
1961
0
    code = gdev_vector_update_log_op(vdev, lop);
1962
0
    if (code < 0)
1963
0
        return 0;
1964
0
    pclxl_set_color_palette(xdev, eGray, (const byte *)"\377\000", 2);
1965
0
    s = pclxl_stream(xdev);
1966
0
    {
1967
0
        static const byte mi_[] = {
1968
0
            DUB(e1Bit), DA(pxaColorDepth),
1969
0
            DUB(eIndexedPixel), DA(pxaColorMapping)
1970
0
        };
1971
1972
0
        PX_PUT_LIT(s, mi_);
1973
0
    }
1974
0
    pclxl_write_begin_image(xdev, w, h, w, h);
1975
0
    pclxl_write_image_data(xdev, data, data_x, raster, w, 0, h, false);
1976
0
    pclxl_write_end_image(xdev);
1977
0
    return 0;
1978
0
}
1979
1980
/* Do a RasterOp. */
1981
static int
1982
pclxl_strip_copy_rop2(gx_device * dev, const byte * sdata, int sourcex,
1983
                     uint sraster, gx_bitmap_id id,
1984
                     const gx_color_index * scolors,
1985
                     const gx_strip_bitmap * textures,
1986
                     const gx_color_index * tcolors,
1987
                     int x, int y, int width, int height,
1988
                     int phase_x, int phase_y, gs_logical_operation_t lop,
1989
                     uint plane_height)
1990
0
{
1991
0
    lop = lop_sanitize(lop);
1992
    /* Improvements possible here using PXL ROP3
1993
       for some combinations of args; use gx_default for now */
1994
0
    if (!rop3_uses_D(lop))  /* gx_default() cannot cope with D ops */
1995
0
        return gx_default_strip_copy_rop2(dev, sdata, sourcex,
1996
0
                                          sraster, id,
1997
0
                                          scolors,
1998
0
                                          textures,
1999
0
                                          tcolors,
2000
0
                                          x, y, width, height,
2001
0
                                          phase_x, phase_y, lop,
2002
0
                                          plane_height);
2003
0
    return 0;
2004
0
}
2005
2006
/* ------ High-level images ------ */
2007
2008
208k
#define MAX_ROW_DATA 500000     /* arbitrary */
2009
typedef struct pclxl_image_enum_s {
2010
    gdev_vector_image_enum_common;
2011
    gs_matrix mat;
2012
    struct ir_ {
2013
        byte *data;
2014
        int num_rows;           /* # of allocated rows */
2015
        int first_y;
2016
        uint raster;
2017
    } rows;
2018
    bool flipped;
2019
    gsicc_link_t *icclink;
2020
} pclxl_image_enum_t;
2021
2022
gs_private_st_suffix_add2(st_pclxl_image_enum, pclxl_image_enum_t,
2023
                          "pclxl_image_enum_t", pclxl_image_enum_enum_ptrs,
2024
                          pclxl_image_enum_reloc_ptrs, st_vector_image_enum,
2025
                          rows.data, icclink);
2026
2027
/* Start processing an image. */
2028
static int
2029
pclxl_begin_typed_image(gx_device * dev,
2030
                  const gs_gstate * pgs,
2031
                  const gs_matrix *pmat,
2032
                  const gs_image_common_t * pic,
2033
                  const gs_int_rect * prect,
2034
                  const gx_drawing_color * pdcolor,
2035
                  const gx_clip_path * pcpath, gs_memory_t * mem,
2036
                  gx_image_enum_common_t ** pinfo)
2037
288k
{
2038
288k
    gx_device_vector *const vdev = (gx_device_vector *) dev;
2039
288k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) dev;
2040
288k
    const gs_image_t *pim = (const gs_image_t *)pic;
2041
288k
    const gs_color_space *pcs;
2042
288k
    pclxl_image_enum_t *pie;
2043
288k
    byte *row_data;
2044
288k
    int num_rows;
2045
288k
    uint row_raster;
2046
288k
    int bits_per_pixel;
2047
288k
    gs_matrix mat;
2048
288k
    int code;
2049
2050
    /* We only cope with image type 1 here. */
2051
288k
    if (pic->type->index != 1)
2052
104
        goto use_default;
2053
2054
288k
    pcs = pim->ColorSpace;
2055
    /*
2056
     * Following should divide by num_planes, but we only handle chunky
2057
     * images, i.e., num_planes = 1.
2058
     */
2059
288k
    bits_per_pixel =
2060
288k
        (pim->ImageMask ? 1 :
2061
288k
         pim->BitsPerComponent * gs_color_space_num_components(pcs));
2062
2063
    /*
2064
     * Check whether we can handle this image.  PCL XL 1.0 and 2.0 only
2065
     * handle orthogonal transformations.
2066
     */
2067
288k
    code = gs_matrix_invert(&pim->ImageMatrix, &mat);
2068
288k
    if (code < 0)
2069
5
        goto use_default;
2070
288k
    if (pmat == NULL)
2071
288k
        pmat = &ctm_only(pgs);
2072
288k
    gs_matrix_multiply(&mat, pmat, &mat);
2073
2074
288k
    if (pclxl_nontrivial_transfer(pgs))
2075
16
        goto use_default;
2076
2077
288k
    if (pim->Width == 0 || pim->Height == 0)
2078
18
        goto use_default;
2079
2080
288k
    if (bits_per_pixel == 32) {
2081
        /*
2082
           32-bit cmyk depends on transformable to 24-bit rgb.
2083
           Some 32-bit aren't cmyk's. (e.g. DeviceN)
2084
         */
2085
225
        if (!pclxl_can_icctransform(pim))
2086
0
            goto use_default;
2087
2088
        /*
2089
           Strictly speaking, regardless of bits_per_pixel,
2090
           we cannot handle non-Identity Decode array.
2091
           Historically we did (wrongly), so this is inside
2092
           a 32-bit conditional to avoid regression, but shouldn't.
2093
         */
2094
225
        if (pim->Decode[0] != 0 || pim->Decode[1] != 1 ||
2095
225
            pim->Decode[2] != 0 || pim->Decode[3] != 1 ||
2096
225
            pim->Decode[4] != 0 || pim->Decode[5] != 1)
2097
0
            goto use_default;
2098
225
    }
2099
2100
    /*
2101
     * NOTE: this predicate should be fixed to be readable and easily
2102
     * debugged.  Each condition should be separate.  See the large
2103
     * similar conditional in clist_begin_typed_image which has
2104
     * already been reworked.  We can handle rotations of 90 degs +
2105
     * scaling + reflections.  * These have one of the diagonals being
2106
     * zeros * (and the other diagonals having non-zeros).
2107
     */
2108
288k
    if ((!((mat.xx * mat.yy != 0) && (mat.xy == 0) && (mat.yx == 0)) &&
2109
106k
         !((mat.xx == 0) && (mat.yy == 0) && (mat.xy * mat.yx != 0))) ||
2110
210k
        (pim->ImageMask ?
2111
202k
         (!gx_dc_is_pure(pdcolor) || pim->CombineWithColor) :
2112
210k
         ((!pclxl_can_handle_color_space(pcs) ||
2113
6.12k
           (bits_per_pixel != 1 && bits_per_pixel != 4 &&
2114
5.74k
            bits_per_pixel != 8 && bits_per_pixel != 24 &&
2115
272
            bits_per_pixel != 32))
2116
1.65k
          && !(pclxl_can_icctransform(pim) && xdev->iccTransform))) ||
2117
208k
        pim->format != gs_image_format_chunky || pim->Interpolate || prect)
2118
79.6k
        goto use_default;
2119
208k
    row_raster = (bits_per_pixel * pim->Width + 7) >> 3;
2120
208k
    num_rows = MAX_ROW_DATA / row_raster;
2121
208k
    if (num_rows > pim->Height)
2122
205k
        num_rows = pim->Height;
2123
208k
    if (num_rows <= 0)
2124
2
        num_rows = 1;
2125
208k
    pie = gs_alloc_struct(mem, pclxl_image_enum_t, &st_pclxl_image_enum,
2126
208k
                          "pclxl_begin_image");
2127
208k
    row_data = gs_alloc_bytes(mem, (size_t)num_rows * row_raster,
2128
208k
                              "pclxl_begin_image(rows)");
2129
208k
    if (pie == 0 || row_data == 0) {
2130
1
        code = gs_note_error(gs_error_VMerror);
2131
1
        goto fail;
2132
1
    }
2133
208k
    code = gdev_vector_begin_image(vdev, pgs, pim, pim->format, prect,
2134
208k
                                   pdcolor, pcpath, mem,
2135
208k
                                   &pclxl_image_enum_procs,
2136
208k
                                   (gdev_vector_image_enum_t *) pie);
2137
208k
    if (code < 0)
2138
0
        goto fail;
2139
2140
    /* emit a PXL XL rotation and adjust mat correspondingly */
2141
208k
    pie->flipped = false;
2142
208k
    if (mat.xx * mat.yy > 0) {
2143
179k
        if (mat.xx < 0) {
2144
10.6k
            stream *s = pclxl_stream(xdev);
2145
2146
10.6k
            mat.xx = -mat.xx;
2147
10.6k
            mat.yy = -mat.yy;
2148
10.6k
            mat.tx = -mat.tx;
2149
10.6k
            mat.ty = -mat.ty;
2150
10.6k
            px_put_ss(s, 180);
2151
10.6k
            xdev->state_rotated = 2;
2152
10.6k
            px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2153
10.6k
        }
2154
        /* leave the matrix alone if it is portrait */
2155
179k
    } else if (mat.xx * mat.yy < 0) {
2156
251
        pie->flipped = true;
2157
251
        if (mat.xx < 0) {
2158
15
            stream *s = pclxl_stream(xdev);
2159
2160
15
            mat.xx = -mat.xx;
2161
15
            mat.tx = -mat.tx;
2162
15
            px_put_ss(s, +180);
2163
15
            xdev->state_rotated = +2;
2164
15
            px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2165
236
        } else {
2166
236
            mat.yy = -mat.yy;
2167
236
            mat.ty = -mat.ty;
2168
236
        }
2169
28.4k
    } else if (mat.xy * mat.yx < 0) {
2170
        /* rotate +90 or -90 */
2171
28.3k
        float tmpf;
2172
28.3k
        stream *s = pclxl_stream(xdev);
2173
2174
28.3k
        if (mat.xy > 0) {
2175
33
            mat.xx = mat.xy;
2176
33
            mat.yy = -mat.yx;
2177
33
            tmpf = mat.tx;
2178
33
            mat.tx = mat.ty;
2179
33
            mat.ty = -tmpf;
2180
33
            px_put_ss(s, -90);
2181
33
            xdev->state_rotated = -1;
2182
28.3k
        } else {
2183
28.3k
            mat.xx = -mat.xy;
2184
28.3k
            mat.yy = mat.yx;
2185
28.3k
            tmpf = mat.tx;
2186
28.3k
            mat.tx = -mat.ty;
2187
28.3k
            mat.ty = tmpf;
2188
28.3k
            px_put_ss(s, +90);
2189
28.3k
            xdev->state_rotated = +1;
2190
28.3k
        }
2191
28.3k
        mat.xy = mat.yx = 0;
2192
28.3k
        px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2193
28.3k
    } else if (mat.xy * mat.yx > 0) {
2194
72
        float tmpf;
2195
72
        stream *s = pclxl_stream(xdev);
2196
2197
72
        pie->flipped = true;
2198
72
        if (mat.xy > 0) {
2199
36
            mat.xx = mat.xy;
2200
36
            mat.yy = mat.yx;
2201
36
            tmpf = mat.tx;
2202
36
            mat.tx = mat.ty;
2203
36
            mat.ty = tmpf;
2204
36
            px_put_ss(s, -90);
2205
36
            xdev->state_rotated = -1;
2206
36
        } else {
2207
36
            mat.xx = -mat.xy;
2208
36
            mat.yy = -mat.yx;
2209
36
            tmpf = mat.tx;
2210
36
            mat.tx = -mat.ty;
2211
36
            mat.ty = -tmpf;
2212
36
            px_put_ss(s, +90);
2213
36
            xdev->state_rotated = +1;
2214
36
        }
2215
72
        mat.xy = mat.yx = 0;
2216
72
        px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2217
72
    }
2218
2219
208k
    pie->mat = mat;
2220
208k
    pie->rows.data = row_data;
2221
208k
    pie->rows.num_rows = num_rows;
2222
208k
    pie->rows.first_y = 0;
2223
208k
    pie->rows.raster = row_raster;
2224
    /*
2225
       pclxl_can_handle_color_space() is here to avoid regression,
2226
       to avoid icc if traditional code path works (somewhat).
2227
       It is flawed in that it claims to handles device colors with
2228
       icc profiles (and output device colours); so that "can transform"
2229
       won't transform; we need to override it for the case of
2230
       32-bit colour, except when usefastcolor is specified.
2231
2232
       "can_icctransform" should have been accompanied by a
2233
       "will tranform" (xdev->iccTransform) check. However, since
2234
       we want to transform for CMYK regardless, so just as well
2235
       there was not such a check, and we are not adding one now.
2236
2237
       In other words, the bizarre logic in the middle is to keep
2238
       the current workflow as much as possible, but force icc mode
2239
       or confirm fastcolor mode only for 32-bit image, regardless
2240
       of whether xdev->iccTransform is on.
2241
2242
       Whole-sale icc mode is to simply remove entire middle part,
2243
       a risky change.
2244
     */
2245
208k
    if (!pim->ImageMask && (!pclxl_can_handle_color_space(pcs)
2246
6.07k
                            || (bits_per_pixel == 32 && dev->icc_struct
2247
224
                                && !dev->icc_struct->usefastcolor))
2248
224
        && pclxl_can_icctransform(pim) && pcs->cmm_icc_profile_data) {
2249
224
        gsicc_rendering_param_t rendering_params;
2250
2251
224
        rendering_params.black_point_comp = pgs->blackptcomp;
2252
224
        rendering_params.graphics_type_tag = GS_IMAGE_TAG;
2253
224
        rendering_params.rendering_intent = pgs->renderingintent;
2254
224
        pie->icclink = gsicc_get_link(pgs, dev, pcs, NULL /*des */ ,
2255
224
                                      &rendering_params, pgs->memory);
2256
224
    } else
2257
208k
        pie->icclink = NULL;
2258
208k
    *pinfo = (gx_image_enum_common_t *) pie;
2259
208k
    {
2260
208k
        gs_logical_operation_t lop = pgs->log_op;
2261
2262
208k
        if (pim->ImageMask) {
2263
202k
            const byte *palette = (const byte *)
2264
202k
                (pim->Decode[0] ? "\377\000" : "\000\377");
2265
202k
            gx_color_index foreground = gx_dc_pure_color(pdcolor);
2266
2267
202k
            code = gdev_vector_update_fill_color(vdev, NULL,    /* use process color */
2268
202k
                                                 pdcolor);
2269
202k
            if (code < 0)
2270
0
                goto fail;
2271
            /* This is similiar to the copy_mono white-on-mask,
2272
             * except we are drawing white on the black of a black/white mask,
2273
             * so we invert source, compared to copy_mono */
2274
202k
            if (foreground == ((gx_color_index)1 << dev->color_info.depth) - 1) {       /* white */
2275
294
                lop = rop3_not(rop3_S) | (rop3_D & rop3_S);
2276
202k
            } else if (foreground == 0) {       /* black */
2277
199k
                lop = (rop3_S & rop3_D);
2278
199k
            } else
2279
3.19k
                lop |= rop3_S | lop_S_transparent;
2280
2281
202k
            code = gdev_vector_update_log_op(vdev, lop);
2282
202k
            if (code < 0)
2283
0
                goto fail;
2284
202k
            pclxl_set_color_palette(xdev, eGray, palette, 2);
2285
202k
        } else {
2286
6.07k
            if (bits_per_pixel == 24 || bits_per_pixel == 32) {
2287
4.12k
                code = gdev_vector_update_log_op
2288
4.12k
                    (vdev,
2289
4.12k
                     (pim->CombineWithColor ? lop : rop3_know_T_0(lop)));
2290
4.12k
                if (code < 0)
2291
0
                    goto fail;
2292
4.12k
                if (dev->color_info.num_components == 1) {
2293
1.15k
                    pclxl_set_color_space(xdev, eGray);
2294
2.96k
                } else {
2295
2.96k
                    pclxl_set_color_space(xdev, eRGB);
2296
2.96k
                }
2297
4.12k
            } else {
2298
1.94k
                int bpc = pim->BitsPerComponent;
2299
1.94k
                int num_components =
2300
1.94k
                    pie->plane_depths[0] * pie->num_planes / bpc;
2301
1.94k
                int sample_max = (1 << bpc) - 1;
2302
1.94k
                byte palette[256 * 3];
2303
1.94k
                int i;
2304
2305
1.94k
                code = gdev_vector_update_log_op
2306
1.94k
                    (vdev,
2307
1.94k
                     (pim->CombineWithColor ? lop : rop3_know_T_0(lop)));
2308
1.94k
                if (code < 0)
2309
0
                    goto fail;
2310
403k
                for (i = 0; i < 1 << bits_per_pixel; ++i) {
2311
401k
                    gs_client_color cc;
2312
401k
                    gx_device_color devc;
2313
401k
                    int cv = i, j;
2314
401k
                    gx_color_index ci;
2315
2316
802k
                    for (j = num_components - 1; j >= 0; cv >>= bpc, --j)
2317
401k
                        cc.paint.values[j] = pim->Decode[j * 2] +
2318
401k
                            (cv & sample_max) *
2319
401k
                            (pim->Decode[j * 2 + 1] - pim->Decode[j * 2]) /
2320
401k
                            sample_max;
2321
401k
                    (*pcs->type->remap_color)
2322
401k
                        (&cc, pcs, &devc, pgs, dev, gs_color_select_source);
2323
401k
                    if (!gx_dc_is_pure(&devc))
2324
0
                        return_error(gs_error_Fatal);
2325
401k
                    ci = gx_dc_pure_color(&devc);
2326
401k
                    if (dev->color_info.num_components == 1) {
2327
373k
                        palette[i] = (byte) ci;
2328
373k
                    } else {
2329
27.8k
                        byte *ppal = &palette[i * 3];
2330
2331
27.8k
                        ppal[0] = (byte) (ci >> 16);
2332
27.8k
                        ppal[1] = (byte) (ci >> 8);
2333
27.8k
                        ppal[2] = (byte) ci;
2334
27.8k
                    }
2335
401k
                }
2336
1.94k
                if (dev->color_info.num_components == 1)
2337
1.60k
                    pclxl_set_color_palette(xdev, eGray, palette,
2338
1.60k
                                            1 << bits_per_pixel);
2339
344
                else
2340
344
                    pclxl_set_color_palette(xdev, eRGB, palette,
2341
344
                                            3 << bits_per_pixel);
2342
1.94k
            }
2343
6.07k
        }
2344
208k
    }
2345
208k
    return 0;
2346
1
  fail:
2347
1
    gs_free_object(mem, row_data, "pclxl_begin_image(rows)");
2348
1
    gs_free_object(mem, pie, "pclxl_begin_image");
2349
79.7k
  use_default:
2350
79.7k
    if (dev->color_info.num_components == 1)
2351
38.3k
        pclxl_set_color_space(xdev, eGray);
2352
41.4k
    else
2353
41.4k
        pclxl_set_color_space(xdev, eRGB);
2354
79.7k
    return gx_default_begin_typed_image(dev, pgs, pmat, pic, prect,
2355
79.7k
                                        pdcolor, pcpath, mem, pinfo);
2356
1
}
2357
2358
/* Write one strip of an image, from pie->rows.first_y to pie->y. */
2359
static int
2360
image_transform_x(const pclxl_image_enum_t * pie, int sx)
2361
509k
{
2362
509k
    return (int)((pie->mat.tx + sx * pie->mat.xx + 0.5) /
2363
509k
                 ((const gx_device_pclxl *)pie->dev)->scale.x);
2364
509k
}
2365
static int
2366
image_transform_y(const pclxl_image_enum_t * pie, int sy)
2367
509k
{
2368
509k
    return (int)((pie->mat.ty + sy * pie->mat.yy + 0.5) /
2369
509k
                 ((const gx_device_pclxl *)pie->dev)->scale.y);
2370
509k
}
2371
2372
static int
2373
pclxl_image_write_rows(pclxl_image_enum_t * pie)
2374
254k
{
2375
254k
    gx_device_pclxl *const xdev = (gx_device_pclxl *) pie->dev;
2376
254k
    stream *s = pclxl_stream(xdev);
2377
254k
    int y = pie->rows.first_y;
2378
254k
    int h = pie->y - y;
2379
254k
    int xo = image_transform_x(pie, 0);
2380
254k
    int yo = image_transform_y(pie, y);
2381
254k
    int dw = image_transform_x(pie, pie->width) - xo;
2382
254k
    int dh = image_transform_y(pie, y + h) - yo;
2383
254k
    int rows_raster = pie->rows.raster;
2384
254k
    int offset_lastflippedstrip = 0;
2385
2386
254k
    if (pie->flipped) {
2387
318
        yo = -yo - dh;
2388
318
        if (!pie->icclink)
2389
318
            offset_lastflippedstrip =
2390
318
                pie->rows.raster * (pie->rows.num_rows - h);
2391
0
        else
2392
0
            offset_lastflippedstrip =
2393
0
                (pie->rows.raster / (pie->bits_per_pixel >> 3))
2394
0
                * xdev->color_info.num_components * (pie->rows.num_rows - h);
2395
318
    };
2396
2397
254k
    if (dw <= 0 || dh <= 0)
2398
94.9k
        return 0;
2399
159k
    pclxl_set_cursor(xdev, xo, yo);
2400
159k
    if (pie->bits_per_pixel == 24) {
2401
39.3k
        static const byte ci_[] = {
2402
39.3k
            DA(pxaColorDepth),
2403
39.3k
            DUB(eDirectPixel), DA(pxaColorMapping)
2404
39.3k
        };
2405
2406
39.3k
        px_put_ub(s, eBit_values[8]);
2407
39.3k
        PX_PUT_LIT(s, ci_);
2408
39.3k
        if (xdev->color_info.depth == 8) {
2409
2.13k
            rows_raster /= 3;
2410
2.13k
            if (!pie->icclink) {
2411
2.13k
                byte *in = pie->rows.data + offset_lastflippedstrip;
2412
2.13k
                byte *out = pie->rows.data + offset_lastflippedstrip;
2413
2.13k
                int i;
2414
2.13k
                int j;
2415
2416
184k
                for (j = 0; j < h; j++) {
2417
225M
                    for (i = 0; i < rows_raster; i++) {
2418
225M
                        *out =
2419
225M
                            (byte) (((*(in + 0) * (ulong) lum_red_weight) +
2420
225M
                                     (*(in + 1) * (ulong) lum_green_weight) +
2421
225M
                                     (*(in + 2) * (ulong) lum_blue_weight) +
2422
225M
                                     (lum_all_weights / 2)) /
2423
225M
                                    lum_all_weights);
2424
225M
                        in += 3;
2425
225M
                        out++;
2426
225M
                    }
2427
182k
                }
2428
2.13k
            }
2429
2.13k
        }
2430
120k
    } else if (pie->bits_per_pixel == 32) {
2431
379
        static const byte ci_[] = {
2432
379
            DA(pxaColorDepth),
2433
379
            DUB(eDirectPixel), DA(pxaColorMapping)
2434
379
        };
2435
2436
379
        px_put_ub(s, eBit_values[8]);
2437
379
        PX_PUT_LIT(s, ci_);
2438
379
        if (xdev->color_info.depth == 8) {
2439
            /* CMYK to Gray */
2440
203
            rows_raster /= 4;
2441
203
            if (!pie->icclink) {
2442
0
                byte *in = pie->rows.data + offset_lastflippedstrip;
2443
0
                byte *out = pie->rows.data + offset_lastflippedstrip;
2444
0
                int i;
2445
0
                int j;
2446
2447
0
                for (j = 0; j < h; j++) {
2448
0
                    for (i = 0; i < rows_raster; i++) {
2449
                        /* DeviceCMYK to DeviceGray */
2450
0
                        int v =
2451
0
                            (255 - (*(in + 3))) * (int)lum_all_weights
2452
0
                            + (lum_all_weights / 2)
2453
0
                            - (*(in + 0) * (int)lum_red_weight)
2454
0
                            - (*(in + 1) * (int)lum_green_weight)
2455
0
                            - (*(in + 2) * (int)lum_blue_weight);
2456
2457
0
                        *out = max(v, 0) / lum_all_weights;
2458
0
                        in += 4;
2459
0
                        out++;
2460
0
                    }
2461
0
                }
2462
0
            }
2463
203
        } else {
2464
            /* CMYK to RGB */
2465
176
            rows_raster /= 4;
2466
176
            if (!pie->icclink) {
2467
0
                byte *in = pie->rows.data + offset_lastflippedstrip;
2468
0
                byte *out = pie->rows.data + offset_lastflippedstrip;
2469
0
                int i;
2470
0
                int j;
2471
2472
0
                for (j = 0; j < h; j++) {
2473
0
                    for (i = 0; i < rows_raster; i++) {
2474
                        /* DeviceCMYK to DeviceRGB */
2475
0
                        int r = (int)255 - (*(in + 0)) - (*(in + 3));
2476
0
                        int g = (int)255 - (*(in + 1)) - (*(in + 3));
2477
0
                        int b = (int)255 - (*(in + 2)) - (*(in + 3));
2478
2479
                        /* avoid trashing the first 12->9 conversion */
2480
0
                        *out = max(r, 0);
2481
0
                        out++;
2482
0
                        *out = max(g, 0);
2483
0
                        out++;
2484
0
                        *out = max(b, 0);
2485
0
                        out++;
2486
0
                        in += 4;
2487
0
                    }
2488
0
                }
2489
0
            }
2490
176
            rows_raster *= 3;
2491
176
        }
2492
119k
    } else {
2493
119k
        static const byte ii_[] = {
2494
119k
            DA(pxaColorDepth),
2495
119k
            DUB(eIndexedPixel), DA(pxaColorMapping)
2496
119k
        };
2497
119k
        px_put_ub(s, eBit_values[pie->bits_per_pixel]);
2498
119k
        PX_PUT_LIT(s, ii_);
2499
119k
    }
2500
159k
    pclxl_write_begin_image(xdev, pie->width, h, dw, dh);
2501
    /* 8-bit gray image may compress with jpeg, but we
2502
       cannot tell if it is 8-bit gray or 8-bit indexed */
2503
159k
    pclxl_write_image_data(xdev, pie->rows.data + offset_lastflippedstrip, 0,
2504
159k
                           rows_raster, rows_raster << 3, 0, h,
2505
159k
                           ((pie->bits_per_pixel == 24
2506
120k
                             || pie->bits_per_pixel == 32) ? true : false));
2507
159k
    pclxl_write_end_image(xdev);
2508
159k
    return 0;
2509
254k
}
2510
2511
/* Process the next piece of an image. */
2512
static int
2513
pclxl_image_plane_data(gx_image_enum_common_t * info,
2514
                       const gx_image_plane_t * planes, int height,
2515
                       int *rows_used)
2516
18.2M
{
2517
18.2M
    pclxl_image_enum_t *pie = (pclxl_image_enum_t *) info;
2518
18.2M
    int data_bit = planes[0].data_x * info->plane_depths[0];
2519
18.2M
    int width_bits = pie->width * info->plane_depths[0];
2520
18.2M
    int i;
2521
2522
    /****** SHOULD HANDLE NON-BYTE-ALIGNED DATA ******/
2523
18.2M
    if (width_bits != pie->bits_per_row || (data_bit & 7) != 0)
2524
48
        return_error(gs_error_rangecheck);
2525
18.2M
    if (height > pie->height - pie->y)
2526
129k
        height = pie->height - pie->y;
2527
40.0M
    for (i = 0; i < height; pie->y++, ++i) {
2528
21.8M
        int flipped_strip_offset;
2529
2530
21.8M
        if (pie->y - pie->rows.first_y == pie->rows.num_rows) {
2531
46.5k
            int code = pclxl_image_write_rows(pie);
2532
2533
46.5k
            if (code < 0)
2534
0
                return code;
2535
46.5k
            pie->rows.first_y = pie->y;
2536
46.5k
        }
2537
21.8M
        flipped_strip_offset = (pie->flipped ?
2538
9.39k
                                (pie->rows.num_rows -
2539
9.39k
                                 (pie->y - pie->rows.first_y) -
2540
21.8M
                                 1) : (pie->y - pie->rows.first_y));
2541
21.8M
        if (!pie->icclink)
2542
21.7M
            memcpy(pie->rows.data +
2543
21.7M
                   pie->rows.raster * flipped_strip_offset,
2544
21.7M
                   planes[0].data + planes[0].raster * i + (data_bit >> 3),
2545
21.7M
                   pie->rows.raster);
2546
70.2k
        else {
2547
70.2k
            gsicc_bufferdesc_t input_buff_desc;
2548
70.2k
            gsicc_bufferdesc_t output_buff_desc;
2549
70.2k
            int pixels_per_row =
2550
70.2k
                pie->rows.raster / (pie->bits_per_pixel >> 3);
2551
70.2k
            int out_raster_stride =
2552
70.2k
                pixels_per_row * info->dev->color_info.num_components;
2553
70.2k
            gsicc_init_buffer(&input_buff_desc,
2554
70.2k
                              (pie->bits_per_pixel >> 3) /*num_chan */ ,
2555
70.2k
                              1 /*bytes_per_chan */ ,
2556
70.2k
                              false /*has_alpha */ , false /*alpha_first */ ,
2557
70.2k
                              false /*is_planar */ ,
2558
70.2k
                              0 /*plane_stride */ ,
2559
70.2k
                              pie->rows.raster /*row_stride */ ,
2560
70.2k
                              1 /*num_rows */ ,
2561
70.2k
                              pixels_per_row /*pixels_per_row */ );
2562
70.2k
            gsicc_init_buffer(&output_buff_desc,
2563
70.2k
                              info->dev->color_info.num_components, 1, false,
2564
70.2k
                              false, false, 0, out_raster_stride, 1,
2565
70.2k
                              pixels_per_row);
2566
70.2k
            gscms_transform_color_buffer(info->dev, pie->icclink,
2567
70.2k
                                         &input_buff_desc, &output_buff_desc,
2568
70.2k
                                         (void *)(planes[0].data +
2569
70.2k
                                                  planes[0].raster * i +
2570
70.2k
                                                  (data_bit >> 3)) /*src */ ,
2571
70.2k
                                         pie->rows.data + out_raster_stride * flipped_strip_offset      /*des */
2572
70.2k
                                         );
2573
70.2k
        }
2574
21.8M
    }
2575
18.2M
    *rows_used = height;
2576
18.2M
    return pie->y >= pie->height;
2577
18.2M
}
2578
2579
/* Clean up by releasing the buffers. */
2580
static int
2581
pclxl_image_end_image(gx_image_enum_common_t * info, bool draw_last)
2582
208k
{
2583
208k
    pclxl_image_enum_t *pie = (pclxl_image_enum_t *) info;
2584
208k
    int code = 0;
2585
2586
    /* Write the final strip, if any. */
2587
208k
    if (pie->y > pie->rows.first_y && draw_last)
2588
208k
        code = pclxl_image_write_rows(pie);
2589
208k
    if (draw_last) {
2590
208k
        gx_device_pclxl *xdev = (gx_device_pclxl *) info->dev;
2591
208k
        stream *s = pclxl_stream(xdev);
2592
2593
208k
        switch (xdev->state_rotated) {
2594
28.3k
            case 1:
2595
28.3k
                xdev->state_rotated = 0;
2596
28.3k
                px_put_ss(s, -90);
2597
28.3k
                px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2598
28.3k
                break;
2599
69
            case -1:
2600
69
                xdev->state_rotated = 0;
2601
69
                px_put_ss(s, +90);
2602
69
                px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2603
69
                break;
2604
10.6k
            case 2:
2605
10.6k
                xdev->state_rotated = 0;
2606
10.6k
                px_put_ss(s, -180);
2607
10.6k
                px_put_ac(s, pxaPageAngle, pxtSetPageRotation);
2608
10.6k
                break;
2609
169k
            case 0:
2610
169k
            default:
2611
                /* do nothing */
2612
169k
                break;
2613
208k
        }
2614
208k
    }
2615
208k
    if (pie->icclink)
2616
224
        gsicc_release_link(pie->icclink);
2617
208k
    gs_free_object(pie->memory, pie->rows.data, "pclxl_end_image(rows)");
2618
208k
    gx_image_free_enum(&info);
2619
208k
    return code;
2620
208k
}
2621
2622
/*
2623
 * 'pclxl_get_params()' - Get pagedevice parameters.
2624
 */
2625
2626
static int                      /* O - Error status */
2627
pclxl_get_params(gx_device * dev,       /* I - Device info */
2628
                 gs_param_list * plist)
2629
389k
{                               /* I - Parameter list */
2630
389k
    gx_device_pclxl *xdev;      /* PCL XL device */
2631
389k
    int code;                   /* Return code */
2632
389k
    gs_param_string s;          /* Temporary string value */
2633
2634
    /*
2635
     * First process the "standard" page device parameters...
2636
     */
2637
2638
389k
    if ((code = gdev_vector_get_params(dev, plist)) < 0)
2639
0
        return (code);
2640
2641
    /*
2642
     * Then write the PCL-XL parameters...
2643
     */
2644
2645
389k
    xdev = (gx_device_pclxl *) dev;
2646
2647
389k
    if ((code = param_write_bool(plist, "Duplex", &(xdev->Duplex))) < 0)
2648
0
        return (code);
2649
2650
389k
    if ((code = param_write_bool(plist, "ManualFeed",
2651
389k
         &(xdev->ManualFeed))) < 0)
2652
0
        return (code);
2653
2654
389k
    if ((code = param_write_int(plist, "MediaPosition",
2655
389k
        &(xdev->MediaPosition))) < 0)
2656
0
        return (code);
2657
2658
389k
    param_string_from_string(s, xdev->MediaType);
2659
2660
389k
    if ((code = param_write_string(plist, "MediaType", &s)) < 0)
2661
0
        return (code);
2662
2663
389k
    if ((code = param_write_bool(plist, "Staple", &(xdev->Staple))) < 0)
2664
0
        return (code);
2665
2666
389k
    if ((code = param_write_bool(plist, "Tumble", &(xdev->Tumble))) < 0)
2667
0
        return (code);
2668
2669
389k
    if ((code = param_write_int(plist, "CompressMode",
2670
389k
                                &(xdev->CompressMode))) < 0)
2671
0
        return (code);
2672
2673
389k
    if ((code =
2674
389k
         param_write_bool(plist, "iccTransform", &(xdev->iccTransform))) < 0)
2675
0
        return (code);
2676
2677
389k
    return (0);
2678
389k
}
2679
2680
/*
2681
 * 'pclxl_put_params()' - Set pagedevice parameters.
2682
 */
2683
2684
static int                      /* O - Error status */
2685
pclxl_put_params(gx_device * dev,       /* I - Device info */
2686
                 gs_param_list * plist)
2687
185k
{                               /* I - Parameter list */
2688
185k
    gx_device_pclxl *xdev;      /* PCL XL device */
2689
185k
    int code;                   /* Error code */
2690
185k
    int intval;                 /* Integer value */
2691
185k
    bool boolval;               /* Boolean value */
2692
185k
    gs_param_string stringval;  /* String value */
2693
185k
    bool ManualFeed;
2694
185k
    bool ManualFeed_set = false;
2695
185k
    int MediaPosition;
2696
185k
    bool MediaPosition_set = false;
2697
2698
    /*
2699
     * Process PCL-XL driver parameters...
2700
     */
2701
2702
185k
    xdev = (gx_device_pclxl *) dev;
2703
2704
185k
#define intoption(name, sname, type) \
2705
185k
  if ((code = param_read_int(plist, sname, &intval)) < 0) \
2706
185k
  { \
2707
0
    if_debug1('|', "Error setting %s\n", sname); \
2708
0
    param_signal_error(plist, sname, code); \
2709
0
    return (code); \
2710
0
  } \
2711
185k
  else if (code == 0) \
2712
185k
  { \
2713
16.8k
    if_debug2('|', "setting %s to %d\n", sname, intval); \
2714
16.8k
    xdev->name = (type)intval; \
2715
16.8k
  }
2716
2717
185k
#define booloption(name, sname) \
2718
741k
  if ((code = param_read_bool(plist, sname, &boolval)) < 0) \
2719
741k
  { \
2720
0
    if_debug1('|', "Error setting bool %s\n", sname);    \
2721
0
    if ((code = param_read_null(plist, sname)) < 0) \
2722
0
    { \
2723
0
      if_debug1('|', "Error setting bool %s null\n", sname);     \
2724
0
      param_signal_error(plist, sname, code); \
2725
0
      return (code); \
2726
0
    } \
2727
0
    if (code == 0) \
2728
0
      xdev->name = false; \
2729
0
  } \
2730
741k
  else if (code == 0) {                                   \
2731
67.4k
    if_debug2('|', "setting %s to %d\n", sname, boolval); \
2732
67.4k
    xdev->name = (bool)boolval; \
2733
67.4k
  }
2734
2735
185k
#define stringoption(name, sname)                                \
2736
185k
  if ((code = param_read_string(plist, sname, &stringval)) < 0)  \
2737
185k
    {                                                            \
2738
0
      if_debug1('|', "Error setting %s string\n", sname);        \
2739
0
      if ((code = param_read_null(plist, sname)) < 0)            \
2740
0
        {                                                        \
2741
0
          if_debug1('|', "Error setting %s null\n", sname);      \
2742
0
          param_signal_error(plist, sname, code);                \
2743
0
          return (code);                                         \
2744
0
        }                                                        \
2745
0
      if (code == 0) {                                           \
2746
0
        if_debug1('|', "setting %s to empty\n", sname);          \
2747
0
        xdev->name[0] = '\0';                                    \
2748
0
      }                                                          \
2749
0
    }                                                            \
2750
185k
  else if (code == 0) {                                          \
2751
16.8k
    strncpy(xdev->name, (const char *)(stringval.data),          \
2752
16.8k
            stringval.size);                                     \
2753
16.8k
    xdev->name[stringval.size] = '\0';                           \
2754
16.8k
    if_debug2('|', "setting %s to %s\n", sname, xdev->name);     \
2755
16.8k
  }
2756
2757
    /* We need to have *_set to distinguish defaults from explicitly sets */
2758
185k
    booloption(Duplex, "Duplex");
2759
185k
    if (code == 0)
2760
16.8k
        if (xdev->Duplex) {
2761
0
            if_debug0('|', "round up page count\n");
2762
0
            xdev->page = (xdev->page + 1) & ~1;
2763
0
        }
2764
185k
    code = param_read_bool(plist, "ManualFeed", &ManualFeed);
2765
185k
    if (code == 0)
2766
16.8k
        ManualFeed_set = true;
2767
185k
    if (code >= 0) {
2768
185k
        code = param_read_int(plist, "MediaPosition", &MediaPosition);
2769
185k
        if (code == 0)
2770
42.8k
            MediaPosition_set = true;
2771
142k
        else if (code < 0) {
2772
0
            if (param_read_null(plist, "MediaPosition") == 0) {
2773
0
                code = 0;
2774
0
            }
2775
0
        }
2776
185k
    }
2777
185k
    stringoption(MediaType, "MediaType");
2778
185k
    if (code == 0) {
2779
16.8k
        xdev->MediaType_set = true;
2780
        /* round up for duplex */
2781
16.8k
        if (strcmp(xdev->MediaType_old, xdev->MediaType)) {
2782
0
            if_debug0('|', "round up page count\n");
2783
0
            xdev->page = (xdev->page + 1) & ~1;
2784
0
            strcpy(xdev->MediaType_old, xdev->MediaType);
2785
0
        }
2786
16.8k
    }
2787
185k
    booloption(Staple, "Staple");
2788
185k
    booloption(Tumble, "Tumble");
2789
185k
    intoption(CompressMode, "CompressMode", int);
2790
2791
185k
    booloption(iccTransform, "iccTransform");
2792
2793
    /*
2794
     * Then process standard page device parameters...
2795
     */
2796
2797
185k
    if (code >= 0)
2798
185k
        if ((code = gdev_vector_put_params(dev, plist)) < 0)
2799
400
            return (code);
2800
2801
185k
    if (code >= 0) {
2802
185k
        if (ManualFeed_set) {
2803
16.8k
            xdev->ManualFeed = ManualFeed;
2804
16.8k
            xdev->ManualFeed_set = true;
2805
16.8k
        }
2806
185k
        if (MediaPosition_set) {
2807
42.8k
            xdev->MediaPosition = MediaPosition;
2808
42.8k
            xdev->MediaPosition_set = true;
2809
42.8k
            if (xdev->MediaPosition_old != xdev->MediaPosition) {
2810
25.9k
                if_debug0('|', "round up page count\n");
2811
25.9k
                xdev->page = (xdev->page+1) & ~1 ;
2812
25.9k
                xdev->MediaPosition_old = xdev->MediaPosition;
2813
25.9k
            }
2814
42.8k
        }
2815
185k
    }
2816
2817
185k
    return (0);
2818
185k
}
2819
2820
static int pclxl_text_begin(gx_device * dev, gs_gstate * pgs,
2821
                    const gs_text_params_t *text, gs_font * font,
2822
                    const gx_clip_path * pcpath,
2823
                    gs_text_enum_t ** ppte)
2824
2.57M
{
2825
2.57M
    font->dir->ccache.upper = 0;
2826
2.57M
    return gx_default_text_begin(dev, pgs, text, font, pcpath, ppte);
2827
2.57M
}