Coverage Report

Created: 2026-04-01 07:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/devices/vector/gdevpdts.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Text state management for pdfwrite */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "gx.h"
21
#include "gserrors.h"
22
#include "gdevpdfx.h"
23
#include "gdevpdfg.h"
24
#include "gdevpdtx.h"
25
#include "gdevpdtf.h"   /* for pdfont->FontType */
26
#include "gdevpdts.h"
27
#include "gdevpdtt.h"
28
#include "gdevpdti.h"
29
30
/* ================ Types and structures ================ */
31
32
#define TEXT_BUFFER_DEFAULT\
33
    { { 0, 0 } },   /* moves */\
34
    { 0 },      /* chars */\
35
    0,        /* count_moves */\
36
    0       /* count_chars */
37
38
static const pdf_text_state_t ts_default = {
39
    /* State as seen by client */
40
    { TEXT_STATE_VALUES_DEFAULT },  /* in */
41
    { 0, 0 },     /* start */
42
    { TEXT_BUFFER_DEFAULT },  /* buffer */
43
    0,        /* wmode */
44
    /* State relative to content stream */
45
    { TEXT_STATE_VALUES_DEFAULT },  /* out */
46
    0,        /* leading */
47
    0 /*false*/,    /* use_leading */
48
    0 /*false*/,    /* continue_line */
49
    { 0, 0 },     /* line_start */
50
    { 0, 0 },     /* output position */
51
    0.0,                /* PaintType0Width */
52
    1 /* false */       /* can_use_TJ */
53
};
54
/* GC descriptor */
55
gs_private_st_ptrs2(st_pdf_text_state, pdf_text_state_t,  "pdf_text_state_t",
56
                    pdf_text_state_enum_ptrs, pdf_text_state_reloc_ptrs,
57
                    in.pdfont, out.pdfont);
58
59
/* ================ Procedures ================ */
60
61
/* ---------------- Private ---------------- */
62
63
/*
64
 * Append a writing-direction movement to the text being accumulated.  If
65
 * the buffer is full, or the requested movement is not in writing
66
 * direction, return <0 and do nothing.  (This is different from
67
 * pdf_append_chars.)  Requires pts->buffer.count_chars > 0.
68
 */
69
static int
70
append_text_move(gx_device_pdf *pdev, pdf_text_state_t *pts, double dw)
71
6.94M
{
72
6.94M
    int count = pts->buffer.count_moves;
73
6.94M
    int pos = pts->buffer.count_chars;
74
6.94M
    double rounded;
75
76
6.94M
    if (count > 0 && pts->buffer.moves[count - 1].index == pos) {
77
        /* Merge adjacent moves. */
78
1.15M
        dw += pts->buffer.moves[--count].amount;
79
1.15M
    }
80
    /* Round dw if it's very close to an integer. */
81
6.94M
    rounded = floor(dw + 0.5);
82
6.94M
    if (fabs(dw - rounded) < 0.001)
83
1.27M
        dw = rounded;
84
6.94M
    if (pdev->PDFA == 1 && dw < -MAX_USER_COORD) {
85
        /* PDF/A-1 limit on co-ordinates */
86
0
        return -1;
87
0
    }
88
6.94M
    if (dw != 0) {
89
6.36M
        if (count == MAX_TEXT_BUFFER_MOVES)
90
36.2k
            return -1;
91
6.32M
        pts->buffer.moves[count].index = pos;
92
6.32M
        pts->buffer.moves[count].amount = dw;
93
6.32M
        ++count;
94
6.32M
    }
95
6.90M
    pts->buffer.count_moves = count;
96
6.90M
    return 0;
97
6.94M
}
98
99
/*
100
 * Set *pdist to the distance (dx,dy), in the space defined by *pmat.
101
 */
102
static int
103
set_text_distance(gs_point *pdist, double dx, double dy, const gs_matrix *pmat)
104
8.10M
{
105
8.10M
    int code;
106
8.10M
    double rounded;
107
108
8.10M
    if (dx > 1e38 || dy > 1e38)
109
6
        code = gs_error_undefinedresult;
110
8.10M
    else
111
8.10M
        code = gs_distance_transform_inverse(dx, dy, pmat, pdist);
112
113
8.10M
    if (code == gs_error_undefinedresult) {
114
        /* The CTM is degenerate.
115
           Can't know the distance in user space.
116
           Set zero because we believe it is not important for rendering.
117
           We want to copy the text to PDF to make it searchable.
118
           Bug 689006.
119
         */
120
936
        pdist->x = pdist->y = 0;
121
8.10M
    } else if (code < 0)
122
0
        return code;
123
    /* If the distance is very close to integers, round it. */
124
8.10M
    if (fabs(pdist->x - (rounded = floor(pdist->x + 0.5))) < 0.0005)
125
1.14M
        pdist->x = rounded;
126
8.10M
    if (fabs(pdist->y - (rounded = floor(pdist->y + 0.5))) < 0.0005)
127
7.63M
        pdist->y = rounded;
128
8.10M
    return 0;
129
8.10M
}
130
131
/*
132
 * Test whether the transformation parts of two matrices are compatible.
133
 */
134
static bool
135
matrix_is_compatible(const gs_matrix *pmat1, const gs_matrix *pmat2)
136
8.35M
{
137
8.35M
    return (pmat2->xx == pmat1->xx && pmat2->xy == pmat1->xy &&
138
8.10M
            pmat2->yx == pmat1->yx && pmat2->yy == pmat1->yy);
139
8.35M
}
140
141
/*
142
 * Try to handle a change of text position with TJ or a space
143
 * character.  If successful, return >=0, if not, return <0.
144
 */
145
static int
146
add_text_delta_move(gx_device_pdf *pdev, const gs_matrix *pmat)
147
7.43M
{
148
7.43M
    pdf_text_state_t *const pts = pdev->text->text_state;
149
150
7.43M
    if (matrix_is_compatible(pmat, &pts->in.matrix)) {
151
7.42M
        double dx = pmat->tx - pts->in.matrix.tx,
152
7.42M
            dy = pmat->ty - pts->in.matrix.ty;
153
7.42M
        gs_point dist;
154
7.42M
        double dw, dnotw, tdw;
155
7.42M
        int code;
156
157
7.42M
        code = set_text_distance(&dist, dx, dy, pmat);
158
7.42M
        if (code < 0)
159
0
            return code;
160
7.42M
        if (pts->wmode)
161
1.32k
            dw = dist.y, dnotw = dist.x;
162
7.42M
        else
163
7.42M
            dw = dist.x, dnotw = dist.y;
164
7.42M
        tdw = dw * -1000.0 / pts->in.size;
165
166
        /* can_use_TJ is normally true, it is false only when we get a
167
         * x/y/xyshow, and the width != real_width. In this case we cannot
168
         * be certain of exactly how we got there. If its a PDF file with
169
         * a /Widths override, and the operation is an x/y/xyshow (which
170
         * will happen if the FontMatrix is nither horizontal not vertical)
171
         * then we don't want to use a TJ as that will apply the Width once
172
         * for the xhow and once for the Width override. Otherwise, we do
173
         * want to use TJ as it makes for smaller files.
174
         */
175
7.42M
        if (pts->can_use_TJ && dnotw == 0 && pts->buffer.count_chars > 0 &&
176
            /*
177
             * Acrobat Reader limits the magnitude of user-space
178
             * coordinates.  Also, AR apparently doesn't handle large
179
             * positive movement values (negative X displacements), even
180
             * though the PDF Reference says this bug was fixed in AR3.
181
             *
182
             * Old revisions used the upper threshold 1000 for tdw,
183
             * but it appears too big when a font sets a too big
184
             * character width in setcachedevice. Particularly this happens
185
             * with a Type 3 font generated by Aldus Freehand 4.0
186
             * to represent a texture - see bug #687051.
187
             * The problem is that when the Widths is multiplied
188
             * to the font size, the viewer represents the result
189
             * with insufficient fraction bits to represent the precise width.
190
             * We work around that problem here restricting tdw
191
             * with a smaller threshold 990. Our intention is to
192
             * disable Tj when the real glyph width appears smaller
193
             * than 1% of the width specified in setcachedevice.
194
             * A Td instruction will be generated instead.
195
             * Note that the value 990 is arbitrary and may need a
196
             * further adjustment.
197
             */
198
             /* Revised the above. It seems unreasonable to use a fixed
199
              * value which is not based on the point size, when the problem is
200
              * caused by a large point size being multiplied by the width. The
201
              * original fix also caused bitmap fonts (from PCL and other sources)
202
              * to fail to use kerning, as these fonts are scaled to 1 point and
203
              * therefore use large kerning values. Instead we check the kerned value
204
              * multiplied by the point size of the font.
205
              */
206
6.94M
            (((tdw >= -MAX_USER_COORD && (tdw * pts->in.size) < MAX_USER_COORD) || pdev->PDFA != 1))
207
7.42M
            ) {
208
            /* Use TJ. */
209
6.94M
            int code;
210
211
6.94M
            if (tdw < MAX_USER_COORD || pdev->PDFA != 1)
212
6.94M
                code = append_text_move(pdev, pts, tdw);
213
0
            else
214
0
                return -1;
215
216
6.94M
            if (code >= 0)
217
6.90M
                goto finish;
218
6.94M
        }
219
7.42M
    }
220
527k
    return -1;
221
6.90M
 finish:
222
6.90M
    pts->in.matrix = *pmat;
223
6.90M
    return 0;
224
7.43M
}
225
226
/*
227
 * Set the text matrix for writing text.  The translation component of the
228
 * matrix is the text origin.  If the non-translation components of the
229
 * matrix differ from the current ones, write a Tm command; if there is only
230
 * a Y translation, set use_leading so the next text string will be written
231
 * with ' rather than Tj; otherwise, write a Td command.
232
 */
233
static int
234
pdf_set_text_matrix(gx_device_pdf * pdev)
235
915k
{
236
915k
    pdf_text_state_t *pts = pdev->text->text_state;
237
915k
    stream *s = pdev->strm;
238
239
915k
    pts->use_leading = false;
240
915k
    if (matrix_is_compatible(&pts->out.matrix, &pts->in.matrix)) {
241
679k
        gs_point dist;
242
679k
        int code;
243
244
679k
        code = set_text_distance(&dist, pts->start.x - pts->line_start.x,
245
679k
                          pts->start.y - pts->line_start.y, &pts->in.matrix);
246
679k
        if (code < 0)
247
0
            return code;
248
679k
        if (dist.x == 0 && dist.y < 0) {
249
            /* Use TL, if needed, and T* or '. */
250
109k
            float dist_y = (float)-dist.y;
251
252
109k
            if (fabs(pts->leading - dist_y) > 0.0005) {
253
74.1k
                pprintg1(s, "%g TL\n", dist_y);
254
74.1k
                pts->leading = dist_y;
255
74.1k
            }
256
109k
            pts->use_leading = true;
257
569k
        } else {
258
            /* Use Td. */
259
569k
            pprintg2(s, "%g %g Td\n", dist.x, dist.y);
260
569k
        }
261
679k
    } else {     /* Use Tm. */
262
        /*
263
         * See stream_to_text in gdevpdfu.c for why we need the following
264
         * matrix adjustments.
265
         */
266
236k
        double sx = 72.0 / pdev->HWResolution[0],
267
236k
            sy = 72.0 / pdev->HWResolution[1], ax = sx, bx = sx, ay = sy, by = sy;
268
269
        /* We have a precision limit on decimal places with %g, make sure
270
         * we don't end up with values which will be truncated to 0
271
         */
272
236k
        if (pts->in.matrix.xx != 0 && fabs(pts->in.matrix.xx) * ax < 0.00000001)
273
58
            ax = ceil(0.00000001 / pts->in.matrix.xx);
274
236k
        if (pts->in.matrix.xy != 0 && fabs(pts->in.matrix.xy) * ay < 0.00000001)
275
105
            ay = ceil(0.00000001 / pts->in.matrix.xy);
276
236k
        if (pts->in.matrix.yx != 0 && fabs(pts->in.matrix.yx) * bx < 0.00000001)
277
41
            bx = ceil(0.00000001 / pts->in.matrix.yx);
278
236k
        if (pts->in.matrix.yy != 0 && fabs(pts->in.matrix.yy) * by < 0.00000001)
279
50
            by = ceil(0.00000001 / pts->in.matrix.yy);
280
236k
        pprintg6(s, "%g %g %g %g %g %g Tm\n",
281
236k
                 pts->in.matrix.xx * ax, pts->in.matrix.xy * ay,
282
236k
                 pts->in.matrix.yx * bx, pts->in.matrix.yy * by,
283
236k
                 pts->start.x * sx, pts->start.y * sy);
284
236k
    }
285
915k
    pts->line_start.x = pts->start.x;
286
915k
    pts->line_start.y = pts->start.y;
287
915k
    pts->out.matrix = pts->in.matrix;
288
915k
    return 0;
289
915k
}
290
291
/* ---------------- Public ---------------- */
292
293
/*
294
 * Allocate and initialize text state bookkeeping.
295
 */
296
pdf_text_state_t *
297
pdf_text_state_alloc(gs_memory_t *mem)
298
206k
{
299
206k
    pdf_text_state_t *pts =
300
206k
        gs_alloc_struct(mem, pdf_text_state_t, &st_pdf_text_state,
301
206k
                        "pdf_text_state_alloc");
302
303
206k
    if (pts == 0)
304
0
        return 0;
305
206k
    *pts = ts_default;
306
206k
    return pts;
307
206k
}
308
309
/*
310
 * Set the text state to default values.
311
 */
312
void
313
pdf_set_text_state_default(pdf_text_state_t *pts)
314
262k
{
315
262k
    *pts = ts_default;
316
262k
}
317
318
/*
319
 * Copy the text state.
320
 */
321
void
322
pdf_text_state_copy(pdf_text_state_t *pts_to, pdf_text_state_t *pts_from)
323
325k
{
324
325k
    *pts_to = *pts_from;
325
325k
}
326
327
/*
328
 * Reset the text state to its condition at the beginning of the page.
329
 */
330
void
331
pdf_reset_text_page(pdf_text_data_t *ptd)
332
99.6k
{
333
99.6k
    pdf_set_text_state_default(ptd->text_state);
334
99.6k
}
335
336
/*
337
 * Reset the text state after a grestore.
338
 */
339
void
340
pdf_reset_text_state(pdf_text_data_t *ptd)
341
528k
{
342
528k
    pdf_text_state_t *pts = ptd->text_state;
343
344
528k
    pts->out = ts_default.out;
345
528k
    pts->leading = 0;
346
528k
}
347
348
/*
349
 * Transition from stream context to text context.
350
 */
351
int
352
pdf_from_stream_to_text(gx_device_pdf *pdev)
353
195k
{
354
195k
    pdf_text_state_t *pts = pdev->text->text_state;
355
356
195k
    gs_make_identity(&pts->out.matrix);
357
195k
    pts->line_start.x = pts->line_start.y = 0;
358
195k
    pts->continue_line = false; /* Not sure, probably doesn't matter. */
359
195k
    pts->buffer.count_chars = 0;
360
195k
    pts->buffer.count_moves = 0;
361
195k
    return 0;
362
195k
}
363
364
/*
365
 *  Flush text from buffer.
366
 */
367
static int
368
flush_text_buffer(gx_device_pdf *pdev)
369
920k
{
370
920k
    pdf_text_state_t *pts = pdev->text->text_state;
371
920k
    stream *s = pdev->strm;
372
373
920k
    if (pts->buffer.count_chars != 0) {
374
920k
        pdf_font_resource_t *pdfont = pts->in.pdfont;
375
920k
        int code = pdf_assign_font_object_id(pdev, pdfont);
376
377
920k
        if (code < 0)
378
0
            return code;
379
920k
        code = pdf_add_resource(pdev, pdev->substream_Resources, "/Font", (pdf_resource_t *)pdfont);
380
920k
        if (code < 0)
381
0
            return code;
382
920k
    }
383
920k
    if (pts->buffer.count_moves > 0) {
384
486k
        int i, cur = 0;
385
386
486k
        if (pts->use_leading)
387
92.2k
            stream_puts(s, "T*");
388
486k
        stream_puts(s, "[");
389
5.65M
        for (i = 0; i < pts->buffer.count_moves; ++i) {
390
5.17M
            int next = pts->buffer.moves[i].index;
391
392
5.17M
            pdf_put_string(pdev, pts->buffer.chars + cur, next - cur);
393
5.17M
            pprintg1(s, "%g", pts->buffer.moves[i].amount);
394
5.17M
            cur = next;
395
5.17M
        }
396
486k
        if (pts->buffer.count_chars > cur)
397
303k
            pdf_put_string(pdev, pts->buffer.chars + cur,
398
303k
                           pts->buffer.count_chars - cur);
399
486k
        stream_puts(s, "]TJ\n");
400
486k
    } else {
401
433k
        pdf_put_string(pdev, pts->buffer.chars, pts->buffer.count_chars);
402
433k
        stream_puts(s, (pts->use_leading ? "'\n" : "Tj\n"));
403
433k
    }
404
920k
    pts->buffer.count_chars = 0;
405
920k
    pts->buffer.count_moves = 0;
406
920k
    pts->use_leading = false;
407
920k
    return 0;
408
920k
}
409
410
/*
411
 * Transition from string context to text context.
412
 */
413
int
414
sync_text_state(gx_device_pdf *pdev)
415
1.45M
{
416
1.45M
    pdf_text_state_t *pts = pdev->text->text_state;
417
1.45M
    stream *s = pdev->strm;
418
1.45M
    int code;
419
420
1.45M
    if (pts->buffer.count_chars == 0)
421
530k
        return 0;    /* nothing to output */
422
423
920k
    if (pts->continue_line)
424
4.22k
        return flush_text_buffer(pdev);
425
426
    /* Bring text state parameters up to date. */
427
428
915k
    if (pts->out.character_spacing != pts->in.character_spacing) {
429
51.6k
        pprintg1(s, "%g Tc\n", pts->in.character_spacing);
430
51.6k
        pts->out.character_spacing = pts->in.character_spacing;
431
51.6k
    }
432
433
915k
    if (pts->out.pdfont != pts->in.pdfont || pts->out.size != pts->in.size) {
434
338k
        pdf_font_resource_t *pdfont = pts->in.pdfont;
435
436
338k
        code = pdf_assign_font_object_id(pdev, pdfont);
437
338k
        if (code < 0)
438
0
            return code;
439
338k
        pprints1(s, "/%s ", pdfont->rname);
440
338k
        pprintg1(s, "%g Tf\n", pts->in.size);
441
338k
        pts->out.pdfont = pdfont;
442
338k
        pts->out.size = pts->in.size;
443
        /*
444
         * In PDF, the only place to specify WMode is in the CMap
445
         * (a.k.a. Encoding) of a Type 0 font.
446
         */
447
338k
        pts->wmode =
448
338k
            (pdfont->FontType == ft_composite ?
449
325k
             pdfont->u.type0.WMode : 0);
450
338k
        code = pdf_used_charproc_resources(pdev, pdfont);
451
338k
        if (code < 0)
452
0
            return code;
453
338k
    }
454
455
915k
    if (gs_matrix_compare(&pts->in.matrix, &pts->out.matrix) ||
456
36.0k
         ((pts->start.x != pts->out_pos.x || pts->start.y != pts->out_pos.y) &&
457
915k
          (pts->buffer.count_chars != 0 || pts->buffer.count_moves != 0))) {
458
        /* pdf_set_text_matrix sets out.matrix = in.matrix */
459
915k
        code = pdf_set_text_matrix(pdev);
460
915k
        if (code < 0)
461
0
            return code;
462
915k
    }
463
464
915k
    if (pts->out.render_mode != pts->in.render_mode) {
465
15.2k
        pprintg1(s, "%g Tr\n", pts->in.render_mode);
466
15.2k
        pts->out.render_mode = pts->in.render_mode;
467
15.2k
    }
468
469
915k
    if (pts->out.word_spacing != pts->in.word_spacing) {
470
84.4k
        if (memchr(pts->buffer.chars, 32, pts->buffer.count_chars)) {
471
28.3k
            pprintg1(s, "%g Tw\n", pts->in.word_spacing);
472
28.3k
            pts->out.word_spacing = pts->in.word_spacing;
473
28.3k
        }
474
84.4k
    }
475
476
915k
    return flush_text_buffer(pdev);
477
915k
}
478
479
int
480
pdf_from_string_to_text(gx_device_pdf *pdev)
481
195k
{
482
195k
    return sync_text_state(pdev);
483
195k
}
484
485
/*
486
 * Close the text aspect of the current contents part.
487
 */
488
void
489
pdf_close_text_contents(gx_device_pdf *pdev)
490
56.1k
{
491
    /*
492
     * Clear the font pointer.  This is probably left over from old code,
493
     * but it is appropriate in case we ever choose in the future to write
494
     * out and free font resources before the end of the document.
495
     */
496
56.1k
    pdf_text_state_t *pts = pdev->text->text_state;
497
498
56.1k
    pts->in.pdfont = pts->out.pdfont = 0;
499
56.1k
    pts->in.size = pts->out.size = 0;
500
56.1k
}
501
502
/*
503
 * Test whether a change in render_mode requires resetting the stroke
504
 * parameters.
505
 */
506
bool
507
pdf_render_mode_uses_stroke(const gx_device_pdf *pdev,
508
                            const pdf_text_state_values_t *ptsv)
509
3.20M
{
510
3.20M
    return ((ptsv->render_mode == 1 || ptsv->render_mode == 2 ||
511
3.20M
            ptsv->render_mode == 5 || ptsv->render_mode == 6));
512
3.20M
}
513
514
/*
515
 * Read the stored client view of text state values.
516
 */
517
void
518
pdf_get_text_state_values(gx_device_pdf *pdev, pdf_text_state_values_t *ptsv)
519
0
{
520
0
    *ptsv = pdev->text->text_state->in;
521
0
}
522
523
/*
524
 * Set wmode to text state.
525
 */
526
void
527
pdf_set_text_wmode(gx_device_pdf *pdev, int wmode)
528
101k
{
529
101k
    pdf_text_state_t *pts = pdev->text->text_state;
530
531
101k
    pts->wmode = wmode;
532
101k
}
533
534
/*
535
 * Set the stored client view of text state values.
536
 */
537
int
538
pdf_set_text_state_values(gx_device_pdf *pdev,
539
                          const pdf_text_state_values_t *ptsv)
540
10.7M
{
541
10.7M
    pdf_text_state_t *pts = pdev->text->text_state;
542
543
10.7M
    if (pts->buffer.count_chars > 0) {
544
9.72M
        int code;
545
546
9.72M
        if (pts->in.character_spacing == ptsv->character_spacing &&
547
9.68M
            pts->in.pdfont == ptsv->pdfont && pts->in.size == ptsv->size &&
548
9.54M
            pts->in.render_mode == ptsv->render_mode &&
549
9.54M
            pts->in.word_spacing == ptsv->word_spacing
550
9.72M
            ) {
551
9.53M
            if (!gs_matrix_compare(&pts->in.matrix, &ptsv->matrix))
552
2.09M
                return 0;
553
            /* add_text_delta_move sets pts->in.matrix if successful */
554
7.43M
            code = add_text_delta_move(pdev, &ptsv->matrix);
555
7.43M
            if (code >= 0)
556
6.90M
                return 0;
557
7.43M
        }
558
721k
        code = sync_text_state(pdev);
559
721k
        if (code < 0)
560
0
            return code;
561
721k
    }
562
563
1.74M
    pts->in = *ptsv;
564
1.74M
    pts->continue_line = false;
565
1.74M
    return 0;
566
10.7M
}
567
568
/*
569
 * Transform a distance from unscaled text space (text space ignoring the
570
 * scaling implied by the font size) to device space.
571
 */
572
int
573
pdf_text_distance_transform(double wx, double wy, const pdf_text_state_t *pts,
574
                            gs_point *ppt)
575
0
{
576
0
    return gs_distance_transform(wx, wy, &pts->in.matrix, ppt);
577
0
}
578
579
/*
580
 * Return the current (x,y) text position as seen by the client, in
581
 * unscaled text space.
582
 */
583
void
584
pdf_text_position(const gx_device_pdf *pdev, gs_point *ppt)
585
0
{
586
0
    pdf_text_state_t *pts = pdev->text->text_state;
587
588
0
    ppt->x = pts->in.matrix.tx;
589
0
    ppt->y = pts->in.matrix.ty;
590
0
}
591
592
int pdf_bitmap_char_update_bbox(gx_device_pdf * pdev,int x_offset, int y_offset, double x, double y)
593
833k
{
594
833k
    pdf_text_state_t *pts = pdev->text->text_state;
595
833k
    gs_rect bbox;
596
597
833k
    bbox.p.x = (pts->in.matrix.tx + x_offset) / (pdev->HWResolution[0] / 72);
598
833k
    bbox.p.y = (pts->in.matrix.ty + y_offset) / (pdev->HWResolution[1] / 72);
599
833k
    bbox.q.x = bbox.p.x + (x / (pdev->HWResolution[0] / 72));
600
833k
    bbox.q.y = bbox.p.y + (y / (pdev->HWResolution[0] / 72));
601
602
833k
    if (bbox.p.x < pdev->BBox.p.x)
603
2.25k
        pdev->BBox.p.x = bbox.p.x;
604
833k
    if (bbox.p.y < pdev->BBox.p.y)
605
10.9k
        pdev->BBox.p.y = bbox.p.y;
606
833k
    if (bbox.q.x > pdev->BBox.q.x)
607
23.0k
        pdev->BBox.q.x = bbox.q.x;
608
833k
    if (bbox.q.y > pdev->BBox.q.y)
609
2.73k
        pdev->BBox.q.y = bbox.q.y;
610
611
833k
    return 0;
612
833k
}
613
/*
614
 * Append characters to text being accumulated, giving their advance width
615
 * in device space.
616
 */
617
int
618
pdf_append_chars(gx_device_pdf * pdev, const byte * str, uint size,
619
                 double wx, double wy, bool nobreak)
620
8.30M
{
621
8.30M
    pdf_text_state_t *pts = pdev->text->text_state;
622
8.30M
    const byte *p = str;
623
8.30M
    uint left = size;
624
625
8.30M
    if (pts->buffer.count_chars == 0 && pts->buffer.count_moves == 0) {
626
915k
        pts->out_pos.x = pts->start.x = pts->in.matrix.tx;
627
915k
        pts->out_pos.y = pts->start.y = pts->in.matrix.ty;
628
915k
    }
629
16.6M
    while (left)
630
8.31M
        if (pts->buffer.count_chars == MAX_TEXT_BUFFER_CHARS ||
631
8.30M
            (nobreak && pts->buffer.count_chars + left > MAX_TEXT_BUFFER_CHARS)) {
632
4.22k
            int code = sync_text_state(pdev);
633
634
4.22k
            if (code < 0)
635
0
                return code;
636
            /* We'll keep a continuation of this line in the buffer,
637
             * but the current input parameters don't correspond to
638
             * the current position, because the text was broken in a
639
             * middle with unknown current point.
640
             * Don't change the output text state parameters
641
             * until input parameters are changed.
642
             * pdf_set_text_state_values will reset the 'continue_line' flag
643
             * at that time.
644
             */
645
4.22k
            pts->continue_line = true;
646
8.30M
        } else {
647
8.30M
            int code = pdf_open_page(pdev, PDF_IN_STRING);
648
8.30M
            uint copy;
649
650
8.30M
            if (code < 0)
651
0
                return code;
652
8.30M
            copy = min(MAX_TEXT_BUFFER_CHARS - pts->buffer.count_chars, left);
653
8.30M
            memcpy(pts->buffer.chars + pts->buffer.count_chars, p, copy);
654
8.30M
            pts->buffer.count_chars += copy;
655
8.30M
            p += copy;
656
8.30M
            left -= copy;
657
8.30M
        }
658
8.30M
    pts->in.matrix.tx += wx;
659
8.30M
    pts->in.matrix.ty += wy;
660
8.30M
    pts->out_pos.x += wx;
661
8.30M
    pts->out_pos.y += wy;
662
8.30M
    return 0;
663
8.30M
}
664
665
/* Check a new piece of charpath text to see if its safe to combine
666
 * with a previous text operation using text rendering modes.
667
 */
668
bool pdf_compare_text_state_for_charpath(pdf_text_state_t *pts, gx_device_pdf *pdev,
669
                                         gs_gstate *pgs, gs_font *font,
670
                                         const gs_text_params_t *text)
671
2.45k
{
672
2.45k
    int code;
673
2.45k
    float size;
674
2.45k
    gs_matrix smat, tmat;
675
2.45k
    struct pdf_font_resource_s *pdfont;
676
677
    /* check to ensure the new text has the same length as the saved text */
678
2.45k
    if(text->size != pts->buffer.count_chars)
679
2.41k
        return(false);
680
681
41
    if(font->FontType == ft_user_defined ||
682
41
        font->FontType == ft_PDF_user_defined ||
683
41
        font->FontType == ft_PCL_user_defined ||
684
41
        font->FontType == ft_MicroType ||
685
41
        font->FontType == ft_GL2_stick_user_defined ||
686
41
        font->FontType == ft_GL2_531)
687
0
        return(false);
688
689
    /* check to ensure the new text has the same data as the saved text */
690
41
    if(memcmp(text->data.bytes, &pts->buffer.chars, text->size))
691
8
        return(false);
692
693
    /* See if the same font is in use by checking the attahced pdfont resource for
694
     * the currrent font and comparing with the saved text state
695
     */
696
33
    code = pdf_attached_font_resource(pdev, font, &pdfont, NULL, NULL, NULL, NULL);
697
33
    if(code < 0)
698
0
        return(false);
699
700
33
    if(!pdfont || pdfont != pts->in.pdfont)
701
7
        return(false);
702
703
    /* Check to see the new text starts at the same point as the saved text.
704
     * NB! only check 2 decimal places, allow some slack in the match. This
705
     * still may prove to be too tight a requirement.
706
     */
707
26
    if(fabs(pts->start.x - pgs->current_point.x) > 0.01 ||
708
26
       fabs(pts->start.y - pgs->current_point.y) > 0.01)
709
1
        return(false);
710
711
25
    size = pdf_calculate_text_size(pgs, pdfont, &font->FontMatrix, &smat, &tmat, font, pdev);
712
713
    /* Finally, check the calculated size against the size stored in
714
     * the text state.
715
     */
716
25
    if(size != pts->in.size)
717
0
        return(false);
718
719
25
    return(true);
720
25
}
721
722
int pdf_get_text_render_mode(pdf_text_state_t *pts)
723
0
{
724
0
    return(pts->in.render_mode);
725
0
}
726
727
void pdf_set_text_render_mode(pdf_text_state_t *pts, int mode)
728
0
{
729
0
    pts->in.render_mode = mode;
730
0
}
731
732
/* Add a render mode to the rendering mode of the current text.
733
 * mode 0 = fill
734
 * mode 1 = stroke
735
 * mode 2 = clip
736
 * If the modes are not compatible returns 0. NB currently only
737
 * a stroke rendering mode is supported.
738
 */
739
int pdf_modify_text_render_mode(pdf_text_state_t *pts, int render_mode)
740
0
{
741
0
    switch (pts->in.render_mode) {
742
0
        case 0:
743
0
            if (render_mode == 1) {
744
0
                pts->in.render_mode = 2;
745
0
                return(1);
746
0
            }
747
0
            break;
748
0
        case 1:
749
0
            if (render_mode == 1)
750
0
                return(1);
751
0
            break;
752
0
        case 2:
753
0
            if (render_mode == 1)
754
0
                return(1);
755
0
            break;
756
0
        case 3:
757
0
            if (render_mode == 1) {
758
0
                pts->in.render_mode = 1;
759
0
                return(1);
760
0
            }
761
0
            break;
762
0
        case 4:
763
0
            if (render_mode == 1) {
764
0
                pts->in.render_mode = 6;
765
0
                return(1);
766
0
            }
767
0
            break;
768
0
        case 5:
769
0
            if (render_mode == 1)
770
0
                return(1);
771
0
            break;
772
0
        case 6:
773
0
            if (render_mode == 1)
774
0
                return(1);
775
0
            break;
776
0
        case 7:
777
0
            if (render_mode == 1) {
778
0
                pts->in.render_mode = 5;
779
0
                return(1);
780
0
            }
781
0
            break;
782
0
        default:
783
0
            break;
784
0
    }
785
0
    return(0);
786
0
}
787
788
int pdf_set_PaintType0_params (gx_device_pdf *pdev, gs_gstate *pgs, float size,
789
                               double scaled_width, const pdf_text_state_values_t *ptsv)
790
0
{
791
0
    pdf_text_state_t *pts = pdev->text->text_state;
792
0
    double saved_width = pgs->line_params.half_width;
793
0
    int code;
794
795
    /* This routine is used to check if we have accumulated glyphs waiting for output
796
     * if we do, and we are using a PaintType 0 font (stroke), which is the only way we
797
     * can get here, then we check to see if the stroke width has changed. If so we want to
798
     * flush the buffer, and set the new stroke width. This produces:
799
     * <width> w
800
     * (text) Tj
801
     * <new width> w
802
     * (new text) Tj
803
     *
804
     * instead of :
805
     * <width> w
806
     * <new width> w
807
     * (text) Tj
808
     * (new text) Tj
809
     */
810
0
    if (pts->buffer.count_chars > 0) {
811
0
        if (pts->PaintType0Width != scaled_width) {
812
0
            pgs->line_params.half_width = scaled_width / 2;
813
0
            code = pdf_set_text_state_values(pdev, ptsv);
814
0
            if (code < 0)
815
0
                return code;
816
0
            if (pdev->text->text_state->in.render_mode == ptsv->render_mode){
817
0
                code = pdf_prepare_stroke(pdev, pgs, false);
818
0
                if (code >= 0)
819
0
                    code = gdev_vector_prepare_stroke((gx_device_vector *)pdev,
820
0
                                              pgs, NULL, NULL, 1);
821
0
            }
822
0
            if (code < 0)
823
0
                return code;
824
0
            pgs->line_params.half_width = saved_width;
825
0
            pts->PaintType0Width = scaled_width;
826
0
        }
827
0
    }
828
0
    return 0;
829
0
}