Coverage Report

Created: 2025-11-16 07:40

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/devices/vector/gdevxps.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
/* XPS output device */
17
#include "string_.h"
18
#include "stdio_.h"
19
#include "zlib.h"
20
#include "gx.h"
21
#include "gserrors.h"
22
#include "gdevvec.h"
23
#include "gxpath.h"
24
#include "gzcpath.h"
25
#include "stream.h"
26
#include "stdint_.h"
27
#include "gdevtifs.h"
28
#include "gsicc_create.h"
29
#include "gsicc_cache.h"
30
#include "gximdecode.h" /* Need so that we can unpack and decode */
31
#include "gxpaint.h"
32
33
15.4k
#define MAXPRINTERNAME 64
34
35
10.3k
#define MAXNAME 64
36
5.15k
#define PROFILEPATH "Documents/1/Resources/Profiles/"
37
5.15k
#define IMAGEPATH "Documents/1/Resources/Images/"
38
39
/* default resolution. */
40
#ifndef X_DPI
41
#  define X_DPI 96
42
#endif
43
#ifndef Y_DPI
44
#  define Y_DPI 96
45
#endif
46
47
/* default constants */
48
15.4k
#define XPS_DEFAULT_LINEWIDTH   1.0
49
15.4k
#define XPS_DEFAULT_LINECAP     gs_cap_butt
50
15.4k
#define XPS_DEFAULT_LINEJOIN    gs_join_miter
51
15.4k
#define XPS_DEFAULT_MITERLIMIT  4.0
52
53
/* ---------------- Device definition ---------------- */
54
55
/* TODO graphics state definitions are not yet used */
56
57
/* xps join and cap values. */
58
static const char *join_str[] = {"Miter", "Bevel", "Round"};
59
static const char *cap_str[]  = {"Flat",  "Round", "Square", "Triangle"};
60
61
typedef enum {XPS_JOIN, XPS_START_CAP, XPS_END_CAP, XPS_THICK, XPS_MITER_LIMIT,
62
              XPS_STROKE_COLOR, XPS_FILL_COLOR} xps_attr_t;
63
64
typedef struct gx_device_xps_vals {
65
    double f;
66
    uint64_t i;
67
} val_t;
68
69
/* current and default values of state atrributes */
70
typedef struct gx_device_xps_attr_state {
71
    val_t cur;
72
    val_t def;
73
    const char *fmt;
74
    const char **vals;
75
} attr_t;
76
77
/* xps proto state - a copy of this table is made on the heap when the
78
   device is opened and the current state values are filled in at run
79
   time. NB not currently used. */
80
attr_t xps_fixed_state[] = {
81
     /* attribute           current  default         Format String            values */
82
    {/* XPS_JOIN */         {0.0, 0}, {0.0, 0},  "StrokeLineJoin=\"%s\"",     join_str},
83
    {/* XPS_START_CAP */    {0.0, 0}, {0.0, 0},  "StrokeStartLineCap=\"%s\"",  cap_str},
84
    {/* XPS_END_CAP */      {0.0, 0}, {0.0, 0},  "StrokeEndLineCap=\"%s\"",    cap_str},
85
    {/* XPS_THICK */        {0.0, 0}, {1.0, 0},  "StrokeThickness=\"%f\"",     NULL},
86
    {/* XPS_MITER_LIMIT */  {0.0, 0}, {10.0, 0}, "StrokeMiterLimit=\"%f\"",    NULL},
87
    {/* XPS_STROKE_COLOR */ {0.0, 0}, {0.0, 0},  "Stroke=\"%X\"",              NULL},
88
    {/* XPS_FILL_COLOR */   {0.0, 0}, {0.0, 0},  "Fill=\"%X\"",                NULL}
89
};
90
91
/* zip file management - a list of temporary files is maintained along
92
   with the final filename to be used in the archive.  filenames with
93
   associated contents in temporary files are maintained until the end
94
   of the job, at which time we enumerate the list and write the zip
95
   archive.  The exception to this is the image data and icc profiles.  Image
96
   data are stored in temp files and upon end image transferred to the zip
97
   archive and the temp file closed (and removed).  ICC profiles are written
98
   directly to the archive without a temp file. */
99
100
typedef struct gx_device_xps_zdata_s {
101
    gp_file *fp;
102
    ulong count;
103
} gx_device_xps_zdata_t;
104
105
/* Zip info for each file in the zip archive */
106
typedef struct gx_device_xps_zinfo_s {
107
    ulong CRC;
108
    ulong file_size;
109
    gx_device_xps_zdata_t data;
110
    long current_pos;
111
    ushort date;
112
    ushort time;
113
    bool saved;  /* flag to indicate file was already saved (e.g. image or profile) */
114
} gx_device_xps_zinfo_t;
115
116
/* a list of archive file names and their corresponding info
117
   (gx_device_xps_zinfo_t) */
118
typedef struct gx_device_xps_f2i_s {
119
    char *filename;
120
    gx_device_xps_zinfo_t *info;
121
    struct gx_device_xps_f2i_s *next;
122
    gs_memory_t *memory;
123
} gx_device_xps_f2i_t;
124
125
/* Used for keeping track of icc profiles that we have written.   This way we
126
   avoid writing the same one multiple times.  It would be nice to do this
127
   based upon the gs_id for images, but that id is really created after we
128
   have already drawn the path.  Not clear to me how to get a source ID. */
129
typedef struct xps_icc_data_s {
130
    int64_t hash;
131
    int index;
132
    struct xps_icc_data_s *next;
133
} xps_icc_data_t;
134
135
/* Add new page relationships to this linked list, avoiding duplicates.
136
   When page is closed write out all the relationships */
137
typedef struct xps_relations_s xps_relations_t;
138
139
struct xps_relations_s {
140
    char* relation;
141
    xps_relations_t *next;
142
    gs_memory_t *memory;
143
};
144
145
typedef enum {
146
    xps_solidbrush,
147
    xps_imagebrush,
148
    xps_visualbrush
149
} xps_brush_t;
150
151
typedef struct xps_image_enum_s {
152
    gdev_vector_image_enum_common;
153
    gs_matrix mat;
154
    TIFF *tif; /* in non-GC memory */
155
    char file_name[MAXNAME];
156
    char icc_name[MAXNAME];
157
    image_decode_t decode_st;
158
    int bytes_comp;
159
    byte *buffer; /* Needed for unpacking/decoding of image data */
160
    byte *devc_buffer; /* Needed for case where we are mapping to device colors */
161
    gs_color_space *pcs;     /* Needed for Sep, DeviceN, Indexed */
162
    gsicc_link_t *icc_link;  /* Needed for CIELAB */
163
    gp_file *fid;
164
} xps_image_enum_t;
165
166
static void
167
xps_image_enum_finalize(const gs_memory_t *cmem, void *vptr);
168
169
gs_private_st_suffix_add3_final(st_xps_image_enum, xps_image_enum_t,
170
    "xps_image_enum_t", xps_image_enum_enum_ptrs,
171
    xps_image_enum_reloc_ptrs, xps_image_enum_finalize, st_vector_image_enum,
172
    buffer, devc_buffer, pcs);
173
174
typedef struct gx_device_xps_s {
175
    /* superclass state */
176
    gx_device_vector_common;
177
    /* zip container bookkeeping */
178
    gx_device_xps_f2i_t *f2i;
179
    gx_device_xps_f2i_t *f2i_tail;
180
    /* local state */
181
    int page_count;     /* how many output_page calls we've seen */
182
    int image_count;    /* number of images so far */
183
    xps_relations_t *relations_head;
184
    xps_relations_t *relations_tail;
185
    xps_icc_data_t *icc_data;
186
    gx_color_index strokecolor, fillcolor;
187
    xps_brush_t stroketype, filltype;
188
    xps_image_enum_t *xps_pie;
189
    double linewidth;
190
    gs_line_cap linecap;
191
    gs_line_join linejoin;
192
    double miterlimit;
193
    bool can_stroke;
194
    unsigned char PrinterName[MAXPRINTERNAME];
195
    bool in_path;
196
    bool in_clip;
197
    bool clip_written;
198
    bool rect_written;
199
} gx_device_xps;
200
201
gs_public_st_suffix_add1_final(st_device_xps, gx_device_xps,
202
    "gx_device_xps", device_xps_enum_ptrs, device_xps_reloc_ptrs,
203
    gx_device_finalize, st_device_vector, xps_pie);
204
205
#define xps_device_body(dname, depth, init)\
206
  std_device_dci_type_body(gx_device_xps, init, dname, &st_device_xps, \
207
                           DEFAULT_WIDTH_10THS * X_DPI / 10, \
208
                           DEFAULT_HEIGHT_10THS * Y_DPI / 10, \
209
                           X_DPI, Y_DPI, \
210
                           (depth > 8 ? 3 : 1), depth, \
211
                           (depth > 1 ? 255 : 1), (depth > 8 ? 255 : 0), \
212
                           (depth > 1 ? 256 : 2), (depth > 8 ? 256 : 1))
213
214
static dev_proc_open_device(xps_open_device);
215
static dev_proc_output_page(xps_output_page);
216
static dev_proc_close_device(xps_close_device);
217
static dev_proc_get_params(xps_get_params);
218
static dev_proc_put_params(xps_put_params);
219
static dev_proc_fill_path(gdev_xps_fill_path);
220
static dev_proc_stroke_path(gdev_xps_stroke_path);
221
static dev_proc_initialize_device_procs(xps_initialize_device_procs);
222
static dev_proc_begin_typed_image(xps_begin_typed_image);
223
224
const gx_device_xps gs_xpswrite_device = {
225
    xps_device_body("xpswrite", 24, xps_initialize_device_procs),
226
};
227
228
static int
229
xps_initialize_device(gx_device *dev)
230
15.4k
{
231
15.4k
    gx_device_xps *xps = (gx_device_xps*)dev;
232
233
15.4k
    memset(xps->PrinterName, 0x00, MAXPRINTERNAME);
234
235
15.4k
    return 0;
236
15.4k
}
237
238
static void
239
xps_initialize_device_procs(gx_device *dev)
240
15.4k
{
241
15.4k
    set_dev_proc(dev, initialize_device, xps_initialize_device);
242
15.4k
    set_dev_proc(dev, open_device, xps_open_device);
243
15.4k
    set_dev_proc(dev, output_page, xps_output_page);
244
15.4k
    set_dev_proc(dev, close_device, xps_close_device);
245
15.4k
    set_dev_proc(dev, map_rgb_color, gx_default_rgb_map_rgb_color);
246
15.4k
    set_dev_proc(dev, map_color_rgb, gx_default_rgb_map_color_rgb);
247
15.4k
    set_dev_proc(dev, fill_rectangle, gdev_vector_fill_rectangle);
248
15.4k
    set_dev_proc(dev, get_params, xps_get_params);
249
15.4k
    set_dev_proc(dev, put_params, xps_put_params);
250
15.4k
    set_dev_proc(dev, get_page_device, gx_page_device_get_page_device);
251
15.4k
    set_dev_proc(dev, fill_path, gdev_xps_fill_path);
252
15.4k
    set_dev_proc(dev, stroke_path, gdev_xps_stroke_path);
253
15.4k
    set_dev_proc(dev, begin_typed_image, xps_begin_typed_image);
254
15.4k
}
255
256
/* Vector device procedures */
257
static int
258
xps_beginpage(gx_device_vector *vdev);
259
static int
260
xps_setlinewidth(gx_device_vector *vdev, double width);
261
static int
262
xps_setlinecap(gx_device_vector *vdev, gs_line_cap cap);
263
static int
264
xps_setlinejoin(gx_device_vector *vdev, gs_line_join join);
265
static int
266
xps_setmiterlimit(gx_device_vector *vdev, double limit);
267
static int
268
xps_setdash(gx_device_vector *vdev, const float *pattern,
269
            uint count, double offset);
270
static int
271
xps_setlogop(gx_device_vector *vdev, gs_logical_operation_t lop,
272
             gs_logical_operation_t diff);
273
274
static bool
275
xps_can_handle_hl_color(gx_device_vector *vdev, const gs_gstate *pgs,
276
                        const gx_drawing_color * pdc);
277
static int
278
xps_setfillcolor(gx_device_vector *vdev, const gs_gstate *pgs,
279
                 const gx_drawing_color *pdc);
280
static int
281
xps_setstrokecolor(gx_device_vector *vdev, const gs_gstate *pgs,
282
                   const gx_drawing_color *pdc);
283
284
static int
285
xps_dorect(gx_device_vector *vdev, fixed x0, fixed y0,
286
           fixed x1, fixed y1, gx_path_type_t type);
287
static int
288
xps_beginpath(gx_device_vector *vdev, gx_path_type_t type);
289
290
static int
291
xps_moveto(gx_device_vector *vdev, double x0, double y0,
292
           double x, double y, gx_path_type_t type);
293
static int
294
xps_lineto(gx_device_vector *vdev, double x0, double y0,
295
           double x, double y, gx_path_type_t type);
296
static int
297
xps_curveto(gx_device_vector *vdev, double x0, double y0,
298
            double x1, double y1, double x2, double y2,
299
            double x3, double y3, gx_path_type_t type);
300
static int
301
xps_closepath(gx_device_vector *vdev, double x, double y,
302
              double x_start, double y_start, gx_path_type_t type);
303
static int
304
xps_endpath(gx_device_vector *vdev, gx_path_type_t type);
305
306
/* Vector device function table */
307
static const gx_device_vector_procs xps_vector_procs = {
308
    xps_beginpage,
309
    xps_setlinewidth,
310
    xps_setlinecap,
311
    xps_setlinejoin,
312
    xps_setmiterlimit,
313
    xps_setdash,
314
    gdev_vector_setflat,
315
    xps_setlogop,
316
    xps_can_handle_hl_color,
317
    xps_setfillcolor,
318
    xps_setstrokecolor,
319
    gdev_vector_dopath,
320
    xps_dorect,
321
    xps_beginpath,
322
    xps_moveto,
323
    xps_lineto,
324
    xps_curveto,
325
    xps_closepath,
326
    xps_endpath
327
};
328
329
/* Various static content we use in all xps jobs.  We don't use all of
330
   these resource types */
331
static char *xps_content_types = (char *)"<?xml version=\"1.0\" encoding=\"utf-8\"?>"
332
    "<Types xmlns=\"http://schemas.openxmlformats.org/package/2006/content-types\">"
333
    "<Default Extension=\"fdseq\" ContentType=\"application/vnd.ms-package.xps-fixeddocumentsequence+xml\" />"
334
    "<Default Extension=\"rels\" ContentType=\"application/vnd.openxmlformats-package.relationships+xml\" />"
335
    "<Default Extension=\"fdoc\" ContentType=\"application/vnd.ms-package.xps-fixeddocument+xml\" />"
336
    "<Default Extension=\"fpage\" ContentType=\"application/vnd.ms-package.xps-fixedpage+xml\" />"
337
    "<Default Extension=\"ttf\" ContentType=\"application/vnd.ms-opentype\" />"
338
    "<Default Extension = \"icc\" ContentType = \"application/vnd.ms-color.iccprofile\" />"
339
    "<Default Extension=\"tif\" ContentType=\"image/tiff\" />"
340
    "<Default Extension=\"png\" ContentType=\"image/png\" /></Types>";
341
342
static char *fixed_document_sequence = (char *)"<?xml version=\"1.0\" encoding=\"utf-8\"?>"
343
    "<FixedDocumentSequence xmlns=\"http://schemas.microsoft.com/xps/2005/06\">"
344
    "<DocumentReference Source=\"Documents/1/FixedDocument.fdoc\" />"
345
    "</FixedDocumentSequence>";
346
347
static char *fixed_document_fdoc_header = (char *)"<?xml version=\"1.0\" encoding=\"utf-8\"?>"
348
    "<FixedDocument xmlns=\"http://schemas.microsoft.com/xps/2005/06\">";
349
350
static char *rels_header = (char *)"<?xml version=\"1.0\" encoding=\"utf-8\"?>\n"
351
    "<Relationships xmlns=\"http://schemas.openxmlformats.org/package/2006/relationships\">\n";
352
353
static char *rels_fdseq = (char *)"<Relationship Type=\"http://schemas.microsoft.com/xps/2005/06/fixedrepresentation\" "
354
    "Target=\"/FixedDocumentSequence.fdseq\" Id=\"Rdd12fb46c1de43ab\" />\n"
355
    "</Relationships>\n";
356
357
static char *rels_req_type = (char *) "\"http://schemas.microsoft.com/xps/2005/06/required-resource\"";
358
359
    /* Procedures to manage the containing zip archive */
360
361
/* Append a node of info for this archive file */
362
static int
363
zip_new_info_node(gx_device_xps *xps_dev, const char *filename)
364
86.5k
{
365
86.5k
    gx_device *dev = (gx_device *)xps_dev;
366
86.5k
    gs_memory_t *mem = dev->memory;
367
86.5k
    int lenstr;
368
369
    /* NB should use GC */
370
86.5k
    gx_device_xps_zinfo_t *info =
371
86.5k
        (gx_device_xps_zinfo_t *)gs_alloc_bytes(mem->non_gc_memory, sizeof(gx_device_xps_zinfo_t), "zinfo");
372
86.5k
    gx_device_xps_f2i_t *f2i =
373
86.5k
        (gx_device_xps_f2i_t *)gs_alloc_bytes(mem->non_gc_memory, sizeof(gx_device_xps_f2i_t), "zinfo node");
374
375
86.5k
    if_debug1m('_', dev->memory, "new node %s\n", filename);
376
377
86.5k
    if (info == NULL || f2i == NULL)
378
0
        return gs_throw_code(gs_error_VMerror);
379
380
86.5k
    f2i->info = info;
381
86.5k
    f2i->next = NULL;
382
86.5k
    f2i->memory = mem->non_gc_memory;
383
384
86.5k
    if (xps_dev->f2i == 0) { /* no head */
385
15.4k
        xps_dev->f2i = f2i;
386
15.4k
        xps_dev->f2i_tail = f2i;
387
71.1k
    } else { /* append the node */
388
71.1k
        xps_dev->f2i_tail->next = f2i;
389
71.1k
        xps_dev->f2i_tail = f2i;
390
71.1k
    }
391
392
86.5k
    lenstr = strlen(filename);
393
86.5k
    f2i->filename = (char*)gs_alloc_bytes(mem->non_gc_memory, lenstr + 1, "zinfo_filename");
394
86.5k
    if (f2i->filename == NULL)
395
0
        return gs_throw_code(gs_error_VMerror);
396
86.5k
    strcpy(f2i->filename, filename);
397
398
86.5k
    info->data.fp = 0;
399
86.5k
    info->data.count = 0;
400
86.5k
    info->saved = false;
401
402
86.5k
    if (gs_debug_c('_')) {
403
0
        gx_device_xps_f2i_t *f2i = xps_dev->f2i;
404
#ifdef DEBUG
405
        int node = 1;
406
        gx_device_xps_f2i_t *prev_f2i;
407
#endif
408
409
0
        while (f2i != NULL) {
410
0
            if_debug2m('_', dev->memory, "node:%d %s\n", node++, f2i->filename);
411
#ifdef DEBUG
412
            prev_f2i = f2i;
413
#endif
414
0
            f2i=f2i->next;
415
0
        }
416
0
        if_debug1m('_', dev->memory, "tail okay=%s\n", prev_f2i == xps_dev->f2i_tail ? "yes" : "no");
417
0
    }
418
86.5k
    return 0;
419
86.5k
}
420
421
/* add a new file to the zip archive */
422
static int
423
zip_add_file(gx_device_xps *xps_dev, const char *filename)
424
86.5k
{
425
86.5k
    int code = zip_new_info_node(xps_dev, filename);
426
86.5k
    if (code < 0)
427
0
        return gs_throw_code(gs_error_Fatal);
428
86.5k
    return 0;
429
86.5k
}
430
431
/* look up the information associated with the zip archive [filename] */
432
static gx_device_xps_zinfo_t *
433
zip_look_up_file_info(gx_device_xps *xps_dev, const char *filename)
434
206M
{
435
206M
    gx_device_xps_f2i_t *cur = xps_dev->f2i;
436
1.32G
    while (cur) {
437
1.32G
        if (!strcmp(cur->filename, filename))
438
205M
            break;
439
1.11G
        cur = cur->next;
440
1.11G
    }
441
206M
    return (cur ? cur->info : NULL);
442
206M
}
443
444
/* Add data to an archived zip file, create the file if it doesn't exist */
445
static int
446
zip_append_data(gs_memory_t *mem, gx_device_xps_zinfo_t *info, byte *data, uint len)
447
205M
{
448
205M
    uint count;
449
450
    /* if there is no data then this is the first call for this
451
       archive file, open a temporary file to store the data. */
452
205M
    if (info->data.count == 0) {
453
78.3k
        char *filename =
454
78.3k
          (char *)gs_alloc_bytes(mem->non_gc_memory, gp_file_name_sizeof,
455
78.3k
                "zip_append_data(filename)");
456
78.3k
        gp_file *fp;
457
458
78.3k
        if (!filename) {
459
0
            return(gs_throw_code(gs_error_VMerror));
460
0
        }
461
462
78.3k
        fp = gp_open_scratch_file_rm(mem, "xpsdata-",
463
78.3k
                                        filename, "wb+");
464
78.3k
        gs_free_object(mem->non_gc_memory, filename, "zip_append_data(filename)");
465
78.3k
        info->data.fp = fp;
466
78.3k
    }
467
468
    /* shouldn't happen unless the first call opens the temporary file
469
       but writes no data. */
470
205M
    if (info->data.fp == NULL)
471
0
        return gs_throw_code(gs_error_Fatal);
472
473
205M
    count = gp_fwrite(data, 1, len, info->data.fp);
474
205M
    if (count != len) {
475
0
        gp_fclose(info->data.fp);
476
0
        return -1;
477
0
    }
478
    /* probably unnecessary but makes debugging easier */
479
205M
    gp_fflush(info->data.fp);
480
205M
    info->data.count += len;
481
482
205M
    return 0;
483
205M
}
484
485
/* write to one of the archives (filename) in the zip archive */
486
static int
487
write_to_zip_file(gx_device_xps *xps_dev, const char *filename,
488
                  byte *data, uint len)
489
205M
{
490
205M
    gx_device *dev = (gx_device *)xps_dev;
491
205M
    gs_memory_t *mem = dev->memory;
492
493
205M
    gx_device_xps_zinfo_t *info = zip_look_up_file_info(xps_dev, filename);
494
205M
    int code = 0;
495
496
    /* No information on this archive file, create a new zip entry
497
       info node */
498
205M
    if (info == NULL) {
499
78.3k
        code = zip_add_file(xps_dev, filename);
500
78.3k
        if (code < 0)
501
0
            return gs_rethrow_code(code);
502
78.3k
        info = zip_look_up_file_info(xps_dev, filename);
503
78.3k
    }
504
505
205M
    if (info == NULL)
506
0
        return gs_throw_code(gs_error_Fatal);
507
508
205M
    code = zip_append_data(mem, info, data, len);
509
205M
    if (code < 0)
510
0
        return gs_rethrow_code(code);
511
512
205M
    return code;
513
205M
}
514
515
static void
516
put_bytes(stream *zs, byte *buf, uint len)
517
1.20G
{
518
1.20G
    uint used;
519
1.20G
    sputs(zs, buf, len, &used);
520
    /* NB return value */
521
1.20G
}
522
523
static void
524
put_u32(stream *zs, unsigned long l)
525
912k
{
526
912k
    sputc(zs, (byte)(l));
527
912k
    sputc(zs, (byte)(l >> 8));
528
912k
    sputc(zs, (byte)(l >> 16));
529
912k
    sputc(zs, (byte)(l >> 24));
530
912k
}
531
532
static void
533
put_u16(stream *zs, ushort s)
534
1.63M
{
535
1.63M
    sputc(zs, (byte)(s));
536
1.63M
    sputc(zs, (byte)(s >> 8));
537
1.63M
}
538
539
/* TODO - the following 2 definitions need to done correctly */
540
static ushort
541
make_dos_date(uint year, uint month, uint day)
542
86.5k
{
543
86.5k
    uint delta_1980 = year - 1980;
544
86.5k
    return (delta_1980 << 9 | month << 5 | day);
545
86.5k
}
546
547
static ushort
548
make_dos_time(uint hour, uint min, uint sec)
549
86.5k
{
550
    /* note the seconds are multiplied by 2 */
551
86.5k
    return (hour << 11 | min << 5 | sec >> 1);
552
86.5k
}
553
554
/* convenience routine. */
555
static int
556
write_str_to_zip_file(gx_device_xps *xps_dev, const char *filename,
557
                      const char *str)
558
205M
{
559
205M
    return write_to_zip_file(xps_dev, filename, (byte *)str, strlen(str));
560
205M
}
561
562
/* Used to add ICC profiles to the zip file. */
563
static int
564
add_data_to_zip_file(gx_device_xps *xps_dev, const char *filename, byte *buf, long size)
565
3.11k
{
566
3.11k
    gx_device_xps_zinfo_t *info = zip_look_up_file_info(xps_dev, filename);
567
3.11k
    int code;
568
3.11k
    long curr_pos;
569
3.11k
    unsigned long crc = 0;
570
3.11k
    stream *f;
571
3.11k
    ushort date, time;
572
573
    /* This file should not yet exist */
574
3.11k
    if (info == NULL) {
575
3.11k
        code = zip_add_file(xps_dev, filename);
576
3.11k
        if (code < 0)
577
0
            return gs_rethrow_code(code);
578
3.11k
        info = zip_look_up_file_info(xps_dev, filename);
579
3.11k
    }
580
0
    else {
581
0
        return gs_throw_code(gs_error_Fatal);
582
0
    }
583
3.11k
    f = ((gx_device_vector*)xps_dev)->strm;
584
3.11k
    curr_pos = stell(f);
585
586
    /* Figure out the crc */
587
3.11k
    crc = crc32(0L, Z_NULL, 0);
588
3.11k
    crc = crc32(crc, buf, size);
589
590
3.11k
    date = make_dos_date(2012, 2, 16);
591
3.11k
    time = make_dos_time(9, 15, 0);
592
593
3.11k
    put_u32(f, 0x04034b50); /* magic */
594
3.11k
    put_u16(f, 20);         /* version */
595
3.11k
    put_u16(f, 0);          /* flags */
596
3.11k
    put_u16(f, 0);          /* method */
597
3.11k
    put_u16(f, time);
598
3.11k
    put_u16(f, date);
599
3.11k
    put_u32(f, crc);
600
3.11k
    put_u32(f, size); /* compressed */
601
3.11k
    put_u32(f, size); /* uncompressed */
602
3.11k
    put_u16(f, strlen(filename));
603
3.11k
    put_u16(f, 0);         /* extra field length */
604
3.11k
    put_bytes(f, (byte *)filename, strlen(filename));
605
3.11k
    put_bytes(f, buf, size);
606
3.11k
    put_bytes(f, 0, 0); /* extra field */
607
608
    /* Now we need to add the info about this file */
609
3.11k
    xps_dev->f2i_tail->info->CRC = crc;
610
3.11k
    xps_dev->f2i_tail->info->time = time;
611
3.11k
    xps_dev->f2i_tail->info->date = date;
612
3.11k
    xps_dev->f2i_tail->info->data.count = size;
613
3.11k
    xps_dev->f2i_tail->info->current_pos = curr_pos;
614
3.11k
    xps_dev->f2i_tail->info->file_size = size;
615
    /* Mark the file as already stored */
616
3.11k
    xps_dev->f2i_tail->info->saved = true;
617
3.11k
    return 0;
618
3.11k
}
619
620
/* Used to add images to the zip file. This file is added now
621
and not later like the other files */
622
static int
623
add_file_to_zip_file(gx_device_xps *xps_dev, const char *filename, gp_file *src)
624
5.15k
{
625
5.15k
    gx_device_xps_zinfo_t *info = zip_look_up_file_info(xps_dev, filename);
626
5.15k
    int code = 0;
627
5.15k
    long curr_pos;
628
5.15k
    unsigned long crc = 0;
629
5.15k
    byte buf[4];
630
5.15k
    uint nread;
631
5.15k
    unsigned long count = 0;
632
5.15k
    stream *f;
633
5.15k
    ushort date, time;
634
635
    /* This file should not yet exist */
636
5.15k
    if (info == NULL) {
637
5.15k
        code = zip_add_file(xps_dev, filename);
638
5.15k
        if (code < 0)
639
0
            return gs_rethrow_code(code);
640
5.15k
        info = zip_look_up_file_info(xps_dev, filename);
641
5.15k
    }
642
0
    else {
643
0
        return gs_throw_code(gs_error_Fatal);
644
0
    }
645
646
5.15k
    f = ((gx_device_vector*)xps_dev)->strm;
647
5.15k
    curr_pos = stell(f);
648
649
    /* Get to the start */
650
5.15k
    if (gp_fseek(src, 0, 0) < 0)
651
0
        return gs_throw_code(gs_error_Fatal);
652
653
    /* Figure out the crc */
654
5.15k
    crc = crc32(0L, Z_NULL, 0);
655
    /* Chunks of 4 until we get to remainder */
656
128M
    while (!gp_feof(src)) {
657
128M
        nread = gp_fread(buf, 1, sizeof(buf), src);
658
128M
        count = count + nread;
659
128M
        crc = crc32(crc, buf, nread);
660
128M
    }
661
662
5.15k
    date = make_dos_date(2012, 2, 16);
663
5.15k
    time = make_dos_time(9, 15, 0);
664
665
5.15k
    put_u32(f, 0x04034b50); /* magic */
666
5.15k
    put_u16(f, 20);         /* version */
667
5.15k
    put_u16(f, 0);          /* flags */
668
5.15k
    put_u16(f, 0);          /* method */
669
5.15k
    put_u16(f, time);
670
5.15k
    put_u16(f, date);
671
5.15k
    put_u32(f, crc);
672
5.15k
    put_u32(f, count); /* compressed */
673
5.15k
    put_u32(f, count); /* uncompressed */
674
5.15k
    put_u16(f, strlen(filename));
675
5.15k
    put_u16(f, 0);         /* extra field length */
676
5.15k
    put_bytes(f, (byte *)filename, strlen(filename));
677
5.15k
    {
678
5.15k
        if (gp_fseek(src, (gs_offset_t)0, 0) < 0)
679
0
            return gs_throw_code(gs_error_Fatal);
680
128M
        while (!gp_feof(src)) {
681
128M
            ulong nread = gp_fread(buf, 1, sizeof(buf), src);
682
128M
            put_bytes(f, buf, nread);
683
128M
        }
684
5.15k
    }
685
0
    put_bytes(f, 0, 0); /* extra field */
686
687
    /* Now we need to add the info about this file */
688
5.15k
    xps_dev->f2i_tail->info->CRC = crc;
689
5.15k
    xps_dev->f2i_tail->info->time = time;
690
5.15k
    xps_dev->f2i_tail->info->date = date;
691
5.15k
    xps_dev->f2i_tail->info->data.count = count;
692
5.15k
    xps_dev->f2i_tail->info->current_pos = curr_pos;
693
5.15k
    xps_dev->f2i_tail->info->file_size = count;
694
    /* Mark the file as already stored */
695
5.15k
    xps_dev->f2i_tail->info->saved = true;
696
5.15k
    return 0;
697
5.15k
}
698
699
/* zip up a single file moving its data from the temporary file to the
700
   zip container. */
701
static int
702
zip_close_archive_file(gx_device_xps *xps_dev, const char *filename)
703
86.5k
{
704
86.5k
    gx_device_xps_zinfo_t *info = zip_look_up_file_info(xps_dev, filename);
705
86.5k
    gx_device_xps_zdata_t data;
706
86.5k
    byte buf[4];
707
86.5k
    unsigned long crc = 0;
708
86.5k
    int count = 0;
709
86.5k
    int len;
710
    /* we can't use the vector stream accessor because it calls beginpage */
711
86.5k
    stream *f = ((gx_device_vector*)xps_dev)->strm;
712
713
86.5k
    if (info == NULL)
714
0
        return -1;
715
716
    /* Already stored */
717
86.5k
    if (info->saved)
718
8.27k
        return 0;
719
720
78.3k
    data = info->data;
721
78.3k
    if ((int)data.count >= 0) {
722
78.3k
        gp_file *fp = data.fp;
723
78.3k
        uint nread;
724
725
78.3k
        if (fp == NULL)
726
0
            return gs_throw_code(gs_error_Fatal);
727
728
78.3k
        crc = crc32(0L, Z_NULL, 0);
729
78.3k
        gp_rewind(fp);
730
1.07G
        while (!gp_feof(fp)) {
731
1.07G
            nread = gp_fread(buf, 1, sizeof(buf), fp);
732
1.07G
            crc = crc32(crc, buf, nread);
733
1.07G
            count = count + nread;
734
1.07G
        }
735
        /* If this is a TIFF file, then update the data count information.
736
           During the writing of the TIFF directory there is seeking and
737
           relocations that occur, which make data.count incorrect.
738
           We could just do this for all the files and avoid the test. */
739
78.3k
        len = strlen(filename);
740
78.3k
        if (len > 3 && (strncmp("tif", &(filename[len - 3]), 3) == 0)) {
741
0
            info->data.count = count;
742
0
            data = info->data;
743
0
            data.fp = fp;
744
0
        }
745
78.3k
    }
746
747
78.3k
    info->current_pos = stell(f);
748
78.3k
    info->CRC = crc;
749
750
    /* NB should use ghostscript "gp" time and date functions for
751
       this, for now we hardwire the dates. */
752
78.3k
    info->date = make_dos_date(2012, 2, 16);
753
78.3k
    info->time = make_dos_time(9, 15, 0);
754
755
78.3k
    put_u32(f, 0x04034b50); /* magic */
756
78.3k
    put_u16(f, 20);         /* version */
757
78.3k
    put_u16(f, 0);          /* flags */
758
78.3k
    put_u16(f, 0);          /* method */
759
78.3k
    put_u16(f, info->time);
760
78.3k
    put_u16(f, info->date);
761
78.3k
    put_u32(f, crc);
762
78.3k
    put_u32(f, data.count); /* compressed */
763
78.3k
    put_u32(f, data.count); /* uncompressed */
764
78.3k
    put_u16(f, strlen(filename));
765
78.3k
    put_u16(f, 0);         /* extra field length */
766
78.3k
    put_bytes(f, (byte *)filename, strlen(filename));
767
78.3k
    {
768
78.3k
        gp_file *fp = data.fp;
769
78.3k
        gp_rewind(fp);
770
1.07G
        while (!gp_feof(fp)) {
771
1.07G
                ulong nread = gp_fread(buf, 1, sizeof(buf), fp);
772
1.07G
                put_bytes(f, buf, nread);
773
1.07G
        }
774
78.3k
        gp_fclose(fp);
775
78.3k
    }
776
78.3k
    put_bytes(f, 0, 0); /* extra field */
777
778
    /* Mark as saved */
779
78.3k
    info->saved = true;
780
78.3k
    return 0;
781
78.3k
}
782
783
/* walk the file info node list writing all the files to the
784
   archive */
785
static int
786
zip_close_all_archive_files(gx_device_xps *xps_dev)
787
15.4k
{
788
15.4k
    gx_device_xps_f2i_t *f2i = xps_dev->f2i;
789
102k
    while (f2i) {
790
86.5k
        int code = zip_close_archive_file(xps_dev, f2i->filename);
791
86.5k
        if (code < 0) {
792
0
            return code;
793
0
        }
794
86.5k
        f2i = f2i->next;
795
86.5k
    }
796
15.4k
    return 0;
797
15.4k
}
798
799
/* write all files to the zip container and write the zip central
800
   directory */
801
static int
802
zip_close_archive(gx_device_xps *xps_dev)
803
15.4k
{
804
15.4k
    gx_device_xps_f2i_t *f2i = xps_dev->f2i;
805
806
15.4k
    int entry_count = 0;
807
15.4k
    long pos_before_cd;
808
15.4k
    long pos_after_cd;
809
    /* we can't use the vector stream accessor because it calls beginpage */
810
15.4k
    stream *f = ((gx_device_vector*)xps_dev)->strm;
811
15.4k
    int code = zip_close_all_archive_files(xps_dev);
812
813
15.4k
    pos_before_cd = stell(f);
814
815
15.4k
    if (code < 0)
816
0
        return code;
817
818
102k
    while (f2i) {
819
86.5k
        gx_device_xps_zinfo_t *info = f2i->info;
820
86.5k
        put_u32(f, 0x02014b50); /* magic */
821
86.5k
        put_u16(f, 20); /* version made by */
822
86.5k
        put_u16(f, 20); /* version required */
823
86.5k
        put_u16(f, 0); /* bit flag */
824
86.5k
        put_u16(f, 0); /* compression method */
825
86.5k
        put_u16(f, info->time);
826
86.5k
        put_u16(f, info->date);
827
86.5k
        put_u32(f, info->CRC);
828
86.5k
        put_u32(f, info->data.count);  /* compressed */
829
86.5k
        put_u32(f, info->data.count); /* uncompressed */
830
86.5k
        put_u16(f, strlen(f2i->filename));
831
832
        /* probably will never use the next 6 so we just set them to
833
           zero here */
834
86.5k
        put_u16(f, 0); /* extra field length */
835
86.5k
        put_u16(f, 0); /* file comment length */
836
86.5k
        put_u16(f, 0); /* disk number */
837
86.5k
        put_u16(f, 0); /* internal file attributes */
838
86.5k
        put_u32(f, 0); /* external file attributes */
839
840
86.5k
        put_u32(f, info->current_pos);
841
86.5k
        put_bytes(f, (byte *)f2i->filename, strlen(f2i->filename));
842
843
86.5k
        put_bytes(f, 0, 0); /* extra field */
844
86.5k
        put_bytes(f, 0, 0); /* extra comment */
845
846
86.5k
        entry_count++;
847
86.5k
        f2i = f2i->next;
848
86.5k
    }
849
850
15.4k
    pos_after_cd = stell(f);
851
852
15.4k
    put_u32(f, 0x06054b50);
853
15.4k
    put_u16(f, 0); /* number of disks */
854
15.4k
    put_u16(f, 0); /* disk where central directory starts */
855
15.4k
    put_u16(f, entry_count); /* # of records in cd */
856
15.4k
    put_u16(f, entry_count); /* total # of records in cd */
857
15.4k
    put_u32(f, pos_after_cd - pos_before_cd); /* size of central cd */
858
15.4k
    put_u32(f, pos_before_cd); /* offset of central directory */
859
15.4k
    put_u16(f, 0); /* comment length */
860
15.4k
    put_bytes(f, 0, 0); /* comment */
861
862
15.4k
    return 0;
863
15.4k
}
864
865
/* Brush management */
866
static void
867
xps_setstrokebrush(gx_device_xps *xps, xps_brush_t type)
868
25.7k
{
869
25.7k
    if_debug1m('_', xps->memory, "xps_setstrokebrush:%d\n", (int)type);
870
871
25.7k
    xps->stroketype = type;
872
25.7k
}
873
874
static void
875
xps_setfillbrush(gx_device_xps *xps, xps_brush_t type)
876
25.7k
{
877
25.7k
    if_debug1m('_', xps->memory, "xps_setfillbrush:%d\n", (int)type);
878
879
25.7k
    xps->filltype = type;
880
25.7k
}
881
882
/* Device procedures */
883
static int
884
xps_open_device(gx_device *dev)
885
15.4k
{
886
15.4k
    gx_device_vector * vdev = (gx_device_vector*)dev;
887
15.4k
    gx_device_xps * xps = (gx_device_xps*)dev;
888
15.4k
    int code = 0;
889
890
15.4k
    vdev->v_memory = dev->memory;
891
15.4k
    vdev->vec_procs = &xps_vector_procs;
892
15.4k
    gdev_vector_init(vdev);
893
15.4k
    code = gdev_vector_open_file_options(vdev, 512,
894
15.4k
        VECTOR_OPEN_FILE_SEQUENTIAL);
895
15.4k
    if (code < 0)
896
0
      return gs_rethrow_code(code);
897
898
    /* In case ths device has been subclassed, descend to the terminal
899
     * of the chain. (Setting the variables in a subclassing device
900
     * doesn't do anythign useful.....)
901
     */
902
15.4k
    while(vdev->child)
903
0
        vdev = (gx_device_vector *)vdev->child;
904
15.4k
    xps = (gx_device_xps*)vdev;
905
906
    /* xps-specific initialization goes here */
907
15.4k
    xps->page_count = 0;
908
15.4k
    xps->relations_head = NULL;
909
15.4k
    xps->relations_tail = NULL;
910
15.4k
    xps->strokecolor = gx_no_color_index;
911
15.4k
    xps->fillcolor = gx_no_color_index;
912
15.4k
    xps_setstrokebrush(xps, xps_solidbrush);
913
15.4k
    xps_setfillbrush(xps, xps_solidbrush);
914
    /* these should be the graphics library defaults instead? */
915
15.4k
    xps->linewidth = XPS_DEFAULT_LINEWIDTH;
916
15.4k
    xps->linecap = XPS_DEFAULT_LINECAP;
917
15.4k
    xps->linejoin = XPS_DEFAULT_LINEJOIN;
918
15.4k
    xps->miterlimit = XPS_DEFAULT_MITERLIMIT;
919
15.4k
    xps->can_stroke = true;
920
15.4k
    xps->in_path = false;
921
15.4k
    xps->in_clip = false;
922
15.4k
    xps->clip_written = false;
923
15.4k
    xps->rect_written = false;
924
    /* zip info */
925
15.4k
    xps->f2i = NULL;
926
15.4k
    xps->f2i_tail = NULL;
927
928
    /* Image related stuff */
929
15.4k
    xps->image_count = 0;
930
15.4k
    xps->xps_pie = NULL;
931
932
    /* ICC related stuff */
933
15.4k
    xps->icc_data = NULL;
934
935
15.4k
    code = write_str_to_zip_file(xps, (char *)"FixedDocumentSequence.fdseq",
936
15.4k
                                 fixed_document_sequence);
937
15.4k
    if (code < 0)
938
0
        return gs_rethrow_code(code);
939
940
15.4k
    code = write_str_to_zip_file(xps, (char *)"[Content_Types].xml",
941
15.4k
                                 xps_content_types);
942
15.4k
    if (code < 0)
943
0
        return gs_rethrow_code(code);
944
945
15.4k
    code = write_str_to_zip_file(xps,
946
15.4k
                                 (char *)"Documents/1/FixedDocument.fdoc",
947
15.4k
                                 fixed_document_fdoc_header);
948
15.4k
    if (code < 0)
949
0
        return gs_rethrow_code(code);
950
951
    /* Right out the magical stuff related to the fix document sequence relationship */
952
15.4k
    code = write_str_to_zip_file(xps, (char *)"_rels/.rels", rels_header);
953
15.4k
    if (code < 0)
954
0
        return gs_rethrow_code(code);
955
956
15.4k
    code = write_str_to_zip_file(xps, (char *)"_rels/.rels", rels_fdseq);
957
15.4k
    if (code < 0)
958
0
        return gs_rethrow_code(code);
959
960
15.4k
    return code;
961
15.4k
}
962
963
/* write xps commands to Pages/%d.fpage */
964
static int
965
write_str_to_current_page(gx_device_xps *xps, const char *str)
966
205M
{
967
205M
    const char *page_template = "Documents/1/Pages/%d.fpage";
968
205M
    char buf[128]; /* easily enough to accommodate the string and a page number */
969
970
    /* we're one ahead of the page count */
971
205M
    int code = gs_snprintf(buf, sizeof(buf), page_template, xps->page_count+1);
972
205M
    if (code < 0)
973
0
        return gs_rethrow_code(code);
974
975
205M
    return write_str_to_zip_file(xps, buf, str);
976
205M
}
977
978
/* add relationship to Pages/_rels/%d.fpage.rels */
979
static int
980
add_new_relationship(gx_device_xps *xps, const char *str)
981
10.3k
{
982
10.3k
    xps_relations_t *rel;
983
984
    /* See if we already have this one */
985
55.7k
    for (rel = xps->relations_head; rel; rel = rel->next)
986
46.9k
        if (!strcmp(rel->relation, str))
987
1.45k
            return 0;
988
989
8.85k
    rel = (xps_relations_t*)gs_alloc_bytes(xps->memory->non_gc_memory,
990
8.85k
        sizeof(xps_relations_t), "add_new_relationship");
991
8.85k
    if (!rel) {
992
0
        return gs_throw_code(gs_error_VMerror);
993
0
    }
994
8.85k
    rel->memory = xps->memory->non_gc_memory;
995
8.85k
    rel->next = NULL;
996
997
8.85k
    rel->relation = (char*)gs_alloc_bytes(xps->memory->non_gc_memory,
998
8.85k
        strlen(str) + 1, "add_new_relationship");
999
8.85k
    if (!rel->relation) {
1000
0
        gs_free_object(rel->memory, rel, "add_new_relationship");
1001
0
        return gs_throw_code(gs_error_VMerror);
1002
0
    }
1003
8.85k
    memcpy(rel->relation, str, strlen(str) + 1);
1004
1005
8.85k
    if (!xps->relations_head) {
1006
3.60k
        xps->relations_head = rel;
1007
3.60k
        xps->relations_tail = rel;
1008
5.24k
    } else {
1009
5.24k
        xps->relations_tail->next = rel;
1010
5.24k
        xps->relations_tail = rel;
1011
5.24k
    }
1012
1013
8.85k
    return 0;
1014
8.85k
}
1015
1016
static int
1017
close_page_relationship(gx_device_xps *xps)
1018
3.60k
{
1019
3.60k
    const char *rels_template = "Documents/1/Pages/_rels/%d.fpage.rels";
1020
3.60k
    char buf[128]; /* easily enough to accommodate the string and a page number */
1021
1022
3.60k
    int code = gs_snprintf(buf, sizeof(buf), rels_template, xps->page_count + 1);
1023
3.60k
    if (code < 0)
1024
0
        return gs_rethrow_code(code);
1025
1026
3.60k
    write_str_to_zip_file(xps, buf, "</Relationships>");
1027
3.60k
    return 0;
1028
3.60k
}
1029
1030
static int
1031
write_page_relationship(gx_device_xps* xps)
1032
3.60k
{
1033
3.60k
    const char* rels_template = "Documents/1/Pages/_rels/%d.fpage.rels";
1034
3.60k
    char buf[128]; /* easily enough to accommodate the string and a page number */
1035
3.60k
    char line[300];
1036
3.60k
    const char* fmt;
1037
3.60k
    int count = 0;
1038
3.60k
    xps_relations_t *rel = xps->relations_head;
1039
1040
3.60k
    int code = gs_snprintf(buf, sizeof(buf), rels_template, xps->page_count + 1);
1041
3.60k
    if (code < 0)
1042
0
        return gs_rethrow_code(code);
1043
1044
3.60k
    write_str_to_zip_file(xps, buf, rels_header);
1045
3.60k
    fmt = "<Relationship Target = \"/%s\" Id = \"R%d\" Type = %s/>\n";
1046
1047
12.4k
    while (rel) {
1048
8.85k
        gs_snprintf(line, sizeof(line), fmt, rel->relation, count, rels_req_type);
1049
8.85k
        write_str_to_zip_file(xps, buf, line);
1050
8.85k
        rel = rel->next;
1051
8.85k
        count++;
1052
8.85k
    }
1053
1054
3.60k
    return 0;
1055
3.60k
}
1056
1057
static void
1058
release_relationship(gx_device_xps* xps)
1059
3.60k
{
1060
3.60k
    xps_relations_t *rel = xps->relations_head;
1061
3.60k
    xps_relations_t *old;
1062
1063
12.4k
    while (rel) {
1064
8.85k
        old = rel;
1065
8.85k
        rel = rel->next;
1066
8.85k
        gs_free_object(old->memory, old->relation, "release_relationship");
1067
8.85k
        gs_free_object(old->memory, old, "release_relationship");
1068
8.85k
    }
1069
1070
3.60k
    xps->relations_head = NULL;
1071
3.60k
    xps->relations_tail = NULL;
1072
3.60k
    return;
1073
3.60k
}
1074
1075
        /* Page management */
1076
1077
/* Complete a page */
1078
static int
1079
xps_output_page(gx_device *dev, int num_copies, int flush)
1080
12.2k
{
1081
12.2k
    gx_device_xps *const xps = (gx_device_xps*)dev;
1082
12.2k
    gx_device_vector *vdev = (gx_device_vector *)dev;
1083
12.2k
    int code;
1084
1085
12.2k
    if (!vdev->in_page) {
1086
2.71k
        (*vdev_proc(vdev, beginpage)) (vdev);
1087
2.71k
        vdev->in_page = true;
1088
2.71k
    }
1089
12.2k
    write_str_to_current_page(xps, "</Canvas></FixedPage>");
1090
1091
12.2k
    if (xps->relations_head)
1092
3.60k
    {
1093
        /* Write all the relations for the page */
1094
3.60k
        code = write_page_relationship(xps);
1095
3.60k
        if (code < 0)
1096
0
            return gs_rethrow_code(code);
1097
1098
        /* Close the relationship xml */
1099
3.60k
        code = close_page_relationship(xps);
1100
3.60k
        if (code < 0)
1101
0
            return gs_rethrow_code(code);
1102
1103
3.60k
        release_relationship(xps);
1104
3.60k
    }
1105
1106
12.2k
    xps->page_count++;
1107
1108
12.2k
    if (gp_ferror(xps->file))
1109
0
      return gs_throw_code(gs_error_ioerror);
1110
1111
12.2k
    if ((code=gx_finish_output_page(dev, num_copies, flush)) < 0)
1112
0
        return code;
1113
1114
    /* Check if we need to change the output file for separate
1115
       pages. NB not sure if this will work correctly. */
1116
12.2k
    if (gx_outputfile_is_separate_pages(((gx_device_vector *)dev)->fname, dev->memory)) {
1117
0
        if ((code = xps_close_device(dev)) < 0)
1118
0
            return code;
1119
0
        code = xps_open_device(dev);
1120
0
    }
1121
1122
12.2k
    if_debug1m('_', dev->memory, "xps_output_page - page=%d\n", xps->page_count);
1123
12.2k
    vdev->in_page = false;
1124
1125
12.2k
    return code;
1126
12.2k
}
1127
1128
static void
1129
xps_release_icc_info(gx_device *dev)
1130
15.4k
{
1131
15.4k
    gx_device_xps *xps = (gx_device_xps*)dev;
1132
15.4k
    xps_icc_data_t *curr;
1133
15.4k
    xps_icc_data_t *icc_data = xps->icc_data;
1134
1135
18.5k
    while (icc_data != NULL) {
1136
3.11k
        curr = icc_data;
1137
3.11k
        icc_data = icc_data->next;
1138
3.11k
        gs_free(dev->memory->non_gc_memory, curr, sizeof(xps_icc_data_t), 1,
1139
3.11k
            "xps_release_icc_info");
1140
3.11k
    }
1141
15.4k
    return;
1142
15.4k
}
1143
1144
static void
1145
xps_release_achive_file_names(gx_device* dev)
1146
15.4k
{
1147
15.4k
    gx_device_xps* xps = (gx_device_xps*)dev;
1148
15.4k
    gx_device_xps_f2i_t *curr;
1149
15.4k
    gx_device_xps_f2i_t *f2i = xps->f2i;
1150
1151
102k
    while (f2i) {
1152
86.5k
        curr = f2i;
1153
86.5k
        f2i = f2i->next;
1154
86.5k
        gs_free_object(curr->memory, curr->info, "xps_release_achive_file_names(info)");
1155
86.5k
        gs_free_object(curr->memory, curr->filename, "xps_release_achive_file_names(filename)");
1156
86.5k
        gs_free_object(curr->memory, curr, "xps_release_achive_file_names(f2i)");
1157
86.5k
    }
1158
15.4k
    return;
1159
15.4k
}
1160
1161
/* Close the device */
1162
static int
1163
xps_close_device(gx_device *dev)
1164
15.4k
{
1165
15.4k
    gx_device_xps *xps = (gx_device_xps*)dev;
1166
15.4k
    int code;
1167
1168
    /* closing for the FixedDocument */
1169
15.4k
    code = write_str_to_zip_file(xps, "Documents/1/FixedDocument.fdoc", "</FixedDocument>");
1170
15.4k
    if (code < 0)
1171
0
        return gs_rethrow_code(code);
1172
1173
15.4k
    if (gp_ferror(xps->file))
1174
0
      return gs_throw_code(gs_error_ioerror);
1175
1176
15.4k
    code = zip_close_archive(xps);
1177
15.4k
    if (code < 0)
1178
0
        return gs_rethrow_code(code);
1179
1180
    /* Release the icc info */
1181
15.4k
    xps_release_icc_info(dev);
1182
1183
    /* Release the archive file names */
1184
15.4k
    xps_release_achive_file_names(dev);
1185
1186
15.4k
    code = gdev_vector_close_file((gx_device_vector*)dev);
1187
15.4k
    if (code < 0)
1188
0
        return gs_rethrow_code(code);
1189
1190
15.4k
    if (strlen((const char *)xps->PrinterName)) {
1191
0
        int reason;
1192
0
        code = gp_xpsprint(xps->fname, (char *)xps->PrinterName, &reason);
1193
0
        if (code < 0) {
1194
0
            switch(code) {
1195
0
                case -1:
1196
0
                    break;
1197
0
                case -2:
1198
0
                    eprintf1("ERROR: Could not create competion event: %08X\n", reason);
1199
0
                    break;
1200
0
                case -3:
1201
0
                    eprintf1("ERROR: Could not create MultiByteString from PrinerName: %s\n", xps->PrinterName);
1202
0
                    break;
1203
0
                case -4:
1204
0
                    eprintf1("ERROR: Could not start XPS print job: %08X\n", reason);
1205
0
                    break;
1206
0
                case -5:
1207
0
                    eprintf1("ERROR: Could not create XPS OM Object Factory: %08X\n", reason);
1208
0
                    break;
1209
0
                case -6:
1210
0
                    eprintf1("ERROR: Could not create MultiByteString from OutputFile: %s\n", xps->fname);
1211
0
                    break;
1212
0
                case -7:
1213
0
                    eprintf1("ERROR: Could not create Package from File %08X\n", reason);
1214
0
                    break;
1215
0
                case -8:
1216
0
                    eprintf1("ERROR: Could not write Package to stream %08X\n", reason);
1217
0
                    break;
1218
0
                case -9:
1219
0
                    eprintf1("ERROR: Could not close job stream: %08X\n", reason);
1220
0
                    break;
1221
0
                case -10:
1222
0
                    eprintf1("ERROR: Wait for completion event failed: %08X\n", reason);
1223
0
                    break;
1224
0
                case -11:
1225
0
                    eprintf1("ERROR: Could not get job status: %08X\n", reason);
1226
0
                    break;
1227
0
                case -12:
1228
0
                    eprintf("ERROR: job was cancelled\n");
1229
0
                    break;
1230
0
                case -13:
1231
0
                    eprintf1("ERROR: Print job failed: %08X\n", reason);
1232
0
                    break;
1233
0
                case -14:
1234
0
                    eprintf("ERROR: unexpected failure\n");
1235
0
                    break;
1236
0
                case -15:
1237
0
                case -16:
1238
0
                    eprintf("ERROR: XpsPrint.dll does not exist or is missing a required method\n");
1239
0
                    break;
1240
0
            }
1241
0
            return(gs_throw_code(gs_error_invalidaccess));
1242
0
        }
1243
0
    }
1244
15.4k
    return(0);
1245
15.4k
}
1246
1247
/* Respond to a device parameter query from the client */
1248
static int
1249
xps_get_params(gx_device *dev, gs_param_list *plist)
1250
271k
{
1251
271k
    int code = 0;
1252
1253
271k
    if_debug0m('_', dev->memory, "xps_get_params\n");
1254
1255
    /* call our superclass to add its standard set */
1256
271k
    code = gdev_vector_get_params(dev, plist);
1257
271k
    if (code < 0)
1258
0
      return gs_rethrow_code(code);
1259
1260
#if defined(__WIN32__) && XPSPRINT==1
1261
    {
1262
        gs_param_string ofns;
1263
        gx_device_xps *const xps = (gx_device_xps*)dev;
1264
1265
        /* xps specific parameters are added to plist here */
1266
        ofns.data = (const byte *)&xps->PrinterName;
1267
        ofns.size = strlen(xps->fname);
1268
        ofns.persistent = false;
1269
        if ((code = param_write_string(plist, "PrinterName", &ofns)) < 0)
1270
            return code;
1271
    }
1272
#endif
1273
271k
    return code;
1274
271k
}
1275
1276
/* Read the device parameters passed to us by the client */
1277
static int
1278
xps_put_params(gx_device *dev, gs_param_list *plist)
1279
123k
{
1280
123k
    int code = 0;
1281
1282
123k
    if_debug0m('_', dev->memory, "xps_put_params\n");
1283
1284
    /* xps specific parameters are parsed here */
1285
#if defined(__WIN32__) && XPSPRINT==1
1286
    { /* NB: The following is not strictly correct since changes are */
1287
        /*     made even if 'gdev_vector_put_params' returns an error. */
1288
        gs_param_name param_name;
1289
        gs_param_string pps;
1290
        gx_device_xps *const xps = (gx_device_xps*)dev;
1291
        switch (code = param_read_string(plist, (param_name = "PrinterName"), &pps)) {
1292
        case 0:
1293
            if (pps.size > 64) {
1294
                eprintf1("\nERROR: PrinterName too long (max %d)\n", MAXPRINTERNAME);
1295
            } else {
1296
                memcpy(xps->PrinterName, pps.data, pps.size);
1297
                xps->PrinterName[pps.size] = 0;
1298
            }
1299
            break;
1300
        default:
1301
            param_signal_error(plist, param_name, code);
1302
        case 1:
1303
            /*            memset(&xps->PrinterName, 0x00, MAXPRINTERNAME);*/
1304
            break;
1305
        }
1306
    }
1307
#endif
1308
    /* call our superclass to get its parameters, like OutputFile */
1309
123k
    code = gdev_vector_put_params(dev, plist);  /* errors are handled by caller  or setpagedevice */
1310
1311
123k
    return code;
1312
123k
}
1313
1314
static int
1315
set_state_color(gx_device_vector *vdev, const gx_drawing_color *pdc, gx_color_index *color)
1316
9.86M
{
1317
9.86M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1318
1319
    /* hack so beginpage is called */
1320
9.86M
    (void)gdev_vector_stream((gx_device_vector*)xps);
1321
1322
    /* Usually this is not an actual error but a signal to the
1323
       graphics library to simplify the color */
1324
9.86M
    if (!gx_dc_is_pure(pdc)) {
1325
4.07k
        return_error(gs_error_rangecheck);
1326
4.07k
    }
1327
1328
9.86M
    *color = gx_dc_pure_color(pdc);
1329
9.86M
    return 0;
1330
9.86M
}
1331
1332
static int
1333
xps_setfillcolor(gx_device_vector *vdev, const gs_gstate *pgs, const gx_drawing_color *pdc)
1334
9.86M
{
1335
9.86M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1336
1337
9.86M
    if_debug1m('_', xps->memory, "xps_setfillcolor:%06X\n", (uint32_t)gx_dc_pure_color(pdc));
1338
1339
9.86M
    return set_state_color(vdev, pdc, &xps->fillcolor);
1340
9.86M
}
1341
1342
static int
1343
xps_setstrokecolor(gx_device_vector *vdev, const gs_gstate *pgs, const gx_drawing_color *pdc)
1344
4.05k
{
1345
4.05k
    gx_device_xps *xps = (gx_device_xps *)vdev;
1346
1347
4.05k
    if_debug1m('_', xps->memory, "xps_setstrokecolor:%06X\n", (uint32_t)gx_dc_pure_color(pdc));
1348
1349
4.05k
    return set_state_color(vdev, pdc, &xps->strokecolor);
1350
4.05k
}
1351
1352
static int
1353
xps_beginpage(gx_device_vector *vdev)
1354
12.8k
{
1355
1356
12.8k
    gx_device_xps *xps = (gx_device_xps *)vdev;
1357
12.8k
    char buf[128];
1358
12.8k
    int code = 0;
1359
1360
12.8k
    if_debug0m('_', xps->memory, "xps_beginpage\n");
1361
1362
12.8k
    {
1363
12.8k
        const char *template = "<PageContent Source=\"Pages/%d.fpage\" />";
1364
        /* Note page count is 1 less than the current page */
1365
12.8k
        code = gs_snprintf(buf, sizeof(buf), template, xps->page_count + 1);
1366
12.8k
        if (code < 0)
1367
0
            return gs_rethrow_code(code);
1368
1369
        /* Put a reference to this new page in the FixedDocument */
1370
12.8k
        code = write_str_to_zip_file(xps, "Documents/1/FixedDocument.fdoc", buf);
1371
12.8k
        if (code < 0)
1372
0
            return gs_rethrow_code(code);
1373
1374
12.8k
    }
1375
1376
12.8k
    {
1377
12.8k
        const char *page_size_template = "<FixedPage Width=\"%d\" Height=\"%d\" "
1378
12.8k
            "xmlns=\"http://schemas.microsoft.com/xps/2005/06\" xml:lang=\"en-US\">\n";
1379
12.8k
        code = gs_snprintf(buf, sizeof(buf), page_size_template,
1380
12.8k
                       (int)(xps->MediaSize[0] * 4.0/3.0),  /* pts -> 1/96 inch */
1381
12.8k
                       (int)(xps->MediaSize[1] * 4.0/3.0));
1382
12.8k
        if (code < 0)
1383
0
            return gs_rethrow_code(code);
1384
12.8k
        code = write_str_to_current_page(xps, buf);
1385
12.8k
        if (code < 0)
1386
0
            return gs_rethrow_code(code);
1387
12.8k
    }
1388
12.8k
    {
1389
12.8k
        const char *canvas_template = "<Canvas RenderTransform=\"%g,%g,%g,%g,%g,%g\">\n";
1390
12.8k
        code = gs_snprintf(buf, sizeof(buf), canvas_template,
1391
12.8k
                       96.0/xps->HWResolution[0], 0.0, 0.0,
1392
12.8k
                       96.0/xps->HWResolution[1], 0.0, 0.0);
1393
12.8k
        if (code < 0)
1394
0
            return gs_rethrow_code(code);
1395
1396
12.8k
        code = write_str_to_current_page(xps, buf);
1397
12.8k
        if (code < 0)
1398
0
            return gs_rethrow_code(code);
1399
12.8k
    }
1400
1401
12.8k
    if_debug4m('_', xps->memory,
1402
12.8k
               "page info: resx=%g resy=%g width=%d height=%d\n",
1403
12.8k
               xps->HWResolution[0], xps->HWResolution[1],
1404
12.8k
               (int)xps->MediaSize[0], (int)xps->MediaSize[1]);
1405
1406
12.8k
    return code;
1407
12.8k
}
1408
1409
static int
1410
xps_setlinewidth(gx_device_vector *vdev, double width)
1411
6.14k
{
1412
6.14k
    gx_device_xps *xps = (gx_device_xps *)vdev;
1413
1414
6.14k
    if_debug1m('_', xps->memory, "xps_setlinewidth(%lf)\n", width);
1415
1416
6.14k
    xps->linewidth = width;
1417
1418
6.14k
    return 0;
1419
6.14k
}
1420
static int
1421
xps_setlinecap(gx_device_vector *vdev, gs_line_cap cap)
1422
944
{
1423
944
    gx_device_xps *xps = (gx_device_xps *)vdev;
1424
#ifdef DEBUG
1425
    /* Only used for debug print, so guiard to prevent warnings on non-debug builds */
1426
    const char *linecap_names[] = {"butt", "round", "square",
1427
        "triangle", "unknown"};
1428
#endif
1429
1430
944
    if ((int)cap < 0 || (int)cap > gs_cap_unknown)
1431
0
        return gs_throw_code(gs_error_rangecheck);
1432
944
    if_debug1m('_', xps->memory, "xps_setlinecap(%s)\n", linecap_names[cap]);
1433
1434
944
    xps->linecap = cap;
1435
1436
944
    return 0;
1437
944
}
1438
static int
1439
xps_setlinejoin(gx_device_vector *vdev, gs_line_join join)
1440
526
{
1441
526
    gx_device_xps *xps = (gx_device_xps *)vdev;
1442
#ifdef DEBUG
1443
    /* Only used for debug print, so guiard to prevent warnings on non-debug builds */
1444
    const char *linejoin_names[] = {"miter", "round", "bevel",
1445
        "none", "triangle", "unknown"};
1446
#endif
1447
1448
526
    if ((int)join < 0 || (int)join > gs_join_unknown)
1449
0
        return gs_throw_code(gs_error_rangecheck);
1450
526
    if_debug1m('_', xps->memory, "xps_setlinejoin(%s)\n", linejoin_names[join]);
1451
1452
526
    xps->linejoin = join;
1453
1454
526
    return 0;
1455
526
}
1456
static int
1457
xps_setmiterlimit(gx_device_vector *vdev, double limit)
1458
360
{
1459
360
    if_debug1m('_', vdev->memory, "xps_setmiterlimit(%lf)\n", limit);
1460
360
    return 0;
1461
360
}
1462
static int
1463
xps_setdash(gx_device_vector *vdev, const float *pattern,
1464
            uint count, double offset)
1465
832
{
1466
832
    gx_device_xps *xps = (gx_device_xps *)vdev;
1467
832
    if_debug2m('_', vdev->memory, "xps_setdash count:%d offset:%g\n", count, offset);
1468
832
    xps->can_stroke = (count == 0);
1469
832
    return 0;
1470
832
}
1471
static int
1472
xps_setlogop(gx_device_vector *vdev, gs_logical_operation_t lop,
1473
             gs_logical_operation_t diff)
1474
77.7k
{
1475
77.7k
    if_debug2m('_', vdev->memory, "xps_setlogop(%u,%u) set logical operation\n",
1476
77.7k
        lop, diff);
1477
    /* XPS can fake some simpler modes, but we ignore this for now. */
1478
77.7k
    return 0;
1479
77.7k
}
1480
1481
        /* Other state */
1482
1483
static bool
1484
xps_can_handle_hl_color(gx_device_vector *vdev, const gs_gstate *pgs,
1485
                          const gx_drawing_color *pdc)
1486
64.1M
{
1487
64.1M
    if_debug0m('_', vdev->memory, "xps_can_handle_hl_color\n");
1488
64.1M
    return false;
1489
64.1M
}
1490
1491
/* Paths */
1492
static bool
1493
image_brush_fill(gx_path_type_t path_type, xps_brush_t brush_type)
1494
74.7M
{
1495
74.7M
    return brush_type == xps_imagebrush;
1496
74.7M
}
1497
1498
static bool
1499
drawing_path(gx_path_type_t path_type, xps_brush_t brush_type)
1500
75.8M
{
1501
75.8M
    return ((path_type & gx_path_type_stroke) || (path_type & gx_path_type_fill) ||
1502
5.15M
        (path_type & gx_path_type_clip) || image_brush_fill(path_type, brush_type));
1503
75.8M
}
1504
1505
static void
1506
xps_finish_image_path(gx_device_vector *vdev)
1507
5.15k
{
1508
5.15k
    gx_device_xps *xps = (gx_device_xps *)vdev;
1509
5.15k
    char line[300];
1510
5.15k
    const char *fmt;
1511
5.15k
    gs_matrix matrix;
1512
1513
    /* If an error occurs during an image, we can get here after the enumerator
1514
     * has been freed - if that's the case, just bail out immediately
1515
     */
1516
5.15k
    if (xps->xps_pie == NULL)
1517
0
        return;
1518
    /* Path is started.  Do the image brush image brush and close the path */
1519
5.15k
    write_str_to_current_page(xps, "\t<Path.Fill>\n");
1520
5.15k
    write_str_to_current_page(xps, "\t\t<ImageBrush ");
1521
5.15k
    fmt = "ImageSource = \"{ColorConvertedBitmap /%s /%s}\" Viewbox=\"%d, %d, %d, %d\" ViewboxUnits = \"Absolute\" Viewport = \"%d, %d, %d, %d\" ViewportUnits = \"Absolute\" TileMode = \"None\" >\n";
1522
5.15k
    gs_snprintf(line, sizeof(line), fmt, xps->xps_pie->file_name, xps->xps_pie->icc_name,
1523
5.15k
        0, 0, xps->xps_pie->width, xps->xps_pie->height, 0, 0,
1524
5.15k
        xps->xps_pie->width, xps->xps_pie->height);
1525
5.15k
    write_str_to_current_page(xps, line);
1526
1527
    /* Now the render transform.  This is applied to the image brush. Path
1528
    is already transformed */
1529
5.15k
    write_str_to_current_page(xps, "\t\t\t<ImageBrush.Transform>\n");
1530
5.15k
    fmt = "\t\t\t\t<MatrixTransform Matrix = \"%g,%g,%g,%g,%g,%g\" />\n";
1531
5.15k
    matrix = xps->xps_pie->mat;
1532
5.15k
    gs_snprintf(line, sizeof(line), fmt,
1533
5.15k
        matrix.xx, matrix.xy, matrix.yx, matrix.yy, matrix.tx, matrix.ty);
1534
5.15k
    write_str_to_current_page(xps, line);
1535
5.15k
    write_str_to_current_page(xps, "\t\t\t</ImageBrush.Transform>\n");
1536
5.15k
    write_str_to_current_page(xps, "\t\t</ImageBrush>\n");
1537
5.15k
    write_str_to_current_page(xps, "\t</Path.Fill>\n");
1538
    /* End this path */
1539
5.15k
    write_str_to_current_page(xps, "</Path>\n");
1540
5.15k
}
1541
1542
static int
1543
xps_dorect(gx_device_vector *vdev, fixed x0, fixed y0,
1544
           fixed x1, fixed y1, gx_path_type_t type)
1545
64.0M
{
1546
64.0M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1547
64.0M
    char line[300];
1548
64.0M
    const char *fmt;
1549
64.0M
    uint32_t c;
1550
1551
64.0M
    (void)gdev_vector_stream((gx_device_vector*)xps);
1552
1553
64.0M
    if_debug9m('_', xps->memory,
1554
64.0M
               "rect type=%d coords=%g,%g %g,%g %g,%g %g,%g\n", type,
1555
64.0M
                fixed2float(x0), fixed2float(y0),
1556
64.0M
                fixed2float(x0), fixed2float(y1),
1557
64.0M
                fixed2float(x1), fixed2float(y1),
1558
64.0M
                fixed2float(x1), fixed2float(y0));
1559
1560
1561
    /* skip non-drawing paths for now */
1562
64.0M
    if (!drawing_path(type, xps->filltype)) {
1563
0
        if_debug1m('_', xps->memory, "xps_dorect: type not supported %x\n", type);
1564
0
        return 0;
1565
0
    }
1566
1567
    /* CLIP - we only write clips as an attribute of a path */
1568
64.0M
    if (type & gx_path_type_clip && !image_brush_fill(type, xps->filltype)) {
1569
772k
        if (xps->in_path == false)
1570
0
            return 0;
1571
772k
        fmt = "Clip=\"M %g,%g V %g H %g V %g Z\" ";
1572
772k
        gs_snprintf(line, sizeof(line), fmt,
1573
772k
                   fixed2float(x0), fixed2float(y0),
1574
772k
                   fixed2float(y1), fixed2float(x1),
1575
772k
                   fixed2float(y0));
1576
772k
        write_str_to_current_page(xps, line);
1577
772k
        xps->clip_written = true;
1578
772k
        return 0;
1579
772k
    }
1580
1581
63.2M
    if (xps->in_path && image_brush_fill(type, xps->filltype)) {
1582
0
        write_str_to_current_page(xps, "/>\n");
1583
0
        xps->in_path = false;
1584
0
        xps->in_clip = false;
1585
0
        xps->clip_written = false;
1586
0
    }
1587
1588
63.2M
    if (xps->in_path && xps->rect_written) {
1589
907
        write_str_to_current_page(xps, "/>\n");
1590
907
        xps->in_path = false;
1591
907
        xps->in_clip = false;
1592
907
        xps->clip_written = false;
1593
907
        xps->rect_written = false;
1594
907
    }
1595
1596
63.2M
    if ((type & gx_path_type_stroke) && !xps->can_stroke) {
1597
74
        return_error(gs_error_rangecheck);
1598
74
    }
1599
1600
63.2M
    if (image_brush_fill(type, xps->filltype)) {
1601
        /* Do the path data  */
1602
622
        fmt = "<Path Data=\"M %g, %g L %g, %g %g, %g %g, %g Z\" >\n";
1603
622
        gs_snprintf(line, sizeof(line), fmt,
1604
622
            fixed2float(x0), fixed2float(y0),
1605
622
            fixed2float(x0), fixed2float(y1),
1606
622
            fixed2float(x1), fixed2float(y1),
1607
622
            fixed2float(x1), fixed2float(y0));
1608
622
        write_str_to_current_page(xps, line);
1609
        /* And now the rest of the details */
1610
622
        xps_finish_image_path(vdev);
1611
63.2M
    } else if (type & gx_path_type_fill) {
1612
        /* Solid fill */
1613
63.2M
        if (!xps->in_path)
1614
63.0M
            write_str_to_current_page(xps, "<Path ");
1615
        /* NB - F0 should be changed for a different winding type */
1616
63.2M
        fmt = "Fill=\"#%06X\" Data=\"M %g,%g V %g H %g V %g Z\" ";
1617
63.2M
        c = xps->fillcolor & 0xffffffL;
1618
63.2M
        gs_snprintf(line, sizeof(line), fmt, c,
1619
63.2M
                   fixed2float(x0), fixed2float(y0),
1620
63.2M
                   fixed2float(y1), fixed2float(x1),
1621
63.2M
                   fixed2float(y0));
1622
63.2M
        write_str_to_current_page(xps, line);
1623
63.2M
        if (!xps->in_path)
1624
63.0M
            write_str_to_current_page(xps, "/>\n");
1625
194k
        else
1626
194k
            xps->rect_written = true;
1627
63.2M
    } else {
1628
        /* Solid stroke */
1629
43.1k
        if (!xps->in_path)
1630
0
            write_str_to_current_page(xps, "<Path ");
1631
43.1k
        fmt = "Stroke=\"#%06X\" Data=\"M %g,%g V %g H %g V %g Z\" ";
1632
43.1k
        c = xps->strokecolor & 0xffffffL;
1633
43.1k
        gs_snprintf(line, sizeof(line), fmt, c,
1634
43.1k
                   fixed2float(x0), fixed2float(y0),
1635
43.1k
                   fixed2float(y1), fixed2float(x1),
1636
43.1k
                   fixed2float(y0));
1637
43.1k
        write_str_to_current_page(xps, line);
1638
1639
43.1k
        if (type & gx_path_type_stroke) {
1640
            /* NB format width. */
1641
43.1k
            fmt = "StrokeThickness=\"%g\" ";
1642
43.1k
            gs_snprintf(line, sizeof(line), fmt, xps->linewidth);
1643
43.1k
            write_str_to_current_page(xps, line);
1644
43.1k
        }
1645
43.1k
        if (!xps->in_path)
1646
0
            write_str_to_current_page(xps, "/>\n");
1647
43.1k
        else
1648
43.1k
            xps->rect_written = true;
1649
43.1k
    }
1650
    /* end and close NB \n not necessary. */
1651
63.2M
    return 0;
1652
63.2M
}
1653
1654
static int
1655
gdev_xps_fill_path(gx_device * dev, const gs_gstate * pgs, gx_path * ppath,
1656
                   const gx_fill_params * params,
1657
                   const gx_drawing_color * pdcolor, const gx_clip_path * pcpath)
1658
1.11M
{
1659
1.11M
    gx_device_xps *xps = (gx_device_xps *)dev;
1660
1.11M
    int code = 0;
1661
1662
1.11M
    if (gx_path_is_void(ppath)) {
1663
53.6k
        return 0;
1664
53.6k
    }
1665
1666
1.06M
    (void)gdev_vector_stream((gx_device_vector*)xps);
1667
1668
1.06M
    if (xps->in_path) {
1669
19.2k
        write_str_to_current_page(xps, "/>\n");
1670
19.2k
        xps->in_clip = false;
1671
19.2k
    }
1672
1673
1.06M
    xps->clip_path_id = xps->no_clip_path_id;
1674
1.06M
    write_str_to_current_page(xps, "<Path ");
1675
1.06M
    xps->in_path = true;
1676
1.06M
    code = gdev_vector_fill_path(dev, pgs, ppath, params, pdcolor, pcpath);
1677
1.06M
    if (xps->in_path) {
1678
1.06M
        write_str_to_current_page(xps, "/>\n");
1679
1.06M
        xps->in_path = false;
1680
1.06M
    }
1681
1.06M
    xps->clip_written = false;
1682
1.06M
    xps->rect_written = false;
1683
1.06M
    return code;
1684
1.11M
}
1685
1686
static int
1687
gdev_xps_stroke_path(gx_device * dev, const gs_gstate * pgs, gx_path * ppath,
1688
                     const gx_stroke_params * params,
1689
                     const gx_drawing_color * pdcolor, const gx_clip_path * pcpath)
1690
173k
{
1691
173k
    gx_device_xps *xps = (gx_device_xps *)dev;
1692
173k
    int code = 0;
1693
1694
173k
    if (gx_path_is_void(ppath)) {
1695
16.3k
        return 0;
1696
16.3k
    }
1697
1698
156k
    (void)gdev_vector_stream((gx_device_vector*)xps);
1699
1700
156k
    if (xps->in_path) {
1701
0
        write_str_to_current_page(xps, "/>\n");
1702
0
        xps->in_clip = false;
1703
0
    }
1704
1705
156k
    xps->clip_path_id = xps->no_clip_path_id;
1706
156k
    write_str_to_current_page(xps, "<Path ");
1707
156k
    xps->in_path = true;
1708
156k
    code = gdev_vector_stroke_path(dev, pgs, ppath, params, pdcolor, pcpath);
1709
156k
    if (xps->in_path) {
1710
137k
        write_str_to_current_page(xps, "/>\n");
1711
137k
        xps->in_path = false;
1712
1713
137k
    }
1714
156k
    xps->clip_written = false;
1715
156k
    xps->rect_written = false;
1716
156k
    return code;
1717
173k
}
1718
1719
static int
1720
xps_beginpath(gx_device_vector *vdev, gx_path_type_t type)
1721
1.42M
{
1722
1.42M
    char line[300];
1723
1.42M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1724
1.42M
    uint32_t c;
1725
1.42M
    const char *fmt;
1726
1727
1.42M
    (void)gdev_vector_stream((gx_device_vector*)xps);
1728
1729
    /* skip non-drawing paths for now */
1730
1.42M
    if (!drawing_path(type, xps->filltype)) {
1731
0
        if_debug1m('_', xps->memory, "xps_beginpath: type not supported %x\n", type);
1732
0
        return 0;
1733
0
    }
1734
1735
1.42M
    if ((type & gx_path_type_stroke) && !xps->can_stroke) {
1736
1.19k
        return_error(gs_error_rangecheck);
1737
1.19k
    }
1738
1739
1.42M
    c = type & gx_path_type_fill ? xps->fillcolor : xps->strokecolor;
1740
1.42M
    c &= 0xffffffL;
1741
1742
    /* NOTE the XPS code (ab)uses the clip to write the rectangle for the image!
1743
    */
1744
1.42M
    if (type & gx_path_type_clip && !image_brush_fill(type, xps->filltype)) {
1745
485k
        if (xps->in_path == true && xps->clip_written == false) {
1746
436k
            write_str_to_current_page(xps, " Clip=\"");
1747
436k
            xps->in_clip = true;
1748
436k
        }
1749
485k
        goto exit;
1750
485k
    }
1751
1752
934k
    if (!image_brush_fill(type, xps->filltype)) {
1753
929k
        if (type & gx_path_type_fill) {
1754
866k
            if (type == gx_path_type_fill)
1755
865k
                fmt = "Fill=\"#%06X\" Data=\"F 1";
1756
1.16k
            else
1757
1.16k
                fmt = "Fill=\"#%06X\" Data=\"";
1758
866k
        }
1759
63.3k
        else {
1760
63.3k
            fmt = "Stroke=\"#%06X\" Data=\"";
1761
63.3k
        }
1762
929k
        gs_snprintf(line, sizeof(line), fmt, c);
1763
929k
        write_str_to_current_page(xps, line);
1764
929k
    }
1765
4.53k
    else {
1766
4.53k
        if ( image_brush_fill(type, xps->filltype))
1767
4.53k
            write_str_to_current_page(xps, "<Path Data=\"");
1768
0
        else
1769
0
            write_str_to_current_page(xps, " Data=\"");
1770
4.53k
    }
1771
1772
1.42M
exit:
1773
1.42M
    if_debug1m('_', xps->memory, "xps_beginpath %s\n", line);
1774
1775
1.42M
    return 0;
1776
934k
}
1777
1778
static int
1779
xps_moveto(gx_device_vector *vdev, double x0, double y0,
1780
           double x, double y, gx_path_type_t type)
1781
1.99M
{
1782
1.99M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1783
1.99M
    char line[300];
1784
1785
1.99M
    if_debug2m('_', xps->memory, "xps_moveto %g %g\n", x, y);
1786
1787
    /* skip non-drawing paths for now */
1788
1.99M
    if (!drawing_path(type, xps->filltype)) {
1789
959k
        if (type == gx_path_type_none) {
1790
959k
            if (xps->in_path == false) {
1791
36.8k
                if_debug1m('_', xps->memory, "xps_moveto: type not supported %x\n", type);
1792
36.8k
                return 0;
1793
36.8k
            }
1794
959k
        }
1795
959k
    }
1796
1797
1.96M
    if ((type & gx_path_type_clip || type == gx_path_type_none) && !image_brush_fill(type, xps->filltype)) {
1798
929k
        if (xps->in_path == false || xps->clip_written)
1799
14.4k
            return 0;
1800
929k
    }
1801
1.94M
    gs_snprintf(line, sizeof(line), " M %g,%g", x, y);
1802
1.94M
    write_str_to_current_page(xps, line);
1803
1.94M
    if_debug1m('_', xps->memory, "xps_moveto %s", line);
1804
1.94M
    return 0;
1805
1.96M
}
1806
1807
static int
1808
xps_lineto(gx_device_vector *vdev, double x0, double y0,
1809
           double x, double y, gx_path_type_t type)
1810
6.81M
{
1811
6.81M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1812
6.81M
    char line[200];
1813
1814
6.81M
    if_debug2m('_', xps->memory, "xps_lineto %g %g\n", x, y);
1815
1816
    /* skip non-drawing paths for now */
1817
6.81M
    if (!drawing_path(type, xps->filltype)) {
1818
2.87M
        if (type == gx_path_type_none) {
1819
2.87M
            if (xps->in_path == false) {
1820
110k
                if_debug1m('_', xps->memory, "xps_lineto: type not supported %x\n", type);
1821
110k
                return 0;
1822
110k
            }
1823
2.87M
        }
1824
2.87M
    }
1825
1826
6.70M
    if ((type & gx_path_type_clip || type == gx_path_type_none) && !image_brush_fill(type, xps->filltype)) {
1827
2.79M
        if (xps->in_path == false || xps->clip_written)
1828
43.2k
            return 0;
1829
2.79M
    }
1830
1831
6.66M
    gs_snprintf(line, sizeof(line), " L %g,%g", x, y);
1832
6.66M
    write_str_to_current_page(xps, line);
1833
6.66M
    if_debug1m('_', xps->memory, "xps_lineto %s\n", line);
1834
6.66M
    return 0;
1835
6.70M
}
1836
1837
static int
1838
xps_curveto(gx_device_vector *vdev, double x0, double y0,
1839
            double x1, double y1, double x2, double y2,
1840
            double x3, double y3, gx_path_type_t type)
1841
1.58M
{
1842
1.58M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1843
1.58M
    char line[200];
1844
1845
    /* skip non-drawing paths for now */
1846
1.58M
    if (!drawing_path(type, xps->filltype)) {
1847
0
        if (type == gx_path_type_none) {
1848
0
            if (xps->in_path == false) {
1849
0
                if_debug1m('_', xps->memory, "xps_curveto: type not supported %x\n", type);
1850
0
                return 0;
1851
0
            }
1852
0
        }
1853
0
    }
1854
1855
1.58M
    if ((type & gx_path_type_clip || type == gx_path_type_none) && !image_brush_fill(type, xps->filltype)) {
1856
1.14k
        if (xps->in_path == false || xps->clip_written)
1857
0
            return 0;
1858
1.14k
    }
1859
1860
1.58M
    gs_snprintf(line, sizeof(line), " C %g,%g %g,%g %g,%g", x1, y1,
1861
1.58M
            x2,y2,x3,y3);
1862
1.58M
    write_str_to_current_page(xps,line);
1863
1.58M
    if_debug1m('_', xps->memory, "xps_curveto %s\n", line);
1864
1865
1.58M
    return 0;
1866
1.58M
}
1867
1868
static int
1869
xps_closepath(gx_device_vector *vdev, double x, double y,
1870
              double x_start, double y_start, gx_path_type_t type)
1871
48.1k
{
1872
48.1k
    gx_device_xps *xps = (gx_device_xps *)vdev;
1873
1874
    /* skip non-drawing paths for now */
1875
48.1k
    if (!drawing_path(type, xps->filltype)) {
1876
0
        if (type == gx_path_type_none) {
1877
0
            if (xps->in_path == false) {
1878
0
                if_debug1m('_', xps->memory, "xps_closepath: type not supported %x\n", type);
1879
0
                return 0;
1880
0
            }
1881
0
        }
1882
0
    }
1883
1884
48.1k
    if ((type & gx_path_type_clip || type == gx_path_type_none) && !image_brush_fill(type, xps->filltype)) {
1885
253
        if (xps->in_path == false || xps->clip_written)
1886
0
            return 0;
1887
253
    }
1888
1889
48.1k
    write_str_to_current_page(xps, " Z");
1890
48.1k
    if_debug0m('_', xps->memory, "xps_closepath");
1891
1892
48.1k
    return 0;
1893
48.1k
}
1894
1895
static int
1896
xps_endpath(gx_device_vector *vdev, gx_path_type_t type)
1897
1.42M
{
1898
1.42M
    gx_device_xps *xps = (gx_device_xps *)vdev;
1899
1.42M
    char line[200];
1900
1.42M
    const char *fmt;
1901
1902
1.42M
    if (xps->in_clip) {
1903
436k
        xps->in_clip = false;
1904
436k
        xps->clip_written = true;
1905
436k
        if (type & gx_path_type_clip) {
1906
436k
            if (xps->in_path == false)
1907
0
                return 0;
1908
436k
        }
1909
983k
    } else {
1910
983k
        if (type & gx_path_type_clip && !image_brush_fill(type, xps->filltype)) {
1911
49.2k
            if (xps->in_path == false || xps->clip_written)
1912
49.2k
                return 0;
1913
49.2k
        }
1914
983k
    }
1915
1916
1.37M
    if (image_brush_fill(type, xps->filltype)) {
1917
4.53k
        write_str_to_current_page(xps, "\" >\n");
1918
        /* And now the rest of the details */
1919
4.53k
        xps_finish_image_path(vdev);
1920
1.36M
    } else if (type & gx_path_type_stroke) {
1921
        /* NB format width. */
1922
63.3k
        fmt = "\" StrokeThickness=\"%g\" ";
1923
63.3k
        gs_snprintf(line, sizeof(line), fmt, xps->linewidth);
1924
63.3k
        write_str_to_current_page(xps, line);
1925
63.3k
        switch(xps->linecap) {
1926
30.9k
            case gs_cap_round:
1927
30.9k
                gs_snprintf(line, sizeof(line), "StrokeStartLineCap=\"Round\" StrokeEndLineCap=\"Round\" ");
1928
30.9k
                write_str_to_current_page(xps, line);
1929
30.9k
                break;
1930
815
            case gs_cap_square:
1931
815
                gs_snprintf(line, sizeof(line), "StrokeStartLineCap=\"Square\" StrokeEndLineCap=\"Square\" ");
1932
815
                write_str_to_current_page(xps, line);
1933
815
                break;
1934
0
            case gs_cap_triangle:
1935
0
                gs_snprintf(line, sizeof(line), "StrokeStartLineCap=\"Triangle\" StrokeEndLineCap=\"Triangle\" ");
1936
0
                write_str_to_current_page(xps, line);
1937
0
                break;
1938
31.5k
            case gs_cap_butt:
1939
31.5k
            case gs_cap_unknown:
1940
31.5k
            default:
1941
31.5k
                break;
1942
63.3k
        }
1943
63.3k
        switch(xps->linejoin) {
1944
27.9k
            case gs_join_round:
1945
27.9k
                gs_snprintf(line, sizeof(line), "StrokeLineJoin=\"Round\" ");
1946
27.9k
                write_str_to_current_page(xps, line);
1947
27.9k
                break;
1948
35.3k
            case gs_join_miter:
1949
35.3k
                gs_snprintf(line, sizeof(line), "StrokeLineJoin=\"Miter\" ");
1950
35.3k
                write_str_to_current_page(xps, line);
1951
35.3k
                gs_snprintf(line, sizeof(line), "StrokeMiterLimit=\"%g\" ", xps->miterlimit);
1952
35.3k
                write_str_to_current_page(xps, line);
1953
35.3k
                break;
1954
79
            case gs_join_bevel:
1955
79
                gs_snprintf(line, sizeof(line), "StrokeLineJoin=\"Bevel\" ");
1956
79
                write_str_to_current_page(xps, line);
1957
79
                break;
1958
46
            case gs_join_none:
1959
46
            case gs_join_triangle:
1960
46
            case gs_join_unknown:
1961
46
            default:
1962
46
                break;
1963
63.3k
        }
1964
1.30M
    } else { /* fill */
1965
        /* close the path data attribute */
1966
1.30M
        write_str_to_current_page(xps, " Z\" ");
1967
1.30M
    }
1968
1969
1.37M
    return 0;
1970
1.37M
}
1971
1972
/* Image handling */
1973
static image_enum_proc_plane_data(xps_image_data);
1974
static image_enum_proc_end_image(xps_image_end_image);
1975
static const gx_image_enum_procs_t xps_image_enum_procs = {
1976
    xps_image_data, xps_image_end_image
1977
};
1978
1979
/* High level image support */
1980
/* Prototypes */
1981
static TIFF* tiff_from_name(gx_device_xps *dev, const char *name, int big_endian,
1982
    bool usebigtiff);
1983
static int tiff_set_values(xps_image_enum_t *pie, TIFF *tif,
1984
                            cmm_profile_t *profile, bool force8bit);
1985
static void xps_tiff_set_handlers(void);
1986
static void xps_tiff_cleanup(xps_image_enum_t *xpie);
1987
1988
/* Check if we have the ICC profile in the package */
1989
static xps_icc_data_t*
1990
xps_find_icc(const gx_device_xps *xdev, cmm_profile_t *icc_profile)
1991
10.3k
{
1992
10.3k
    xps_icc_data_t *icc_data = xdev->icc_data;
1993
1994
10.4k
    while (icc_data != NULL) {
1995
7.35k
        if (icc_data->hash == gsicc_get_hash(icc_profile)) {
1996
7.19k
            return icc_data;
1997
7.19k
        }
1998
157
        icc_data = icc_data->next;
1999
157
    }
2000
3.11k
    return NULL;
2001
10.3k
}
2002
2003
static int
2004
xps_create_icc_name(const gx_device_xps *xps_dev, cmm_profile_t *profile, char *name)
2005
5.15k
{
2006
5.15k
    xps_icc_data_t *icc_data;
2007
2008
5.15k
    icc_data = xps_find_icc(xps_dev, profile);
2009
5.15k
    if (icc_data == NULL)
2010
0
        return gs_throw_code(gs_error_rangecheck);  /* Should be there */
2011
2012
5.15k
    snprintf(name, MAXNAME, "%sProfile_%d.icc", PROFILEPATH, icc_data->index);
2013
5.15k
    return 0;
2014
5.15k
}
2015
2016
static void
2017
xps_create_image_name(gx_device *dev, char *name)
2018
5.15k
{
2019
5.15k
    gx_device_xps *const xdev = (gx_device_xps *)dev;
2020
2021
5.15k
    snprintf(name, MAXNAME, "%s%d.tif", IMAGEPATH, xdev->image_count);
2022
5.15k
    xdev->image_count++;
2023
5.15k
}
2024
2025
static int
2026
xps_add_icc_relationship(xps_image_enum_t *pie)
2027
5.15k
{
2028
5.15k
    gx_device_xps *xps = (gx_device_xps*) (pie->dev);
2029
5.15k
    int code;
2030
2031
5.15k
    code = add_new_relationship(xps, pie->icc_name);
2032
5.15k
    if (code < 0)
2033
0
        return gs_rethrow_code(code);
2034
2035
5.15k
    return 0;
2036
5.15k
}
2037
2038
static int
2039
xps_add_image_relationship(xps_image_enum_t *pie)
2040
5.15k
{
2041
5.15k
    gx_device_xps *xps = (gx_device_xps*) (pie->dev);
2042
5.15k
    int code;
2043
2044
5.15k
    code = add_new_relationship(xps, pie->file_name);
2045
5.15k
    if (code < 0)
2046
0
        return gs_rethrow_code(code);
2047
5.15k
    return 0;
2048
5.15k
}
2049
2050
static int
2051
xps_write_profile(const gs_gstate *pgs, char *name, cmm_profile_t *profile, gx_device_xps *xps_dev)
2052
3.11k
{
2053
3.11k
    byte *profile_buffer;
2054
3.11k
    int size;
2055
2056
    /* Need V2 ICC Profile */
2057
3.11k
    profile_buffer = gsicc_create_getv2buffer(pgs, profile, &size);
2058
2059
    /* Now go ahead and add to the zip archive */
2060
3.11k
    return add_data_to_zip_file(xps_dev, name, profile_buffer, size);
2061
3.11k
}
2062
2063
static int
2064
xps_begin_typed_image(gx_device               *dev,
2065
                const gs_gstate               *pgs,
2066
                const gs_matrix               *pmat,
2067
                const gs_image_common_t       *pic,
2068
                const gs_int_rect             *prect,
2069
                const gx_drawing_color        *pdcolor,
2070
                const gx_clip_path            *pcpath,
2071
                      gs_memory_t             *mem,
2072
                      gx_image_enum_common_t **pinfo)
2073
70.1k
{
2074
70.1k
    gx_device_vector *vdev = (gx_device_vector *)dev;
2075
70.1k
    gx_device_xps *xdev = (gx_device_xps *)dev;
2076
70.1k
    const gs_image_t *pim = (const gs_image_t *)pic;
2077
70.1k
    gs_color_space *pcs;
2078
70.1k
    xps_image_enum_t *pie = NULL;
2079
70.1k
    xps_icc_data_t *icc_data;
2080
70.1k
    gs_matrix mat;
2081
70.1k
    int code;
2082
70.1k
    gx_clip_path cpath;
2083
70.1k
    gs_fixed_rect bbox;
2084
70.1k
    int bits_per_pixel;
2085
70.1k
    int num_components;
2086
70.1k
    size_t bsize;
2087
70.1k
    cmm_profile_t *icc_profile = NULL;
2088
70.1k
    gs_color_space_index csindex;
2089
70.1k
    float index_decode[2];
2090
70.1k
    gsicc_rendering_param_t rendering_params;
2091
70.1k
    bool force8bit = false;
2092
2093
70.1k
    if (pic->type->index != 1)
2094
73
        goto use_default;
2095
2096
70.0k
    pcs = pim->ColorSpace;
2097
    /* No image mask yet.  Also, need a color space */
2098
70.0k
    if (pcs == NULL || ((const gs_image1_t *)pim)->ImageMask)
2099
64.8k
        goto use_default;
2100
2101
    /* No indexed images that are not 8 bit. */
2102
5.24k
    csindex = gs_color_space_get_index(pcs);
2103
5.24k
    if (csindex == gs_color_space_index_Indexed && pim->BitsPerComponent != 8)
2104
83
        goto use_default;
2105
2106
    /* Also need  gs_gstate for these color spaces */
2107
5.16k
    if (pgs == NULL && (csindex == gs_color_space_index_Indexed ||
2108
0
        csindex == gs_color_space_index_Separation ||
2109
0
        csindex == gs_color_space_index_DeviceN))
2110
0
        goto use_default;
2111
2112
5.16k
    if (gs_matrix_invert(&pim->ImageMatrix, &mat) < 0)
2113
4
        goto use_default;
2114
5.15k
    if (pmat == NULL)
2115
5.15k
        pmat = &ctm_only(pgs);
2116
5.15k
    if (pgs)
2117
5.15k
        gs_matrix_multiply(&mat, pmat, &mat);
2118
2119
5.15k
    pie = gs_alloc_struct(mem, xps_image_enum_t, &st_xps_image_enum,
2120
5.15k
                          "xps_begin_image");
2121
5.15k
    if (pie == 0)
2122
0
        return_error(gs_error_VMerror);
2123
5.15k
    pie->buffer = NULL;
2124
5.15k
    pie->devc_buffer = NULL;
2125
5.15k
    pie->pgs = NULL;
2126
5.15k
    pie->tif = NULL;
2127
2128
    /* Set the brush types to image */
2129
5.15k
    xps_setstrokebrush(xdev, xps_imagebrush);
2130
5.15k
    xps_setfillbrush(xdev, xps_imagebrush);
2131
5.15k
    pie->mat = mat;
2132
5.15k
    xdev->xps_pie = pie;
2133
    /* We need this set a bit early for the ICC relationship writing */
2134
5.15k
    pie->dev = (gx_device*) xdev;
2135
2136
    /* If the color space is DeviceN, Sep or indexed these end up getting
2137
       mapped to the color space defined by the device profile.  XPS only
2138
       support RGB indexed images so we just expand if for now. ICC link
2139
       creation etc is handled during the remap/concretization of the colors */
2140
5.15k
    if (csindex == gs_color_space_index_Indexed ||
2141
4.72k
        csindex == gs_color_space_index_Separation ||
2142
4.72k
        csindex == gs_color_space_index_DeviceN) {
2143
446
        cmm_dev_profile_t *dev_profile;
2144
446
        pie->pcs = pcs;
2145
446
        rc_increment(pcs);
2146
446
        code = dev_proc(dev, get_profile)(dev, &(dev_profile));
2147
        /* Just use the "default" profile for now */
2148
446
        icc_profile = dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE];
2149
446
        force8bit = true; /* Output image is 8 bit regardless of source */
2150
4.71k
    } else {
2151
        /* An ICC, RGB, CMYK, Gray color space */
2152
4.71k
        pie->pcs = NULL;
2153
        /* Get the ICC profile */
2154
4.71k
        if (gs_color_space_is_PSCIE(pcs)) {
2155
0
            if (pcs->icc_equivalent == NULL) {
2156
0
                bool is_lab;
2157
0
                if (pgs == NULL) {
2158
0
                    gs_free_object(mem, *pinfo, "xps_begin_image");
2159
0
                    return_error(gs_error_invalidaccess);
2160
0
                }
2161
0
                gs_colorspace_set_icc_equivalent(pcs, &is_lab, pgs->memory);
2162
0
            }
2163
0
            icc_profile = pcs->icc_equivalent->cmm_icc_profile_data;
2164
4.71k
        } else {
2165
4.71k
            icc_profile = pcs->cmm_icc_profile_data;
2166
4.71k
        }
2167
4.71k
    }
2168
2169
    /* Set up for handling case where we are in CIELAB. In this case, we are
2170
       going out to the default RGB color space */
2171
5.15k
    if (icc_profile->islab) {
2172
        /* Create the link */
2173
0
        rendering_params.black_point_comp = gsBLACKPTCOMP_ON;
2174
0
        rendering_params.graphics_type_tag = GS_IMAGE_TAG;
2175
0
        rendering_params.override_icc = false;
2176
0
        rendering_params.preserve_black = gsBKPRESNOTSPECIFIED;
2177
0
        rendering_params.rendering_intent = gsPERCEPTUAL;
2178
0
        rendering_params.cmm = gsCMM_DEFAULT;
2179
0
        if (pgs == NULL) {
2180
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2181
0
            return_error(gs_error_invalidaccess);
2182
0
        }
2183
0
        pie->icc_link = gsicc_get_link_profile(pgs, dev, icc_profile,
2184
0
            pgs->icc_manager->default_rgb, &rendering_params, pgs->memory, false);
2185
0
        icc_profile = pgs->icc_manager->default_rgb;
2186
5.15k
    } else {
2187
5.15k
        pie->icc_link = NULL;
2188
5.15k
    }
2189
2190
    /* Now we actually write out the image and icc profile data to the zip
2191
      package. Test if profile is already here. If not, add it. */
2192
5.15k
    if (xps_find_icc(xdev, icc_profile) == NULL) {
2193
3.11k
        icc_data = (xps_icc_data_t*)gs_alloc_bytes(dev->memory->non_gc_memory,
2194
3.11k
            sizeof(xps_icc_data_t), "xps_begin_image");
2195
3.11k
        if (icc_data == NULL) {
2196
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2197
0
            gs_throw(gs_error_VMerror, "Allocation of icc_data failed");
2198
0
            return_error(gs_error_VMerror);
2199
0
        }
2200
2201
3.11k
        icc_data->hash = gsicc_get_hash(icc_profile);
2202
3.11k
        if (xdev->icc_data == NULL) {
2203
2.99k
            icc_data->index = 0;
2204
2.99k
            xdev->icc_data = icc_data;
2205
2.99k
            xdev->icc_data->next = NULL;
2206
2.99k
        } else {
2207
122
            icc_data->next = xdev->icc_data;
2208
122
            icc_data->index = icc_data->next->index + 1;
2209
122
            xdev->icc_data = icc_data;
2210
122
        }
2211
2212
        /* Get name for mark up and for relationship. Have to wait and do
2213
           this after it is added to the package */
2214
3.11k
        code = xps_create_icc_name(xdev, icc_profile, &(pie->icc_name[0]));
2215
3.11k
        if (code < 0) {
2216
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2217
0
            return_error(gs_rethrow_code(code));
2218
0
        }
2219
2220
        /* Add profile to the package. Here like images we are going to write
2221
           the data now.  Rather than later. */
2222
3.11k
        if (pgs == NULL) {
2223
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2224
0
            return_error(gs_error_invalidaccess);
2225
0
        }
2226
3.11k
        code = xps_write_profile(pgs, &(pie->icc_name[0]), icc_profile, xdev);
2227
3.11k
        if (code < 0) {
2228
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2229
0
            return_error(gs_rethrow_code(code));
2230
0
        }
2231
2232
        /* Add ICC relationship */
2233
3.11k
        xps_add_icc_relationship(pie);
2234
3.11k
    } else {
2235
        /* Get name for mark up.  We already have it in the resource list */
2236
2.03k
        code = xps_create_icc_name(xdev, icc_profile, &(pie->icc_name[0]));
2237
2.03k
        if (code < 0) {
2238
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2239
0
            return_error(gs_rethrow_code(code));
2240
0
        }
2241
2242
        /* Add ICC relationship.  It may not yet be present for this page. */
2243
2.03k
        xps_add_icc_relationship(pie);
2244
2.03k
    }
2245
2246
    /* Get image name for mark up */
2247
5.15k
    xps_create_image_name(dev, &(pie->file_name[0]));
2248
    /* Set width and height here */
2249
5.15k
    pie->width = pim->Width;
2250
5.15k
    pie->height = pim->Height;
2251
2252
5.15k
    if (pcpath == NULL) {
2253
1.73k
        (*dev_proc(dev, get_clipping_box)) (dev, &bbox);
2254
1.73k
        gx_cpath_init_local(&cpath, dev->memory);
2255
1.73k
        code = gx_cpath_from_rectangle(&cpath, &bbox);
2256
1.73k
        if (code < 0) {
2257
0
            gs_free_object(mem, *pinfo, "xps_begin_image");
2258
0
            return_error(gs_rethrow_code(code));
2259
0
        }
2260
1.73k
        pcpath = &cpath;
2261
3.41k
    } else {
2262
        /* Force vector device to do new path as the clip path is the image
2263
           path.  I had a case where the clip path ids were the same but the
2264
           CTM was changing which resulted in subsequent images coming up
2265
           missing on the page. i.e. only the first one was shown. */
2266
3.41k
        ((gx_device_vector*) vdev)->clip_path_id = vdev->no_clip_path_id;
2267
3.41k
    }
2268
2269
5.15k
    if (pgs == NULL) {
2270
0
        gs_free_object(mem, *pinfo, "xps_begin_image");
2271
0
        return_error(gs_error_invalidaccess);
2272
0
    }
2273
5.15k
    code = gdev_vector_begin_image(vdev, pgs, pim, pim->format, prect,
2274
5.15k
        pdcolor, pcpath, mem, &xps_image_enum_procs,
2275
5.15k
        (gdev_vector_image_enum_t *)pie);
2276
5.15k
    if (code < 0) {
2277
0
        gs_free_object(mem, pie, "xps_begin_image");
2278
0
        return_error(gs_rethrow_code(code));
2279
0
    }
2280
2281
5.15k
    if ((pie->tif = tiff_from_name(xdev, pie->file_name, false, false)) == NULL) {
2282
0
        gs_free_object(mem, pie, "xps_begin_image");
2283
0
        return_error(gs_error_VMerror);
2284
0
    }
2285
2286
    /* Null out pie.  Only needed for the above vector command and tiff set up */
2287
5.15k
    xdev->xps_pie = NULL;
2288
5.15k
    xps_tiff_set_handlers();
2289
5.15k
    code = tiff_set_values(pie, pie->tif, icc_profile, force8bit);
2290
5.15k
    if (code < 0) {
2291
0
        gs_free_object(mem, pie, "xps_begin_image");
2292
0
        return_error(gs_rethrow_code(code));
2293
0
    }
2294
5.15k
    code = TIFFCheckpointDirectory(pie->tif);
2295
2296
5.15k
    num_components = gs_color_space_num_components(pcs);
2297
5.15k
    bits_per_pixel = pim->BitsPerComponent * num_components;
2298
2299
5.15k
    {
2300
        /* This is a really hacky attempt to avoid running out of memory. This is
2301
         * inspired by various OSS-fuzz bugs but in particular 53398. This device
2302
         * uses the libtiff library to write images into the XPS file, libtiff won't
2303
         * let us use our own memory manager and have rejected patches to allow it
2304
         * to do so, so it uses system memory. If we have a badly broken file we
2305
         * might end up asking it to write a ridiculously large image which will
2306
         * cause it to eat all system memory. So here we try to limit it to any pre-defined
2307
         * limit. Also, if the width * height * 24 bits (RGB) goes negative then we know
2308
         * we've exceeded 2^(64 - 1) bytes, which is unreasonable too.
2309
         */
2310
5.15k
        int64_t memory_needed = (int64_t)pim->Width * (int64_t)pim->Height * 3;
2311
5.15k
        gs_memory_status_t status;
2312
2313
5.15k
        if (memory_needed < 0) {
2314
0
            gs_free_object(mem, pie, "xps_begin_image");
2315
0
            return_error(gs_error_VMerror);
2316
0
        }
2317
2318
5.15k
        gs_memory_status(dev->memory->gs_lib_ctx->memory, &status);
2319
5.15k
        if (status.limit < (size_t)~1) {
2320
5.15k
            if ( memory_needed > status.limit) {
2321
3
                gs_free_object(mem, pie, "xps_begin_image");
2322
3
                return_error(gs_error_VMerror);
2323
3
            }
2324
5.15k
        }
2325
5.15k
    }
2326
2327
5.15k
    pie->decode_st.bps = bits_per_pixel / num_components;
2328
5.15k
    pie->bytes_comp = (pie->decode_st.bps > 8 ? 2 : 1);
2329
5.15k
    pie->decode_st.spp = num_components;
2330
5.15k
    pie->decode_st.unpack = NULL;
2331
5.15k
    get_unpack_proc((gx_image_enum_common_t*)pie, &(pie->decode_st), pim->format,
2332
5.15k
        pim->Decode);
2333
5.15k
    if (pie->decode_st.unpack == NULL){
2334
0
        gs_free_object(mem, pie, "xps_begin_image");
2335
0
        return_error(gs_rethrow_code(gs_error_rangecheck));
2336
0
    }
2337
2338
    /* The decode mapping for index colors needs an adjustment */
2339
5.15k
    if (csindex == gs_color_space_index_Indexed) {
2340
427
        if (pim->Decode[0] == 0 &&
2341
423
            pim->Decode[1] == 255) {
2342
423
            index_decode[0] = 0;
2343
423
            index_decode[1] = 1.0;
2344
423
        } else {
2345
4
            index_decode[0] = pim->Decode[0];
2346
4
            index_decode[1] = pim->Decode[1];
2347
4
        }
2348
427
        get_map(&(pie->decode_st), pim->format, index_decode);
2349
4.72k
    } else {
2350
4.72k
        get_map(&(pie->decode_st), pim->format, pim->Decode);
2351
4.72k
    }
2352
2353
    /* Allocate our decode buffer. */
2354
5.15k
    bsize = ((pie->decode_st.bps > 8 ? (pim->Width) * 2 : pim->Width) + 15) * num_components;
2355
5.15k
    pie->buffer = gs_alloc_bytes(mem, bsize, "xps_begin_typed_image(buffer)");
2356
5.15k
    if (pie->buffer == 0) {
2357
0
        gs_free_object(mem, pie, "xps_begin_typed_image");
2358
0
        *pinfo = NULL;
2359
0
        return_error(gs_error_VMerror);
2360
0
    }
2361
2362
    /* If needed, allocate our device color buffer.  We will always do 8 bit here */
2363
5.15k
    if (csindex == gs_color_space_index_Indexed ||
2364
4.72k
        csindex == gs_color_space_index_Separation ||
2365
4.72k
        csindex == gs_color_space_index_DeviceN) {
2366
446
        bsize = ((unsigned int)pim->Width + 15) * icc_profile->num_comps;
2367
446
        pie->devc_buffer = gs_alloc_bytes(mem, bsize, "xps_begin_typed_image(devc_buffer)");
2368
446
        if (pie->devc_buffer == 0) {
2369
0
            gs_free_object(mem, pie, "xps_begin_typed_image");
2370
0
            *pinfo = NULL;
2371
0
            return_error(gs_error_VMerror);
2372
0
        }
2373
446
    }
2374
2375
    /* Also, the color remaps need the gs_gstate */
2376
5.15k
    pie->pgs = pgs;
2377
5.15k
    if (pgs != NULL)
2378
5.15k
        pie->pgs_level = pgs->level;
2379
2380
5.15k
    *pinfo = (gx_image_enum_common_t *)pie;
2381
5.15k
    return 0;
2382
2383
64.9k
use_default:
2384
64.9k
    return gx_default_begin_typed_image(dev, pgs, pmat, pic, prect,
2385
64.9k
                                        pdcolor, pcpath, mem, pinfo);
2386
5.15k
}
2387
2388
/* Handles conversion from decoded DeviceN, Sep or Indexed space to Device color
2389
   space. The encoding specified by the image object is already handled at this
2390
   point. Slow due to the multitude of conversions that take place.  I.e. conv to
2391
   float, frac and back to byte, but it will get the job done. Since we can have
2392
   indexed spaces that reference DeviceN spaces etc, we really have to do it
2393
   this way or code up a bunch of optimized special cases.  Note here we always
2394
   output 8 bit regardless of input */
2395
static int
2396
set_device_colors(xps_image_enum_t *pie)
2397
65.1k
{
2398
65.1k
    gx_device *pdev = pie->dev;
2399
65.1k
    const gs_gstate *pgs = pie->pgs;
2400
65.1k
    gs_color_space *pcs = pie->pcs;
2401
65.1k
    byte *src = pie->buffer;
2402
65.1k
    byte *des = pie->devc_buffer;
2403
65.1k
    int num_src = gs_color_space_num_components(pcs);
2404
65.1k
    int num_des = pdev->color_info.num_components;
2405
65.1k
    int width = pie->width;
2406
65.1k
    cs_proc_remap_color((*remap_color)) = pcs->type->remap_color;
2407
65.1k
    int i, j, code = 0;
2408
65.1k
    gs_client_color cc;
2409
65.1k
    gx_device_color devc;
2410
65.1k
    gx_color_value cm_values[GX_DEVICE_COLOR_MAX_COMPONENTS];
2411
65.1k
    float scale = 1.0;
2412
2413
65.1k
    if (pie->decode_st.bps > 8) {
2414
0
        unsigned short *src_ptr = (unsigned short*)src;
2415
0
        int pos_src = 0;
2416
0
        int pos_des = 0;
2417
0
        for (i = 0; i < width; i++) {
2418
0
            for (j = 0; j < num_src; j++, pos_src++) {
2419
0
                cc.paint.values[j] = (float)(src_ptr[pos_src]) / 65535.0;
2420
0
            }
2421
0
            code = remap_color(&cc, pcs, &devc, pgs, pdev, gs_color_select_source);
2422
0
            dev_proc(pdev, decode_color)(pdev, devc.colors.pure, cm_values);
2423
0
            for (j = 0; j < num_des; j++, pos_des++) {
2424
0
                des[pos_des] = (cm_values[j] >> 8);
2425
0
            }
2426
0
        }
2427
65.1k
    } else {
2428
65.1k
        int pos_src = 0;
2429
65.1k
        int pos_des = 0;
2430
65.1k
        if (gs_color_space_get_index(pcs) != gs_color_space_index_Indexed)
2431
2.02k
            scale = 255.0;
2432
12.4M
        for (i = 0; i < width; i++) {
2433
25.7M
            for (j = 0; j < num_src; j++, pos_src++) {
2434
13.3M
                cc.paint.values[j] = (float)(src[pos_src]) / scale;
2435
13.3M
            }
2436
12.4M
            code = remap_color(&cc, pcs, &devc, pgs, pdev, gs_color_select_source);
2437
12.4M
            dev_proc(pdev, decode_color)(pdev, devc.colors.pure, cm_values);
2438
49.6M
            for (j = 0; j < num_des; j++, pos_des++) {
2439
37.2M
                des[pos_des] = (cm_values[j] >> 8);
2440
37.2M
            }
2441
12.4M
        }
2442
65.1k
    }
2443
65.1k
    return code;
2444
65.1k
}
2445
2446
/* Chunky or planar in and chunky out */
2447
static int
2448
xps_image_data(gx_image_enum_common_t *info,
2449
const gx_image_plane_t *planes, int height, int *rows_used)
2450
3.76M
{
2451
3.76M
    xps_image_enum_t *pie = (xps_image_enum_t *)info;
2452
3.76M
    int data_bit = planes[0].data_x * info->plane_depths[0];
2453
3.76M
    int width_bits = pie->width * info->plane_depths[0];
2454
3.76M
    int bytes_comp = pie->bytes_comp;
2455
3.76M
    int i, plane;
2456
3.76M
    int code = 0;
2457
3.76M
    int width = pie->width;
2458
3.76M
    int num_planes = pie->num_planes;
2459
3.76M
    int dsize = (((width + (planes[0]).data_x) * pie->decode_st.spp *
2460
3.76M
        pie->decode_st.bps / num_planes + 7) >> 3);
2461
3.76M
    void *bufend = (void*)(pie->buffer + width * bytes_comp * pie->decode_st.spp);
2462
3.76M
    byte *outbuffer;
2463
2464
3.76M
    if (info->pgs != NULL && info->pgs->level < info->pgs_level)
2465
0
        return_error(gs_error_undefinedresult);
2466
2467
3.76M
    if (width_bits != pie->bits_per_row || (data_bit & 7) != 0)
2468
0
        return_error(gs_error_rangecheck);
2469
3.76M
    if (height > pie->height - pie->y)
2470
146
        height = pie->height - pie->y;
2471
2472
7.73M
    for (i = 0; i < height; pie->y++, i++) {
2473
3.97M
        int pdata_x;
2474
        /* Plane zero done here to get the pointer to the data */
2475
3.97M
        const byte *data_ptr = planes[0].data + planes[0].raster * i + (data_bit >> 3);
2476
3.97M
        byte *des_ptr = pie->buffer;
2477
3.97M
        byte *buffer = (byte *)(*pie->decode_st.unpack)(des_ptr, &pdata_x,
2478
3.97M
            data_ptr, 0, dsize, &(pie->decode_st.map[0]),
2479
3.97M
            pie->decode_st.spread, pie->decode_st.spp);
2480
2481
        /* Step through the planes having decode do the repack to chunky as
2482
           well as any decoding needed */
2483
3.97M
        for (plane = 1; plane < num_planes; plane++) {
2484
0
            data_ptr = planes[plane].data + planes[plane].raster * i + (data_bit >> 3);
2485
0
            des_ptr = pie->buffer + plane * pie->bytes_comp;
2486
            /* This does the planar to chunky conversion */
2487
0
            (*pie->decode_st.unpack)(des_ptr, &pdata_x,
2488
0
                data_ptr, 0, dsize, &(pie->decode_st.map[plane]),
2489
0
                pie->decode_st.spread, pie->decode_st.spp);
2490
0
        }
2491
2492
        /* CIELAB does not get mapped.  Handled in color management */
2493
3.97M
        if (pie->icc_link == NULL) {
2494
3.97M
            pie->decode_st.applymap(pie->decode_st.map, (void*)buffer,
2495
3.97M
                pie->decode_st.spp, (void*)pie->buffer, bufend);
2496
            /* Index, Sep and DeviceN are mapped to color space defined by
2497
            device profile */
2498
3.97M
            if (pie->pcs != NULL) {
2499
                /* In device color space */
2500
65.1k
                code = set_device_colors(pie);
2501
65.1k
                if (code < 0)
2502
3
                    return gs_rethrow_code(code);
2503
65.1k
                outbuffer = pie->devc_buffer;
2504
3.90M
            } else {
2505
                /* In source color space */
2506
3.90M
                outbuffer = pie->buffer;
2507
3.90M
            }
2508
3.97M
        } else {
2509
            /* CIELAB to default RGB */
2510
0
            gsicc_bufferdesc_t input_buff_desc;
2511
0
            gsicc_bufferdesc_t output_buff_desc;
2512
0
            gsicc_init_buffer(&input_buff_desc, 3, bytes_comp,
2513
0
                false, false, false, 0, width * bytes_comp * 3,
2514
0
                1, width);
2515
0
            gsicc_init_buffer(&output_buff_desc, 3, bytes_comp,
2516
0
                false, false, false, 0, width * bytes_comp * 3,
2517
0
                1, width);
2518
0
            code = (pie->icc_link->procs.map_buffer)(pie->dev, pie->icc_link,
2519
0
                &input_buff_desc, &output_buff_desc, (void*)buffer,
2520
0
                (void*)pie->buffer);
2521
0
            if (code < 0)
2522
0
                return code;
2523
0
            outbuffer = pie->buffer;
2524
0
        }
2525
3.97M
        code = TIFFWriteScanline(pie->tif, outbuffer, pie->y, 0);
2526
3.97M
        if (code < 0)
2527
0
            return code;
2528
3.97M
    }
2529
3.76M
    *rows_used = height;
2530
3.76M
    return pie->y >= pie->height;
2531
3.76M
}
2532
2533
static int
2534
xps_add_tiff_image(xps_image_enum_t *pie)
2535
5.15k
{
2536
5.15k
    gx_device_xps *xdev = (gx_device_xps *)(pie->dev);
2537
5.15k
    int code;
2538
2539
5.15k
    code = add_file_to_zip_file(xdev, pie->file_name, pie->fid);
2540
5.15k
    gp_fclose(pie->fid);
2541
5.15k
    return code;
2542
5.15k
}
2543
2544
/* Clean up by releasing the buffers. */
2545
static int
2546
xps_image_end_image(gx_image_enum_common_t * info, bool draw_last)
2547
5.15k
{
2548
5.15k
    xps_image_enum_t *pie = (xps_image_enum_t *)info;
2549
5.15k
    int code = 0;
2550
2551
    /* N.B. Write the final strip, if any. */
2552
2553
5.15k
    code = TIFFWriteDirectory(pie->tif);
2554
5.15k
    xps_tiff_cleanup(pie);
2555
2556
    /* Stuff the image into the zip archive and close the file */
2557
5.15k
    code = xps_add_tiff_image(pie);
2558
5.15k
    if (code < 0)
2559
0
        goto exit;
2560
2561
    /* Reset the brush type to solid */
2562
5.15k
    xps_setstrokebrush((gx_device_xps *) (pie->dev), xps_solidbrush);
2563
5.15k
    xps_setfillbrush((gx_device_xps *) (pie->dev), xps_solidbrush);
2564
2565
    /* Add the image relationship */
2566
5.15k
    code = xps_add_image_relationship(pie);
2567
2568
5.15k
    gs_free_object(pie->memory, pie, "xps_image_end_image");
2569
5.15k
exit:
2570
5.15k
    return code;
2571
5.15k
}
2572
2573
/* Tiff related code so that we can output all the image data in Tiff format.
2574
   Tiff has the advantage of supporting Gray, RGB, CMYK as well as multiple
2575
   bit depts and having lossless compression.  Much of this was borrowed from
2576
   gstiffio.c */
2577
#define TIFF_PRINT_BUF_LENGTH 1024
2578
static const char tifs_msg_truncated[] = "\n*** Previous line has been truncated.\n";
2579
2580
static int
2581
tiff_set_values(xps_image_enum_t *pie, TIFF *tif, cmm_profile_t *profile,
2582
                bool force8bit)
2583
5.15k
{
2584
5.15k
    int bits = 8;
2585
2586
5.15k
    TIFFSetField(tif, TIFFTAG_ROWSPERSTRIP, pie->height);
2587
5.15k
    TIFFSetField(tif, TIFFTAG_IMAGEWIDTH, pie->width);
2588
5.15k
    TIFFSetField(tif, TIFFTAG_IMAGELENGTH, pie->height);
2589
5.15k
    TIFFSetField(tif, TIFFTAG_ORIENTATION, ORIENTATION_TOPLEFT);
2590
5.15k
    TIFFSetField(tif, TIFFTAG_PLANARCONFIG, PLANARCONFIG_CONTIG);
2591
5.15k
    TIFFSetField(tif, TIFFTAG_COMPRESSION, COMPRESSION_LZW);
2592
5.15k
    TIFFSetField(tif, TIFFTAG_FILLORDER, FILLORDER_MSB2LSB);
2593
5.15k
    TIFFSetField(tif, TIFFTAG_XRESOLUTION, 96.0);
2594
5.15k
    TIFFSetField(tif, TIFFTAG_YRESOLUTION, 96.0);
2595
2596
5.15k
    switch (profile->data_cs) {
2597
673
        case  gsGRAY:
2598
673
            if (pie->bits_per_pixel > 8 && !force8bit)
2599
0
                bits = 16;
2600
673
            TIFFSetField(tif, TIFFTAG_BITSPERSAMPLE, bits);
2601
673
            TIFFSetField(tif, TIFFTAG_PHOTOMETRIC, PHOTOMETRIC_MINISBLACK);
2602
673
            TIFFSetField(tif, TIFFTAG_SAMPLESPERPIXEL, 1);
2603
673
            break;
2604
4.35k
        case  gsRGB:
2605
4.35k
        case gsCIELAB:
2606
4.35k
            if ((pie->num_planes > 1 && pie->bits_per_pixel > 8 && !force8bit) ||
2607
4.35k
                (pie->num_planes == 1 && pie->bits_per_pixel / 3 > 8 && !force8bit))
2608
0
                bits = 16;
2609
4.35k
            TIFFSetField(tif, TIFFTAG_BITSPERSAMPLE, bits);
2610
4.35k
            TIFFSetField(tif, TIFFTAG_PHOTOMETRIC, PHOTOMETRIC_RGB);
2611
4.35k
            TIFFSetField(tif, TIFFTAG_SAMPLESPERPIXEL, 3);
2612
4.35k
            break;
2613
126
        case gsCMYK:
2614
126
            if ((pie->num_planes > 1 && pie->bits_per_pixel > 8 && !force8bit) ||
2615
126
                (pie->num_planes == 1 && pie->bits_per_pixel / 4 > 8 && !force8bit))
2616
0
                bits = 16;
2617
126
            TIFFSetField(tif, TIFFTAG_BITSPERSAMPLE, bits);
2618
126
            TIFFSetField(tif, TIFFTAG_PHOTOMETRIC, PHOTOMETRIC_SEPARATED);
2619
126
            TIFFSetField(tif, TIFFTAG_SAMPLESPERPIXEL, 4);
2620
126
            break;
2621
0
        default:
2622
0
            return gs_throw_code(gs_error_rangecheck);
2623
5.15k
    }
2624
5.15k
    return 0;
2625
5.15k
}
2626
2627
/* place to hold the data for our libtiff i/o hooks */
2628
typedef struct tifs_io_xps_t
2629
{
2630
    gx_device_xps *pdev;
2631
    gp_file *fid;
2632
} tifs_io_xps;
2633
2634
/* libtiff i/o hooks */
2635
static size_t
2636
xps_tifsWriteProc(thandle_t fd, void* buf, size_t size)
2637
54.5k
{
2638
54.5k
    tifs_io_xps *tiffio = (tifs_io_xps *)fd;
2639
54.5k
    size_t size_io = (size_t)size;
2640
54.5k
    gp_file *fid = tiffio->fid;
2641
54.5k
    size_t count;
2642
2643
54.5k
    if ((size_t)size_io != size) {
2644
0
        return (size_t)-1;
2645
0
    }
2646
2647
54.5k
    if (fid == NULL)
2648
0
        return gs_throw_code(gs_error_Fatal);
2649
2650
54.5k
    count = gp_fwrite(buf, 1, size, fid);
2651
54.5k
    if (count != size) {
2652
0
        gp_fclose(fid);
2653
0
        return gs_rethrow_code(-1);
2654
0
    }
2655
54.5k
    gp_fflush(fid);
2656
54.5k
    return size;
2657
54.5k
}
2658
2659
static uint64_t
2660
xps_tifsSeekProc(thandle_t fd, uint64_t off, int origin)
2661
64.7k
{
2662
64.7k
    tifs_io_xps *tiffio = (tifs_io_xps *)fd;
2663
64.7k
    gs_offset_t off_io = (gs_offset_t)off;
2664
64.7k
    gp_file *fid = tiffio->fid;
2665
2666
64.7k
    if ((uint64_t)off_io != off) {
2667
0
        return (uint64_t)-1;
2668
0
    }
2669
2670
64.7k
    if (fid == NULL && off == 0)
2671
0
        return 0;
2672
2673
64.7k
    if (fid == NULL)
2674
0
        return (uint64_t)-1;
2675
2676
64.7k
    if (gp_fseek(fid, (gs_offset_t)off, origin) < 0) {
2677
0
        return (uint64_t)-1;
2678
0
    }
2679
64.7k
    return (gp_ftell(fid));
2680
64.7k
}
2681
2682
static int
2683
xps_tifsCloseProc(thandle_t fd)
2684
0
{
2685
0
    tifs_io_xps *tiffio = (tifs_io_xps *)fd;
2686
0
    gx_device_xps *pdev = tiffio->pdev;
2687
2688
0
    gs_free(pdev->memory->non_gc_memory, tiffio, sizeof(tifs_io_xps), 1,
2689
0
        "xps_tifsCloseProc");
2690
0
    return 0;
2691
0
}
2692
2693
static int
2694
xps_tifsDummyMapProc(thandle_t fd, void** pbase, toff_t* psize)
2695
0
{
2696
0
    (void)fd;
2697
0
    (void)pbase;
2698
0
    (void)psize;
2699
0
    return (0);
2700
0
}
2701
2702
static void
2703
xps_tifsDummyUnmapProc(thandle_t fd, void* base, toff_t size)
2704
0
{
2705
0
    (void)fd;
2706
0
    (void)base;
2707
0
    (void)size;
2708
0
}
2709
2710
static size_t
2711
xps_tifsReadProc(thandle_t fd, void* buf, size_t size)
2712
0
{
2713
0
    size_t size_io = (size_t)size;
2714
2715
0
    if ((size_t)size_io != size) {
2716
0
        return (size_t)-1;
2717
0
    }
2718
0
    return 0;
2719
0
}
2720
2721
/* Could not see where this was getting used so basically a dummy proc
2722
   for now. */
2723
static uint64_t
2724
xps_tifsSizeProc(thandle_t fd)
2725
0
{
2726
0
    uint64_t length = 0;
2727
2728
0
    return length;
2729
0
}
2730
2731
static void
2732
xps_tifsWarningHandlerEx(thandle_t client_data, const char *module,
2733
                         const char *fmt, va_list ap)
2734
0
{
2735
0
    tifs_io_xps *tiffio = (tifs_io_xps *)client_data;
2736
0
    gx_device_xps *pdev = tiffio->pdev;
2737
0
    int count;
2738
0
    char buf[TIFF_PRINT_BUF_LENGTH];
2739
2740
0
    count = vsnprintf(buf, sizeof(buf), fmt, ap);
2741
0
    if (count >= sizeof(buf) || count < 0)  { /* C99 || MSVC */
2742
0
        dmlprintf1(pdev->memory, "%s", buf);
2743
0
        dmlprintf1(pdev->memory, "%s\n", tifs_msg_truncated);
2744
0
    }
2745
0
    else {
2746
0
        dmlprintf1(pdev->memory, "%s\n", buf);
2747
0
    }
2748
0
}
2749
2750
static void
2751
xps_tifsErrorHandlerEx(thandle_t client_data, const char *module,
2752
                       const char *fmt, va_list ap)
2753
0
{
2754
0
    tifs_io_xps *tiffio = (tifs_io_xps *)client_data;
2755
0
    gx_device_xps *pdev = tiffio->pdev;
2756
0
    const char *max_size_error = "Maximum TIFF file size exceeded";
2757
0
    int count;
2758
0
    char buf[TIFF_PRINT_BUF_LENGTH];
2759
2760
0
    count = vsnprintf(buf, sizeof(buf), fmt, ap);
2761
0
    if (count >= sizeof(buf) || count < 0)  { /* C99 || MSVC */
2762
0
        dmlprintf1(pdev->memory, "%s\n", buf);
2763
0
        dmlprintf1(pdev->memory, "%s", tifs_msg_truncated);
2764
0
    }
2765
0
    else {
2766
0
        dmlprintf1(pdev->memory, "%s\n", buf);
2767
0
    }
2768
2769
0
#if (TIFFLIB_VERSION >= 20111221)
2770
0
    if (!strncmp(fmt, max_size_error, strlen(max_size_error))) {
2771
0
        dmlprintf(pdev->memory, "Use -dUseBigTIFF(=true) for BigTIFF output\n");
2772
0
    }
2773
0
#endif
2774
0
}
2775
2776
static void
2777
xps_tiff_set_handlers(void)
2778
5.15k
{
2779
5.15k
    (void)TIFFSetErrorHandler(NULL);
2780
5.15k
    (void)TIFFSetWarningHandler(NULL);
2781
5.15k
    (void)TIFFSetErrorHandlerExt(xps_tifsErrorHandlerEx);
2782
5.15k
    (void)TIFFSetWarningHandlerExt(xps_tifsWarningHandlerEx);
2783
5.15k
}
2784
2785
static TIFF *
2786
tiff_from_name(gx_device_xps *dev, const char *name, int big_endian, bool usebigtiff)
2787
5.15k
{
2788
5.15k
    char mode[5] = "w";
2789
5.15k
    int modelen = 1;
2790
5.15k
    TIFF *t;
2791
5.15k
    tifs_io_xps *tiffio;
2792
5.15k
    gs_memory_t *mem = dev->memory->non_gc_memory;
2793
5.15k
    char *filename;
2794
2795
5.15k
    if (big_endian)
2796
0
        mode[modelen++] = 'b';
2797
5.15k
    else
2798
5.15k
        mode[modelen++] = 'l';
2799
2800
5.15k
    if (usebigtiff)
2801
        /* this should never happen for libtiff < 4.0 - see tiff_put_some_params() */
2802
0
        mode[modelen++] = '8';
2803
2804
5.15k
    mode[modelen] = (char)0;
2805
2806
5.15k
    tiffio = (tifs_io_xps *)gs_malloc(dev->memory->non_gc_memory,
2807
5.15k
        sizeof(tifs_io_xps), 1, "tiff_from_name");
2808
5.15k
    if (!tiffio) {
2809
0
        return NULL;
2810
0
    }
2811
5.15k
    tiffio->pdev = dev;
2812
2813
5.15k
    filename = (char *)gs_alloc_bytes(mem, gp_file_name_sizeof,
2814
5.15k
        "tiff_from_name(filename)");
2815
5.15k
    if (!filename)
2816
0
        return NULL;
2817
2818
5.15k
    tiffio->fid = gp_open_scratch_file_rm(mem, "tif-", filename, "wb+");
2819
5.15k
    dev->xps_pie->fid = tiffio->fid;  /* We will be closing it from here */
2820
2821
5.15k
    gs_free_object(mem, filename, "tiff_from_name(filename)");
2822
2823
5.15k
    t = TIFFClientOpen(name, mode,
2824
5.15k
        (thandle_t)tiffio, (TIFFReadWriteProc)xps_tifsReadProc,
2825
5.15k
        (TIFFReadWriteProc)xps_tifsWriteProc, (TIFFSeekProc)xps_tifsSeekProc,
2826
5.15k
        xps_tifsCloseProc, (TIFFSizeProc)xps_tifsSizeProc, xps_tifsDummyMapProc,
2827
5.15k
        xps_tifsDummyUnmapProc);
2828
5.15k
    return t;
2829
5.15k
}
2830
2831
static void xps_tiff_cleanup(xps_image_enum_t *xpie)
2832
10.3k
{
2833
10.3k
    if (xpie->tif != NULL) {
2834
5.15k
        void *t = TIFFClientdata(xpie->tif);
2835
5.15k
        TIFFCleanup(xpie->tif);
2836
5.15k
        xpie->tif = NULL;
2837
5.15k
        gs_free_object(xpie->dev->memory->non_gc_memory, t, "xps_image_enum_finalize");
2838
5.15k
    }
2839
10.3k
}
2840
2841
static void
2842
xps_image_enum_finalize(const gs_memory_t *cmem, void *vptr)
2843
5.15k
{
2844
5.15k
    xps_image_enum_t *xpie = (xps_image_enum_t *)vptr;
2845
5.15k
    gx_device_xps *xdev = (gx_device_xps *)xpie->dev;
2846
2847
5.15k
    xps_tiff_cleanup(xpie);
2848
2849
5.15k
    xpie->dev = NULL;
2850
5.15k
    if (xpie->pcs != NULL)
2851
5.15k
        rc_decrement(xpie->pcs, "xps_image_end_image (pcs)");
2852
5.15k
    if (xpie->buffer != NULL)
2853
5.15k
        gs_free_object(xpie->memory, xpie->buffer, "xps_image_end_image");
2854
5.15k
    if (xpie->devc_buffer != NULL)
2855
446
        gs_free_object(xpie->memory, xpie->devc_buffer, "xps_image_end_image");
2856
2857
    /* ICC clean up */
2858
5.15k
    if (xpie->icc_link != NULL)
2859
0
        gsicc_release_link(xpie->icc_link);
2860
    xdev->xps_pie = NULL;
2861
5.15k
}