Coverage Report

Created: 2025-06-10 07:27

/src/ghostpdl/psi/zdevice2.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Level 2 device operators */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "ghost.h"
21
#include "oper.h"
22
#include "dstack.h"   /* for dict_find_name */
23
#include "estack.h"
24
#include "idict.h"
25
#include "idparam.h"
26
#include "igstate.h"
27
#include "iname.h"
28
#include "iutil.h"
29
#include "isave.h"
30
#include "store.h"
31
#include "gxdevice.h"
32
#include "gsstate.h"
33
34
/* Exported for zfunc4.c */
35
int z2copy(i_ctx_t *);
36
37
/* Forward references */
38
static int z2copy_gstate(i_ctx_t *);
39
static int push_callout(i_ctx_t *, const char *);
40
41
/* Extend the `copy' operator to deal with gstates. */
42
/* This is done with a hack -- we know that gstates are the only */
43
/* t_astruct subtype that implements copy. */
44
/* We export this for recognition in FunctionType 4 functions. */
45
int
46
z2copy(i_ctx_t *i_ctx_p)
47
30.4M
{
48
30.4M
    os_ptr op = osp;
49
30.4M
    int code = zcopy(i_ctx_p);
50
51
30.4M
    if (code >= 0)
52
30.4M
        return code;
53
2
    if (!r_has_type(op, t_astruct))
54
2
        return code;
55
0
    return z2copy_gstate(i_ctx_p);
56
2
}
57
58
/* - .currentshowpagecount <count> true */
59
/* - .currentshowpagecount false */
60
static int
61
zcurrentshowpagecount(i_ctx_t *i_ctx_p)
62
101k
{
63
101k
    os_ptr op = osp;
64
101k
    gx_device *dev1, *dev = gs_currentdevice(igs);
65
66
101k
    if ((*dev_proc(dev, get_page_device))(dev) == 0) {
67
0
        push(1);
68
0
        make_false(op);
69
101k
    } else {
70
101k
        dev1 = (*dev_proc(dev, get_page_device))(dev);
71
101k
        push(2);
72
101k
        make_int(op - 1, dev1->ShowpageCount);
73
101k
        make_true(op);
74
101k
    }
75
101k
    return 0;
76
101k
}
77
78
/* - .currentpagedevice <dict> <bool> */
79
static int
80
zcurrentpagedevice(i_ctx_t *i_ctx_p)
81
278k
{
82
278k
    os_ptr op = osp;
83
278k
    gx_device *dev = gs_currentdevice(igs);
84
85
278k
    push(2);
86
278k
    if ((*dev_proc(dev, get_page_device))(dev) != 0) {
87
278k
        op[-1] = istate->pagedevice;
88
278k
        make_true(op);
89
278k
    } else {
90
0
        make_null(op - 1);
91
0
        make_false(op);
92
0
    }
93
278k
    return 0;
94
278k
}
95
96
/* <local_dict|null> .setpagedevice - */
97
static int
98
zsetpagedevice(i_ctx_t *i_ctx_p)
99
130k
{
100
130k
    os_ptr op = osp;
101
130k
    int code;
102
103
130k
    check_op(1);
104
/******
105
    if ( igs->in_cachedevice )
106
        return_error(gs_error_undefined);
107
 ******/
108
130k
    if (r_has_type(op, t_dictionary)) {
109
130k
        check_dict_read(*op);
110
#if 0 /****************/
111
        /*
112
         * In order to avoid invalidaccess errors on setpagedevice,
113
         * the dictionary must be allocated in local VM.
114
         */
115
        if (!(r_is_local(op)))
116
            return_error(gs_error_invalidaccess);
117
#endif  /****************/
118
        /* Make the dictionary read-only. */
119
130k
        code = zreadonly(i_ctx_p);
120
130k
        if (code < 0)
121
0
            return code;
122
130k
    } else {
123
0
        check_type(*op, t_null);
124
0
    }
125
130k
    istate->pagedevice = *op;
126
130k
    pop(1);
127
130k
    return 0;
128
130k
}
129
130
/* Default Install/BeginPage/EndPage procedures */
131
/* that just call the procedure in the device. */
132
133
/* - .callinstall - */
134
static int
135
zcallinstall(i_ctx_t *i_ctx_p)
136
30.9k
{
137
30.9k
    gx_device *dev = gs_currentdevice(igs);
138
139
30.9k
    if ((dev = (*dev_proc(dev, get_page_device))(dev)) != 0) {
140
30.9k
        int code = (*dev->page_procs.install) (dev, igs);
141
142
30.9k
        if (code < 0)
143
0
            return code;
144
30.9k
    }
145
30.9k
    return 0;
146
30.9k
}
147
148
/* <showpage_count> .callbeginpage - */
149
static int
150
zcallbeginpage(i_ctx_t *i_ctx_p)
151
45.3k
{
152
45.3k
    os_ptr op = osp;
153
45.3k
    gx_device *dev = gs_currentdevice(igs);
154
155
45.3k
    check_op(1);
156
45.3k
    check_type(*op, t_integer);
157
45.3k
    if ((dev = (*dev_proc(dev, get_page_device))(dev)) != 0) {
158
45.3k
        int code = (*dev->page_procs.begin_page)(dev, igs);
159
160
45.3k
        if (code < 0)
161
0
            return code;
162
45.3k
    }
163
45.3k
    pop(1);
164
45.3k
    return 0;
165
45.3k
}
166
167
/* <showpage_count> <reason_int> .callendpage <flush_bool> */
168
static int
169
zcallendpage(i_ctx_t *i_ctx_p)
170
56.1k
{
171
56.1k
    os_ptr op = osp;
172
56.1k
    gx_device *dev = gs_currentdevice(igs);
173
56.1k
    int code;
174
175
56.1k
    check_op(2);
176
56.1k
    check_type(op[-1], t_integer);
177
56.1k
    check_type(*op, t_integer);
178
56.1k
    if ((dev = (*dev_proc(dev, get_page_device))(dev)) != 0) {
179
56.1k
        code = (*dev->page_procs.end_page)(dev, (int)op->value.intval, igs);
180
56.1k
        if (code < 0)
181
0
            return code;
182
56.1k
        if (code > 1)
183
0
            return_error(gs_error_rangecheck);
184
56.1k
    } else {
185
0
        code = (op->value.intval == 2 ? 0 : 1);
186
0
    }
187
56.1k
    make_bool(op - 1, code);
188
56.1k
    pop(1);
189
56.1k
    return 0;
190
56.1k
}
191
192
/* ------ Wrappers for operators that save the graphics state. ------ */
193
194
/* When saving the state with the current device a page device, */
195
/* we need to make sure that the page device dictionary exists */
196
/* so that grestore can use it to reset the device parameters. */
197
/* This may have significant performance consequences, but we don't see */
198
/* any way around it. */
199
200
/* Check whether we need to call out to create the page device dictionary. */
201
static bool
202
save_page_device(gs_gstate *pgs)
203
2.34M
{
204
2.34M
    return
205
2.34M
        (r_has_type(&gs_int_gstate(pgs)->pagedevice, t_null) &&
206
2.34M
         (*dev_proc(gs_currentdevice(pgs), get_page_device))(gs_currentdevice(pgs)) != 0);
207
2.34M
}
208
209
/* - gsave - */
210
static int
211
z2gsave(i_ctx_t *i_ctx_p)
212
2.06M
{
213
2.06M
    if (!save_page_device(igs))
214
2.05M
        return gs_gsave(igs);
215
10.8k
    return push_callout(i_ctx_p, "%gsavepagedevice");
216
2.06M
}
217
218
/* - save - */
219
static int
220
z2save(i_ctx_t *i_ctx_p)
221
287k
{
222
287k
    if (!save_page_device(igs))
223
276k
        return zsave(i_ctx_p);
224
10.8k
    return push_callout(i_ctx_p, "%savepagedevice");
225
287k
}
226
227
/* - gstate <gstate> */
228
static int
229
z2gstate(i_ctx_t *i_ctx_p)
230
2
{
231
2
    if (!save_page_device(igs))
232
2
        return zgstate(i_ctx_p);
233
0
    return push_callout(i_ctx_p, "%gstatepagedevice");
234
2
}
235
236
/* <gstate1> <gstate2> copy <gstate2> */
237
static int
238
z2copy_gstate(i_ctx_t *i_ctx_p)
239
0
{
240
0
    os_ptr op = osp;
241
0
    check_op(2);
242
0
    if (!save_page_device(igs))
243
0
        return zcopy_gstate(i_ctx_p);
244
0
    return push_callout(i_ctx_p, "%copygstatepagedevice");
245
0
}
246
247
/* <gstate> currentgstate <gstate> */
248
static int
249
z2currentgstate(i_ctx_t *i_ctx_p)
250
2
{
251
2
    os_ptr op = osp;
252
2
    check_op(1);
253
1
    if (!save_page_device(igs))
254
1
        return zcurrentgstate(i_ctx_p);
255
0
    return push_callout(i_ctx_p, "%currentgstatepagedevice");
256
1
}
257
258
/* ------ Wrappers for operators that reset the graphics state. ------ */
259
260
/* Check whether we need to call out to restore the page device. */
261
static int
262
restore_page_device(i_ctx_t *i_ctx_p, const gs_gstate * pgs_old, const gs_gstate * pgs_new)
263
4.13M
{
264
4.13M
    gx_device *dev_old = gs_currentdevice(pgs_old);
265
4.13M
    gx_device *dev_new;
266
4.13M
    gx_device *dev_t1;
267
4.13M
    gx_device *dev_t2;
268
4.13M
    bool samepagedevice = obj_eq(dev_old->memory, &gs_int_gstate(pgs_old)->pagedevice,
269
4.13M
        &gs_int_gstate(pgs_new)->pagedevice);
270
4.13M
    bool LockSafetyParams = dev_old->LockSafetyParams;
271
272
4.13M
    if ((dev_t1 = (*dev_proc(dev_old, get_page_device)) (dev_old)) == 0)
273
4.35k
        return 0;
274
    /* If we are going to putdeviceparams in a callout, we need to */
275
    /* unlock temporarily.  The device will be re-locked as needed */
276
    /* by putdeviceparams from the pgs_old->pagedevice dict state. */
277
4.13M
    if (!samepagedevice)
278
4.29k
        dev_old->LockSafetyParams = false;
279
4.13M
    dev_new = gs_currentdevice(pgs_new);
280
4.13M
    if (dev_old != dev_new) {
281
0
        if ((dev_t2 = (*dev_proc(dev_new, get_page_device)) (dev_new)) == 0)
282
0
            samepagedevice = true;
283
0
        else if (dev_t1 != dev_t2)
284
0
            samepagedevice = false;
285
0
    }
286
287
4.13M
    if (LockSafetyParams) {
288
0
        const int required_ops = 512;
289
0
        const int required_es = 32;
290
291
        /* The %grestorepagedevice must complete: the biggest danger
292
           is operand stack overflow. As we use get/putdeviceparams
293
           that means pushing all the device params onto the stack,
294
           pdfwrite having by far the largest number of parameters
295
           at (currently) 212 key/value pairs - thus needing (currently)
296
           424 entries on the op stack. Allowing for working stack
297
           space, and safety margin.....
298
         */
299
0
        if (required_ops + ref_stack_count(&o_stack) >= ref_stack_max_count(&o_stack)) {
300
0
           gs_currentdevice(pgs_old)->LockSafetyParams = LockSafetyParams;
301
0
           return_error(gs_error_stackoverflow);
302
0
        }
303
        /* We also want enough exec stack space - 32 is an overestimate of
304
           what we need to complete the Postscript call out.
305
         */
306
0
        if (required_es + ref_stack_count(&e_stack) >= ref_stack_max_count(&e_stack)) {
307
0
           gs_currentdevice(pgs_old)->LockSafetyParams = LockSafetyParams;
308
0
           return_error(gs_error_execstackoverflow);
309
0
        }
310
0
    }
311
    /*
312
     * The current implementation of setpagedevice just sets new
313
     * parameters in the same device object, so we have to check
314
     * whether the page device dictionaries are the same.
315
     */
316
4.13M
    return samepagedevice ? 0 : 1;
317
4.13M
}
318
319
/* - grestore - */
320
static int
321
z2grestore(i_ctx_t *i_ctx_p)
322
4.10M
{
323
4.10M
    int code = restore_page_device(i_ctx_p, igs, gs_gstate_saved(igs));
324
4.10M
    if (code < 0) return code;
325
326
4.10M
    if (code == 0)
327
4.10M
        return gs_grestore(igs);
328
0
    return push_callout(i_ctx_p, "%grestorepagedevice");
329
4.10M
}
330
331
/* - grestoreall - */
332
static int
333
z2grestoreall(i_ctx_t *i_ctx_p)
334
0
{
335
0
    for (;;) {
336
0
        int code = restore_page_device(i_ctx_p, igs, gs_gstate_saved(igs));
337
0
        if (code < 0) return code;
338
0
        if (code == 0) {
339
0
            bool done = !gs_gstate_saved(gs_gstate_saved(igs));
340
341
0
            gs_grestore(igs);
342
0
            if (done)
343
0
                break;
344
0
        } else
345
0
            return push_callout(i_ctx_p, "%grestoreallpagedevice");
346
0
    }
347
0
    return 0;
348
0
}
349
/* This is the Level 2+ variant of restore - which adds restoring
350
   of the page device to the Level 1 variant in zvmem.c.
351
   Previous this restored the device state before calling zrestore.c
352
   which validated operands etc, meaning a restore could error out
353
   partially complete.
354
   The operand checking, and actual VM restore are now in two functions
355
   so they can called separately thus, here, we can do as much
356
   checking as possible, before embarking on actual changes
357
 */
358
/* <save> restore - */
359
static int
360
z2restore(i_ctx_t *i_ctx_p)
361
10.1k
{
362
10.1k
    alloc_save_t *asave;
363
10.1k
    bool saveLockSafety = gs_currentdevice_inline(igs)->LockSafetyParams;
364
10.1k
    int code = restore_check_save(i_ctx_p, &asave);
365
366
10.1k
    if (code < 0) return code;
367
368
29.2k
    while (gs_gstate_saved(gs_gstate_saved(igs))) {
369
19.1k
        code = restore_page_device(i_ctx_p, igs, gs_gstate_saved(igs));
370
19.1k
        if (code < 0) return code;
371
19.1k
        if (code > 0)
372
0
            return push_callout(i_ctx_p, "%restore1pagedevice");
373
19.1k
        gs_grestore(igs);
374
19.1k
    }
375
10.1k
    code = restore_page_device(i_ctx_p, igs, gs_gstate_saved(igs));
376
10.1k
    if (code < 0) return code;
377
10.1k
    if (code > 0)
378
4.29k
        return push_callout(i_ctx_p, "%restorepagedevice");
379
380
5.84k
    code = dorestore(i_ctx_p, asave);
381
382
5.84k
    if (code < 0) {
383
        /* An error here is basically fatal, but....
384
           restore_page_device() has to set LockSafetyParams false so it can
385
           configure the restored device correctly - in normal operation, that
386
           gets reset by that configuration. If we hit an error, though, that
387
           may not happen -  at least ensure we keep the setting through the
388
           error.
389
         */
390
0
        gs_currentdevice_inline(igs)->LockSafetyParams = saveLockSafety;
391
0
    }
392
5.84k
    return code;
393
10.1k
}
394
395
/* <gstate> setgstate - */
396
static int
397
z2setgstate(i_ctx_t *i_ctx_p)
398
1
{
399
1
    os_ptr op = osp;
400
1
    int code;
401
402
1
    check_op(1);
403
0
    check_stype(*op, st_igstate_obj);
404
0
    code = restore_page_device(i_ctx_p, igs, igstate_ptr(op));
405
0
    if (code < 0) return code;
406
0
    if (code == 0)
407
0
        return zsetgstate(i_ctx_p);
408
0
    return push_callout(i_ctx_p, "%setgstatepagedevice");
409
0
}
410
411
/* ------ Initialization procedure ------ */
412
413
const op_def zdevice2_l2_op_defs[] =
414
{
415
    op_def_begin_level2(),
416
    {"0.currentshowpagecount", zcurrentshowpagecount},
417
    {"0.currentpagedevice", zcurrentpagedevice},
418
    {"1.setpagedevice", zsetpagedevice},
419
                /* Note that the following replace prior definitions */
420
                /* in the indicated files: */
421
    {"1copy", z2copy},    /* zdps1.c */
422
    {"0gsave", z2gsave},  /* zgstate.c */
423
    {"0save", z2save},    /* zvmem.c */
424
    {"0gstate", z2gstate},  /* zdps1.c */
425
    {"1currentgstate", z2currentgstate},  /* zdps1.c */
426
    {"0grestore", z2grestore},  /* zgstate.c */
427
    {"0grestoreall", z2grestoreall},  /* zgstate.c */
428
    {"1restore", z2restore},  /* zvmem.c */
429
    {"1setgstate", z2setgstate},  /* zdps1.c */
430
                /* Default Install/BeginPage/EndPage procedures */
431
                /* that just call the procedure in the device. */
432
    {"0.callinstall", zcallinstall},
433
    {"1.callbeginpage", zcallbeginpage},
434
    {"2.callendpage", zcallendpage},
435
    op_def_end(0)
436
};
437
438
/* ------ Internal routines ------ */
439
440
/* Call out to a PostScript procedure. */
441
static int
442
push_callout(i_ctx_t *i_ctx_p, const char *callout_name)
443
25.9k
{
444
25.9k
    int code;
445
446
25.9k
    check_estack(1);
447
25.9k
    code = name_enter_string(imemory, callout_name, esp + 1);
448
25.9k
    if (code < 0)
449
0
        return code;
450
25.9k
    ++esp;
451
25.9k
    r_set_attrs(esp, a_executable);
452
25.9k
    return o_push_estack;
453
25.9k
}