Coverage Report

Created: 2022-04-16 11:23

/src/ghostpdl/psi/imain.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2021 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.,  1305 Grant Avenue - Suite 200, Novato,
13
   CA 94945, U.S.A., +1(415)492-9861, for further information.
14
*/
15
16
17
/* Common support for interpreter front ends */
18
19
20
#include "malloc_.h"
21
#include "memory_.h"
22
#include "string_.h"
23
#include "ghost.h"
24
#include "gp.h"
25
#include "gscdefs.h"            /* for gs_init_file */
26
#include "gslib.h"
27
#include "gsmatrix.h"           /* for gxdevice.h */
28
#include "gsutil.h"             /* for bytes_compare */
29
#include "gspaint.h"    /* for gs_erasepage */
30
#include "gxdevice.h"
31
#include "gxdevsop.h"   /* for gxdso_* enums */
32
#include "gxclpage.h"
33
#include "gdevprn.h"
34
#include "gxalloc.h"
35
#include "gxiodev.h"            /* for iodev struct */
36
#include "gzstate.h"
37
#include "ierrors.h"
38
#include "oper.h"
39
#include "iconf.h"              /* for gs_init_* imports */
40
#include "idebug.h"
41
#include "iddict.h"
42
#include "iname.h"              /* for name_init */
43
#include "dstack.h"
44
#include "estack.h"
45
#include "ostack.h"             /* put here for files.h */
46
#include "stream.h"             /* for files.h */
47
#include "files.h"
48
#include "ialloc.h"
49
#include "iinit.h"
50
#include "strimpl.h"            /* for sfilter.h */
51
#include "sfilter.h"            /* for iscan.h */
52
#include "iscan.h"
53
#include "main.h"
54
#include "store.h"
55
#include "isave.h"              /* for prototypes */
56
#include "interp.h"
57
#include "ivmspace.h"
58
#include "idisp.h"              /* for setting display device callback */
59
#include "iplugin.h"
60
#include "zfile.h"
61
62
#include "valgrind.h"
63
64
/* ------ Exported data ------ */
65
66
/** using backpointers retrieve minst from any memory pointer
67
 *
68
 */
69
gs_main_instance*
70
get_minst_from_memory(const gs_memory_t *mem)
71
1.32M
{
72
1.32M
    return (gs_main_instance*)mem->gs_lib_ctx->top_of_system;
73
1.32M
}
74
75
/** construct main instance caller needs to retain */
76
gs_main_instance *
77
gs_main_alloc_instance(gs_memory_t *mem)
78
683
{
79
683
    gs_main_instance *minst;
80
683
    if (mem == NULL)
81
0
        return NULL;
82
83
683
    minst = (gs_main_instance *)gs_alloc_bytes_immovable(mem,
84
683
                                                         sizeof(gs_main_instance),
85
683
                                                         "init_main_instance");
86
683
    if (minst == NULL)
87
0
        return NULL;
88
683
    memset(minst, 0, sizeof(gs_main_instance));
89
683
    memcpy(minst, &gs_main_instance_init_values, sizeof(gs_main_instance_init_values));
90
683
    minst->heap = mem;
91
683
    mem->gs_lib_ctx->top_of_system = minst;
92
683
    return minst;
93
683
}
94
95
op_array_table *
96
get_op_array(const gs_memory_t *mem, int size)
97
843k
{
98
843k
    gs_main_instance *minst = get_minst_from_memory(mem);
99
843k
    return op_index_op_array_table(minst->i_ctx_p,size);
100
843k
}
101
102
op_array_table *
103
get_global_op_array(const gs_memory_t *mem)
104
1.36k
{
105
1.36k
    gs_main_instance *minst = get_minst_from_memory(mem);
106
1.36k
    return &minst->i_ctx_p->op_array_table_global;
107
1.36k
}
108
109
op_array_table *
110
get_local_op_array(const gs_memory_t *mem)
111
1.36k
{
112
1.36k
    gs_main_instance *minst = get_minst_from_memory(mem);
113
1.36k
    return &minst->i_ctx_p->op_array_table_local;
114
1.36k
}
115
116
/* ------ Forward references ------ */
117
118
static int gs_run_init_file(gs_main_instance *, int *, ref *);
119
void print_resource_usage(const gs_main_instance *,
120
                                  gs_dual_memory_t *, const char *);
121
122
/* ------ Initialization ------ */
123
124
/* Initialization to be done before anything else. */
125
int
126
gs_main_init0(gs_main_instance * minst, gp_file * in, gp_file * out, gp_file * err,
127
              int max_lib_paths)
128
683
{
129
683
    ref *array;
130
683
    int code = 0;
131
132
683
    if (gs_debug_c(gs_debug_flag_init_details))
133
683
        dmprintf1(minst->heap, "%% Init phase 0 started, instance "PRI_INTPTR"\n",
134
683
                  (intptr_t)minst);
135
136
    /* Do platform-dependent initialization. */
137
    /* We have to do this as the very first thing, */
138
    /* because it detects attempts to run 80N86 executables (N>0) */
139
    /* on incompatible processors. */
140
683
    gp_init();
141
142
    /* Initialize the imager. */
143
144
    /* Reset debugging flags */
145
683
#ifdef PACIFY_VALGRIND
146
683
    VALGRIND_HG_DISABLE_CHECKING(gs_debug, 128);
147
683
#endif
148
683
    memset(gs_debug, 0, 128);
149
683
    gs_log_errors = 0;  /* gs_debug['#'] = 0 */
150
151
683
    gp_get_realtime(minst->base_time);
152
153
    /* Initialize the file search paths. */
154
683
    array = (ref *) gs_alloc_byte_array(minst->heap, max_lib_paths, sizeof(ref),
155
683
                                        "lib_path array");
156
683
    if (array == 0) {
157
0
        gs_lib_finit(1, gs_error_VMerror, minst->heap);
158
0
        code = gs_note_error(gs_error_VMerror);
159
0
        goto fail;
160
0
    }
161
683
    make_array(&minst->lib_path.container, avm_foreign, max_lib_paths,
162
683
               array);
163
683
    make_array(&minst->lib_path.list, avm_foreign | a_readonly, 0,
164
683
               minst->lib_path.container.value.refs);
165
683
    minst->lib_path.env = NULL;
166
683
    minst->lib_path.final = NULL;
167
683
    minst->lib_path.count = 0;
168
683
    minst->lib_path.first_is_current = 0;
169
683
    minst->user_errors = 1;
170
683
    minst->init_done = 0;
171
172
683
fail:
173
683
    if (gs_debug_c(gs_debug_flag_init_details))
174
683
        dmprintf2(minst->heap, "%% Init phase 0 %s, instance "PRI_INTPTR"\n",
175
683
                  code < 0 ? "failed" : "done", (intptr_t)minst);
176
177
683
    return code;
178
683
}
179
180
/* Initialization to be done before constructing any objects. */
181
int
182
gs_main_init1(gs_main_instance * minst)
183
12.2k
{
184
12.2k
    gs_dual_memory_t idmem;
185
12.2k
    name_table *nt = NULL;
186
12.2k
    int code;
187
188
12.2k
    if (minst->init_done >= 1)
189
11.6k
        return 0;
190
191
683
    if (gs_debug_c(gs_debug_flag_init_details))
192
683
        dmprintf1(minst->heap, "%% Init phase 1 started, instance "PRI_INTPTR"\n",
193
683
                  (intptr_t)minst);
194
195
683
    code = ialloc_init(&idmem, minst->heap,
196
683
                       minst->memory_clump_size, gs_have_level2());
197
198
683
    if (code < 0)
199
0
        goto fail_early;
200
201
683
    code = gs_lib_init1((gs_memory_t *)idmem.space_system);
202
683
    if (code < 0)
203
0
        goto fail;
204
683
    alloc_save_init(&idmem);
205
683
    {
206
683
        gs_memory_t *mem = (gs_memory_t *)idmem.space_system;
207
683
        nt = names_init(minst->name_table_size, idmem.space_system);
208
209
683
        if (nt == 0) {
210
0
            code = gs_note_error(gs_error_VMerror);
211
0
            goto fail;
212
0
        }
213
683
        mem->gs_lib_ctx->gs_name_table = nt;
214
683
        code = gs_register_struct_root(mem, &mem->gs_lib_ctx->name_table_root,
215
683
                                       (void **)&mem->gs_lib_ctx->gs_name_table,
216
683
                                       "the_gs_name_table");
217
683
        if (code < 0)
218
0
            goto fail;
219
683
        mem->gs_lib_ctx->client_check_file_permission = z_check_file_permissions;
220
683
    }
221
0
    code = obj_init(&minst->i_ctx_p, &idmem);  /* requires name_init */
222
683
    if (code < 0)
223
0
        goto fail;
224
683
    minst->init_done = 1;
225
683
    code = i_plugin_init(minst->i_ctx_p);
226
683
    if (code < 0)
227
0
        goto fail;
228
683
    code = i_iodev_init(&idmem);
229
683
    if (code < 0) {
230
0
fail:
231
0
        names_free(nt);
232
0
        if (minst->i_ctx_p == NULL)
233
0
            ialloc_finit(&idmem);
234
0
    }
235
683
fail_early:
236
237
683
    if (gs_debug_c(gs_debug_flag_init_details))
238
683
        dmprintf2(minst->heap, "%% Init phase 1 %s, instance "PRI_INTPTR"\n",
239
683
                  code < 0 ? "failed" : "done", (intptr_t)minst);
240
241
683
    return code;
242
683
}
243
244
/*
245
 * Invoke the interpreter. This layer doesn't do much (previously stdio
246
 * callouts were handled here instead of in the stream processing.
247
 */
248
static int
249
gs_main_interpret(gs_main_instance *minst, ref * pref, int user_errors,
250
                  int *pexit_code, ref * perror_object)
251
10.2k
{
252
10.2k
    int code;
253
254
    /* set interpreter pointer to lib_path */
255
10.2k
    minst->i_ctx_p->lib_path = &minst->lib_path;
256
257
10.2k
    code = gs_interpret(&minst->i_ctx_p, pref,
258
10.2k
                        user_errors, pexit_code, perror_object);
259
10.2k
    return code;
260
10.2k
}
261
262
/* gcc wants prototypes for all external functions. */
263
int gs_main_init2aux(gs_main_instance * minst);
264
265
static const op_array_table empty_table = { { { 0 } } };
266
267
/* This is an external function to work around      */
268
/* a bug in gcc 4.5.1 optimizer. See bug 692684.    */
269
683
int gs_main_init2aux(gs_main_instance * minst) {
270
683
    i_ctx_t * i_ctx_p = minst->i_ctx_p;
271
272
683
    if (minst->init_done < 2) {
273
683
        int code, exit_code;
274
683
        ref error_object, ifa;
275
276
        /* Set up enough so that we can safely be garbage collected */
277
683
        i_ctx_p->op_array_table_global = empty_table;
278
683
        i_ctx_p->op_array_table_local = empty_table;
279
280
683
        code = zop_init(i_ctx_p);
281
683
        if (code < 0)
282
0
            return code;
283
683
        code = op_init(i_ctx_p);        /* requires obj_init */
284
683
        if (code < 0)
285
0
            return code;
286
287
        /* Set up the array of additional initialization files. */
288
683
        make_const_string(&ifa, a_readonly | avm_foreign, gs_init_files_sizeof - 2, gs_init_files);
289
683
        code = i_initial_enter_name(i_ctx_p, "INITFILES", &ifa);
290
683
        if (code < 0)
291
0
            return code;
292
293
        /* Set up the array of emulator names. */
294
683
        make_const_string(&ifa, a_readonly | avm_foreign, gs_emulators_sizeof - 2, gs_emulators);
295
683
        code = i_initial_enter_name(i_ctx_p, "EMULATORS", &ifa);
296
683
        if (code < 0)
297
0
            return code;
298
299
        /* Pass the search path. */
300
683
        code = i_initial_enter_name(i_ctx_p, "LIBPATH", &minst->lib_path.list);
301
683
        if (code < 0)
302
0
            return code;
303
304
        /* Execute the standard initialization file. */
305
683
        code = gs_run_init_file(minst, &exit_code, &error_object);
306
683
        if (code < 0)
307
0
            return code;
308
683
        minst->init_done = 2;
309
310
        /* NB this is to be done with device parameters
311
         * both minst->display and  display_set_callback() are going away
312
        */
313
683
        if ((code = reopen_device_if_required(minst)) < 0)
314
0
            return code;
315
316
683
        if ((code = gs_main_run_string(minst,
317
683
                "JOBSERVER "
318
683
                " { false 0 .startnewjob } "
319
683
                " { NOOUTERSAVE not { save pop } if } "
320
683
                "ifelse", 0, &exit_code,
321
683
                &error_object)) < 0)
322
0
           return code;
323
683
    }
324
683
    return 0;
325
683
}
326
327
int
328
gs_main_set_language_param(gs_main_instance *minst,
329
                           gs_param_list    *plist)
330
0
{
331
0
    ref value;
332
0
    int code = 0;
333
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
334
0
    uint space = icurrent_space;
335
0
    gs_param_enumerator_t enumerator;
336
0
    gs_param_key_t key;
337
0
    gs_lib_ctx_t *ctx = minst->heap->gs_lib_ctx;
338
0
    ref error_object;
339
340
    /* If we're up and running as a jobserver, exit encapsulation. */
341
0
    if (minst->init_done > 1) {
342
0
        code = gs_main_run_string(minst,
343
0
                                  "JOBSERVER {true 0 startjob pop} if",
344
0
                                  0, &code, &error_object);
345
0
        if (code < 0) return code;
346
0
    }
347
348
0
    ialloc_set_space(idmemory, avm_system);
349
350
0
    param_init_enumerator(&enumerator);
351
0
    while ((code = param_get_next_key(plist, &enumerator, &key)) == 0) {
352
0
        char string_key[256]; /* big enough for any reasonable key */
353
0
        gs_param_typed_value pvalue;
354
355
0
        if (key.size > sizeof(string_key) - 1) {
356
0
            code = gs_note_error(gs_error_rangecheck);
357
0
            break;
358
0
        }
359
0
        memcpy(string_key, key.data, key.size);
360
0
        string_key[key.size] = 0;
361
0
        if ((code = param_read_typed(plist, string_key, &pvalue)) != 0) {
362
0
            code = (code > 0 ? gs_note_error(gs_error_unknownerror) : code);
363
0
            break;
364
0
        }
365
0
        switch (pvalue.type) {
366
0
        case gs_param_type_null:
367
0
            make_null(&value);
368
0
            break;
369
0
        case gs_param_type_bool:
370
0
            if (pvalue.value.b)
371
0
                make_true(&value);
372
0
            else
373
0
                make_false(&value);
374
0
            break;
375
0
        case gs_param_type_int:
376
0
            make_int(&value, (ps_int)pvalue.value.i);
377
0
            break;
378
0
        case gs_param_type_i64:
379
0
            make_int(&value, (ps_int)pvalue.value.i64);
380
0
            break;
381
0
        case gs_param_type_long:
382
0
            make_int(&value, (ps_int)pvalue.value.l);
383
0
            break;
384
0
        case gs_param_type_size_t:
385
0
            make_int(&value, (ps_int)pvalue.value.z);
386
0
            break;
387
0
        case gs_param_type_float:
388
0
            make_real(&value, pvalue.value.f);
389
0
            break;
390
0
        case gs_param_type_dict:
391
            /* We don't support dicts for now */
392
0
            continue;
393
0
        case gs_param_type_dict_int_keys:
394
            /* We don't support dicts with int keys for now */
395
0
            continue;
396
0
        case gs_param_type_array:
397
            /* We don't support arrays for now */
398
0
            continue;
399
0
        case gs_param_type_string:
400
0
            if (pvalue.value.s.data == NULL || pvalue.value.s.size == 0)
401
0
                make_empty_string(&value, a_readonly);
402
0
            else {
403
0
                size_t len = pvalue.value.s.size;
404
0
                byte *body = ialloc_string(len, "-s");
405
406
0
                if (body == NULL)
407
0
                    return gs_error_Fatal;
408
0
                memcpy(body, pvalue.value.s.data, len);
409
0
                make_const_string(&value, a_readonly | avm_system, len, body);
410
0
            }
411
0
            break;
412
0
        case gs_param_type_name:
413
0
            code = name_ref(ctx->memory, pvalue.value.n.data, pvalue.value.n.size, &value, 1);
414
0
            break;
415
0
        case gs_param_type_int_array:
416
            /* We don't support arrays for now */
417
0
            continue;
418
0
        case gs_param_type_float_array:
419
            /* We don't support arrays for now */
420
0
            continue;
421
0
        case gs_param_type_string_array:
422
            /* We don't support arrays for now */
423
0
            continue;
424
0
        default:
425
0
            continue;
426
0
        }
427
0
        if (code < 0)
428
0
            break;
429
430
0
        ialloc_set_space(idmemory, space);
431
        /* Enter the name in systemdict. */
432
0
        i_initial_enter_name_copy(minst->i_ctx_p, string_key, &value);
433
0
    }
434
435
0
    if (minst->init_done > 1) {
436
0
        int code2 = 0;
437
0
        code2 = gs_main_run_string(minst,
438
0
                                   "JOBSERVER {false 0 startjob pop} if",
439
0
                                   0, &code2, &error_object);
440
0
        if (code >= 0)
441
0
            code = code2;
442
0
    }
443
444
0
    return code;
445
0
}
446
447
static int
448
gs_main_push_params(gs_main_instance *minst)
449
1.35k
{
450
1.35k
    int code;
451
1.35k
    gs_c_param_list *plist;
452
453
1.35k
    plist = minst->param_list;
454
1.35k
    if (!plist)
455
1.35k
        return 0;
456
457
0
    code = gs_putdeviceparams(minst->i_ctx_p->pgs->device,
458
0
                              (gs_param_list *)plist);
459
0
    if (code < 0)
460
0
        return code;
461
462
0
    code = gs_main_set_language_param(minst, (gs_param_list *)plist);
463
0
    if (code < 0)
464
0
        return code;
465
466
0
    gs_c_param_list_release(plist);
467
468
0
    return code;
469
0
}
470
471
int
472
gs_main_init2(gs_main_instance * minst)
473
1.35k
{
474
1.35k
    i_ctx_t *i_ctx_p;
475
1.35k
    int code = gs_main_init1(minst);
476
477
1.35k
    if (code < 0)
478
0
        return code;
479
480
1.35k
    code = gs_main_push_params(minst);
481
1.35k
    if (code < 0)
482
0
        return code;
483
484
1.35k
    if (minst->init_done >= 2)
485
674
        return 0;
486
487
683
    if (gs_debug_c(gs_debug_flag_init_details))
488
683
        dmprintf1(minst->heap, "%% Init phase 2 started, instance "PRI_INTPTR"\n",
489
683
                  (intptr_t)minst);
490
491
683
    code = gs_main_init2aux(minst);
492
683
    if (code < 0)
493
0
       goto fail;
494
495
683
    i_ctx_p = minst->i_ctx_p; /* reopen_device_if_display or run_string may change it */
496
497
    /* Now process the initial saved-pages=... argument, if any as well as saved-pages-test */
498
683
    {
499
683
       gx_device *pdev = gs_currentdevice(minst->i_ctx_p->pgs); /* get the current device */
500
683
       gx_device_printer *ppdev = (gx_device_printer *)pdev;
501
502
683
        if (minst->saved_pages_test_mode) {
503
0
            if ((dev_proc(pdev, dev_spec_op)(pdev, gxdso_supports_saved_pages, NULL, 0) <= 0)) {
504
                /* no warning or error if saved-pages-test mode is used, just disable it */
505
0
                minst->saved_pages_test_mode = false;  /* device doesn't support it */
506
0
            } else {
507
0
                if ((code = gx_saved_pages_param_process(ppdev, (byte *)"begin", 5)) < 0)
508
0
                    goto fail;
509
0
                if (code > 0)
510
0
                    if ((code = gs_erasepage(minst->i_ctx_p->pgs)) < 0)
511
0
                        goto fail;
512
0
            }
513
683
        } else if (minst->saved_pages_initial_arg != NULL) {
514
0
            if (dev_proc(pdev, dev_spec_op)(pdev, gxdso_supports_saved_pages, NULL, 0) <= 0) {
515
0
                while (pdev->child)
516
0
                    pdev = pdev->child;   /* so we get the real device name */
517
0
                outprintf(minst->heap,
518
0
                          "   --saved-pages not supported by the '%s' device.\n",
519
0
                          pdev->dname);
520
0
                code = gs_error_Fatal;
521
0
                goto fail;
522
0
            }
523
0
            code = gx_saved_pages_param_process(ppdev, (byte *)minst->saved_pages_initial_arg,
524
0
                                                strlen(minst->saved_pages_initial_arg));
525
0
            if (code > 0)
526
0
                if ((code = gs_erasepage(minst->i_ctx_p->pgs)) < 0)
527
0
                    goto fail;
528
0
        }
529
683
    }
530
531
683
    if (code >= 0) {
532
683
        if (gs_debug_c(':'))
533
0
            print_resource_usage(minst, &gs_imemory, "Start");
534
683
        gp_readline_init(&minst->readline_data, minst->heap); /* lgtm [cpp/useless-expression] */
535
683
    }
536
537
683
fail:
538
683
    if (gs_debug_c(gs_debug_flag_init_details))
539
683
        dmprintf2(minst->heap, "%% Init phase 2 %s, instance "PRI_INTPTR"\n",
540
683
                  code < 0 ? "failed" : "done", (intptr_t)minst);
541
542
683
    return code;
543
683
}
544
545
/* ------ Search paths ------ */
546
547
#define LIB_PATH_EXTEND 5
548
549
/* If the existing array is full, extend it */
550
static int
551
extend_path_list_container (gs_main_instance * minst, gs_file_path * pfp)
552
0
{
553
0
    uint len = r_size(&minst->lib_path.container);
554
0
    ref *paths, *opaths = minst->lib_path.container.value.refs;
555
556
    /* Add 5 entries at a time to reduce VM thrashing */
557
0
    paths = (ref *) gs_alloc_byte_array(minst->heap, len + LIB_PATH_EXTEND, sizeof(ref),
558
0
                                        "extend_path_list_container array");
559
560
0
    if (paths == 0) {
561
0
        return_error(gs_error_VMerror);
562
0
    }
563
0
    make_array(&minst->lib_path.container, avm_foreign, len + LIB_PATH_EXTEND, paths);
564
0
    make_array(&minst->lib_path.list, avm_foreign | a_readonly, 0,
565
0
               minst->lib_path.container.value.refs);
566
567
0
    memcpy(paths, opaths, len * sizeof(ref));
568
0
    r_set_size(&minst->lib_path.list, len);
569
570
0
    gs_free_object (minst->heap, opaths, "extend_path_list_container");
571
0
    return(0);
572
0
}
573
574
static int
575
lib_path_insert_copy_of_string(gs_main_instance *minst, int pos, size_t strlen, const char *str)
576
71.0k
{
577
71.0k
    ref *paths;
578
71.0k
    int listlen = r_size(&minst->lib_path.list); /* The real number of entries currently in the list */
579
71.0k
    byte *newstr;
580
71.0k
    int code;
581
582
    /* Extend the container if required */
583
71.0k
    if (listlen == r_size(&minst->lib_path.container)) {
584
0
        code = extend_path_list_container(minst, &minst->lib_path);
585
0
        if (code < 0) {
586
0
            emprintf(minst->heap, "\nAdding path to search paths failed.\n");
587
0
            return(code);
588
0
        }
589
0
    }
590
591
    /* Copy the string */
592
71.0k
    newstr = gs_alloc_string(minst->heap, strlen, "lib_path_add");
593
71.0k
    if (newstr == NULL)
594
0
        return gs_error_VMerror;
595
71.0k
    memcpy(newstr, str, strlen);
596
597
    /* Shuffle up the entries */
598
71.0k
    paths = &minst->lib_path.container.value.refs[pos];
599
71.0k
    if (pos != listlen)
600
0
        memmove(paths + 1, paths, (listlen-pos) * sizeof(*paths));
601
602
    /* And insert the new string, converted to a PS thing */
603
71.0k
    make_const_string(paths, avm_foreign | a_readonly,
604
71.0k
                      strlen,
605
71.0k
                      newstr);
606
607
    /* Update the list length */
608
71.0k
    r_set_size(&minst->lib_path.list, listlen+1);
609
610
71.0k
    return 0;
611
71.0k
}
612
613
/* Internal routine to add a set of directories to a search list. */
614
/* Returns 0 or an error code. */
615
616
static int
617
lib_path_add(gs_main_instance * minst, const char *dirs)
618
16.3k
{
619
16.3k
    gs_file_path * pfp = &minst->lib_path;
620
16.3k
    uint len = r_size(&pfp->list);
621
16.3k
    const char *dpath = dirs;
622
16.3k
    int code;
623
624
16.3k
    if (dirs == 0)
625
0
        return 0;
626
627
71.0k
    for (;;) {                  /* Find the end of the next directory name. */
628
71.0k
        const char *npath = dpath;
629
630
2.42M
        while (*npath != 0 && *npath != gp_file_name_list_separator)
631
2.34M
            npath++;
632
71.0k
        if (npath > dpath) {
633
71.0k
            code = gs_add_control_path_len(minst->heap, gs_permit_file_reading, dpath, npath - dpath);
634
71.0k
            if (code < 0) return code;
635
636
71.0k
            code = lib_path_insert_copy_of_string(minst, len, npath - dpath, dpath);
637
71.0k
            if (code < 0)
638
0
                return code;
639
71.0k
            len++;
640
            /* Update length/count so we don't lose entries if a later
641
             * iteration fails. */
642
71.0k
            r_set_size(&pfp->list, len);
643
71.0k
        }
644
71.0k
        if (!*npath)
645
16.3k
            break;
646
54.6k
        dpath = npath + 1;
647
54.6k
    }
648
16.3k
    return 0;
649
16.3k
}
650
651
static void
652
set_lib_path_length(gs_main_instance * minst, int newsize)
653
6.14k
{
654
6.14k
    gs_file_path * pfp = &minst->lib_path;
655
6.14k
    uint len = r_size(&pfp->list); /* Yes, list, not container */
656
6.14k
    uint i;
657
658
    /* Free any entries that are discarded by us shortening the list */
659
77.1k
    for (i = newsize; i < len; i++)
660
71.0k
        gs_free_object(minst->heap, pfp->container.value.refs[i].value.bytes, "lib_path entry");
661
6.14k
    r_set_size(&pfp->list, newsize);
662
6.14k
}
663
664
/* Add a library search path to the list. */
665
int
666
gs_main_add_lib_path(gs_main_instance * minst, const char *lpath)
667
0
{
668
0
    gs_file_path * pfp = &minst->lib_path;
669
0
    int code;
670
671
    /* Throw away all the elements after the user ones. */
672
0
    set_lib_path_length(minst, pfp->count + pfp->first_is_current);
673
674
    /* Now add the new one */
675
0
    code = lib_path_add(minst, lpath);
676
0
    if (code < 0)
677
0
        return code;
678
679
    /* Update the count of user paths */
680
0
    pfp->count = r_size(&pfp->list) - pfp->first_is_current;
681
682
    /* Now add back in the others */
683
0
    return gs_main_set_lib_paths(minst);
684
0
}
685
686
/* ------ Execution ------ */
687
688
extern_gx_io_device_table();
689
690
/* Complete the list of library search paths. */
691
/* This may involve adding the %rom%Resource/Init and %rom%lib/ paths (for COMPILE_INITS) */
692
/* and adding or removing the current directory as the first element (for -P and -P-). */
693
int
694
gs_main_set_lib_paths(gs_main_instance * minst)
695
5.46k
{
696
5.46k
    int code = 0;
697
5.46k
    int i, have_rom_device = 0;
698
699
    /* We are entered with a list potentially full of stuff already.
700
     * In general the list is of the form:
701
     *    <optionally, the current directory>
702
     *    <any -I specified directories, "count" of them>
703
     *    <any directories from the environment variable>
704
     *    <if there is a romfs, the romfs paths>
705
     *    <any directories from the 'final' variable>
706
     *
707
     * Unfortunately, the value read from the environment variable may not
708
     * have actually been read the first time this function is called, so
709
     * we can see the value change over time. Short of a complete rewrite
710
     * this requires us to clear the latter part of the list and repopulate
711
     * it each time we run through.
712
     */
713
714
    /* First step, ensure that we have the current directory as our
715
     * first entry, iff we need it. */
716
5.46k
    if (minst->search_here_first && !minst->lib_path.first_is_current) {
717
        /* We should have a "gp_current_directory" at the start, and we haven't.
718
         * So insert one. */
719
720
0
        code = gs_add_control_path_len(minst->heap, gs_permit_file_reading,
721
0
                gp_current_directory_name, strlen(gp_current_directory_name));
722
0
        if (code < 0) return code;
723
724
0
        code = lib_path_insert_copy_of_string(minst, 0,
725
0
                                              strlen(gp_current_directory_name),
726
0
                                              gp_current_directory_name);
727
0
        if (code < 0)
728
0
            return code;
729
5.46k
    } else if (!minst->search_here_first && minst->lib_path.first_is_current) {
730
        /* We have a "gp_current_directory" at the start, and we shouldn't have.
731
         * Remove it. */
732
0
        int listlen = r_size(&minst->lib_path.list); /* The real number of entries currently in the list */
733
0
        ref *paths = minst->lib_path.container.value.refs;
734
735
0
        gs_free_object(minst->heap, paths->value.bytes, "lib_path entry");
736
0
        --listlen;
737
0
        memmove(paths, paths + 1, listlen * sizeof(*paths));
738
0
        r_set_size(&minst->lib_path.list, listlen);
739
740
0
        code = gs_remove_control_path_len(minst->heap, gs_permit_file_reading,
741
0
                gp_current_directory_name, strlen(gp_current_directory_name));
742
0
        if (code < 0) return code;
743
0
    }
744
5.46k
    minst->lib_path.first_is_current = minst->search_here_first;
745
746
    /* Now, the horrid bit. We throw away all the entries after the user entries */
747
5.46k
    set_lib_path_length(minst, minst->lib_path.count + minst->lib_path.first_is_current);
748
749
    /* Now we (re)populate the end of the list. */
750
5.46k
    if (minst->lib_path.env != 0) {
751
0
        code = lib_path_add(minst, minst->lib_path.env);
752
0
        if (code < 0) return code;
753
754
0
        code = gs_add_control_path(minst->heap, gs_permit_file_reading, minst->lib_path.env);
755
0
        if (code < 0) return code;
756
0
    }
757
    /* now put the %rom%lib/ device path before the gs_lib_default_path on the list */
758
38.2k
    for (i = 0; i < gx_io_device_table_count; i++) {
759
38.2k
        const gx_io_device *iodev = gx_io_device_table[i];
760
38.2k
        const char *dname = iodev->dname;
761
38.2k
        const char *fcheckname = "Resource/Init/gs_init.ps";
762
763
38.2k
        if (dname && strlen(dname) == 5 && !memcmp("%rom%", dname, 5)) {
764
5.46k
            struct stat pstat;
765
            /* gs_error_unregistered means no usable romfs is available */
766
            /* gpdl always includes a real romfs, but it may or may have the Postscript
767
               resources in it, so we explicitly check for a fairly vital file
768
             */
769
5.46k
            int code = iodev->procs.file_status((gx_io_device *)iodev, fcheckname, &pstat);
770
5.46k
            if (code != gs_error_unregistered && code != gs_error_undefinedfilename){
771
5.46k
                have_rom_device = 1;
772
5.46k
            }
773
5.46k
            break;
774
5.46k
        }
775
38.2k
    }
776
5.46k
    if (have_rom_device) {
777
5.46k
        code = lib_path_add(minst, "%rom%Resource/Init/");
778
5.46k
        if (code < 0)
779
0
            return code;
780
5.46k
        code = lib_path_add(minst, "%rom%lib/");
781
5.46k
    }
782
0
    else code = 0;
783
784
5.46k
    if (minst->lib_path.final != NULL && code >= 0)
785
5.46k
        code = lib_path_add(minst, minst->lib_path.final);
786
5.46k
    return code;
787
5.46k
}
788
789
/* Open a file, using the search paths. */
790
int
791
gs_main_lib_open(gs_main_instance * minst, const char *file_name, ref * pfile)
792
683
{
793
    /* This is a separate procedure only to avoid tying up */
794
    /* extra stack space while running the file. */
795
683
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
796
683
#define maxfn 2048
797
683
    char fn[maxfn];
798
683
    uint len;
799
800
683
    return lib_file_open(&minst->lib_path, imemory,
801
683
                         NULL, /* Don't check permissions here, because permlist
802
                                  isn't ready running init files. */
803
683
                          file_name, strlen(file_name), fn, maxfn, &len, pfile);
804
683
}
805
806
/* Open and execute a file. */
807
int
808
gs_main_run_file(gs_main_instance * minst, const char *file_name, int user_errors, int *pexit_code, ref * perror_object)
809
0
{
810
0
    ref initial_file;
811
0
    int code = gs_main_run_file_open(minst, file_name, &initial_file);
812
813
0
    if (code < 0)
814
0
        return code;
815
0
    return gs_main_interpret(minst, &initial_file, user_errors,
816
0
                        pexit_code, perror_object);
817
0
}
818
int
819
gs_main_run_file_open(gs_main_instance * minst, const char *file_name, ref * pfref)
820
683
{
821
683
    gs_main_set_lib_paths(minst);
822
683
    if (gs_main_lib_open(minst, file_name, pfref) < 0) {
823
0
        emprintf1(minst->heap,
824
0
                  "Can't find initialization file %s.\n",
825
0
                  file_name);
826
0
        return_error(gs_error_Fatal);
827
0
    }
828
683
    r_set_attrs(pfref, a_execute + a_executable);
829
683
    return 0;
830
683
}
831
832
/* Open and run the very first initialization file. */
833
static int
834
gs_run_init_file(gs_main_instance * minst, int *pexit_code, ref * perror_object)
835
683
{
836
683
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
837
683
    ref ifile;
838
683
    ref first_token;
839
683
    int code;
840
683
    scanner_state state;
841
842
683
    gs_main_set_lib_paths(minst);
843
683
    code = gs_main_run_file_open(minst, gs_init_file, &ifile);
844
683
    if (code < 0) {
845
0
        *pexit_code = 255;
846
0
        return code;
847
0
    }
848
    /* Check to make sure the first token is an integer */
849
    /* (for the version number check.) */
850
683
    gs_scanner_init(&state, &ifile);
851
683
    code = gs_scan_token(i_ctx_p, &first_token, &state);
852
683
    if (code != 0 || !r_has_type(&first_token, t_integer)) {
853
0
        emprintf1(minst->heap,
854
0
                  "Initialization file %s does not begin with an integer.\n",
855
0
                  gs_init_file);
856
0
        *pexit_code = 255;
857
0
        return_error(gs_error_Fatal);
858
0
    }
859
683
    *++osp = first_token;
860
683
    r_set_attrs(&ifile, a_executable);
861
683
    return gs_main_interpret(minst, &ifile, minst->user_errors,
862
683
                        pexit_code, perror_object);
863
683
}
864
865
/* Run a string. */
866
int
867
gs_main_run_string(gs_main_instance * minst, const char *str, int user_errors,
868
                   int *pexit_code, ref * perror_object)
869
3.41k
{
870
3.41k
    return gs_main_run_string_with_length(minst, str, (uint) strlen(str),
871
3.41k
                                          user_errors,
872
3.41k
                                          pexit_code, perror_object);
873
3.41k
}
874
int
875
gs_main_run_string_with_length(gs_main_instance * minst, const char *str,
876
         uint length, int user_errors, int *pexit_code, ref * perror_object)
877
3.41k
{
878
3.41k
    int code;
879
880
3.41k
    code = gs_main_run_string_begin(minst, user_errors,
881
3.41k
                                    pexit_code, perror_object);
882
3.41k
    if (code < 0)
883
0
        return code;
884
3.41k
    code = gs_main_run_string_continue(minst, str, length, user_errors,
885
3.41k
                                       pexit_code, perror_object);
886
3.41k
    if (code != gs_error_NeedInput)
887
683
        return code;
888
889
2.73k
    code = gs_main_run_string_end(minst, user_errors,
890
2.73k
                                  pexit_code, perror_object);
891
    /* Not okay for user to use .needinput
892
     * This treats it as a fatal error.
893
     */
894
2.73k
    if (code == gs_error_NeedInput)
895
0
        return_error(gs_error_Fatal);
896
2.73k
    return code;
897
2.73k
}
898
899
/* Set up for a suspendable run_string. */
900
int
901
gs_main_run_string_begin(gs_main_instance * minst, int user_errors,
902
                         int *pexit_code, ref * perror_object)
903
3.41k
{
904
3.41k
    const char *setup = ".runstringbegin";
905
3.41k
    ref rstr;
906
3.41k
    int code;
907
908
3.41k
    gs_main_set_lib_paths(minst);
909
3.41k
    make_const_string(&rstr, avm_foreign | a_readonly | a_executable,
910
3.41k
                      strlen(setup), (const byte *)setup);
911
3.41k
    code = gs_main_interpret(minst, &rstr, user_errors, pexit_code,
912
3.41k
                             perror_object);
913
3.41k
    return (code == gs_error_NeedInput ? 0 : code == 0 ? gs_error_Fatal : code);
914
3.41k
}
915
/* Continue running a string with the option of suspending. */
916
int
917
gs_main_run_string_continue(gs_main_instance * minst, const char *str,
918
         uint length, int user_errors, int *pexit_code, ref * perror_object)
919
3.41k
{
920
3.41k
    ref rstr;
921
922
3.41k
    if (length == 0)
923
0
        return 0;               /* empty string signals EOF */
924
3.41k
    make_const_string(&rstr, avm_foreign | a_readonly, length,
925
3.41k
                      (const byte *)str);
926
3.41k
    return gs_main_interpret(minst, &rstr, user_errors, pexit_code,
927
3.41k
                             perror_object);
928
3.41k
}
929
uint
930
gs_main_get_uel_offset(gs_main_instance * minst)
931
0
{
932
0
    if (minst->i_ctx_p == NULL)
933
0
        return 0;
934
0
    return (uint)minst->i_ctx_p->uel_position;
935
0
}
936
937
/* Signal EOF when suspended. */
938
int
939
gs_main_run_string_end(gs_main_instance * minst, int user_errors,
940
                       int *pexit_code, ref * perror_object)
941
2.73k
{
942
2.73k
    ref rstr;
943
944
2.73k
    make_empty_const_string(&rstr, avm_foreign | a_readonly);
945
2.73k
    return gs_main_interpret(minst, &rstr, user_errors, pexit_code,
946
2.73k
                             perror_object);
947
2.73k
}
948
949
gs_memory_t *
950
gs_main_get_device_memory(gs_main_instance * minst)
951
0
{
952
0
  gs_memory_t *dev_mem = NULL;
953
0
  if (minst && minst->init_done >= 1) {
954
0
      i_ctx_t * i_ctx_p = minst->i_ctx_p;
955
0
      dev_mem = imemory_global->stable_memory;
956
0
  }
957
0
  return dev_mem;
958
0
}
959
960
int
961
gs_main_set_device(gs_main_instance * minst, gx_device *pdev)
962
0
{
963
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
964
0
    ref error_object;
965
0
    int code;
966
967
0
    if (pdev == NULL) {
968
        /* Leave job encapsulation, restore the graphics state gsaved below (so back to the nullpage device)
969
           and re-enter job encapsulation.
970
           We rely on the end of job encapsulation restore to the put the gstate stack back how it was when
971
           we entered job encapsulation below, so the grestore will pickup the correct gstate.
972
         */
973
0
        code = gs_main_run_string(minst,
974
0
                                 "true 0 startjob pop grestore false 0 startjob pop",
975
0
                                 0, &code, &error_object);
976
0
        if (code < 0) goto done;
977
0
    }
978
0
    else {
979
        /* Leave job encapsulation, and save the graphics state (including the device: nullpage)
980
           Store the page size in a dictionary, which we'll use to configure the incoming device */
981
0
        code = gs_main_run_string(minst,
982
0
                                  "true 0 startjob pop gsave "
983
                                  /* /PageSize /GetDeviceParam .special_op will either return:
984
                                   * /PageSize [ <width> <height> ] true   (if it exists) or
985
                                   * false                                 (if it does not) */
986
0
                                  "<< /PageSize /GetDeviceParam .special_op "
987
                                  /* If we wanted to force a default pagesize, we'd do:
988
                                   * "not { /PageSize [595 842] } if "
989
                                   * but for now we'll just leave the default as it is, and do: */
990
0
                                  "pop "
991
0
                                  ">> "
992
0
                                  , 0, &code, &error_object);
993
0
        if (code < 0) goto done;
994
        /* First call goes to the C directly to actually set the device. This
995
         * avoids the SAFER checks. */
996
0
        code = zsetdevice_no_safer(i_ctx_p, pdev);
997
0
        if (code < 0) goto done;
998
0
        code = zcurrentdevice(i_ctx_p);
999
0
        if (code < 0) goto done;
1000
0
        code = gs_main_run_string(minst,
1001
                                  /* Set the device again to the same one. This determines
1002
                                   * whether to erase page or not, but passes the safer
1003
                                   * checks as the device is unchanged. */
1004
0
                                  "setdevice "
1005
0
                                  "setpagedevice "
1006
                                  /* GS specifics: Force the cached copy of the params to be updated. */
1007
0
                                  "currentpagedevice pop "
1008
                                  /* Setup the halftone */
1009
0
                                  ".setdefaultscreen "
1010
                                  /* Re-run the scheduled initialisation procs, in case we've just set pdfwrite */
1011
0
                                  "1183615869 internaldict /.execute_scheduled_inits get exec "
1012
                                  /* Re-enter job encapsulation */
1013
0
                                  "false 0 startjob pop "
1014
0
                                  , 0, &code, &error_object);
1015
0
        if (code < 0) goto done;
1016
0
    }
1017
0
done:
1018
0
    return code;
1019
0
}
1020
1021
/* ------ Operand stack access ------ */
1022
1023
/* These are built for comfort, not for speed. */
1024
1025
static int
1026
push_value(gs_main_instance *minst, ref * pvalue)
1027
0
{
1028
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1029
0
    int code = ref_stack_push(&o_stack, 1);
1030
1031
0
    if (code < 0)
1032
0
        return code;
1033
0
    *ref_stack_index(&o_stack, 0L) = *pvalue;
1034
0
    return 0;
1035
0
}
1036
1037
int
1038
gs_push_boolean(gs_main_instance * minst, bool value)
1039
0
{
1040
0
    ref vref;
1041
1042
0
    make_bool(&vref, value);
1043
0
    return push_value(minst, &vref);
1044
0
}
1045
1046
int
1047
gs_push_integer(gs_main_instance * minst, long value)
1048
0
{
1049
0
    ref vref;
1050
1051
0
    make_int(&vref, value);
1052
0
    return push_value(minst, &vref);
1053
0
}
1054
1055
int
1056
gs_push_real(gs_main_instance * minst, double value)
1057
0
{
1058
0
    ref vref;
1059
1060
0
    make_real(&vref, value);
1061
0
    return push_value(minst, &vref);
1062
0
}
1063
1064
int
1065
gs_push_string(gs_main_instance * minst, byte * chars, uint length,
1066
               bool read_only)
1067
0
{
1068
0
    ref vref;
1069
1070
0
    make_string(&vref, avm_foreign | (read_only ? a_readonly : a_all),
1071
0
                length, (byte *) chars);
1072
0
    return push_value(minst, &vref);
1073
0
}
1074
1075
static int
1076
pop_value(i_ctx_t *i_ctx_p, ref * pvalue)
1077
0
{
1078
0
    if (!ref_stack_count(&o_stack))
1079
0
        return_error(gs_error_stackunderflow);
1080
0
    *pvalue = *ref_stack_index(&o_stack, 0L);
1081
0
    return 0;
1082
0
}
1083
1084
int
1085
gs_pop_boolean(gs_main_instance * minst, bool * result)
1086
0
{
1087
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1088
0
    ref vref;
1089
0
    int code = pop_value(i_ctx_p, &vref);
1090
1091
0
    if (code < 0)
1092
0
        return code;
1093
0
    check_type_only(vref, t_boolean);
1094
0
    *result = vref.value.boolval;
1095
0
    ref_stack_pop(&o_stack, 1);
1096
0
    return 0;
1097
0
}
1098
1099
int
1100
gs_pop_integer(gs_main_instance * minst, long *result)
1101
0
{
1102
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1103
0
    ref vref;
1104
0
    int code = pop_value(i_ctx_p, &vref);
1105
1106
0
    if (code < 0)
1107
0
        return code;
1108
0
    check_type_only(vref, t_integer);
1109
0
    *result = vref.value.intval;
1110
0
    ref_stack_pop(&o_stack, 1);
1111
0
    return 0;
1112
0
}
1113
1114
int
1115
gs_pop_real(gs_main_instance * minst, float *result)
1116
0
{
1117
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1118
0
    ref vref;
1119
0
    int code = pop_value(i_ctx_p, &vref);
1120
1121
0
    if (code < 0)
1122
0
        return code;
1123
0
    switch (r_type(&vref)) {
1124
0
        case t_real:
1125
0
            *result = vref.value.realval;
1126
0
            break;
1127
0
        case t_integer:
1128
0
            *result = (float)(vref.value.intval);
1129
0
            break;
1130
0
        default:
1131
0
            return_error(gs_error_typecheck);
1132
0
    }
1133
0
    ref_stack_pop(&o_stack, 1);
1134
0
    return 0;
1135
0
}
1136
1137
int
1138
gs_pop_string(gs_main_instance * minst, gs_string * result)
1139
0
{
1140
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1141
0
    ref vref;
1142
0
    int code = pop_value(i_ctx_p, &vref);
1143
1144
0
    if (code < 0)
1145
0
        return code;
1146
0
    switch (r_type(&vref)) {
1147
0
        case t_name:
1148
0
            name_string_ref(minst->heap, &vref, &vref);
1149
0
            code = 1;
1150
0
            goto rstr;
1151
0
        case t_string:
1152
0
            code = (r_has_attr(&vref, a_write) ? 0 : 1);
1153
0
          rstr:result->data = vref.value.bytes;
1154
0
            result->size = r_size(&vref);
1155
0
            break;
1156
0
        default:
1157
0
            return_error(gs_error_typecheck);
1158
0
    }
1159
0
    ref_stack_pop(&o_stack, 1);
1160
0
    return code;
1161
0
}
1162
1163
/* ------ Termination ------ */
1164
1165
/* Get the names of temporary files.
1166
 * Each name is null terminated, and the last name is
1167
 * terminated by a double null.
1168
 * We retrieve the names of temporary files just before
1169
 * the interpreter finishes, and then delete the files
1170
 * after the interpreter has closed all files.
1171
 */
1172
static char *gs_main_tempnames(gs_main_instance *minst)
1173
683
{
1174
683
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1175
683
    ref *SAFETY;
1176
683
    ref *tempfiles;
1177
683
    ref keyval[2];      /* for key and value */
1178
683
    char *tempnames = NULL;
1179
683
    int i;
1180
683
    int idict;
1181
683
    int len = 0;
1182
683
    const byte *data = NULL;
1183
683
    uint size;
1184
683
    if (minst->init_done >= 2) {
1185
683
        if (dict_find_string(systemdict, "SAFETY", &SAFETY) <= 0 ||
1186
683
            dict_find_string(SAFETY, "tempfiles", &tempfiles) <= 0)
1187
0
            return NULL;
1188
        /* get lengths of temporary filenames */
1189
683
        idict = dict_first(tempfiles);
1190
1.35k
        while ((idict = dict_next(tempfiles, idict, &keyval[0])) >= 0) {
1191
669
            if (obj_string_data(minst->heap, &keyval[0], &data, &size) >= 0)
1192
669
                len += size + 1;
1193
669
        }
1194
683
        if (len != 0)
1195
669
            tempnames = (char *)malloc(len+1);
1196
683
        if (tempnames) {
1197
669
            memset(tempnames, 0, len+1);
1198
            /* copy temporary filenames */
1199
669
            idict = dict_first(tempfiles);
1200
669
            i = 0;
1201
1.33k
            while ((idict = dict_next(tempfiles, idict, &keyval[0])) >= 0) {
1202
669
                if (obj_string_data(minst->heap, &keyval[0], &data, &size) >= 0) {
1203
669
                    memcpy(tempnames+i, (const char *)data, size);
1204
669
                    i+= size;
1205
669
                    tempnames[i++] = '\0';
1206
669
                }
1207
669
            }
1208
669
        }
1209
683
    }
1210
683
    return tempnames;
1211
683
}
1212
1213
static void
1214
gs_finit_push_systemdict(i_ctx_t *i_ctx_p)
1215
683
{
1216
683
    if (i_ctx_p == NULL)
1217
0
        return;
1218
683
    if (dsp == dstop ) {
1219
0
        if (ref_stack_extend(&d_stack, 1) < 0) {
1220
            /* zend() cannot fail */
1221
0
            (void)zend(i_ctx_p);
1222
0
        }
1223
0
    }
1224
683
    dsp++;
1225
683
    ref_assign(dsp, systemdict);
1226
683
}
1227
1228
/* Free all resources and return. */
1229
int
1230
gs_main_finit(gs_main_instance * minst, int exit_status, int env_code)
1231
683
{
1232
683
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1233
683
    gs_dual_memory_t dmem = {0};
1234
683
    int exit_code;
1235
683
    ref error_object;
1236
683
    char *tempnames = NULL;
1237
683
    gs_lib_ctx_core_t *core;
1238
1239
    /* NB: need to free gs_name_table
1240
     */
1241
1242
    /*
1243
     * Previous versions of this code closed the devices in the
1244
     * device list here.  Since these devices are now prototypes,
1245
     * they cannot be opened, so they do not need to be closed;
1246
     * alloc_restore_all will close dynamically allocated devices.
1247
     */
1248
683
    tempnames = gs_main_tempnames(minst);
1249
1250
    /* by the time we get here, we *must* avoid any random redefinitions of
1251
     * operators etc, so we push systemdict onto the top of the dict stack.
1252
     * We do this in C to avoid running into any other re-defininitions in the
1253
     * Postscript world.
1254
     */
1255
683
    gs_finit_push_systemdict(i_ctx_p);
1256
1257
    /* We have to disable BGPrint before we call interp_reclaim() to prevent the
1258
     * parent rendering thread initialising for the next page, whilst we are
1259
     * removing objects it may want to access - for example, the I/O device table.
1260
     * We also have to mess with the BeginPage/EndPage procs so that we don't
1261
     * trigger a spurious extra page to be emitted.
1262
     */
1263
683
    if (minst->init_done >= 2) {
1264
683
        gs_main_run_string(minst,
1265
683
            "/BGPrint /GetDeviceParam .special_op \
1266
683
            {{ <</BeginPage {pop} /EndPage {pop pop //false } \
1267
683
              /BGPrint false /NumRenderingThreads 0>> setpagedevice} if} if \
1268
683
              serverdict /.jobsavelevel get 0 eq {/quit} {/stop} ifelse \
1269
683
              .systemvar exec",
1270
683
            0 , &exit_code, &error_object);
1271
683
    }
1272
1273
    /*
1274
     * Close the "main" device, because it may need to write out
1275
     * data before destruction. pdfwrite needs so.
1276
     */
1277
683
    if (minst->init_done >= 2) {
1278
683
        int code = 0;
1279
1280
683
        if (idmemory->reclaim != 0) {
1281
683
            code = interp_reclaim(&minst->i_ctx_p, avm_global);
1282
1283
            /* We ignore gs_error_VMerror because it comes from gs_vmreclaim()
1284
            calling context_state_load(), and we don't seem to depend on the
1285
            missing fields. */
1286
683
            if (code == gs_error_VMerror) {
1287
0
                if (exit_status == 0 || exit_status == gs_error_Quit) {
1288
0
                    exit_status = gs_error_VMerror;
1289
0
                }
1290
0
            }
1291
683
            else if (code < 0) {
1292
0
                ref error_name;
1293
0
                if (tempnames)
1294
0
                    free(tempnames);
1295
1296
0
                if (gs_errorname(i_ctx_p, code, &error_name) >= 0) {
1297
0
                    char err_str[32] = {0};
1298
0
                    name_string_ref(imemory, &error_name, &error_name);
1299
0
                    memcpy(err_str, error_name.value.const_bytes, r_size(&error_name));
1300
0
                    emprintf2(imemory, "ERROR: %s (%d) reclaiming the memory while the interpreter finalization.\n", err_str, code);
1301
0
                }
1302
0
                else {
1303
0
                    emprintf1(imemory, "UNKNOWN ERROR %d reclaiming the memory while the interpreter finalization.\n", code);
1304
0
                }
1305
#ifdef MEMENTO
1306
                if (Memento_squeezing() && code != gs_error_VMerror ) return gs_error_Fatal;
1307
#endif
1308
0
                return gs_error_Fatal;
1309
0
            }
1310
683
            i_ctx_p = minst->i_ctx_p; /* interp_reclaim could change it. */
1311
683
        }
1312
1313
683
        if (i_ctx_p->pgs != NULL && i_ctx_p->pgs->device != NULL &&
1314
683
            gx_device_is_null(i_ctx_p->pgs->device)) {
1315
            /* if the job replaced the device with the nulldevice, we we need to grestore
1316
               away that device, so the block below can properly dispense
1317
               with the default device.
1318
             */
1319
0
            int code = gs_grestoreall(i_ctx_p->pgs);
1320
0
            if (code < 0) {
1321
0
                free(tempnames);
1322
0
                return_error(gs_error_Fatal);
1323
0
            }
1324
0
        }
1325
1326
683
        if (i_ctx_p->pgs != NULL && i_ctx_p->pgs->device != NULL) {
1327
683
            gx_device *pdev = i_ctx_p->pgs->device;
1328
683
            const char * dname = pdev->dname;
1329
683
            gs_gc_root_t dev_root;
1330
683
            gs_gc_root_t *dev_root_ptr = &dev_root;
1331
            /* There is a chance that, during the call to gs_main_run_string(), the interpreter may
1332
             * decide to call the garbager - the device is in gc memory, and the only reference to it
1333
             * (in the gstate) has been removed, thus it can be destroyed by the garbager.
1334
             * Counter-intuitively, adjusting the reference count makes not difference to that.
1335
             * Register the device as a gc 'root' so it will be implicitely marked by garbager, and
1336
             * and thus surive until control returns here.
1337
             */
1338
683
            if (gs_register_struct_root(pdev->memory, &dev_root_ptr, (void **)&pdev, "gs_main_finit") < 0) {
1339
0
                free(tempnames);
1340
0
                return_error(gs_error_Fatal);
1341
0
            }
1342
1343
            /* make sure device doesn't isn't freed by .uninstalldevice */
1344
683
            rc_adjust(pdev, 1, "gs_main_finit");
1345
            /* deactivate the device just before we close it for the last time */
1346
683
            gs_main_run_string(minst,
1347
                /* we need to do the 'quit' so we don't loop for input (double quit) */
1348
683
                ".uninstallpagedevice serverdict \
1349
683
                /.jobsavelevel get 0 eq {/quit} {/stop} ifelse .systemvar exec",
1350
683
                0 , &exit_code, &error_object);
1351
683
            code = gs_closedevice(pdev);
1352
683
            if (code < 0) {
1353
0
                ref error_name;
1354
0
                if (gs_errorname(i_ctx_p, code, &error_name) >= 0) {
1355
0
                    char err_str[32] = {0};
1356
0
                    name_string_ref(imemory, &error_name, &error_name);
1357
0
                    memcpy(err_str, error_name.value.const_bytes, r_size(&error_name));
1358
0
                    emprintf3(imemory, "ERROR: %s (%d) on closing %s device.\n", err_str, code, dname);
1359
0
                }
1360
0
                else {
1361
0
                    emprintf2(imemory, "UNKNOWN ERROR %d closing %s device.\n", code, dname);
1362
0
               }
1363
0
            }
1364
683
            gs_unregister_root(pdev->memory, dev_root_ptr, "gs_main_finit");
1365
683
            rc_decrement(pdev, "gs_main_finit");                /* device might be freed */
1366
683
            if (exit_status == 0 || exit_status == gs_error_Quit)
1367
683
                exit_status = code;
1368
683
        }
1369
1370
      /* Flush stdout and stderr */
1371
683
      gs_main_run_string(minst,
1372
683
        "(%stdout) (w) file closefile (%stderr) (w) file closefile \
1373
683
        serverdict /.jobsavelevel get 0 eq {/quit} {/stop} ifelse .systemexec \
1374
683
          systemdict /savedinitialgstate .forceundef",
1375
683
        0 , &exit_code, &error_object);
1376
683
    }
1377
683
    gp_readline_finit(minst->readline_data);
1378
683
    gs_free_object(minst->heap, minst->saved_pages_initial_arg, "gs_main_finit");
1379
683
    i_ctx_p = minst->i_ctx_p;   /* get current interp context */
1380
683
    if (gs_debug_c(':')) {
1381
0
        print_resource_usage(minst, &gs_imemory, "Final");
1382
0
        dmprintf1(minst->heap, "%% Exiting instance "PRI_INTPTR"\n", (intptr_t)minst);
1383
0
    }
1384
    /* Do the equivalent of a restore "past the bottom". */
1385
    /* This will release all memory, close all open files, etc. */
1386
683
    if (minst->init_done >= 1) {
1387
683
        gs_memory_t *mem_raw = i_ctx_p->memory.current->non_gc_memory;
1388
683
        i_plugin_holder *h = i_ctx_p->plugin_list;
1389
1390
683
        dmem = *idmemory;
1391
683
        env_code = alloc_restore_all(i_ctx_p);
1392
683
        if (env_code < 0)
1393
0
            emprintf1(mem_raw,
1394
683
                      "ERROR %d while the final restore. See gs/psi/ierrors.h for code explanation.\n",
1395
683
                      env_code);
1396
683
        i_iodev_finit(&dmem);
1397
683
        i_plugin_finit(mem_raw, h);
1398
683
    }
1399
1400
    /* clean up redirected stdout */
1401
683
    core = minst->heap->gs_lib_ctx->core;
1402
683
    if (core->fstdout2
1403
683
        && (gp_get_file(core->fstdout2) != core->fstdout)
1404
683
        && (gp_get_file(core->fstdout2) != core->fstderr)) {
1405
683
        gp_fclose(core->fstdout2);
1406
683
        core->fstdout2 = NULL;
1407
683
    }
1408
1409
683
    minst->heap->gs_lib_ctx->core->stdout_is_redirected = 0;
1410
683
    minst->heap->gs_lib_ctx->core->stdout_to_stderr = 0;
1411
    /* remove any temporary files, after ghostscript has closed files */
1412
683
    if (tempnames) {
1413
669
        char *p = tempnames;
1414
1.33k
        while (*p) {
1415
669
            gp_unlink(minst->heap, p);
1416
669
            p += strlen(p) + 1;
1417
669
        }
1418
669
        free(tempnames);
1419
669
    }
1420
683
    gs_lib_finit(exit_status, env_code, minst->heap);
1421
1422
683
    set_lib_path_length(minst, 0);
1423
683
    gs_free_object(minst->heap, minst->lib_path.container.value.refs, "lib_path array");
1424
683
    if (minst->init_done == 0 && i_ctx_p) {
1425
        /* This fixes leak if memento forces failure in gs_main_init1(). */
1426
0
        dmem = *idmemory;
1427
0
    }
1428
683
    ialloc_finit(&dmem);
1429
683
    return exit_status;
1430
683
}
1431
int
1432
gs_to_exit_with_code(const gs_memory_t *mem, int exit_status, int code)
1433
683
{
1434
683
    return gs_main_finit(get_minst_from_memory(mem), exit_status, code);
1435
683
}
1436
int
1437
gs_to_exit(const gs_memory_t *mem, int exit_status)
1438
683
{
1439
683
    return gs_to_exit_with_code(mem, exit_status, 0);
1440
683
}
1441
void
1442
gs_abort(const gs_memory_t *mem)
1443
0
{
1444
    /* In previous versions, we tried to do a cleanup (using gs_to_exit),
1445
     * but more often than not, that will trip another abort and create
1446
     * an infinite recursion. So just abort without trying to cleanup.
1447
     */
1448
0
    gp_do_exit(1);
1449
0
}
1450
1451
/* ------ Debugging ------ */
1452
1453
/* Print resource usage statistics. */
1454
void
1455
print_resource_usage(const gs_main_instance * minst, gs_dual_memory_t * dmem,
1456
                     const char *msg)
1457
0
{
1458
0
    ulong used = 0;   /* this we accumulate for the PS memories */
1459
0
    long utime[2];
1460
0
    int i;
1461
0
    gs_memory_status_t status;
1462
1463
0
    gp_get_realtime(utime);
1464
1465
0
    for (i = 0; i < countof(dmem->spaces_indexed); ++i) {
1466
0
        gs_ref_memory_t *mem = dmem->spaces_indexed[i];
1467
1468
0
        if (mem != 0 && (i == 0 || mem != dmem->spaces_indexed[i - 1])) {
1469
0
            gs_ref_memory_t *mem_stable =
1470
0
                (gs_ref_memory_t *)gs_memory_stable((gs_memory_t *)mem);
1471
1472
0
            gs_memory_status((gs_memory_t *)mem, &status);
1473
0
            used += status.used;
1474
0
            if (mem_stable != mem) {
1475
0
                gs_memory_status((gs_memory_t *)mem_stable, &status);
1476
0
                used += status.used;
1477
0
            }
1478
0
        }
1479
0
    }
1480
    /* Now get the overall values from the heap memory */
1481
0
    gs_memory_status(minst->heap, &status);
1482
0
    dmprintf5(minst->heap, "%% %s time = %g, memory allocated = %lu, used = %lu, max_used = %lu\n",
1483
0
              msg, utime[0] - minst->base_time[0] +
1484
0
              (utime[1] - minst->base_time[1]) / 1000000000.0,
1485
0
              status.allocated, used, status.max_used);
1486
0
}
1487
1488
/* Dump the stacks after interpretation */
1489
void
1490
gs_main_dump_stack(gs_main_instance *minst, int code, ref * perror_object)
1491
0
{
1492
0
    i_ctx_t *i_ctx_p = minst->i_ctx_p;
1493
1494
0
    zflush(i_ctx_p);            /* force out buffered output */
1495
0
    dmprintf1(minst->heap, "\nUnexpected interpreter error %d.\n", code);
1496
0
    if (perror_object != 0) {
1497
0
        dmputs(minst->heap, "Error object: ");
1498
0
        debug_print_ref(minst->heap, perror_object);
1499
0
        dmputc(minst->heap, '\n');
1500
0
    }
1501
0
    debug_dump_stack(minst->heap, &o_stack, "Operand stack");
1502
0
    debug_dump_stack(minst->heap, &e_stack, "Execution stack");
1503
0
    debug_dump_stack(minst->heap, &d_stack, "Dictionary stack");
1504
0
}
1505
1506
int
1507
gs_main_force_resolutions(gs_main_instance * minst, const float *resolutions)
1508
683
{
1509
683
    ref value;
1510
683
    int code;
1511
1512
683
    if (resolutions == NULL)
1513
0
        return 0;
1514
1515
683
    if (minst == NULL)
1516
0
        return gs_error_Fatal;
1517
1518
683
    make_true(&value);
1519
683
    code = i_initial_enter_name(minst->i_ctx_p, "FIXEDRESOLUTION", &value);
1520
683
    if (code < 0)
1521
0
        return code;
1522
683
    make_real(&value, resolutions[0]);
1523
683
    code = i_initial_enter_name(minst->i_ctx_p, "DEVICEXRESOLUTION", &value);
1524
683
    if (code < 0)
1525
0
        return code;
1526
683
    make_real(&value, resolutions[1]);
1527
683
    return i_initial_enter_name(minst->i_ctx_p, "DEVICEYRESOLUTION", &value);
1528
683
}
1529
1530
int
1531
gs_main_force_dimensions(gs_main_instance *minst, const long *dimensions)
1532
0
{
1533
0
    ref value;
1534
0
    int code = 0;
1535
1536
0
    if (dimensions == NULL)
1537
0
        return 0;
1538
0
    if (minst == NULL)
1539
0
        return gs_error_Fatal;
1540
1541
0
    make_true(&value);
1542
0
    code = i_initial_enter_name(minst->i_ctx_p, "FIXEDMEDIA", &value);
1543
0
    if (code < 0)
1544
0
        return code;
1545
0
    make_int(&value, dimensions[0]);
1546
0
    code = i_initial_enter_name(minst->i_ctx_p, "DEVICEWIDTH", &value);
1547
0
    if (code < 0)
1548
0
        return code;
1549
0
    make_int(&value, dimensions[1]);
1550
0
    return i_initial_enter_name(minst->i_ctx_p, "DEVICEHEIGHT", &value);
1551
0
}