Coverage Report

Created: 2025-06-10 06:59

/src/ghostpdl/base/sjbig2.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
/* jbig2decode filter implementation -- hooks in libjbig2dec */
18
19
#include "stdint_.h"
20
#include "memory_.h"
21
#include "stdio_.h" /* sprintf() for debug output */
22
23
#include "gserrors.h"
24
#include "gdebug.h"
25
#include "strimpl.h"
26
#include "sjbig2.h"
27
#include <limits.h>                     /* UINT_MAX */
28
29
/* stream implementation */
30
31
/* The /JBIG2Decode filter is a fairly memory intensive one to begin with,
32
   particularly in the initial jbig2dec library implementation. Furthermore,
33
   as a PDF 1.4 feature, we can assume a fairly large (host-level) machine.
34
   We therefore dispense with the normal Ghostscript memory discipline and
35
   let the library allocate all its resources on the heap. The pointers to
36
   these are not enumerated and so will not be garbage collected. We rely
37
   on our release() proc being called to deallocate state.
38
 */
39
40
private_st_jbig2decode_state(); /* creates a gc object for our state, defined in sjbig2.h */
41
42
/* error callback for jbig2 decoder */
43
static void
44
s_jbig2decode_error(void *callback_data, const char *msg, Jbig2Severity severity,
45
               uint32_t seg_idx)
46
94
{
47
94
    s_jbig2_callback_data_t *error_data = (s_jbig2_callback_data_t *)callback_data;
48
94
    const char *type;
49
94
    char segment[22];
50
51
94
    switch (severity) {
52
53
        case JBIG2_SEVERITY_DEBUG:
53
53
            type = "DEBUG"; break;;
54
40
        case JBIG2_SEVERITY_INFO:
55
40
            type = "info"; break;;
56
1
        case JBIG2_SEVERITY_WARNING:
57
1
            type = "WARNING"; break;;
58
0
        case JBIG2_SEVERITY_FATAL:
59
0
            type = "FATAL ERROR decoding image:";
60
            /* pass the fatal error upstream if possible */
61
0
            if (error_data != NULL) error_data->error = gs_error_ioerror;
62
0
            break;;
63
0
        default: type = "unknown message:"; break;;
64
94
    }
65
94
    if (seg_idx == JBIG2_UNKNOWN_SEGMENT_NUMBER) segment[0] = '\0';
66
77
    else gs_snprintf(segment, sizeof(segment), "(segment 0x%02x)", seg_idx);
67
68
94
    if (error_data)
69
94
    {
70
94
        char *message;
71
94
        int len;
72
73
94
        len = snprintf(NULL, 0, "jbig2dec %s %s %s", type, msg, segment);
74
94
        if (len < 0)
75
0
            return;
76
77
94
        message = (char *)gs_alloc_bytes(error_data->memory, len + 1, "sjbig2decode_error(message)");
78
94
        if (message == NULL)
79
0
            return;
80
81
94
        len = snprintf(message, len + 1, "jbig2dec %s %s %s", type, msg, segment);
82
94
        if (len < 0)
83
0
        {
84
0
            gs_free_object(error_data->memory, message, "s_jbig2decode_error(message)");
85
0
            return;
86
0
        }
87
88
94
        if (error_data->last_message != NULL && strcmp(message, error_data->last_message)) {
89
86
            if (error_data->repeats > 1)
90
0
            {
91
0
                if (error_data->severity == JBIG2_SEVERITY_FATAL || error_data->severity == JBIG2_SEVERITY_WARNING) {
92
0
                    dmlprintf1(error_data->memory, "jbig2dec last message repeated %ld times\n", error_data->repeats);
93
0
                } else {
94
0
                    if_debug1m('w', error_data->memory, "[w] jbig2dec last message repeated %ld times\n", error_data->repeats);
95
0
                }
96
0
            }
97
86
            gs_free_object(error_data->memory, error_data->last_message, "s_jbig2decode_error(last_message)");
98
86
            if (severity == JBIG2_SEVERITY_FATAL || severity == JBIG2_SEVERITY_WARNING) {
99
1
                dmlprintf1(error_data->memory, "%s\n", message);
100
85
            } else {
101
85
                if_debug1m('w', error_data->memory, "[w] %s\n", message);
102
85
            }
103
86
            error_data->last_message = message;
104
86
            error_data->severity = severity;
105
86
            error_data->type = type;
106
86
            error_data->repeats = 0;
107
86
        }
108
8
        else if (error_data->last_message != NULL) {
109
0
            error_data->repeats++;
110
0
            if (error_data->repeats % 1000000 == 0)
111
0
            {
112
0
                if (error_data->severity == JBIG2_SEVERITY_FATAL || error_data->severity == JBIG2_SEVERITY_WARNING) {
113
0
                    dmlprintf1(error_data->memory, "jbig2dec last message repeated %ld times so far\n", error_data->repeats);
114
0
                } else {
115
0
                    if_debug1m('w', error_data->memory, "[w] jbig2dec last message repeated %ld times so far\n", error_data->repeats);
116
0
                }
117
0
            }
118
0
            gs_free_object(error_data->memory, message, "s_jbig2decode_error(message)");
119
0
        }
120
8
        else if (error_data->last_message == NULL) {
121
8
            if (severity == JBIG2_SEVERITY_FATAL || severity == JBIG2_SEVERITY_WARNING) {
122
0
                dmlprintf1(error_data->memory, "%s\n", message);
123
8
            } else {
124
8
                if_debug1m('w', error_data->memory, "[w] %s\n", message);
125
8
            }
126
8
            error_data->last_message = message;
127
8
            error_data->severity = severity;
128
8
            error_data->type = type;
129
8
            error_data->repeats = 0;
130
8
        }
131
94
    }
132
0
    else
133
0
    {
134
/*
135
        FIXME s_jbig2_callback_data_t should be updated so that jbig2_ctx_new is not called
136
        with a NULL argument (see jbig2.h) and we never reach here with a NULL state
137
*/
138
0
        if (severity == JBIG2_SEVERITY_FATAL) {
139
0
            dlprintf3("jbig2dec %s %s %s\n", type, msg, segment);
140
0
        } else {
141
0
            if_debug3('w', "[w] jbig2dec %s %s %s\n", type, msg, segment);
142
0
        }
143
0
    }
144
94
}
145
146
static void
147
s_jbig2decode_flush_errors(void *callback_data)
148
10
{
149
10
    s_jbig2_callback_data_t *error_data = (s_jbig2_callback_data_t *)callback_data;
150
151
10
    if (error_data == NULL)
152
0
        return;
153
154
10
    if (error_data->last_message != NULL) {
155
8
        if (error_data->repeats > 1)
156
0
        {
157
0
            if (error_data->severity == JBIG2_SEVERITY_FATAL || error_data->severity == JBIG2_SEVERITY_WARNING) {
158
0
                dmlprintf1(error_data->memory, "jbig2dec last message repeated %ld times\n", error_data->repeats);
159
0
            } else {
160
0
                if_debug1m('w', error_data->memory, "[w] jbig2dec last message repeated %ld times\n", error_data->repeats);
161
0
            }
162
0
        }
163
8
        gs_free_object(error_data->memory, error_data->last_message, "s_jbig2decode_error(last_message)");
164
8
        error_data->last_message = NULL;
165
8
        error_data->repeats = 0;
166
8
    }
167
10
}
168
169
/* invert the bits in a buffer */
170
/* jbig2 and postscript have different senses of what pixel
171
   value is black, so we must invert the image */
172
static void
173
s_jbig2decode_invert_buffer(unsigned char *buf, size_t length)
174
3.18k
{
175
3.18k
    size_t i;
176
177
6.52M
    for (i = 0; i < length; i++)
178
6.52M
        *buf++ ^= 0xFF;
179
3.18k
}
180
181
typedef struct {
182
        Jbig2Allocator allocator;
183
        gs_memory_t *mem;
184
} s_jbig2decode_allocator_t;
185
186
static void *s_jbig2decode_alloc(Jbig2Allocator *_allocator, size_t size)
187
126
{
188
126
        s_jbig2decode_allocator_t *allocator = (s_jbig2decode_allocator_t *) _allocator;
189
126
        if (size > UINT_MAX)
190
0
            return NULL;
191
126
        return gs_alloc_bytes(allocator->mem, size, "s_jbig2decode_alloc");
192
126
}
193
194
static void s_jbig2decode_free(Jbig2Allocator *_allocator, void *p)
195
144
{
196
144
        s_jbig2decode_allocator_t *allocator = (s_jbig2decode_allocator_t *) _allocator;
197
144
        gs_free_object(allocator->mem, p, "s_jbig2decode_free");
198
144
}
199
200
static void *s_jbig2decode_realloc(Jbig2Allocator *_allocator, void *p, size_t size)
201
0
{
202
0
        s_jbig2decode_allocator_t *allocator = (s_jbig2decode_allocator_t *) _allocator;
203
0
        if (size > UINT_MAX)
204
0
            return NULL;
205
0
        return gs_resize_object(allocator->mem, p, size, "s_jbig2decode_realloc");
206
0
}
207
208
/* parse a globals stream packed into a gs_bytestring for us by the postscript
209
   layer and stuff the resulting context into a pointer for use in later decoding */
210
int
211
s_jbig2decode_make_global_data(gs_memory_t *mem, byte *data, uint length, void **result)
212
0
{
213
0
    Jbig2Ctx *ctx = NULL;
214
0
    int code;
215
0
    s_jbig2decode_allocator_t *allocator;
216
217
    /* the cvision encoder likes to include empty global streams */
218
0
    if (length == 0) {
219
0
        if_debug0('w', "[w] ignoring zero-length jbig2 global stream.\n");
220
0
        *result = NULL;
221
0
        return 0;
222
0
    }
223
224
0
    allocator = (s_jbig2decode_allocator_t *) gs_alloc_bytes(mem,
225
0
            sizeof (s_jbig2decode_allocator_t), "s_jbig2_make_global_data");
226
0
    if (allocator == NULL) {
227
0
        *result = NULL;
228
0
        return_error(gs_error_VMerror);
229
0
    }
230
231
0
    allocator->allocator.alloc = s_jbig2decode_alloc;
232
0
    allocator->allocator.free = s_jbig2decode_free;
233
0
    allocator->allocator.realloc = s_jbig2decode_realloc;
234
0
    allocator->mem = mem;
235
236
    /* allocate a context with which to parse our global segments */
237
0
    ctx = jbig2_ctx_new((Jbig2Allocator *) allocator, JBIG2_OPTIONS_EMBEDDED,
238
0
                            NULL, s_jbig2decode_error, NULL);
239
0
    if (ctx == NULL) {
240
0
        gs_free_object(mem, allocator, "s_jbig2_make_global_data");
241
0
        return_error(gs_error_VMerror);
242
0
    }
243
244
    /* parse the global bitstream */
245
0
    code = jbig2_data_in(ctx, data, length);
246
0
    if (code) {
247
        /* error parsing the global stream */
248
0
        allocator = (s_jbig2decode_allocator_t *) jbig2_ctx_free(ctx);
249
0
        gs_free_object(allocator->mem, allocator, "s_jbig2_make_global_data");
250
0
        *result = NULL;
251
0
        return_error(gs_error_ioerror);
252
0
    }
253
254
    /* canonize and store our global state */
255
0
    *result = jbig2_make_global_ctx(ctx);
256
257
0
    return 0; /* todo: check for allocation failure */
258
0
}
259
260
/* release a global ctx pointer */
261
void
262
s_jbig2decode_free_global_data(void *data)
263
0
{
264
0
    Jbig2GlobalCtx *global_ctx = (Jbig2GlobalCtx*)data;
265
0
    s_jbig2decode_allocator_t *allocator;
266
267
0
    allocator = (s_jbig2decode_allocator_t *) jbig2_global_ctx_free(global_ctx);
268
269
0
    gs_free_object(allocator->mem, allocator, "s_jbig2decode_free_global_data");
270
0
}
271
272
/* store a global ctx pointer in our state structure.
273
 * If "gd" is NULL, then this library must free the global context.
274
 * If not-NULL, then it will be memory managed by caller, for example,
275
 * garbage collected in the case of the PS interpreter.
276
 * Currently gpdf will use NULL, and the PDF implemented in the gs interpreter would use
277
 * the garbage collection.
278
 */
279
int
280
s_jbig2decode_set_global_data(stream_state *ss, s_jbig2_global_data_t *gd, void *global_ctx)
281
10
{
282
10
    stream_jbig2decode_state *state = (stream_jbig2decode_state*)ss;
283
10
    state->global_struct = gd;
284
10
    state->global_ctx = global_ctx;
285
10
    return 0;
286
10
}
287
288
/* initialize the steam.
289
   this involves allocating the context structures, and
290
   initializing the global context from the /JBIG2Globals object reference
291
 */
292
static int
293
s_jbig2decode_init(stream_state * ss)
294
10
{
295
10
    stream_jbig2decode_state *const state = (stream_jbig2decode_state *) ss;
296
10
    Jbig2GlobalCtx *global_ctx = state->global_ctx; /* may be NULL */
297
10
    int code = 0;
298
10
    s_jbig2decode_allocator_t *allocator = NULL;
299
300
10
    state->callback_data = (s_jbig2_callback_data_t *)gs_alloc_bytes(
301
10
                                                ss->memory->non_gc_memory,
302
10
                                                sizeof(s_jbig2_callback_data_t),
303
10
            "s_jbig2decode_init(callback_data)");
304
10
    if (state->callback_data) {
305
10
        state->callback_data->memory = ss->memory->non_gc_memory;
306
10
        state->callback_data->error = 0;
307
10
        state->callback_data->last_message = NULL;
308
10
        state->callback_data->repeats = 0;
309
310
10
        allocator = (s_jbig2decode_allocator_t *) gs_alloc_bytes(ss->memory->non_gc_memory, sizeof (s_jbig2decode_allocator_t), "s_jbig2decode_init(allocator)");
311
10
        if (allocator == NULL) {
312
0
                s_jbig2decode_error(state->callback_data, "failed to allocate custom jbig2dec allocator", JBIG2_SEVERITY_FATAL, -1);
313
0
        }
314
10
        else {
315
10
                allocator->allocator.alloc = s_jbig2decode_alloc;
316
10
                allocator->allocator.free = s_jbig2decode_free;
317
10
                allocator->allocator.realloc = s_jbig2decode_realloc;
318
10
                allocator->mem = ss->memory->non_gc_memory;
319
320
                /* initialize the decoder with the parsed global context if any */
321
10
                state->decode_ctx = jbig2_ctx_new((Jbig2Allocator *) allocator, JBIG2_OPTIONS_EMBEDDED,
322
10
                             global_ctx, s_jbig2decode_error, state->callback_data);
323
324
10
                if (state->decode_ctx == NULL) {
325
0
                        gs_free_object(allocator->mem, allocator, "s_jbig2decode_release");
326
0
                }
327
328
10
        }
329
330
10
        code = state->callback_data->error;
331
10
    }
332
0
    else {
333
0
        code = gs_error_VMerror;
334
0
    }
335
10
    state->image = 0;
336
337
338
10
    return_error (code);
339
10
}
340
341
/* process a section of the input and return any decoded data.
342
   see strimpl.h for return codes.
343
 */
344
static int
345
s_jbig2decode_process(stream_state * ss, stream_cursor_read * pr,
346
                  stream_cursor_write * pw, bool last)
347
3.26k
{
348
3.26k
    stream_jbig2decode_state *const state = (stream_jbig2decode_state *) ss;
349
3.26k
    Jbig2Image *image = state->image;
350
3.26k
    size_t in_size = pr->limit - pr->ptr;
351
3.26k
    size_t out_size = pw->limit - pw->ptr;
352
3.26k
    int status = 0;
353
354
    /* there will only be a single page image,
355
       so pass all data in before looking for any output.
356
       note that the gs stream library expects offset-by-one
357
       indexing of the buffers, while jbig2dec uses normal 0 indexes */
358
3.26k
    if (in_size > 0) {
359
        /* pass all available input to the decoder */
360
79
        jbig2_data_in(state->decode_ctx, pr->ptr + 1, in_size);
361
79
        pr->ptr += in_size;
362
        /* simulate end-of-page segment */
363
79
        if (last == 1) {
364
8
            jbig2_complete_page(state->decode_ctx);
365
8
        }
366
        /* handle fatal decoding errors reported through our callback */
367
79
        if (state->callback_data->error) return state->callback_data->error;
368
3.18k
    } else {
369
        /* Ran out of input, try and terminate cleanly */
370
3.18k
        if (last == 1) {
371
3.18k
            jbig2_complete_page(state->decode_ctx);
372
3.18k
        }
373
3.18k
    }
374
3.26k
    if (out_size > 0) {
375
3.26k
        if (image == NULL) {
376
            /* see if a page image in available */
377
87
            image = jbig2_page_out(state->decode_ctx);
378
87
            if (image != NULL) {
379
8
                state->image = image;
380
8
                state->offset = 0;
381
8
            }
382
87
        }
383
3.26k
        if (image != NULL) {
384
            /* copy data out of the decoded image, if any */
385
3.18k
            size_t image_size = (size_t)image->height*image->stride;
386
3.18k
            size_t usable = min(image_size - state->offset, out_size);
387
3.18k
            memcpy(pw->ptr + 1, image->data + state->offset, usable);
388
3.18k
            s_jbig2decode_invert_buffer(pw->ptr + 1, usable);
389
3.18k
            state->offset += usable;
390
3.18k
            pw->ptr += usable;
391
3.18k
            status = (state->offset < image_size) ? 1 : 0;
392
3.18k
        }
393
3.26k
    }
394
395
3.26k
    return status;
396
3.26k
}
397
398
/* stream release.
399
   free all our decoder state.
400
 */
401
static void
402
s_jbig2decode_release(stream_state *ss)
403
20
{
404
20
    stream_jbig2decode_state *const state = (stream_jbig2decode_state *) ss;
405
406
20
    if (state->decode_ctx) {
407
10
        s_jbig2decode_allocator_t *allocator = NULL;
408
409
10
        if (state->image) jbig2_release_page(state->decode_ctx, state->image);
410
10
  state->image = NULL;
411
10
        s_jbig2decode_flush_errors(state->callback_data);
412
10
        allocator = (s_jbig2decode_allocator_t *) jbig2_ctx_free(state->decode_ctx);
413
10
  state->decode_ctx = NULL;
414
415
10
        gs_free_object(allocator->mem, allocator, "s_jbig2decode_release");
416
10
    }
417
20
    if (state->callback_data) {
418
10
        gs_memory_t *mem = state->callback_data->memory;
419
10
        gs_free_object(state->callback_data->memory, state->callback_data->last_message, "s_jbig2decode_release(message)");
420
10
        gs_free_object(mem, state->callback_data, "s_jbig2decode_release(callback_data)");
421
10
  state->callback_data = NULL;
422
10
    }
423
20
    if (state->global_struct != NULL) {
424
        /* the interpreter calls jbig2decode_free_global_data() separately */
425
20
    } else {
426
        /* We are responsible for freeing global context */
427
20
        if (state->global_ctx) {
428
0
            s_jbig2decode_free_global_data(state->global_ctx);
429
0
            state->global_ctx = NULL;
430
0
        }
431
20
    }
432
20
}
433
434
void
435
s_jbig2decode_finalize(const gs_memory_t *cmem, void *vptr)
436
10
{
437
10
    (void)cmem;
438
439
10
    s_jbig2decode_release((stream_state *)vptr);
440
10
}
441
442
/* set stream defaults.
443
   this hook exists to avoid confusing the gc with bogus
444
   pointers. we use it similarly just to NULL all the pointers.
445
   (could just be done in _init?)
446
 */
447
static void
448
s_jbig2decode_set_defaults(stream_state *ss)
449
0
{
450
0
    stream_jbig2decode_state *const state = (stream_jbig2decode_state *) ss;
451
452
    /* state->global_ctx is not owned by us */
453
0
    state->global_struct = NULL;
454
0
    state->global_ctx = NULL;
455
0
    state->decode_ctx = NULL;
456
0
    state->image = NULL;
457
0
    state->offset = 0;
458
0
    state->callback_data = NULL;
459
0
}
460
461
/* stream template */
462
const stream_template s_jbig2decode_template = {
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    &st_jbig2decode_state,
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    s_jbig2decode_init,
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    s_jbig2decode_process,
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    1, 1, /* min in and out buffer sizes we can handle --should be ~32k,64k for efficiency? */
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    s_jbig2decode_release,
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    s_jbig2decode_set_defaults
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};