Coverage Report

Created: 2025-06-10 07:26

/src/ghostpdl/jbig2dec/jbig2.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
    jbig2dec
18
*/
19
20
#ifdef HAVE_CONFIG_H
21
#include "config.h"
22
#endif
23
#include "os_types.h"
24
25
#include <stdio.h>
26
#include <stdlib.h>
27
#include <stdarg.h>
28
#include <string.h>
29
#include <limits.h>
30
31
#include "jbig2.h"
32
#include "jbig2_priv.h"
33
#include "jbig2_image.h"
34
#include "jbig2_page.h"
35
#include "jbig2_segment.h"
36
37
static void *
38
jbig2_default_alloc(Jbig2Allocator *allocator, size_t size)
39
0
{
40
0
    return malloc(size);
41
0
}
42
43
static void
44
jbig2_default_free(Jbig2Allocator *allocator, void *p)
45
0
{
46
0
    free(p);
47
0
}
48
49
static void *
50
jbig2_default_realloc(Jbig2Allocator *allocator, void *p, size_t size)
51
0
{
52
0
    return realloc(p, size);
53
0
}
54
55
static Jbig2Allocator jbig2_default_allocator = {
56
    jbig2_default_alloc,
57
    jbig2_default_free,
58
    jbig2_default_realloc
59
};
60
61
void *
62
jbig2_alloc(Jbig2Allocator *allocator, size_t size, size_t num)
63
422
{
64
    /* Check for integer multiplication overflow when computing
65
    the full size of the allocation. */
66
422
    if (num > 0 && size > SIZE_MAX / num)
67
0
        return NULL;
68
422
    return allocator->alloc(allocator, size * num);
69
422
}
70
71
/* jbig2_free and jbig2_realloc moved to the bottom of this file */
72
73
static void
74
jbig2_default_error(void *data, const char *msg, Jbig2Severity severity, uint32_t seg_idx)
75
0
{
76
    /* report only fatal errors by default */
77
0
    if (severity == JBIG2_SEVERITY_FATAL) {
78
0
        fprintf(stderr, "jbig2 decoder FATAL ERROR: %s", msg);
79
0
        if (seg_idx != JBIG2_UNKNOWN_SEGMENT_NUMBER)
80
0
            fprintf(stderr, " (segment 0x%02x)", seg_idx);
81
0
        fprintf(stderr, "\n");
82
0
        fflush(stderr);
83
0
    }
84
0
}
85
86
int
87
jbig2_error(Jbig2Ctx *ctx, Jbig2Severity severity, uint32_t segment_number, const char *fmt, ...)
88
252
{
89
252
    char buf[1024];
90
252
    va_list ap;
91
252
    int n;
92
93
252
    va_start(ap, fmt);
94
252
    n = vsnprintf(buf, sizeof(buf), fmt, ap);
95
252
    va_end(ap);
96
252
    if (n < 0 || n == sizeof(buf))
97
0
        strncpy(buf, "failed to generate error string", sizeof(buf));
98
252
    ctx->error_callback(ctx->error_callback_data, buf, severity, segment_number);
99
252
    return -1;
100
252
}
101
102
Jbig2Ctx *
103
jbig2_ctx_new_imp(Jbig2Allocator *allocator, Jbig2Options options, Jbig2GlobalCtx *global_ctx, Jbig2ErrorCallback error_callback, void *error_callback_data, int jbig2_version_major, int jbig2_version_minor)
104
13
{
105
13
    Jbig2Ctx *result;
106
107
13
    if (jbig2_version_major != JBIG2_VERSION_MAJOR || jbig2_version_minor != JBIG2_VERSION_MINOR) {
108
0
        Jbig2Ctx fakectx;
109
0
        fakectx.error_callback = error_callback;
110
0
        fakectx.error_callback_data = error_callback_data;
111
0
        jbig2_error(&fakectx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "incompatible jbig2dec header (%d.%d) and library (%d.%d) versions",
112
0
            jbig2_version_major, jbig2_version_minor, JBIG2_VERSION_MAJOR, JBIG2_VERSION_MINOR);
113
0
        return NULL;
114
0
    }
115
116
13
    if (allocator == NULL)
117
0
        allocator = &jbig2_default_allocator;
118
13
    if (error_callback == NULL)
119
0
        error_callback = &jbig2_default_error;
120
121
13
    result = (Jbig2Ctx *) jbig2_alloc(allocator, sizeof(Jbig2Ctx), 1);
122
13
    if (result == NULL) {
123
0
        error_callback(error_callback_data, "failed to allocate initial context", JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER);
124
0
        return NULL;
125
0
    }
126
127
13
    result->allocator = allocator;
128
13
    result->options = options;
129
13
    result->global_ctx = (const Jbig2Ctx *)global_ctx;
130
13
    result->error_callback = error_callback;
131
13
    result->error_callback_data = error_callback_data;
132
133
13
    result->state = (options & JBIG2_OPTIONS_EMBEDDED) ? JBIG2_FILE_SEQUENTIAL_HEADER : JBIG2_FILE_HEADER;
134
135
13
    result->buf = NULL;
136
137
13
    result->n_segments = 0;
138
13
    result->n_segments_max = 16;
139
13
    result->segments = jbig2_new(result, Jbig2Segment *, result->n_segments_max);
140
13
    if (result->segments == NULL) {
141
0
        error_callback(error_callback_data, "failed to allocate initial segments", JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER);
142
0
        jbig2_free(allocator, result);
143
0
        return NULL;
144
0
    }
145
13
    result->segment_index = 0;
146
147
13
    result->current_page = 0;
148
13
    result->max_page_index = 4;
149
13
    result->pages = jbig2_new(result, Jbig2Page, result->max_page_index);
150
13
    if (result->pages == NULL) {
151
0
        error_callback(error_callback_data, "failed to allocated initial pages", JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER);
152
0
        jbig2_free(allocator, result->segments);
153
0
        jbig2_free(allocator, result);
154
0
        return NULL;
155
0
    }
156
13
    {
157
13
        uint32_t index;
158
159
65
        for (index = 0; index < result->max_page_index; index++) {
160
52
            result->pages[index].state = JBIG2_PAGE_FREE;
161
52
            result->pages[index].number = 0;
162
52
            result->pages[index].width = 0;
163
52
            result->pages[index].height = 0xffffffff;
164
52
            result->pages[index].x_resolution = 0;
165
52
            result->pages[index].y_resolution = 0;
166
52
            result->pages[index].stripe_size = 0;
167
52
            result->pages[index].striped = 0;
168
52
            result->pages[index].end_row = 0;
169
52
            result->pages[index].flags = 0;
170
52
            result->pages[index].image = NULL;
171
52
        }
172
13
    }
173
174
13
    return result;
175
13
}
176
177
#define get_uint16(bptr)\
178
387
    (((bptr)[0] << 8) | (bptr)[1])
179
#define get_int16(bptr)\
180
13
    (((int)get_uint16(bptr) ^ 0x8000) - 0x8000)
181
182
/* coverity[ -tainted_data_return ] */
183
/* coverity[ -tainted_data_argument : arg-0 ] */
184
int16_t
185
jbig2_get_int16(const byte *bptr)
186
13
{
187
13
    return get_int16(bptr);
188
13
}
189
190
/* coverity[ -tainted_data_return ] */
191
/* coverity[ -tainted_data_argument : arg-0 ] */
192
uint16_t
193
jbig2_get_uint16(const byte *bptr)
194
10
{
195
10
    return get_uint16(bptr);
196
10
}
197
198
/* coverity[ -tainted_data_return ] */
199
/* coverity[ -tainted_data_argument : arg-0 ] */
200
int32_t
201
jbig2_get_int32(const byte *bptr)
202
0
{
203
0
    return ((int32_t) get_int16(bptr) << 16) | get_uint16(bptr + 2);
204
0
}
205
206
/* coverity[ -tainted_data_return ] */
207
/* coverity[ -tainted_data_argument : arg-0 ] */
208
uint32_t
209
jbig2_get_uint32(const byte *bptr)
210
182
{
211
182
    return ((uint32_t) get_uint16(bptr) << 16) | get_uint16(bptr + 2);
212
182
}
213
214
static size_t
215
jbig2_find_buffer_size(size_t desired)
216
36
{
217
36
    const size_t initial_buf_size = 1024;
218
36
    size_t size = initial_buf_size;
219
220
36
    if (desired == SIZE_MAX)
221
0
        return SIZE_MAX;
222
223
126
    while (size < desired)
224
90
        size <<= 1;
225
226
36
    return size;
227
36
}
228
229
230
/**
231
 * jbig2_data_in: submit data for decoding
232
 * @ctx: The jbig2dec decoder context
233
 * @data: a pointer to the data buffer
234
 * @size: the size of the data buffer in bytes
235
 *
236
 * Copies the specified data into internal storage and attempts
237
 * to (continue to) parse it as part of a jbig2 data stream.
238
 *
239
 * Return code: 0 on success
240
 *             -1 if there is a parsing error
241
 **/
242
int
243
jbig2_data_in(Jbig2Ctx *ctx, const unsigned char *data, size_t size)
244
90
{
245
90
    if (ctx->buf == NULL) {
246
13
        size_t buf_size = jbig2_find_buffer_size(size);
247
13
        ctx->buf = jbig2_new(ctx, byte, buf_size);
248
13
        if (ctx->buf == NULL) {
249
0
            return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "failed to allocate buffer when reading data");
250
0
        }
251
13
        ctx->buf_size = buf_size;
252
13
        ctx->buf_rd_ix = 0;
253
13
        ctx->buf_wr_ix = 0;
254
77
    } else if (size > ctx->buf_size - ctx->buf_wr_ix) {
255
23
        size_t already = ctx->buf_wr_ix - ctx->buf_rd_ix;
256
257
23
        if (ctx->buf_rd_ix <= (ctx->buf_size >> 1) && size <= ctx->buf_size - already) {
258
0
            memmove(ctx->buf, ctx->buf + ctx->buf_rd_ix, already);
259
23
        } else {
260
23
            byte *buf;
261
23
            size_t buf_size;
262
263
23
            if (already > SIZE_MAX - size) {
264
0
                return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "read data causes buffer to grow too large");
265
0
            }
266
267
23
            buf_size = jbig2_find_buffer_size(size + already);
268
269
23
            buf = jbig2_new(ctx, byte, buf_size);
270
23
            if (buf == NULL) {
271
0
                return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "failed to allocate bigger buffer when reading data");
272
0
            }
273
23
            memcpy(buf, ctx->buf + ctx->buf_rd_ix, already);
274
23
            jbig2_free(ctx->allocator, ctx->buf);
275
23
            ctx->buf = buf;
276
23
            ctx->buf_size = buf_size;
277
23
        }
278
23
        ctx->buf_wr_ix -= ctx->buf_rd_ix;
279
23
        ctx->buf_rd_ix = 0;
280
23
    }
281
282
90
    memcpy(ctx->buf + ctx->buf_wr_ix, data, size);
283
90
    ctx->buf_wr_ix += size;
284
285
    /* data has now been added to buffer */
286
287
154
    for (;;) {
288
154
        const byte jbig2_id_string[8] = { 0x97, 0x4a, 0x42, 0x32, 0x0d, 0x0a, 0x1a, 0x0a };
289
154
        Jbig2Segment *segment;
290
154
        size_t header_size;
291
154
        int code;
292
293
154
        switch (ctx->state) {
294
0
        case JBIG2_FILE_HEADER:
295
            /* D.4.1 */
296
0
            if (ctx->buf_wr_ix - ctx->buf_rd_ix < 9)
297
0
                return 0;
298
0
            if (memcmp(ctx->buf + ctx->buf_rd_ix, jbig2_id_string, 8))
299
0
                return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "not a JBIG2 file header");
300
            /* D.4.2 */
301
0
            ctx->file_header_flags = ctx->buf[ctx->buf_rd_ix + 8];
302
            /* Check for T.88 amendment 2 */
303
0
            if (ctx->file_header_flags & 0x04)
304
0
                return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates use of 12 adaptive template pixels (NYI)");
305
            /* Check for T.88 amendment 3 */
306
0
            if (ctx->file_header_flags & 0x08)
307
0
                return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates use of colored region segments (NYI)");
308
0
            if (ctx->file_header_flags & 0xFC) {
309
0
                jbig2_error(ctx, JBIG2_SEVERITY_WARNING, JBIG2_UNKNOWN_SEGMENT_NUMBER, "reserved bits (2-7) of file header flags are not zero (0x%02x)", ctx->file_header_flags);
310
0
            }
311
            /* D.4.3 */
312
0
            if (!(ctx->file_header_flags & 2)) {        /* number of pages is known */
313
0
                if (ctx->buf_wr_ix - ctx->buf_rd_ix < 13)
314
0
                    return 0;
315
0
                ctx->n_pages = jbig2_get_uint32(ctx->buf + ctx->buf_rd_ix + 9);
316
0
                ctx->buf_rd_ix += 13;
317
0
                if (ctx->n_pages == 1)
318
0
                    jbig2_error(ctx, JBIG2_SEVERITY_INFO, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates a single page document");
319
0
                else
320
0
                    jbig2_error(ctx, JBIG2_SEVERITY_INFO, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates a %d page document", ctx->n_pages);
321
0
            } else {            /* number of pages not known */
322
0
                ctx->n_pages = 0;
323
0
                ctx->buf_rd_ix += 9;
324
0
            }
325
            /* determine the file organization based on the flags - D.4.2 again */
326
0
            if (ctx->file_header_flags & 1) {
327
0
                ctx->state = JBIG2_FILE_SEQUENTIAL_HEADER;
328
0
                jbig2_error(ctx, JBIG2_SEVERITY_DEBUG, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates sequential organization");
329
0
            } else {
330
0
                ctx->state = JBIG2_FILE_RANDOM_HEADERS;
331
0
                jbig2_error(ctx, JBIG2_SEVERITY_DEBUG, JBIG2_UNKNOWN_SEGMENT_NUMBER, "file header indicates random-access organization");
332
0
            }
333
0
            break;
334
43
        case JBIG2_FILE_SEQUENTIAL_HEADER:
335
43
        case JBIG2_FILE_RANDOM_HEADERS:
336
43
            segment = jbig2_parse_segment_header(ctx, ctx->buf + ctx->buf_rd_ix, ctx->buf_wr_ix - ctx->buf_rd_ix, &header_size);
337
43
            if (segment == NULL)
338
9
                return 0; /* need more data */
339
34
            ctx->buf_rd_ix += header_size;
340
341
34
            if (ctx->n_segments >= ctx->n_segments_max) {
342
0
                Jbig2Segment **segments;
343
344
0
                if (ctx->n_segments_max == UINT32_MAX) {
345
0
                    ctx->state = JBIG2_FILE_EOF;
346
0
                    jbig2_free_segment(ctx, segment);
347
0
                    return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, segment->number, "too many segments in jbig2 image");
348
0
                }
349
0
                else if (ctx->n_segments_max > (UINT32_MAX >> 2)) {
350
0
                    ctx->n_segments_max = UINT32_MAX;
351
0
                } else {
352
0
                    ctx->n_segments_max <<= 2;
353
0
                }
354
355
0
                segments = jbig2_renew(ctx, ctx->segments, Jbig2Segment *, ctx->n_segments_max);
356
0
                if (segments == NULL) {
357
0
                    ctx->state = JBIG2_FILE_EOF;
358
0
                    jbig2_free_segment(ctx, segment);
359
0
                    return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, segment->number, "failed to allocate space for more segments");
360
0
                }
361
0
                ctx->segments = segments;
362
0
            }
363
364
34
            ctx->segments[ctx->n_segments++] = segment;
365
34
            if (ctx->state == JBIG2_FILE_RANDOM_HEADERS) {
366
0
                if ((segment->flags & 63) == 51)        /* end of file */
367
0
                    ctx->state = JBIG2_FILE_RANDOM_BODIES;
368
0
            } else              /* JBIG2_FILE_SEQUENTIAL_HEADER */
369
34
                ctx->state = JBIG2_FILE_SEQUENTIAL_BODY;
370
34
            break;
371
111
        case JBIG2_FILE_SEQUENTIAL_BODY:
372
111
        case JBIG2_FILE_RANDOM_BODIES:
373
111
            segment = ctx->segments[ctx->segment_index];
374
375
            /* immediate generic regions may have unknown size */
376
111
            if (segment->data_length == 0xffffffff && (segment->flags & 63) == 38) {
377
0
                byte *s, *e, *p;
378
0
                int mmr;
379
0
                byte mmr_marker[2] = { 0x00, 0x00 };
380
0
                byte arith_marker[2] = { 0xff, 0xac };
381
0
                byte *desired_marker;
382
383
0
                s = p = ctx->buf + ctx->buf_rd_ix;
384
0
                e = ctx->buf + ctx->buf_wr_ix;
385
386
0
                if (e - p < 18)
387
0
                        return 0; /* need more data */
388
389
0
                mmr = p[17] & 1;
390
0
                p += 18;
391
0
                desired_marker = mmr ? mmr_marker : arith_marker;
392
393
                /* look for two byte marker */
394
0
                if (e - p < 2)
395
0
                    return 0; /* need more data */
396
397
0
                while (p[0] != desired_marker[0] || p[1] != desired_marker[1]) {
398
0
                    p++;
399
0
                    if (e - p < 2)
400
0
                        return 0; /* need more data */
401
0
                }
402
0
                p += 2;
403
404
                /* the marker is followed by a four byte row count */
405
0
                if (e - p < 4)
406
0
                        return 0; /* need more data */
407
0
                segment->rows = jbig2_get_uint32(p);
408
0
                p += 4;
409
410
0
                segment->data_length = (size_t) (p - s);
411
0
                jbig2_error(ctx, JBIG2_SEVERITY_INFO, segment->number, "unknown length determined to be %lu", (long) segment->data_length);
412
0
            }
413
111
            else if (segment->data_length > ctx->buf_wr_ix - ctx->buf_rd_ix)
414
80
                    return 0; /* need more data */
415
416
31
            code = jbig2_parse_segment(ctx, segment, ctx->buf + ctx->buf_rd_ix);
417
31
            ctx->buf_rd_ix += segment->data_length;
418
31
            ctx->segment_index++;
419
31
            if (ctx->state == JBIG2_FILE_RANDOM_BODIES) {
420
0
                if (ctx->segment_index == ctx->n_segments)
421
0
                    ctx->state = JBIG2_FILE_EOF;
422
31
            } else {            /* JBIG2_FILE_SEQUENTIAL_BODY */
423
31
                ctx->state = JBIG2_FILE_SEQUENTIAL_HEADER;
424
31
            }
425
31
            if (code < 0) {
426
1
                ctx->state = JBIG2_FILE_EOF;
427
1
                return jbig2_error(ctx, JBIG2_SEVERITY_WARNING, segment->number, "failed to decode; treating as end of file");
428
1
            }
429
30
            break;
430
30
        case JBIG2_FILE_EOF:
431
0
            if (ctx->buf_rd_ix == ctx->buf_wr_ix)
432
0
                return 0;
433
0
            return jbig2_error(ctx, JBIG2_SEVERITY_WARNING, JBIG2_UNKNOWN_SEGMENT_NUMBER, "garbage beyond end of file");
434
154
        }
435
154
    }
436
90
}
437
438
Jbig2Allocator *
439
jbig2_ctx_free(Jbig2Ctx *ctx)
440
13
{
441
13
    Jbig2Allocator *ca;
442
13
    uint32_t i;
443
444
13
    if (ctx == NULL)
445
0
        return NULL;
446
447
13
    ca = ctx->allocator;
448
13
    jbig2_free(ca, ctx->buf);
449
13
    if (ctx->segments != NULL) {
450
47
        for (i = 0; i < ctx->n_segments; i++)
451
34
            jbig2_free_segment(ctx, ctx->segments[i]);
452
13
        jbig2_free(ca, ctx->segments);
453
13
    }
454
455
13
    if (ctx->pages != NULL) {
456
26
        for (i = 0; i <= ctx->current_page; i++)
457
13
            if (ctx->pages[i].image != NULL)
458
13
                jbig2_image_release(ctx, ctx->pages[i].image);
459
13
        jbig2_free(ca, ctx->pages);
460
13
    }
461
462
13
    jbig2_free(ca, ctx);
463
464
13
    return ca;
465
13
}
466
467
Jbig2GlobalCtx *
468
jbig2_make_global_ctx(Jbig2Ctx *ctx)
469
0
{
470
0
    return (Jbig2GlobalCtx *) ctx;
471
0
}
472
473
Jbig2Allocator *
474
jbig2_global_ctx_free(Jbig2GlobalCtx *global_ctx)
475
0
{
476
0
    return jbig2_ctx_free((Jbig2Ctx *) global_ctx);
477
0
}
478
479
/* I'm not committed to keeping the word stream interface. It's handy
480
   when you think you may be streaming your input, but if you're not
481
   (as is currently the case), it just adds complexity.
482
*/
483
484
typedef struct {
485
    Jbig2WordStream super;
486
    const byte *data;
487
    size_t size;
488
} Jbig2WordStreamBuf;
489
490
static int
491
jbig2_word_stream_buf_get_next_word(Jbig2Ctx *ctx, Jbig2WordStream *self, size_t offset, uint32_t *word)
492
32.0k
{
493
32.0k
    Jbig2WordStreamBuf *z = (Jbig2WordStreamBuf *) self;
494
32.0k
    uint32_t val = 0;
495
32.0k
    int ret = 0;
496
497
32.0k
    if (self == NULL || word == NULL) {
498
0
        return jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "failed to read next word of stream because stream or output missing");
499
0
    }
500
32.0k
    if (offset >= z->size) {
501
5
        *word = 0;
502
5
        return 0;
503
5
    }
504
505
32.0k
    if (offset < z->size) {
506
32.0k
        val = (uint32_t) z->data[offset] << 24;
507
32.0k
        ret++;
508
32.0k
    }
509
32.0k
    if (offset + 1 < z->size) {
510
32.0k
        val |= (uint32_t) z->data[offset + 1] << 16;
511
32.0k
        ret++;
512
32.0k
    }
513
32.0k
    if (offset + 2 < z->size) {
514
32.0k
        val |= (uint32_t) z->data[offset + 2] << 8;
515
32.0k
        ret++;
516
32.0k
    }
517
32.0k
    if (offset + 3 < z->size) {
518
32.0k
        val |= z->data[offset + 3];
519
32.0k
        ret++;
520
32.0k
    }
521
32.0k
    *word = val;
522
32.0k
    return ret;
523
32.0k
}
524
525
Jbig2WordStream *
526
jbig2_word_stream_buf_new(Jbig2Ctx *ctx, const byte *data, size_t size)
527
16
{
528
16
    Jbig2WordStreamBuf *result = jbig2_new(ctx, Jbig2WordStreamBuf, 1);
529
530
16
    if (result == NULL) {
531
0
        jbig2_error(ctx, JBIG2_SEVERITY_FATAL, JBIG2_UNKNOWN_SEGMENT_NUMBER, "failed to allocate word stream");
532
0
        return NULL;
533
0
    }
534
535
16
    result->super.get_next_word = jbig2_word_stream_buf_get_next_word;
536
16
    result->data = data;
537
16
    result->size = size;
538
539
16
    return &result->super;
540
16
}
541
542
void
543
jbig2_word_stream_buf_free(Jbig2Ctx *ctx, Jbig2WordStream *ws)
544
16
{
545
16
    jbig2_free(ctx->allocator, ws);
546
16
}
547
548
/* When Memento is in use, the ->free and ->realloc calls get
549
 * turned into ->Memento_free and ->Memento_realloc, which is
550
 * obviously problematic. Undefine free and realloc here to
551
 * avoid this. */
552
#ifdef MEMENTO
553
#undef free
554
#undef realloc
555
#endif
556
557
void
558
jbig2_free(Jbig2Allocator *allocator, void *p)
559
491
{
560
491
    allocator->free(allocator, p);
561
491
}
562
563
void *
564
jbig2_realloc(Jbig2Allocator *allocator, void *p, size_t size, size_t num)
565
0
{
566
    /* check for integer multiplication overflow */
567
0
    if (num > 0 && size >= SIZE_MAX / num)
568
0
        return NULL;
569
0
    return allocator->realloc(allocator, p, size * num);
570
0
}