Coverage Report

Created: 2023-06-07 08:11

/src/opencv/3rdparty/openjpeg/openjp2/cio.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * The copyright in this software is being made available under the 2-clauses
3
 * BSD License, included below. This software may be subject to other third
4
 * party and contributor rights, including patent rights, and no such rights
5
 * are granted under this license.
6
 *
7
 * Copyright (c) 2002-2014, Universite catholique de Louvain (UCL), Belgium
8
 * Copyright (c) 2002-2014, Professor Benoit Macq
9
 * Copyright (c) 2001-2003, David Janssens
10
 * Copyright (c) 2002-2003, Yannick Verschueren
11
 * Copyright (c) 2003-2007, Francois-Olivier Devaux
12
 * Copyright (c) 2003-2014, Antonin Descampe
13
 * Copyright (c) 2005, Herve Drolon, FreeImage Team
14
 * Copyright (c) 2008, 2011-2012, Centre National d'Etudes Spatiales (CNES), FR
15
 * Copyright (c) 2012, CS Systemes d'Information, France
16
 * All rights reserved.
17
 *
18
 * Redistribution and use in source and binary forms, with or without
19
 * modification, are permitted provided that the following conditions
20
 * are met:
21
 * 1. Redistributions of source code must retain the above copyright
22
 *    notice, this list of conditions and the following disclaimer.
23
 * 2. Redistributions in binary form must reproduce the above copyright
24
 *    notice, this list of conditions and the following disclaimer in the
25
 *    documentation and/or other materials provided with the distribution.
26
 *
27
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS `AS IS'
28
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
29
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
30
 * ARE DISCLAIMED.  IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
31
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37
 * POSSIBILITY OF SUCH DAMAGE.
38
 */
39
40
#include "opj_includes.h"
41
42
/* ----------------------------------------------------------------------- */
43
44
45
/* ----------------------------------------------------------------------- */
46
47
void opj_write_bytes_BE(OPJ_BYTE * p_buffer, OPJ_UINT32 p_value,
48
                        OPJ_UINT32 p_nb_bytes)
49
0
{
50
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value) + sizeof(
51
0
                                      OPJ_UINT32) - p_nb_bytes;
52
53
0
    assert(p_nb_bytes > 0 && p_nb_bytes <=  sizeof(OPJ_UINT32));
54
55
0
    memcpy(p_buffer, l_data_ptr, p_nb_bytes);
56
0
}
57
58
void opj_write_bytes_LE(OPJ_BYTE * p_buffer, OPJ_UINT32 p_value,
59
                        OPJ_UINT32 p_nb_bytes)
60
0
{
61
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value) + p_nb_bytes - 1;
62
0
    OPJ_UINT32 i;
63
64
0
    assert(p_nb_bytes > 0 && p_nb_bytes <= sizeof(OPJ_UINT32));
65
66
0
    for (i = 0; i < p_nb_bytes; ++i) {
67
0
        *(p_buffer++) = *(l_data_ptr--);
68
0
    }
69
0
}
70
71
void opj_read_bytes_BE(const OPJ_BYTE * p_buffer, OPJ_UINT32 * p_value,
72
                       OPJ_UINT32 p_nb_bytes)
73
0
{
74
0
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value);
75
76
0
    assert(p_nb_bytes > 0 && p_nb_bytes <= sizeof(OPJ_UINT32));
77
78
0
    *p_value = 0;
79
0
    memcpy(l_data_ptr + sizeof(OPJ_UINT32) - p_nb_bytes, p_buffer, p_nb_bytes);
80
0
}
81
82
void opj_read_bytes_LE(const OPJ_BYTE * p_buffer, OPJ_UINT32 * p_value,
83
                       OPJ_UINT32 p_nb_bytes)
84
2.54M
{
85
2.54M
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value) + p_nb_bytes - 1;
86
2.54M
    OPJ_UINT32 i;
87
88
2.54M
    assert(p_nb_bytes > 0 && p_nb_bytes <= sizeof(OPJ_UINT32));
89
90
2.54M
    *p_value = 0;
91
7.49M
    for (i = 0; i < p_nb_bytes; ++i) {
92
4.94M
        *(l_data_ptr--) = *(p_buffer++);
93
4.94M
    }
94
2.54M
}
95
96
void opj_write_double_BE(OPJ_BYTE * p_buffer, OPJ_FLOAT64 p_value)
97
0
{
98
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value);
99
0
    memcpy(p_buffer, l_data_ptr, sizeof(OPJ_FLOAT64));
100
0
}
101
102
void opj_write_double_LE(OPJ_BYTE * p_buffer, OPJ_FLOAT64 p_value)
103
0
{
104
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value) + sizeof(
105
0
                                      OPJ_FLOAT64) - 1;
106
0
    OPJ_UINT32 i;
107
0
    for (i = 0; i < sizeof(OPJ_FLOAT64); ++i) {
108
0
        *(p_buffer++) = *(l_data_ptr--);
109
0
    }
110
0
}
111
112
void opj_read_double_BE(const OPJ_BYTE * p_buffer, OPJ_FLOAT64 * p_value)
113
0
{
114
0
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value);
115
0
    memcpy(l_data_ptr, p_buffer, sizeof(OPJ_FLOAT64));
116
0
}
117
118
void opj_read_double_LE(const OPJ_BYTE * p_buffer, OPJ_FLOAT64 * p_value)
119
0
{
120
0
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value) + sizeof(OPJ_FLOAT64) - 1;
121
0
    OPJ_UINT32 i;
122
0
    for (i = 0; i < sizeof(OPJ_FLOAT64); ++i) {
123
0
        *(l_data_ptr--) = *(p_buffer++);
124
0
    }
125
0
}
126
127
void opj_write_float_BE(OPJ_BYTE * p_buffer, OPJ_FLOAT32 p_value)
128
0
{
129
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value);
130
0
    memcpy(p_buffer, l_data_ptr, sizeof(OPJ_FLOAT32));
131
0
}
132
133
void opj_write_float_LE(OPJ_BYTE * p_buffer, OPJ_FLOAT32 p_value)
134
0
{
135
0
    const OPJ_BYTE * l_data_ptr = ((const OPJ_BYTE *) &p_value) + sizeof(
136
0
                                      OPJ_FLOAT32) - 1;
137
0
    OPJ_UINT32 i;
138
0
    for (i = 0; i < sizeof(OPJ_FLOAT32); ++i) {
139
0
        *(p_buffer++) = *(l_data_ptr--);
140
0
    }
141
0
}
142
143
void opj_read_float_BE(const OPJ_BYTE * p_buffer, OPJ_FLOAT32 * p_value)
144
0
{
145
0
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value);
146
0
    memcpy(l_data_ptr, p_buffer, sizeof(OPJ_FLOAT32));
147
0
}
148
149
void opj_read_float_LE(const OPJ_BYTE * p_buffer, OPJ_FLOAT32 * p_value)
150
2.57k
{
151
2.57k
    OPJ_BYTE * l_data_ptr = ((OPJ_BYTE *) p_value) + sizeof(OPJ_FLOAT32) - 1;
152
2.57k
    OPJ_UINT32 i;
153
12.8k
    for (i = 0; i < sizeof(OPJ_FLOAT32); ++i) {
154
10.3k
        *(l_data_ptr--) = *(p_buffer++);
155
10.3k
    }
156
2.57k
}
157
158
opj_stream_t* OPJ_CALLCONV opj_stream_create(OPJ_SIZE_T p_buffer_size,
159
        OPJ_BOOL l_is_input)
160
1.46k
{
161
1.46k
    opj_stream_private_t * l_stream = 00;
162
1.46k
    l_stream = (opj_stream_private_t*) opj_calloc(1, sizeof(opj_stream_private_t));
163
1.46k
    if (! l_stream) {
164
0
        return 00;
165
0
    }
166
167
1.46k
    l_stream->m_buffer_size = p_buffer_size;
168
1.46k
    l_stream->m_stored_data = (OPJ_BYTE *) opj_malloc(p_buffer_size);
169
1.46k
    if (! l_stream->m_stored_data) {
170
0
        opj_free(l_stream);
171
0
        return 00;
172
0
    }
173
174
1.46k
    l_stream->m_current_data = l_stream->m_stored_data;
175
176
1.46k
    if (l_is_input) {
177
1.46k
        l_stream->m_status |= OPJ_STREAM_STATUS_INPUT;
178
1.46k
        l_stream->m_opj_skip = opj_stream_read_skip;
179
1.46k
        l_stream->m_opj_seek = opj_stream_read_seek;
180
1.46k
    } else {
181
0
        l_stream->m_status |= OPJ_STREAM_STATUS_OUTPUT;
182
0
        l_stream->m_opj_skip = opj_stream_write_skip;
183
0
        l_stream->m_opj_seek = opj_stream_write_seek;
184
0
    }
185
186
1.46k
    l_stream->m_read_fn = opj_stream_default_read;
187
1.46k
    l_stream->m_write_fn = opj_stream_default_write;
188
1.46k
    l_stream->m_skip_fn = opj_stream_default_skip;
189
1.46k
    l_stream->m_seek_fn = opj_stream_default_seek;
190
191
1.46k
    return (opj_stream_t *) l_stream;
192
1.46k
}
193
194
opj_stream_t* OPJ_CALLCONV opj_stream_default_create(OPJ_BOOL l_is_input)
195
652
{
196
652
    return opj_stream_create(OPJ_J2K_STREAM_CHUNK_SIZE, l_is_input);
197
652
}
198
199
void OPJ_CALLCONV opj_stream_destroy(opj_stream_t* p_stream)
200
1.46k
{
201
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
202
203
1.46k
    if (l_stream) {
204
1.46k
        if (l_stream->m_free_user_data_fn) {
205
813
            l_stream->m_free_user_data_fn(l_stream->m_user_data);
206
813
        }
207
1.46k
        opj_free(l_stream->m_stored_data);
208
1.46k
        l_stream->m_stored_data = 00;
209
1.46k
        opj_free(l_stream);
210
1.46k
    }
211
1.46k
}
212
213
void OPJ_CALLCONV opj_stream_set_read_function(opj_stream_t* p_stream,
214
        opj_stream_read_fn p_function)
215
1.46k
{
216
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
217
218
1.46k
    if ((!l_stream) || (!(l_stream->m_status & OPJ_STREAM_STATUS_INPUT))) {
219
0
        return;
220
0
    }
221
222
1.46k
    l_stream->m_read_fn = p_function;
223
1.46k
}
224
225
void OPJ_CALLCONV opj_stream_set_seek_function(opj_stream_t* p_stream,
226
        opj_stream_seek_fn p_function)
227
1.46k
{
228
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
229
230
1.46k
    if (!l_stream) {
231
0
        return;
232
0
    }
233
1.46k
    l_stream->m_seek_fn = p_function;
234
1.46k
}
235
236
void OPJ_CALLCONV opj_stream_set_write_function(opj_stream_t* p_stream,
237
        opj_stream_write_fn p_function)
238
813
{
239
813
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
240
241
813
    if ((!l_stream) || (!(l_stream->m_status & OPJ_STREAM_STATUS_OUTPUT))) {
242
813
        return;
243
813
    }
244
245
0
    l_stream->m_write_fn = p_function;
246
0
}
247
248
void OPJ_CALLCONV opj_stream_set_skip_function(opj_stream_t* p_stream,
249
        opj_stream_skip_fn p_function)
250
1.46k
{
251
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
252
253
1.46k
    if (! l_stream) {
254
0
        return;
255
0
    }
256
257
1.46k
    l_stream->m_skip_fn = p_function;
258
1.46k
}
259
260
void OPJ_CALLCONV opj_stream_set_user_data(opj_stream_t* p_stream,
261
        void * p_data, opj_stream_free_user_data_fn p_function)
262
1.46k
{
263
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
264
1.46k
    if (!l_stream) {
265
0
        return;
266
0
    }
267
1.46k
    l_stream->m_user_data = p_data;
268
1.46k
    l_stream->m_free_user_data_fn = p_function;
269
1.46k
}
270
271
void OPJ_CALLCONV opj_stream_set_user_data_length(opj_stream_t* p_stream,
272
        OPJ_UINT64 data_length)
273
1.46k
{
274
1.46k
    opj_stream_private_t* l_stream = (opj_stream_private_t*) p_stream;
275
1.46k
    if (!l_stream) {
276
0
        return;
277
0
    }
278
1.46k
    l_stream->m_user_data_length = data_length;
279
1.46k
}
280
281
OPJ_SIZE_T opj_stream_read_data(opj_stream_private_t * p_stream,
282
                                OPJ_BYTE * p_buffer, OPJ_SIZE_T p_size, opj_event_mgr_t * p_event_mgr)
283
2.27M
{
284
2.27M
    OPJ_SIZE_T l_read_nb_bytes = 0;
285
2.27M
    if (p_stream->m_bytes_in_buffer >= p_size) {
286
2.27M
        memcpy(p_buffer, p_stream->m_current_data, p_size);
287
2.27M
        p_stream->m_current_data += p_size;
288
2.27M
        p_stream->m_bytes_in_buffer -= p_size;
289
2.27M
        l_read_nb_bytes += p_size;
290
2.27M
        p_stream->m_byte_offset += (OPJ_OFF_T)p_size;
291
2.27M
        return l_read_nb_bytes;
292
2.27M
    }
293
294
    /* we are now in the case when the remaining data if not sufficient */
295
1.63k
    if (p_stream->m_status & OPJ_STREAM_STATUS_END) {
296
2
        l_read_nb_bytes += p_stream->m_bytes_in_buffer;
297
2
        memcpy(p_buffer, p_stream->m_current_data, p_stream->m_bytes_in_buffer);
298
2
        p_stream->m_current_data += p_stream->m_bytes_in_buffer;
299
2
        p_stream->m_byte_offset += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
300
2
        p_stream->m_bytes_in_buffer = 0;
301
2
        return l_read_nb_bytes ? l_read_nb_bytes : (OPJ_SIZE_T) - 1;
302
2
    }
303
304
    /* the flag is not set, we copy data and then do an actual read on the stream */
305
1.63k
    if (p_stream->m_bytes_in_buffer) {
306
75
        l_read_nb_bytes += p_stream->m_bytes_in_buffer;
307
75
        memcpy(p_buffer, p_stream->m_current_data, p_stream->m_bytes_in_buffer);
308
75
        p_stream->m_current_data = p_stream->m_stored_data;
309
75
        p_buffer += p_stream->m_bytes_in_buffer;
310
75
        p_size -= p_stream->m_bytes_in_buffer;
311
75
        p_stream->m_byte_offset += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
312
75
        p_stream->m_bytes_in_buffer = 0;
313
1.56k
    } else {
314
        /* case where we are already at the end of the buffer
315
           so reset the m_current_data to point to the start of the
316
           stored buffer to get ready to read from disk*/
317
1.56k
        p_stream->m_current_data = p_stream->m_stored_data;
318
1.56k
    }
319
320
1.63k
    for (;;) {
321
        /* we should read less than a chunk -> read a chunk */
322
1.63k
        if (p_size < p_stream->m_buffer_size) {
323
            /* we should do an actual read on the media */
324
1.63k
            p_stream->m_bytes_in_buffer = p_stream->m_read_fn(p_stream->m_stored_data,
325
1.63k
                                          p_stream->m_buffer_size, p_stream->m_user_data);
326
327
1.63k
            if (p_stream->m_bytes_in_buffer == (OPJ_SIZE_T) - 1) {
328
                /* end of stream */
329
107
                opj_event_msg(p_event_mgr, EVT_INFO, "Stream reached its end !\n");
330
331
107
                p_stream->m_bytes_in_buffer = 0;
332
107
                p_stream->m_status |= OPJ_STREAM_STATUS_END;
333
                /* end of stream */
334
107
                return l_read_nb_bytes ? l_read_nb_bytes : (OPJ_SIZE_T) - 1;
335
1.52k
            } else if (p_stream->m_bytes_in_buffer < p_size) {
336
                /* not enough data */
337
0
                l_read_nb_bytes += p_stream->m_bytes_in_buffer;
338
0
                memcpy(p_buffer, p_stream->m_current_data, p_stream->m_bytes_in_buffer);
339
0
                p_stream->m_current_data = p_stream->m_stored_data;
340
0
                p_buffer += p_stream->m_bytes_in_buffer;
341
0
                p_size -= p_stream->m_bytes_in_buffer;
342
0
                p_stream->m_byte_offset += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
343
0
                p_stream->m_bytes_in_buffer = 0;
344
1.52k
            } else {
345
1.52k
                l_read_nb_bytes += p_size;
346
1.52k
                memcpy(p_buffer, p_stream->m_current_data, p_size);
347
1.52k
                p_stream->m_current_data += p_size;
348
1.52k
                p_stream->m_bytes_in_buffer -= p_size;
349
1.52k
                p_stream->m_byte_offset += (OPJ_OFF_T)p_size;
350
1.52k
                return l_read_nb_bytes;
351
1.52k
            }
352
1.63k
        } else {
353
            /* direct read on the dest buffer */
354
0
            p_stream->m_bytes_in_buffer = p_stream->m_read_fn(p_buffer, p_size,
355
0
                                          p_stream->m_user_data);
356
357
0
            if (p_stream->m_bytes_in_buffer == (OPJ_SIZE_T) - 1) {
358
                /*  end of stream */
359
0
                opj_event_msg(p_event_mgr, EVT_INFO, "Stream reached its end !\n");
360
361
0
                p_stream->m_bytes_in_buffer = 0;
362
0
                p_stream->m_status |= OPJ_STREAM_STATUS_END;
363
                /* end of stream */
364
0
                return l_read_nb_bytes ? l_read_nb_bytes : (OPJ_SIZE_T) - 1;
365
0
            } else if (p_stream->m_bytes_in_buffer < p_size) {
366
                /* not enough data */
367
0
                l_read_nb_bytes += p_stream->m_bytes_in_buffer;
368
0
                p_stream->m_current_data = p_stream->m_stored_data;
369
0
                p_buffer += p_stream->m_bytes_in_buffer;
370
0
                p_size -= p_stream->m_bytes_in_buffer;
371
0
                p_stream->m_byte_offset += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
372
0
                p_stream->m_bytes_in_buffer = 0;
373
0
            } else {
374
                /* we have read the exact size */
375
0
                l_read_nb_bytes += p_stream->m_bytes_in_buffer;
376
0
                p_stream->m_byte_offset += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
377
0
                p_stream->m_current_data = p_stream->m_stored_data;
378
0
                p_stream->m_bytes_in_buffer = 0;
379
0
                return l_read_nb_bytes;
380
0
            }
381
0
        }
382
1.63k
    }
383
1.63k
}
384
385
OPJ_SIZE_T opj_stream_write_data(opj_stream_private_t * p_stream,
386
                                 const OPJ_BYTE * p_buffer,
387
                                 OPJ_SIZE_T p_size,
388
                                 opj_event_mgr_t * p_event_mgr)
389
0
{
390
0
    OPJ_SIZE_T l_remaining_bytes = 0;
391
0
    OPJ_SIZE_T l_write_nb_bytes = 0;
392
393
0
    if (p_stream->m_status & OPJ_STREAM_STATUS_ERROR) {
394
0
        return (OPJ_SIZE_T) - 1;
395
0
    }
396
397
0
    for (;;) {
398
0
        l_remaining_bytes = p_stream->m_buffer_size - p_stream->m_bytes_in_buffer;
399
400
        /* we have more memory than required */
401
0
        if (l_remaining_bytes >= p_size) {
402
0
            memcpy(p_stream->m_current_data, p_buffer, p_size);
403
404
0
            p_stream->m_current_data += p_size;
405
0
            p_stream->m_bytes_in_buffer += p_size;
406
0
            l_write_nb_bytes += p_size;
407
0
            p_stream->m_byte_offset += (OPJ_OFF_T)p_size;
408
409
0
            return l_write_nb_bytes;
410
0
        }
411
412
        /* we copy data and then do an actual read on the stream */
413
0
        if (l_remaining_bytes) {
414
0
            l_write_nb_bytes += l_remaining_bytes;
415
416
0
            memcpy(p_stream->m_current_data, p_buffer, l_remaining_bytes);
417
418
0
            p_stream->m_current_data = p_stream->m_stored_data;
419
420
0
            p_buffer += l_remaining_bytes;
421
0
            p_size -= l_remaining_bytes;
422
0
            p_stream->m_bytes_in_buffer += l_remaining_bytes;
423
0
            p_stream->m_byte_offset += (OPJ_OFF_T)l_remaining_bytes;
424
0
        }
425
426
0
        if (! opj_stream_flush(p_stream, p_event_mgr)) {
427
0
            return (OPJ_SIZE_T) - 1;
428
0
        }
429
0
    }
430
431
0
}
432
433
OPJ_BOOL opj_stream_flush(opj_stream_private_t * p_stream,
434
                          opj_event_mgr_t * p_event_mgr)
435
0
{
436
    /* the number of bytes written on the media. */
437
0
    OPJ_SIZE_T l_current_write_nb_bytes = 0;
438
439
0
    p_stream->m_current_data = p_stream->m_stored_data;
440
441
0
    while (p_stream->m_bytes_in_buffer) {
442
        /* we should do an actual write on the media */
443
0
        l_current_write_nb_bytes = p_stream->m_write_fn(p_stream->m_current_data,
444
0
                                   p_stream->m_bytes_in_buffer,
445
0
                                   p_stream->m_user_data);
446
447
0
        if (l_current_write_nb_bytes == (OPJ_SIZE_T) - 1) {
448
0
            p_stream->m_status |= OPJ_STREAM_STATUS_ERROR;
449
0
            opj_event_msg(p_event_mgr, EVT_INFO, "Error on writing stream!\n");
450
451
0
            return OPJ_FALSE;
452
0
        }
453
454
0
        p_stream->m_current_data += l_current_write_nb_bytes;
455
0
        p_stream->m_bytes_in_buffer -= l_current_write_nb_bytes;
456
0
    }
457
458
0
    p_stream->m_current_data = p_stream->m_stored_data;
459
460
0
    return OPJ_TRUE;
461
0
}
462
463
OPJ_OFF_T opj_stream_read_skip(opj_stream_private_t * p_stream,
464
                               OPJ_OFF_T p_size, opj_event_mgr_t * p_event_mgr)
465
118
{
466
118
    OPJ_OFF_T l_skip_nb_bytes = 0;
467
118
    OPJ_OFF_T l_current_skip_nb_bytes = 0;
468
469
118
    assert(p_size >= 0);
470
471
118
    if (p_stream->m_bytes_in_buffer >= (OPJ_SIZE_T)p_size) {
472
110
        p_stream->m_current_data += p_size;
473
        /* it is safe to cast p_size to OPJ_SIZE_T since it is <= m_bytes_in_buffer
474
        which is of type OPJ_SIZE_T */
475
110
        p_stream->m_bytes_in_buffer -= (OPJ_SIZE_T)p_size;
476
110
        l_skip_nb_bytes += p_size;
477
110
        p_stream->m_byte_offset += l_skip_nb_bytes;
478
110
        return l_skip_nb_bytes;
479
110
    }
480
481
    /* we are now in the case when the remaining data if not sufficient */
482
8
    if (p_stream->m_status & OPJ_STREAM_STATUS_END) {
483
0
        l_skip_nb_bytes += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
484
0
        p_stream->m_current_data += p_stream->m_bytes_in_buffer;
485
0
        p_stream->m_bytes_in_buffer = 0;
486
0
        p_stream->m_byte_offset += l_skip_nb_bytes;
487
0
        return l_skip_nb_bytes ? l_skip_nb_bytes : (OPJ_OFF_T) - 1;
488
0
    }
489
490
    /* the flag is not set, we copy data and then do an actual skip on the stream */
491
8
    if (p_stream->m_bytes_in_buffer) {
492
8
        l_skip_nb_bytes += (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
493
8
        p_stream->m_current_data = p_stream->m_stored_data;
494
8
        p_size -= (OPJ_OFF_T)p_stream->m_bytes_in_buffer;
495
8
        p_stream->m_bytes_in_buffer = 0;
496
8
    }
497
498
8
    while (p_size > 0) {
499
        /* Check if we are going beyond the end of file. Most skip_fn do not */
500
        /* check that, but we must be careful not to advance m_byte_offset */
501
        /* beyond m_user_data_length, otherwise */
502
        /* opj_stream_get_number_byte_left() will assert. */
503
8
        if ((OPJ_UINT64)(p_stream->m_byte_offset + l_skip_nb_bytes + p_size) >
504
8
                p_stream->m_user_data_length) {
505
8
            opj_event_msg(p_event_mgr, EVT_INFO, "Stream reached its end !\n");
506
507
8
            p_stream->m_byte_offset += l_skip_nb_bytes;
508
8
            l_skip_nb_bytes = (OPJ_OFF_T)(p_stream->m_user_data_length -
509
8
                                          (OPJ_UINT64)p_stream->m_byte_offset);
510
511
8
            opj_stream_read_seek(p_stream, (OPJ_OFF_T)p_stream->m_user_data_length,
512
8
                                 p_event_mgr);
513
8
            p_stream->m_status |= OPJ_STREAM_STATUS_END;
514
515
            /* end if stream */
516
8
            return l_skip_nb_bytes ? l_skip_nb_bytes : (OPJ_OFF_T) - 1;
517
8
        }
518
519
        /* we should do an actual skip on the media */
520
0
        l_current_skip_nb_bytes = p_stream->m_skip_fn(p_size, p_stream->m_user_data);
521
0
        if (l_current_skip_nb_bytes == (OPJ_OFF_T) - 1) {
522
0
            opj_event_msg(p_event_mgr, EVT_INFO, "Stream reached its end !\n");
523
524
0
            p_stream->m_status |= OPJ_STREAM_STATUS_END;
525
0
            p_stream->m_byte_offset += l_skip_nb_bytes;
526
            /* end if stream */
527
0
            return l_skip_nb_bytes ? l_skip_nb_bytes : (OPJ_OFF_T) - 1;
528
0
        }
529
0
        p_size -= l_current_skip_nb_bytes;
530
0
        l_skip_nb_bytes += l_current_skip_nb_bytes;
531
0
    }
532
533
0
    p_stream->m_byte_offset += l_skip_nb_bytes;
534
535
0
    return l_skip_nb_bytes;
536
8
}
537
538
OPJ_OFF_T opj_stream_write_skip(opj_stream_private_t * p_stream,
539
                                OPJ_OFF_T p_size, opj_event_mgr_t * p_event_mgr)
540
0
{
541
0
    OPJ_BOOL l_is_written = 0;
542
0
    OPJ_OFF_T l_current_skip_nb_bytes = 0;
543
0
    OPJ_OFF_T l_skip_nb_bytes = 0;
544
545
0
    if (p_stream->m_status & OPJ_STREAM_STATUS_ERROR) {
546
0
        return (OPJ_OFF_T) - 1;
547
0
    }
548
549
    /* we should flush data */
550
0
    l_is_written = opj_stream_flush(p_stream, p_event_mgr);
551
0
    if (! l_is_written) {
552
0
        p_stream->m_status |= OPJ_STREAM_STATUS_ERROR;
553
0
        p_stream->m_bytes_in_buffer = 0;
554
0
        return (OPJ_OFF_T) - 1;
555
0
    }
556
    /* then skip */
557
558
0
    while (p_size > 0) {
559
        /* we should do an actual skip on the media */
560
0
        l_current_skip_nb_bytes = p_stream->m_skip_fn(p_size, p_stream->m_user_data);
561
562
0
        if (l_current_skip_nb_bytes == (OPJ_OFF_T) - 1) {
563
0
            opj_event_msg(p_event_mgr, EVT_INFO, "Stream error!\n");
564
565
0
            p_stream->m_status |= OPJ_STREAM_STATUS_ERROR;
566
0
            p_stream->m_byte_offset += l_skip_nb_bytes;
567
            /* end if stream */
568
0
            return l_skip_nb_bytes ? l_skip_nb_bytes : (OPJ_OFF_T) - 1;
569
0
        }
570
0
        p_size -= l_current_skip_nb_bytes;
571
0
        l_skip_nb_bytes += l_current_skip_nb_bytes;
572
0
    }
573
574
0
    p_stream->m_byte_offset += l_skip_nb_bytes;
575
576
0
    return l_skip_nb_bytes;
577
0
}
578
579
OPJ_OFF_T opj_stream_tell(const opj_stream_private_t * p_stream)
580
128k
{
581
128k
    return p_stream->m_byte_offset;
582
128k
}
583
584
OPJ_OFF_T opj_stream_get_number_byte_left(const opj_stream_private_t * p_stream)
585
13.2k
{
586
13.2k
    assert(p_stream->m_byte_offset >= 0);
587
13.2k
    assert(p_stream->m_user_data_length >= (OPJ_UINT64)p_stream->m_byte_offset);
588
13.2k
    return p_stream->m_user_data_length ?
589
13.2k
           (OPJ_OFF_T)(p_stream->m_user_data_length) - p_stream->m_byte_offset :
590
13.2k
           0;
591
13.2k
}
592
593
OPJ_OFF_T opj_stream_skip(opj_stream_private_t * p_stream, OPJ_OFF_T p_size,
594
                          opj_event_mgr_t * p_event_mgr)
595
118
{
596
118
    assert(p_size >= 0);
597
118
    return p_stream->m_opj_skip(p_stream, p_size, p_event_mgr);
598
118
}
599
600
OPJ_BOOL opj_stream_read_seek(opj_stream_private_t * p_stream, OPJ_OFF_T p_size,
601
                              opj_event_mgr_t * p_event_mgr)
602
98
{
603
98
    OPJ_ARG_NOT_USED(p_event_mgr);
604
98
    p_stream->m_current_data = p_stream->m_stored_data;
605
98
    p_stream->m_bytes_in_buffer = 0;
606
607
98
    if (!(p_stream->m_seek_fn(p_size, p_stream->m_user_data))) {
608
0
        p_stream->m_status |= OPJ_STREAM_STATUS_END;
609
0
        return OPJ_FALSE;
610
98
    } else {
611
        /* reset stream status */
612
98
        p_stream->m_status &= (~OPJ_STREAM_STATUS_END);
613
98
        p_stream->m_byte_offset = p_size;
614
615
98
    }
616
617
98
    return OPJ_TRUE;
618
98
}
619
620
OPJ_BOOL opj_stream_write_seek(opj_stream_private_t * p_stream,
621
                               OPJ_OFF_T p_size, opj_event_mgr_t * p_event_mgr)
622
0
{
623
0
    if (! opj_stream_flush(p_stream, p_event_mgr)) {
624
0
        p_stream->m_status |= OPJ_STREAM_STATUS_ERROR;
625
0
        return OPJ_FALSE;
626
0
    }
627
628
0
    p_stream->m_current_data = p_stream->m_stored_data;
629
0
    p_stream->m_bytes_in_buffer = 0;
630
631
0
    if (! p_stream->m_seek_fn(p_size, p_stream->m_user_data)) {
632
0
        p_stream->m_status |= OPJ_STREAM_STATUS_ERROR;
633
0
        return OPJ_FALSE;
634
0
    } else {
635
0
        p_stream->m_byte_offset = p_size;
636
0
    }
637
638
0
    return OPJ_TRUE;
639
0
}
640
641
OPJ_BOOL opj_stream_seek(opj_stream_private_t * p_stream, OPJ_OFF_T p_size,
642
                         struct opj_event_mgr * p_event_mgr)
643
90
{
644
90
    assert(p_size >= 0);
645
90
    return p_stream->m_opj_seek(p_stream, p_size, p_event_mgr);
646
90
}
647
648
OPJ_BOOL opj_stream_has_seek(const opj_stream_private_t * p_stream)
649
90
{
650
90
    return p_stream->m_seek_fn != opj_stream_default_seek;
651
90
}
652
653
OPJ_SIZE_T opj_stream_default_read(void * p_buffer, OPJ_SIZE_T p_nb_bytes,
654
                                   void * p_user_data)
655
0
{
656
0
    OPJ_ARG_NOT_USED(p_buffer);
657
0
    OPJ_ARG_NOT_USED(p_nb_bytes);
658
0
    OPJ_ARG_NOT_USED(p_user_data);
659
0
    return (OPJ_SIZE_T) - 1;
660
0
}
661
662
OPJ_SIZE_T opj_stream_default_write(void * p_buffer, OPJ_SIZE_T p_nb_bytes,
663
                                    void * p_user_data)
664
0
{
665
0
    OPJ_ARG_NOT_USED(p_buffer);
666
0
    OPJ_ARG_NOT_USED(p_nb_bytes);
667
0
    OPJ_ARG_NOT_USED(p_user_data);
668
0
    return (OPJ_SIZE_T) - 1;
669
0
}
670
671
OPJ_OFF_T opj_stream_default_skip(OPJ_OFF_T p_nb_bytes, void * p_user_data)
672
0
{
673
0
    OPJ_ARG_NOT_USED(p_nb_bytes);
674
0
    OPJ_ARG_NOT_USED(p_user_data);
675
0
    return (OPJ_OFF_T) - 1;
676
0
}
677
678
OPJ_BOOL opj_stream_default_seek(OPJ_OFF_T p_nb_bytes, void * p_user_data)
679
0
{
680
0
    OPJ_ARG_NOT_USED(p_nb_bytes);
681
0
    OPJ_ARG_NOT_USED(p_user_data);
682
0
    return OPJ_FALSE;
683
0
}